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Why India needs to get aggressive about passive cooling

In part 2 of its series on cooling in India, CarbonCopy explores how income disparity, inadequate data and lack of awareness about building codes are major obstacles to achieving India Action Cooling Plan’s passive cooling strategy In 2022, after two phases of the PM’s scheme to build affordable housing (Pradhan Mantri Awas Yojana-PMAY) were over, the government released recommendations for passive and low-energy cooling in which it acknowledged: “current design and construction practices are not streamlined for affordable housing and, therefore, this report recommends passive strategies to reduce heat gain from the building envelope [shell of the building] and low-energy cooling technologies to enhance thermal comfort, considering affordable housing and cost-related aspects.” The study pointed out that in the absence of additional policy interventions, room air conditioner (RAC) penetration will reach 239 million units by 2030—although this study has calculated a more realistic figure of 18 million units by 2031, which is still considerable. The exponential growth in the RAC stock will also give rise to the heat island effect, which will impact the poor in the affordable housing sector. We read in Part I, that means of active cooling, which include ACs, coolers, fans and above all expensive fuel and electricity can leave millions out of the pale of “thermal comfort” that the India Cooling Action Plan (ICAP) promises. However, the plan also recommends means of passive cooling, which cannot be bought from the market, but requires a mass implementation of India’s many progressive building norms that can keep the built and unbuilt environment cool without using mechanical cooling. So can the national building norms be “deconstructed” for the local builders and state bodies to be adopted at scale? How soon? Passive cooling vs massive shortage of houses The government report on passive cooling strategies points out that in India’s affordable housing sector, as of the 2011 Census, 377 million people (31%) reside in urban areas, with an expected increase of over 200 million by 2031. The government said, of the total shortage of 18.78 million housing units in Indian cities, 96% is required by Economically Weaker Sections and Low Income Group households. The report warned that the affordable housing shortage is expected to reach 44-48 million dwelling units by 2022. As per the same report, a majority of the shortage (14.99 million households) are living in congested houses, requiring new houses to be built. The report found that Uttar Pradesh has the highest shortage (3.07 million units), followed by Maharashtra with 1.94 million and West Bengal with 1.33 million. Pradhan Mantri Awas Yojana-PMAY: ‘No focus on housing livability’ Government told Parliament on August 1, 2024, that “based on the project proposals submitted by States/ UTs, as on July 22, 2024, 118.64 lakh houses have been sanctioned under PMAY-U, of which 114.33 lakh houses have been grounded for construction; of which 85.04 lakh have been completed/delivered to beneficiaries. The sanctioned houses involve Central assistance of ₹2 lakh crore (approx.) against which ₹1.64 lakh crore has been released so far. The scheme period, which was earlier up to March 2022, has been extended upto December 2024.” According to the passive cooling strategies report, to cater to housing needs, the Centre launched the Housing for All scheme in 2015. The report adds that the focus of PMAY-Urban is to build housing units quickly, with income, built space provisions and the cost of the dwelling unit as the determining criteria of affordable housing. But more importantly, the report points out that “there is limited or no focus on qualitative aspects that determine housing livability and occupant productivity.” The figure above offers enhancement on thermal performance of envelope, Sustainable building materials, Natural ventilation strategies, Passive cooling/heating techniques. The techniques PMAY does not focus on? Source: Guide for using National Building Code of India 2016. The passive cooling strategies report offers highest-impact measures such as orientation of the building, windows shading, glazing type, cross and night flush ventilation, wall materials/ techniques, envelope Insulation, roof materials etc. for different climate scenarios such as hot & dry climates, warm-humid climates and composite climatic conditions. The report recommended autoclaved aerated concrete (AAC) and hollow blocks as suitable in all climates. Other materials like clay bricks, cellular concrete, and fly ash are ideal in most climates. According to Delhi-based architect Sanjay Sen Choudhury, the current building codes and strategies for affordable housing are energy efficient and progressive. But building a house by the book is expensive for the majority of the population. Sen said: “To integrate the code [including the passive cooling features] into the design of a home, we require architects who need to be paid for their services, obviously, but most people can’t afford them and there are no incentives to hire their services or follow the code either.” Sen says, “Realistically speaking, given the density of space, it is not even possible for architects to design naturally ventilated homes that are not dependent on ACs, anyway. For that, homes require open space around them on at least two sides for the right amount of airflow. It requires architectural features to minimise solar radiation through windows, right building materials to minimise heating, these materials are too expensive for even the middle class let alone the poor who bear the brunt of heat-related fatalities.” Homes stacked like cartons in the warehouse Drawing crucial distinctions between the way the rich and the poor use resources, Sen says, “It’s for everyone to see. The density of homes in urban areas is such that in many cases, it is hard to differentiate between a slum and urban housing. For which, ACs and coolers are the best options for survival. The middle class and the poor are blamed for guzzling energy through mechanical cooling. But architecturally, that’s not true. There is very little surface left for solar radiation to fall upon the walls on most of the urban homes in cities with common walls between the homes on three sides, stacked like cardboard cartons in warehouses, in most urban areas where the poor or the middle class live. Compare it to the leafy avenues of bungalows with open lawns on all four sides. It is them who use the maximum number of ACs on all exposed sides in a room one could use depending upon their (much larger) sizes.” This lack of space for cooling for the poor is an important differentiating factor that has been missed by policymakers. Lack of vulnerability mapping ​​The cooling action plan also lacks vulnerability mapping data based on the thermal needs of those residing in vulnerable regions. More than 100 cities have a heat action plan, but 97% of the plans do not undertake risk and vulnerability assessment. The Delhi heat action plan talks about heat deaths and how the poor “struggle to maintain thermal comfort due to the high costs of cooling.” The ICAP acknowledges that cooling should be made “accessible for all” but does not address the high costs of cooling. Many people are still living without electricity because they cannot afford high costs of electricity connection, let alone buy a fan or AC. Consider the anomalies between states. According to India Residential Energy Survey (IRES) 2020, 2.4% of Indian households still remain unelectrified. Most of them were concentrated in rural Uttar Pradesh, Madhya Pradesh, Rajasthan, Haryana, and Bihar. The IRES survey found that a majority of them could not afford grid-connection. The Saubhagya scheme offers a free connection, but some households are not able to access it, or were deterred by the recurring monthly expenditure of paying electricity charges, the IRES report said. The report stated that some households do not have electricity because they lack grid supply in the neighbourhood, or they are refused connection due to inadequate documents. According to a CEEW study, government data GARV2 dashboard shows that 37% of households in Odisha are unelectrified, even as over 98% of villages in the state have been electrified. Building codes waiting to be noticed The ICAP recommends implementation of building codes to achieve cooling targets. The Energy Conservation Building Code (ECBC) (Residential) itself acknowledges that “although the temperatures are high during a major part of the year requiring mechanical space cooling, consideration of heat gain is often not given sufficient importance during residential building design.” Just as ECBC rues lack of implementation, a study by WRI found that a majority of the key state agencies are not even aware of ICAP, without which plan implementation is not impossible. The ICAP recommends green buildings based on Energy Conservation Building Code 2017, but the code that was launched in 2007 and revised in 2017 “to incorporate advanced technologies” is applicable only to commercial buildings. Speaking to Carboncopy, Anumita Roychowdhury of the Centre for Science and Environment (CSE) said even as energy efficiency building codes have evolved, there are gaps between the policy and policy enabling mechanism for scalable implementation, which will require local interventions such as modifying local building bylaws. “We require a huge outrage which is directly linked with the mandate of various laws pushing for thermal comfort. These laws need to be demystified for urban planners, local bodies, architects, and the builders’ community so that the design required for thermal comfort gets absorbed while designing massive housing projects that are not supposed to have air conditioners. But at the ground level what we see is this cookie cutter approach to building and designing mass projects with no evaluation of how good they are prepared for day and night temperature gain, no attention paid to orientation of the building or how the wind flows through the rooms all these parameters get ignored.” Roy pointed out that even as scientists are classifying building material according to a heat gain index, the market is not responsive. The new material to build has moved away from brick and mortar to prefabricated walls, which are heat trappers. “On the one hand, the policy has been progressive and aims to reduce mechanical cooling; earlier the focus was on energy efficiency but now also includes thermal comfort. There is a strategic shift with respect to cooling as ICAP acknowledges thermal comfort, but to operationalise it one has to join a lot of dots which is not happening, it’s happening only in specific projects, but it’s not adopted in mass construction.” The absence of clear benchmarks and clear definitions of concepts such as “thermal comfort” can upset the country’s energy budget. The time to get to the grain of the issues is now, she said.

PM Kusum Scheme Only Met 30% Of Target: Think Tank Report

A new report reveals that the PM Kusum scheme, designed to promote solar energy in agriculture across India, has only met 30% of its targets. Launched in 2019, the Pradhan Mantri Kisan Urja Suraksha Evam Utthaan Mahabhiyan (PM Kusum) scheme's goal is to help farmers switch to solar power, making farming more sustainable and reducing dependence on traditional energy sources. The report by the Centre for Science and Environment reveals that the PM Kusum scheme, designed to promote solar energy in agriculture, has achieved only 30% of its target after six years. The report, based on surveys conducted in Haryana, Punjab, Rajasthan and Chhattisgarh, underscores the scheme's slow progress as the 2026 deadline approaches. 'As climate change continues to have increasingly widespread impacts, it is more critical than ever to invest in sustainable practices, especially in key sectors like agriculture,' said Nivit Kumar Yadav, programme director for industrial pollution and renewable energy at CSE. 'In this context, schemes like PM Kusum can significantly advance India’s climate action efforts, but only if implemented with care and precision,' he said. The scheme is divided into three parts: Component A - installing mini-grids on unused lands, Component B - replacing diesel water pumps with off-grid solar pumps and Component C - replacing electric water pumps with on-grid solar pumps and installing mini-grids for agricultural solarization. The CSE noted that progress under the PM Kusum scheme has been slow, with the majority of efforts concentrated on Component B. States such as Haryana, Rajasthan, Maharashtra, and Uttar Pradesh are leading in implementation, while Components A and C have seen minimal progress. Farmers who have switched to solar water pumps are happy as these allow daytime irrigation and eliminate inconvenient night-time schedules and power cuts. For example, a farmer from Aterna village in Haryana praised the scheme for making farming activities easier and more efficient. Farmers who switched from diesel to solar pumps save significantly, with some farmers in Haryana saving up to Rs 55,000 annually. According to the CSE, one of the principal challenges the scheme faces is the availability of cheap electricity for farmers, which diminishes the incentive to shift from electric water pumps to solar water pumps. Also, farmers are often forced to opt for pump sizes larger than needed for their land. Debajit Palit, professor of energy at the NTPC School of Business in Noida, said the scheme needs to be tailored to meet farmers’ specific requirements to be financially viable. “If pump sizes are based on the land size and water requirements of different areas, rather than being kept uniform throughout the country, farmers could avoid the extra expenditure,” he said. Another challenge is the centralisation of the implementation model in some states. In Punjab, the CSE report said, the scheme's implementation is overseen by the Punjab Renewable Energy Development Agency, in contrast to Rajasthan, where each component has a different implementing agency. Yadav said that a decentralised model is important to truly realise the potential of the PM Kusum scheme. “State implementing agencies with the necessary knowledge about each component should be responsible for the components within their expertise,” he said. The CSE suggested that farmers should be allowed to pay for solar pumps in instalments, which will make it financially more viable for them. The central government should increase financial support to states, especially to cover the rising costs of solar modules post-Covid, it said.

PM KUSUM: किसानों तक नहीं पहुंच सकी पीएम कुसुम योजना, रिपोर्ट में दावा- महज 30 फीसदी लक्ष्य पूरा हो सका

देश में कृषि क्षेत्र में सौर ऊर्जा को बढ़ावा देने के लिए शुरू की गई पीएम कुसुम योजना बड़े पैमाने पर किसानों तक नहीं पहुंच सकी। एक रिपोर्ट के मुताबिक योजना की समय सीमा 2026 में खत्म होने वाली है और अब तक इसका लक्ष्य महज 30 फीसदी ही पूरा हो सका है। रिपोर्ट में योजना में कई बड़े सुधार करने का जिक्र किया गया है। 2019 में शुरू की गई प्रधानमंत्री किसान ऊर्जा सुरक्षा एवं उत्थान महाभियान (पीएम कुसुम) योजना का लक्ष्य किसानों को सौर ऊर्जा पर आधारित खेती करने के लिए प्रोत्साहित करना, खेती को टिकाऊ बनाना और पारंपरिक ऊर्जा स्रोतों पर किसानों की निर्भरता कम करना है। योजना को लेकर थिंक टैंक सेंटर फॉर साइंस एंड एनवायरनमेंट (सीएसई) ने हरियाणा, पंजाब, राजस्थान और छत्तीसगढ़ में सर्वे किया। इस सर्वे में सामने आए परिणाम में पाया गया कि योजना लागू होने के पांच साल बाद भी केवल 30 फीसदी लक्ष्य हासिल कर सकी है। रिपोर्ट में औद्योगिक प्रदूषण और नवीकरणीय ऊर्जा के कार्यक्रम निदेशक निवित कुमार यादव ने कहा कि देश में जलवायु परिवर्तन का प्रभाव बढ़ रहा है। ऐसे में सौर ऊर्जा में निवेश करना बेहद महत्वपूर्ण है। खासकर कृषि क्षेत्र में इसका प्रयोग जरूरी है। उन्होंने कहा कि अगर सावधानी और सटीकता के साथ लागू किया जाए तो पीएम कुसुम जैसी योजनाएं भारत के जलवायु कार्रवाई प्रयासों को आगे बढ़ा सकती हैं। उन्होंने कहा कि योजना को तीन भागों में बांटा गया है। इनमें श्रेणी ए में प्रयोग न की जाने वाली जमीन पर मिनी ग्रिड लगाना, श्रेणी बी में डीजल पंपों को सौर ऊर्जा पंपों में बदला जाना और श्रेणी सी विद्युत पंपों को ऑन ग्रिड पंपों में बदलकर मिनी ग्रिड स्थापित करना। सीएसई रिपोर्ट में कहा गया कि सबसे ज्यादा काम श्रेणी बी की हुआ है। इसमें हरियाणा, राजस्थान, महाराष्ट्र और उत्तर प्रदेश जैसे राज्य आगे हैं। जबकि श्रेणी ए और श्रेणी सी में कोई प्रगति नहीं नजर आई। रिपोर्ट में कहा गया कि जिन किसानों ने अपनी खेती को सौर जल पंपों से शुरू किया उनको काफी राहत मिली। क्योंकि इससे दिन में सिंचाई की सुविधा मिली और रात में बिजली कटौत की समस्या और पानी न आने की दिक्कत से निजात मिली। रिपोर्ट में उदाहरण दिया गया कि सौर ऊर्जा के जरिये खेती करने वाले हरियाणा के अटेरना गांव के किसान काफी राहत महसूस कर रहे हैं। इससे डीजल की अपेक्षा सौर पंप अपनाने से उन्हें बचत हुई। कुछ किसानों ने तो सालाना 55 हजार रुपये तक बचाए। रिपोर्ट में योजना के तहत किसानों के सामने आने वाली चुनौतियों का भी जिक्र किया गया है। इसमें पहली चुनौती सस्ती बिजली न मिलना और दूसरी चुनौती किसानों को भूमि के मुकाबले अधिक बडे़ पंप चुनने के लिए मजबूर किया जाना है। एक अन्य चुनौती राज्यों में योजना का केंद्रीयकरण है। रिपोर्ट में कहा गया है कि पंजाब में योजना के कार्यान्वयन की देखरेख पंजाब नवीकरणीय ऊर्जा विकास एजेंसी करती है, जबकि राजस्थान में प्रत्येक श्रेणी के लिए एक अलग एजेंसी है। कार्यक्रम निदेशक निवित कुमार यादव ने कहा कि पीएम कुसुम योजना को सही मायने में साकार करने के लिए विकेंद्रीकृत मॉडल अपनाया जाए। प्रत्येक श्रेणी की जानकार एजेंसियों को तैनात किया जाए और उसके कार्यान्वयन के लिए जिम्मेदार माना जाए। सीएसई में सुझाव दिया गया कि किसानों को सौर पंपों के लिए किश्तों में भुगतान करने की अनुमति दी जानी चाहिए। ताकि उन पर अनावश्यक दबाव न पड़े। इसके अलावा केंद्र सरकार को राज्यों की वित्तीय सहायता बढ़ानी चाहिए। वहीं नोएडा के एनटीपीसी स्कूल ऑफ बिजनेस के ऊर्जा विभाग के प्रोफेसर देबजीत पालित ने कहा कि योजना को किसानों की आवश्यकताओं को पूरा करने और वित्तीय रूप से व्यवहारपरक बनाने के तौर पर तैयार किया जाना चाहिए। अगर पंप का आकार पूरे देश में एक समान रखने के बजाय भूमि के आकार और पानी की जरूरत पर आधारित हो तो किसान अतिरिक्त खर्च से बचेंगे।

दिल्ली, मुंबई, बेंगलुरु पर ओजोन का खतरा, सीएसई रिपोर्ट डराने वाली है

भारत के बड़े शहरों के लिए वायु प्रदूषण का खतरा अब जानलेवा बनता जा रहा है. हर साल दिल्ली एनसीआर और दूसरे बड़े शहरों में रहने वाले लोग इस खतरे से होने वाली गंभीर बीमारियों से जूझते हैं. सेंटर फॉर साइंस एंड एनवायरमेंट (सीएसई) ने इस पर अब एक नई रिपोर्ट पब्लिश की है. इस रिपोर्ट में उसने खुलासा किया है कि कैसे ओजोन गैस इन शहरों की हवा को और जहरीली बना रही है. चलिए आपको इस आर्टिकल में इस रिपोर्ट के बारे में विस्तार से बताते हैं. खतरे में हैं ये शहर दिल्ली एनसीआर, बेंगलुरु, चेन्नई, कोलकाता, मुंबई और पुणे के साथ-साथ ग्रेटर अहमदाबाद, ग्रेटर हैदराबाद, ग्रेटर जयपुर और ग्रेटर लखनऊ की स्थिति चिंताजनक है. दरअसल, दिल्ली स्थित थिंक टैंक सेंटर फॉर साइंस एंड एनवायरमेंट (CSE) की नई रिपोर्ट के अनुसार, इन भारतीय शहरों में ओजोन प्रदूषण के स्तर में चिंताजनक वृद्धि हुई है. खासतौर से इस साल के गर्मियों के दौरान भारत के 20 प्रमुख शहरी क्षेत्रों में जमीनी स्तर पर ओजोन गैस का स्तर काफी ज्यादा बढ़ गया है. इससे इन क्षेत्रों में हवा पहले के मुकाबले कहीं ज्यादा जहरीली हो गई है. इन सभी शहरों में दिल्ली सबसे ज्यादा प्रभावित हुई है. ओजोन का स्तर सामान्य से अधिक CSE की नई रिपोर्ट के अनुसार, दिल्ली एनसीआर सहित सभी 10 बड़े शहरों में ओजोन गैस का स्तर सामान्य से अधिक रहा है. जहां दिल्ली-एनसीआर में 176 दिन ग्राउंड-लेवल ओजोन गैस का स्तर सामान्य से अधिक रहा, वहीं मुंबई और पुणे में 138 दिन ऐसी ही स्थिति रही. जयपुर में 126 दिन, हैदराबाद में 86, कोलकाता में 63, बेंगलुरु में 59, लखनऊ में 49 और अहमदाबाद में 41 दिन ओजोन गैस का स्तर असामान्य था. जबकि, चेन्नई में ऐसे दिनों की संख्या सबसे कम लगभग 9 दिन दर्ज की गई. इस साल समस्या ज्यादा बढ़ी सीएसई की इस नई रिपोर्ट में इस बात का भी खुलासा किया गया है कि साल 2024 में ओजोन प्रदूषण की बढ़ती समस्या 2020 में लॉकडाउन के दौरान गर्मियों में पैदा हुई समस्या से कहीं ज्यादा बढ़ी है. आज स्थिति ये है कि बढ़ते प्रदूषण की समस्या अब सिर्फ बड़े शहरों तक ही सीमित नहीं है, बल्कि छोटे शहर भी इस बढ़ते प्रदूषण की समस्या से जूझ रहे हैं. CSE की इस रिपोर्ट के मुताबिक, इस साल 10 में से 7 शहरों में पिछले साल की तुलना में कहीं अधिक दिन ओजोन का स्तर ज्यादा रहा. अहमदाबाद जैसे छोटे शहर में सबसे ज्यादा उछाल आया है, यहां ओजोन में 4,000 फीसदी की वृद्धि हुई है. जबकि, पुणे में 500 फीसदी, जयपुर में 152 फीसदी और हैदराबाद में 115 फीसदी की वृद्धि दर्ज की गई.

દિ લ્હી , મુંબઈ અને બેંગલુરુમા વા યુ પ્રદૂષણનો ખતરો : CSE રિ પો ર્ટ

વાયુ પ્રદૂષણનો ખતરો હવેભા રતના મો ટા શહેરો મા ટે જીવલેણ બની રહ્યો છે. દર વર્ષે દિ લ્હી એનસી આર અને અન્ય મો ટા શહેરો માં રહેતા લો કો આ ભયના કા રણે ગંભી ર બીમા રી ઓનો ભો ગ બને છે. સેન્ટર ફો ર સા યન્સ એન્ડ એન્વા યર્નમેન્ટ (CSE) એહવે આ અંગે નવો રિ પો ર્ટ પ્રકા શિ ત કર્યો છે. આ રિ પો ર્ટમાં તેણે ખુલાસો કર્યો છે કે કેવી રી તે ઓઝો ન ગેસ આ શહેરો ની હવા ને વધુ ઝેરી બના વી રહ્યો છે. આ શહેરો જોખમ દિ લ્હી NCR, બેંગલુરુ, ચેન્નઈ, કો લકા તા , મુંબઈ અને પુણે તેમજ અમદા વા દ, હૈદરા બા દ, જયપુર અને લખનૌ માં સ્થિ તિ ચિં તા જનક છે. દિ લ્હી સ્થિ ત થિં કથિં ટેન્ક સેન્ટર ફો ર સા યન્સ એન્ડ એન્વાયર્નમેન્ટ (CSE)ના નવા અહેવા લ મુજબ આ ભા રતી ય શહેરો માં ઓઝો ન પ્રદૂષણના સ્તરમાં ચિં તા જનક વધા રો થયો છે. ખા સ કરી ને આ વર્ષના ઉના ળા દરમિ યા ન ભા રતના 20 મુખ્ય શહેરી વિ સ્તા રો માં જમી ન સ્તરે ઓઝો ન ગેસનું સ્તર નોં ધપા ત્ર રી તે વધ્યું છે. જેનાજે ના કા રણે આ વિ સ્તા રો ની હવા પહેલા કરતા વધુ ઝેરી બની ગઈ છે. આ તમા મ શહેરો પૈકી દિ લ્હી સૌ થી વધુ પ્રભા વિ ત થયું છે. ઓ ઝો ન સ્તર સા મા ન્ય કરતા વધા રે CSEના નવા રિ પો ર્ટ અનુસા ર દિ લ્હી NCR સહિ ત તમા મ 10 મો ટા શહેરો માં ઓઝો ન ગેસનું સ્તર સા મા ન્ય કરતા વધા રે છે. જ્યા રે દિ લ્હી -એનસી આરમાં 176 દિ વસ સુધી ગ્રા ઉન્ડ લેવલ ઓઝો ન ગેસનું સ્તર સા મા ન્યથી ઉપર રહ્યું, જ્યા રે મુંબઈ અને પુણેમાં 138 દિ વસ સુધી સ્થિ તિ સમા ન રહી . જયપુરમાં 126 દિ વસ, હૈદરા બાદમાં 86, કો લકા તા માં 63, બેંગલુરુમાં 59, લખનૌ માં 49 અને અમદા વા દમાં 41 દિ વસ સુધી ઓઝો ન ગેસનું સ્તર અસા મા ન્ય હતું. જ્યા રે આવા દિ વસો ની સૌ થી ઓછી સંખ્યા ચેન્ના

Ground-level Ozone (Tropospheric Ozone) pollution is on the rise across India’s major cities: Report

Key findings on Ground-level Ozone (GLO) India’s 10 metropolitan areas have exceeded the national ozone standard, with Delhi being the most affected. GLO hotspots: Located in areas with low levels of NO2 and PM2.5 as unavailability of NO2 hampers its dissipation. Night-time GLO continues to persist in all metropolitan areas. An infographic titled "Types of Ozone" with two sections: Stratospheric Ozone and Tropospheric Ozone. Stratospheric Ozone, at 50km altitude, naturally protects from UV radiation. Tropospheric Ozone, at 10km altitude, is a harmful pollutant created by chemical reactions. Ground-level Ozone (GLO) Ozone (O3) is a variant of oxygen composed of three oxygen atoms. It occurs both in the Earth’s upper atmosphere and at ground level/ Tropospheric Ozone (See Image). GLO is a secondary, short-lived pollutant formed in the atmosphere by reaction between oxides of nitrogen and volatile organic compounds (VOCs) in the presence of sunlight. Peak O3 levels occur in summers. Source: Pollution from cars, power plants, industries; electronic equipment, e.g., photocopiers. Impact of Ground-level Ozone (GLO) Health: Worsen bronchitis, trigger asthma, and permanently damage lung tissue. Climate: Absorbs radiation and consequently acts as a strong greenhouse gas. Agriculture and Ecosystem Impacts: Interferes with photosynthesis and stunts overall growth of some plant species. Strategies to prevent Ozone pollution: Methane reductions and cutting the levels of atmospheric pollution arising from cars, power plants and other sources.

Ozone Scare In Major Indian cities In 2024 summer, Finds New CSE Study

A new nation-wide analysis by Centre for Science and Environment (CSE) says that in the summer of 2024, the levels of ground-level ozone in the air went up in the 10 major metropolitan areas of India. These areas and cities include Bengaluru Metropolitan Area (Karnataka), Chennai Metropolitan Area (Tamil Nadu), Delhi-NCR, Greater Ahmedabad (Gujarat), Greater Hyderabad (Telangana), Greater Jaipur (Rajasthan), Kolkata Metropolitan Area (West Bengal), Greater Lucknow (Uttar Pradesh), Mumbai Metropolitan Region (Maharashtra) and Pune Metropolitan Region (Maharashtra). Says Anumita Roychowdhury, executive director, research and advocacy, CSE: “Ground-level ozone, a highly reactive gas, has serious health consequences. Those with respiratory conditions, asthma and chronic obstructive pulmonary disease – as well as children with premature lungs and older adults — are at serious risk. This can inflame and damage airways, make lungs susceptible to infection, aggravate asthma, emphysema, and chronic bronchitis and increase the frequency of asthma attacks leading to increased hospitalisation.” The 2020 State of Global Air report states that age-standardised rates of death attributable to ground-level ozone is among the highest in India. The seasonal eight-hour daily maximum concentrations have recorded one of the highest increases in India between 2010 and 2017 – about 17 per cent. Ozone needs special attention — ground-level ozone is not directly emitted from any source. It is produced from complex interaction between nitrogen oxides (NOx) and volatile organic compounds (VOCs) that are emitted from vehicles, power plants, factories, and other combustion sources and undergo cyclic reactions in the presence of sunlight to generate ground-level ozone. VOCs can also be emitted from natural sources, such as plants. Roychowdhury points out that as the National Clean Air Programme (NCAP) gears up for its second phase, “its reform agenda has to address the multi-pollutant crisis and the combined threat from PM2.5, ozone, nitrogen oxides and other gases. Global experience shows that there is usually a trade-off — as particulate pollution gets reduced, the problem of NOx and ground-level ozone increases. This requires significant tightening of the regulatory benchmark for ozone to address the toxic emissions from industry, vehicles, households and open burning”. According to Avikal Somvanshi, programme manager, Urban Lab, CSE, who has led the CSE study, “in 2024, we have found that the geographical spread of the problem is much wider than what we had seen in the lockdown summer of 2020 in most metropolitan areas. This time’s toxic build-up has lasted longer in locations affected by the problem. Even the smaller metropolitan areas have witnessed rapid increase. In metropolitan areas in the south and western coastal belt, the problem is not limited only to the summer months.”

CSE report finds high ground-level ozone in 10 Indian metros between 2020-2024, ‘green areas’ hotspots

Delhi saw 176 days in summer 2024, between 1 April and 18 July, where ground ozone levels exceeded national air quality standards, according to a new report by the Centre for Science and Environment (CSE), a New Delhi-based think tank. Released Tuesday, the CSE report on ground-level ozone is based on a nationwide analysis which found that 10 metropolitan cities saw an increase in daily maximum levels of ozone between 2020 and 2024. The report found that ozone levels also increased in non-metropolitan areas compared to last year, and persisted beyond summer months which, it said, was a concerning trend. Ozone pollution is a very specific phenomenon — the presence of the gas in the stratosphere is considered healthy, but ground-level ozone causes health issues for humans. The CSE report

દિલ્હી, મુંબઈ, બેંગલુરુ માટે ઓઝોન સ્તરનો ખતરો, CSE રિપોર્ટમાં આવ્યો ચોંકાવનારો ખુલાસો

ભારતના મોટા શહેરો માટે વાયુ પ્રદૂષણનો ખતરો હવે જીવલેણ બની રહ્યો છે. દર વર્ષે દિલ્હી એનસીઆર અને અન્ય મોટા શહેરોમાં રહેતા લોકો આ ભયના કારણે ગંભીર બીમારીઓનો ભોગ બને છે. સેન્ટર ફોર સાયન્સ એન્ડ એન્વાયર્નમેન્ટ (CSE) એ હવે આ અંગે નવો અહેવાલ પ્રકાશિત કર્યો છે. આ રિપોર્ટમાં તેમણે ખુલાસો કર્યો છે કે કેવી રીતે ઓઝોન ગેસ આ શહેરોની હવાને વધુ ઝેરી બનાવી રહ્યો છે. ચાલો તમને આ લેખમાં આ અહેવાલ વિશે વિગતવાર જણાવીએ. આ શહેરોમાં ઓઝોન સ્તર જોખમમાં છે દિલ્હી NCR, બેંગલુરુ, ચેન્નઈ, કોલકાતા, મુંબઈ અને પુણે તેમજ ગ્રેટર અમદાવાદ, ગ્રેટર હૈદરાબાદ, ગ્રેટર જયપુર અને ગ્રેટર લખનૌમાં સ્થિતિ ચિંતાજનક છે. વાસ્તવમાં, દિલ્હી સ્થિત થિંક ટેન્ક સેન્ટર ફોર સાયન્સ એન્ડ એન્વાયર્નમેન્ટ (CSE)ના નવા અહેવાલ મુજબ, આ ભારતીય શહેરોમાં ઓઝોન પ્રદૂષણના સ્તરમાં ચિંતાજનક વધારો થયો છે. ખાસ કરીને આ વર્ષના ઉનાળા દરમિયાન, ભારતના 20 મુખ્ય શહેરી વિસ્તારોમાં જમીન સ્તરે ઓઝોન ગેસનું સ્તર નોંધપાત્ર રીતે વધ્યું છે. જેના કારણે આ વિસ્તારોની હવા પહેલા કરતા વધુ ઝેરી બની ગઈ છે. આ તમામ શહેરો પૈકી દિલ્હી સૌથી વધુ પ્રભાવિત થયું છે. ઓઝોન સ્તર સામાન્ય કરતા વધારે છે CSEના નવા રિપોર્ટ અનુસાર, દિલ્હી NCR સહિત તમામ 10 મોટા શહેરોમાં ઓઝોન ગેસનું સ્તર સામાન્ય કરતા વધારે છે. જ્યારે દિલ્હી-એનસીઆરમાં 176 દિવસ સુધી ગ્રાઉન્ડ લેવલ ઓઝોન ગેસનું સ્તર સામાન્યથી ઉપર રહ્યું, જ્યારે મુંબઈ અને પુણેમાં 138 દિવસ સુધી સ્થિતિ સમાન રહી. જયપુરમાં 126 દિવસ, હૈદરાબાદમાં 86, કોલકાતામાં 63, બેંગલુરુમાં 59, લખનૌમાં 49 અને અમદાવાદમાં 41 દિવસ સુધી ઓઝોન ગેસનું સ્તર અસામાન્ય હતું. જ્યારે, આવા દિવસોની સૌથી ઓછી સંખ્યા ચેન્નાઈમાં લગભગ 9 દિવસ નોંધાઈ હતી. આ વર્ષે આ સમસ્યા વધુ વધી છે CSEના આ નવા રિપોર્ટમાં એ વાતનો પણ ખુલાસો થયો છે કે વર્ષ 2024માં ઓઝોન પ્રદૂષણની વધતી જતી સમસ્યા 2020માં લોકડાઉન દરમિયાન ઉનાળામાં ઊભી થયેલી સમસ્યા કરતાં વધુ વધી છે. આજે સ્થિતિ એવી છે કે વધતા પ્રદુષણની સમસ્યા હવે માત્ર મોટા શહેરો પુરતી સીમિત નથી રહી પરંતુ નાના શહેરો પણ વધતા પ્રદૂષણની સમસ્યાનો સામનો કરી રહ્યા છે. આ CSE રિપોર્ટ અનુસાર, આ વર્ષે 10 માંથી 7 શહેરોમાં ઓઝોનનું સ્તર ગત વર્ષ કરતા વધુ દિવસોએ વધારે રહ્યું છે. અમદાવાદ જેવા નાના શહેરમાં સૌથી મોટો ઉછાળો આવ્યો છે, જ્યાં ઓઝોન 4,000 ટકા વધ્યો છે. જ્યારે પુણેમાં 500 ટકા, જયપુરમાં 152 ટકા અને હૈદરાબાદમાં 115 ટકાનો વધારો નોંધાયો હતો.

OZONE POLLUTION ACROSS INDIA

WHY IN NEWS? A recent study by the Delhi-based think tank Centre for Science and Environment (CSE) has uncovered a concerning trend: ground-level ozone pollution is increasing in major cities across India. This invisible gas, distinct from the well-known fine particulate matter (PM2.5), poses a significant health risk, especially for individuals with respiratory issues. The report titled “Air Quality Tracker: An Invisible Threat” was released on August 6, 2024. The researchers examined metropolitan areas including Bengaluru (Karnataka), Chennai (Tamil Nadu), Kolkata (West Bengal), Mumbai, and Pune (Maharashtra). They also analyzed data for the Delhi-National Capital Region, Greater Ahmedabad (Gujarat), Greater Hyderabad (Telangana), Greater Jaipur (Rajasthan), and Greater Lucknow (Uttar Pradesh). All 10 areas studied exceeded the national ozone standard, with Delhi being the most affected. The report also found that smaller cities like Ahmedabad and Pune are experiencing a particularly rapid increase in ozone pollution. What is Ozone? Ozone (O3) is a colourless, reactive oxidant gas, and it is a major component of atmospheric smog. Ozone exists in both the Earth’s upper atmosphere and its surface, is composed of three oxygen atoms. Its environmental and health impact depends on its location in the atmosphere, leading to either positive or negative effects. Even at low concentrations, ozone, a pale blue gas, can be hazardous and explosive. In India, the ozone issue is primarily linked to sunny weather since sunlight directly influences ground-level ozone formation. Photochemical processes are facilitated by heat catalysis, resulting in higher ozone concentrations during summertime. Formation of Ozone:

दिल्ली-एनसीआर में जमीनी स्तर पर ओजोन सबसे ज्यादा

सेंटर फॉर साइंस एंड एनवायरनमेंट (सीएसई) द्वारा जारी एक रिसर्च रिपोर्ट के मुताबिक दिल्ली-एनसीआर देश भर के उन 10 शहरों की सूची में सबसे ऊपर है, जिनमें जमीनी स्तर पर ओजोन गैस (ओ3) की मात्रा बेहद बढ़ी हुई पाई गई है. रिपोर्ट के मुताबिक जनवरी 1 से जुलाई 18 तक, यानी कि 200 दिनों में से, 176 दिनों में दिल्ली एनसीआर में जमीनी ओजोन की मात्रा बढ़ी हुई थी. दूसरे स्थान पर रहे मुंबई और पुणे में 200 में से 138 दिनों में यह मात्रा ज्यादा पाई

After sunset: Why ozone scare is real for Delhi and its neighbours

An analysis by the Centre for Science and Environment says that in summer this year, the ground-level ozone in the air increased in 10 metropolitan areas of India, with Delhi being the most affected. So far, Delhi-NCR has recorded 176 days of exceedance during the study period, followed by Mumbai and Pune with 138 days.CSE said ground-level ozone usually exceeds the safety standard on all days of summer in some locations in Delhi-NCR every year. This year the number of stations exceeding the standard across core NCR has been 17.6, the highest in the last five years. On average, only 9.4 stations exceeded the standard daily in the previous summers. It was 14.6 stations in the 2020 summer. The report also said ground-level ozone should ideally be negligible in the night air, but all 10 metropolitan areas saw a rare phenomenon of elevated ozone level after sunset. The study considered ozone in excess when the hourly concentration exceeded 100 micrograms per cubic metre between 10pm and 2am at any station. Mumbai-MMR reported the most instances of night-time ground-level ozone with 171 nights of exceedance, followed by Delhi-NCR (161) and Pune (131). Ground-level ozone, a highly reactive gas, has serious health consequences. “Those with respiratory conditions, asthma and chronic obstructive pulmonary disease, children with premature lungs and older adults can face serious risks. The gas can inflame and damage airways, make lungs susceptible to infection, aggravate asthma, emphysema and chronic bronchitis and increase the frequency of asthma attacks,” said Anumita Roychowdhury, executive director, research and advocacy, CSE. Not only has the spatial spread in Delhi-NCR increased this year, but also the duration. This summer, at the stations which reported exceedance, the high levels lasted on average 13.9 hours, the highest since the pandemic summer of 2020. Even upscale and green neighbourhoods were affected, including Dr Karni Singh Shooting Range and Lodhi Colony. “This is consistent with the science that ozone drifts and gathers in areas where a comparatively lower amount of gaseous pollutants are present. Thus, relatively cleaner areas, including urban peripheries, can have comparatively higher ozone concentrations,” explained Roychowdhury. Avikal Somvanshi, programme manager, Urban Lab, CSE, who led the study, said, “Even though ground-level ozone exceedance is assumed to be at its worst during summer months, data from the 10 metropolitan areas analysed in our study shows that it is a year-long problem.” The 2020 State of Global Air report states that age-standardised rates of death attributable to ground-level ozone are among the highest in India. The seasonal eight-hour daily maximum concentrations recorded among the highest increases — around 17% — in India between 2010 and 2017. CSE suggested that the country should develop a robust public information and dissemination system to alert the public wherever ozone build-up takes place.

Ozone scare in major Indian cities in 2024 summer, finds new CSE study

A new nation-wide analysis by Centre for Science and Environment (CSE) says that in the summer of 2024, the levels of ground-level ozone in the air went up in the 10 major metropolitan areas of India. These areas and cities include Bengaluru Metropolitan Area (Karnataka), Chennai Metropolitan Area (Tamil Nadu), Delhi-NCR, Greater Ahmedabad (Gujarat), Greater Hyderabad (Telangana), Greater Jaipur (Rajasthan), Kolkata Metropolitan Area (West Bengal), Greater Lucknow (Uttar Pradesh), Mumbai Metropolitan Region (Maharashtra) and Pune Metropolitan Region (Maharashtra). Says Anumita Roychowdhury, executive director, research and advocacy, CSE: “Ground-level ozone, a highly reactive gas, has serious health consequences. Those with respiratory conditions, asthma and chronic obstructive pulmonary disease – as well as children with premature lungs and older adults — are at serious risk. This can inflame and damage airways, make lungs susceptible to infection, aggravate asthma, emphysema, and chronic bronchitis and increase the frequency of asthma attacks leading to increased hospitalisation.” The 2020 State of Global Air report states that age-standardised rates of death attributable to ground-level ozone is among the highest in India. The seasonal eight-hour daily maximum concentrations have recorded one of the highest increases in India between 2010 and 2017 – about 17 per cent. Ozone needs special attention — ground-level ozone is not directly emitted from any source. It is produced from complex interaction between nitrogen oxides (NOx) and volatile organic compounds (VOCs) that are emitted from vehicles, power plants, factories, and other combustion sources and undergo cyclic reactions in the presence of sunlight to generate ground-level ozone. VOCs can also be emitted from natural sources, such as plants. Roychowdhury points out that as the National Clean Air Programme (NCAP) gears up for its second phase, “its reform agenda has to address the multi-pollutant crisis and the combined threat from PM2.5, ozone, nitrogen oxides and other gases. Global experience shows that there is usually a trade-off — as particulate pollution gets reduced, the problem of NOx and ground-level ozone increases. This requires significant tightening of the regulatory benchmark for ozone to address the toxic emisisons from industry, vehicles, households and open burning”. “Moreover, ozone not only builds up in metropolitan areas but also drifts long distances to form a regional pollutant that makes both local and regional action necessary,” she adds. According to Avikal Somvanshi, programme manager, Urban Lab, CSE, who has led the CSE study, “in 2024, we have found that the geographical spread of the problem is much wider than what we had seen in the lockdown summer of 2020 in most metropolitan areas. This time’s toxic build-up has lasted longer in locations affected by the problem. Even the smaller metropolitan areas have witnessed rapid increase. In metropolitan areas in the south and western coastal belt, the problem is not limited only to the summer months.” Adds Somvanshi: “Inadequate monitoring, limited data and inappropriate methods of trend analysis have weakened the understanding of this growing public health hazard. The complex chemistry of ground-level ozone makes it a difficult pollutant to track and mitigate. Due to its toxic nature, ozone’s national ambient air quality standard has been set for only short-term exposures (one-hour and eight-hour averages), and compliance is measured by the number of days that exceed the standards. This requires early action.” The investigation methodology This assessment has traced trends during summer (April 1-July 18). The data covered is from 2020 to 2024. The analysis is based on publicly available granular real time data (15-minute averages) from the Central Pollution Control Board’s (CPCB) official online portal, the Central Control Room for Air Quality Management. The data has been captured from official stations under the Continuous Ambient Air Quality Monitoring System (CAAQMS) spread across 10 metropolitan regions. The station break-up is as follows: Delhi-NCR (58 stations), Mumbai Metropolitan Region (48), Kolkata Metropolitan Area (10), Greater Hyderabad (14), Bengaluru Metropolitan Area (14), Chennai Metropolitan Area (nine), Pune Metropolitan Region (15), Greater Ahmedabad (10), Greater Lucknow (seven) and Greater Jaipur (six). Sharanjeet Kaur, programme officer, Urban Lab, CSE, says: “This analysis has considered station-level trends in terms of number of days exceeding the eight -hour standard over time. The study has considered global good practices and taken on board the USEPA approach of computing eight-hour averages for a day and then checking for the maximum value among them to capture the daily ozone pollution level. The key highlights of the CSE analysis Monitoring of ozone and method of its trend analysis need to improve to inform policy: the compliance method as set by the CPCB requires that the ozone standards are met for 98 per cent of the time in the year. It may exceed the limits on two per cent of the days in a year, but not on two consecutive days of monitoring. Says Kaur: “In other words, there should not be more than eight days in a year when the ozone standard is breeched, and none of those allowed exceedances can be on two consecutive days.” Somvanshi explains: “The standard practice of the CPCB to average out the data of all stations in the city to determine daily AQI does not work for ground-level ozone as it is a short-lived and hyper-localised pollutant. A city-wide average concentration level over an extended time frame does not indicate the severity of the problem and health implications from local build-up and exposure for people living in hotspots.” Adds Somvanshi: “While analysing the data, it was also noted that the ozone data available on the CPCB portal never exceeds 200 microgramme per cubic metre (μg/m3) while data for the corresponding time provided by the Delhi Pollution Control Committee may show higher levels. Due to this capping of data, it is not possible to understand the nature of peaking in the city. This needs to be addressed as there are two sets of standards for ozone – an eight-hourly standard of 100 μg/m3 and a one-hourly standard of 180 μg/m3. Capping makes assessment of one-hourly standard challenging.” Ground-level ozone exceedance has been reported in all 10 metropolitan areas, with Delhi being the most affected: This year, so far, Delhi-NCR has recorded 176 days of exceedances during the study period. Mumbai-MMR and Pune are tied at the second spot with 138 days of exceedance each. Jaipur recorded an exceedance on 126 days; Hyderabad, on 86 days; Kolkata-KMA, 63 days; Bengaluru, 59 days; Lucknow, 49 days; and Ahmedabad, 41 days. The least number of exceedance was recorded in Chennai: a mere nine days. Ground-level ozone exceedance is more frequent during summer for Delhi-NCR, Jaipur, Kolkata-KMA, Lucknow, Ahmedabad and Chennai. In Mumbai-MMR, Pune, Hyderabad, and Bengalure, more exceedances were reported during January-March than during the summer (April-July). A massive increase in ground-level ozone exceedance is reported in smaller metropolitan areas: Comparing the number of exceedances this year so far with the same period from last year shows an increase in seven out of 10 metropolitan areas analysed in this study. The smaller metropolitan areas have had the biggest jumps, with Ahmedabad registering a 4,000 per cent rise in number of exceedances. Pune follows with 500 per cent, and Jaipur had a 152 per cent increase. Hyderabad registerd a 115 per cent rise in number of exceedance days; Mumbai-MMR and Bengaluru saw an 18 per cent and 1 per cent increase, respectively. Less than 5 per cent change has been noted in Delhi-NCR and Lucknow. Meanwhile, Kolkata-KMA and Chennai have seen a drop in the number of exceedances by 19 per cent and 40 per cent, respectively. Summer ground-level ozone peak is dangerously high in all 10 metropolitan areas: Even though the number of exceedance days is highest among Delhi-NCR and Mumbai-MMR (partly because they have highest number of stations), but from regional average concentration and peak level perspective, Jaipur air is more toxic. The regional average of Jaipur for April 1 to July 15 is 81.2 µg/m3 compared to Delhi-NCR’s 73.3 µg/m3 and Mumbai-MMR’s 34.8 µg/m3. Chennai has the lowest regional average of 24.3 µg/m3 but the peak recorded in the southern metro was 192.7 µg/m3, third highest among the 10 metropolitan areas — only exceeded by Jaipur (205.9 µg/m3) and Delhi-NCR (194.2 µg/m3). Mumbai-MMR’s peak was fourth highest at 186.1 µg/m3. Lucknow had a regional average of 54.9 µg/m3 and regional peak of 179.1 µg/m3. Pune had a regional average of 53.6 µg/m3 and a regional peak of 163.6 µg/m3. Ahmedabad had a regional average of 53.3 µg/m3 and regional peak of 172.6 µg/m3. Kolkata-KMA had a regional average of 38.8 µg/m3 and regional peak of 160.4 µg/m3. Bengaluru had a regional average of 35.3 µg/m3 and regional peak of 110.7 µg/m3 (lowest peak among the metropolitan areas). Hyderabad had a regional average of 32.8 µg/m3 and regional peak of 129.1 µg/m3. Says Somvanshi: “Given the data cap of 200 µg/m3 enforced by the CPCB at 15-minute granularity, it is stunning to observe that multiple stations are still logging eight-hourly averages close to 200 µg/m3 across the country. This underscores the magnitude of the pollution.” Duration of ground-level ozone pollution exceedance unhealthily long across all metropolitan areas, smaller metropolitan areas worst: Ground-level ozone exposure standard is defined in terms of one-hourly average and eight-hourly average — but this standard is breeched for much longer durations. This summer, at the stations which reported exceedance, it lasted on an average of 11.9 hours in Bengaluru which was the lowest among the 10 metropolitan areas; the highest was in Lucknow where it lasted an average of 15.7 hours. Average exceedance duration in Pune, Jaipur and Ahmedabad was 15.1 hours, 14.2 hours and 14.2 hours respectively. Average duration ranged between 12 and 14 hours for Delhi-NCR, Mumbai-MMR, Chennai, Kolkata-KMA and Hyderabad. Night-time ground-level ozone continues to persist in all metropolitan areas: Ground-level ozone should ideally become negligible in the night air, but all 10 metropolitan areas have been witnessing a rare phenomenon where ozone levels remain elevated hours after sunset. Night-time ozone has been considered when hourly concentration has exceeded the level of 100 µg/m3 between 10 PM and 2 AM at any station. Mumbai-MMR reported most instances of night-time ground-level ozone, with 171 nights of exceedance. It is followed by Delhi-NCR and Pune with 161 nights and 131 nights respectively. Hyderabad recorded exceedance on 94 nights; Ahmedabad, on 68 nights. Lucknow had 26 exceedance nights while Chennai had 24 and Bengaluru, 22. The least number of exceedances was recorded in Kolkata: 17 nights. Like day-time ground-level ozone exceedance, night-time exceedances are also recorded throughout January to July in all metropolitan areas. But unlike day-time exceedances, there is no regional variation in the seasonality of night-time exceedances as all metropolitan areas record a majority of them during summer (April-July). Ground-level ozone hotspots are located in areas with low levels of NO2 and PM2.5: The spatial distribution of ground-level ozone is the inverse of NO2 and PM2.5. This bears out the fact that while ozone is created in polluted areas with nitrogen oxide being the catalyst, it also gets mopped up in high NO2 areas as it further reacts. But the ozone that escapes to cleaner areas with less NO2 builds up faster, as unavailability of NO2 hampers its dissipation. High end and green neighborhoods are worst affected: Dr Karni Singh Shooting Range and Lodi Colony in Delhi, Navy Nagar in Mumbai, Fort William in Kolkata, Kapra in Hyderabad, BMT Layout in Bengaluru, Velachery in Chennai, Savitribai Phule University in Pune, Police Commissionerate in Jaipur, Gomti Nagar in Lucknow and Maninagar in Ahmedabad are all hotspots for ground-level ozone pollution. “This is consistent with the science that ozone drifts and gathers in areas where comparativey lesser amount of gaseous pollutants are persent to further mop it up. Thus, relatively cleaner areas including urban peripheries can have comparatively higher ozone concentration,” says Roychowdhury. Ground-level ozone has become a year-long problem: “Even though ground-level ozone exceedance is assumed to be at its worst during summer months, data from the 10 metropolitan areas analysed in our study shows that it remains a year-long problem,” says Somvanshi. The intensity and spatial spread dip during non-summer days, but a few locations continue to record exceedance throughout the year. Build-up of ground-level ozone can happen anytime during the year in the sunnier metropolitan areas of south India, but it occurs usually in small pockets during the non-summer months. For it to have a wider spatial spread, hot and sunny weather conditions are needed which are generally present in summer – especially during April-May; but there is a considerable uptick in ozone pollution after monsoon, especially during October-November. Foggy and cold conditions of January in north India conventionally inhibit formation of ground-level ozone. But the study found that ozone was exceeding at multiple stations in Delhi. Critical to act immediately Says Roychowdhury: “This finding has significant implcations for the NCAP programme that is currently focusing more on controlling PM10 or coarse dust. India must immediately refine the action strategy for combined control of particulate pollution, ozone and its precursor gases like NOx to maximise the co-benefits of the action plan. We need stringent control of precursor gases from vehicles, industry, cooking on solid fuels, open burning and other combustion sources while reducing PM2.5.” Simultaneously, the country needs to develop a robust public information and dissemination system to alert the public about ozone exceedance — wherever ozone build-up is happening.

Forbidden ozone

This year so far, Bengaluru has recorded 59 days of ground-level ozone breaching the safe limits, according to a new analysis by the Centre for Science and Environment (CSE), New Delhi. The assessment was conducted on air quality data from 14 Continuous Ambient Air Quality Monitoring Systems (CAAQMS) across the city. The results of the assessment also underline that BTM Layout is the hotspot for ground-level ozone pollution in the city. An increase in ground-level ozone above prescribed standards has been calculated as a daily maximum eighthour average crossing the standard of 100µg/m3. Ozone levels also remained elevated in the city hours after sunset. Bengaluru has recorded 22 nights with higherthan-safe ground-level ozone values. Night-time ozone has been considered when hourly concentration has exceeded the level of 100 µg/m3 between 10 pm and 2 am at any station. Consequences Experts say ground-level ozone is a highly reactive gas and has serious health consequences.

Delhi suffers from high levels of ground-level ozone, finds study

Delhi-NCR topped a list of 10 cities across the country that were found to have high concentrations of ground-level ozone (O3), according to a study released by the Centre for Science and Environment (CSE) on Tuesday. According to the study, between January 1 and July 18 — a period of 200 days — Delhi-NCR recorded 176 days of ground-level ozone exceedance. The second highest was 138 days each, in Mumbai-MMR and Pune, followed by Jaipur, at 126 days. CSE used data from official stations under the Continuous Ambient Air Quality Monitoring System (CAAQMS) of the Central Pollution Control Board. “Ground-level ozone, a highly reactive gas, has serious health consequences. Those with respiratory conditions, asthma and chronic obstructive pulmonary disease, as well as children with premature lungs and older adults, are at serious risk. This can inflame and damage airways, make lungs susceptible to infection, aggravate asthma, emphysema and chronic bronchitis, and increase the frequency of asthma attacks leading to increased hospitalisation,” Anumita Roychowdhury, executive director, research and advocacy, CSE, said. The study looked at ozone data from January 1 to July 18, with the summer period considered as April 1 to July 18. Comparative data was assessed from 2020 till 2023, covering Bengaluru, Chennai, Delhi-NCR, Greater Ahmedabad, Greater Hyderabad, Greater Jaipur, Kolkata, Greater Lucknow, Mumbai Metropolitan Region and Pune. Ground-level ozone is not directly emitted, but is produced from a complex interaction between nitrogen oxides (NOx) and volatile organic compounds (VOCs) emitted from vehicles, power plants, factories, and other combustion sources. This makes it a highly volatile gas that has one-hour and eight-hour standards, as compared to PM (particulate matter) 2.5, which has a 24-hour standard. Dangerous levels Delhi-NCR recorded excess ozone levels on 103 of 109 days this summer, followed by Jaipur, at 75 days, and Pune, at 58 days. However, based on concentration levels, Jaipur’s air was more toxic than that of Delhi-NCR. “The regional average of Jaipur for April 1 to July 15 is 81.2 µg/m3 compared to Delhi-NCR’s 73.3µg/m3 and Mumbai-MMR’s 34.8µg/m3. Chennai has the lowest regional average of 24.3µg/m3 but the peak recorded in the southern metro was 192.7µg/m3, third highest among the 10 metropolitan areas -- only exceeded by Jaipur (205.9µg/m3) and Delhi-NCR (194.2µg/m3),” the study said. “While analysing the data, it was also noted that the ozone data available on the CPCB portal never exceeds 200 microgramme per cubic metre (μg/m3) while data for the corresponding time provided by the Delhi Pollution Control Committee may show higher levels. Due to this capping of data, it is not possible to understand the nature of peaking in the city,” Avikal Somvanshi, programme manager, Urban Lab, CSE, who was also part of the study, said. According to CPCB, the one-hour standard for ozone is 180µg/m3, and the eight-hourly standard is 100µg/m3. Night ozone CSE said that although ground-level ozone should ideally become negligible in the night air, the 10 metropolitan areas have been witnessing a rare phenomenon, where ozone levels remain elevated for hours after sunset. The report said Mumbai-MMR reported most instances of night-time ground-level ozone, with 171 nights of exceedance, followed by Delhi-NCR, at 161, and Pune, at 131 nights. The least number of exceedances was recorded in Kolkata, on 17 nights. Year-on-year increase Comparing the number of exceedances this year with the same period from last year shows an increase in seven of 10 metropolitan areas, the study found. Smaller metropolitan areas had the biggest jumps, with Ahmedabad registering a 4,000% rise in number of exceedances, followed by Pune, with a 500% rise and Jaipur, with a 152% rise. “Hyderabad registered a 115% rise in the number of exceedance days; Mumbai-MMR and Bengaluru saw an 18% and 1% increase, respectively. Less than 5% change has been noted in Delhi-NCR and Lucknow. Meanwhile, Kolkata-KMA and Chennai have seen a drop in the number of exceedances by 19% and 40%, respectively,” the study said. Green areas worst hit The study found that green or high-end neighbourhoods were worst impacted, indicating that though these areas may have lesser PM 2.5, ozone remains a threat. According to the study, Dr Karni Singh Shooting Range and Lodi Colony in Delhi, Navy Nagar in Mumbai, Fort William in Kolkata, Kapra in Hyderabad, BMT Layout in Bengaluru, Velachery in Chennai, Savitribai Phule University in Pune, Police Commissionerate in Jaipur, Gomti Nagar in Lucknow and Maninagar in Ahmedabad are all hot spots of ground-level ozone pollution. “This is consistent with the science that ozone drifts and gathers in areas where comparatively lesser amount of gaseous pollutants are present to further mop it up. Thus, relatively cleaner areas, including urban peripheries, can have comparatively higher ozone concentrations,” Roychowdhury said. The spatial distribution of ozone was also found to be inverse of NO2 and PM2.5. “This bears out the fact that while ozone is created in polluted areas with nitrogen oxide being the catalyst, it also gets mopped up in high NO2 areas as it further reacts. But the ozone that escapes to cleaner areas with less NO2 builds up faster, as unavailability of NO2 hampers its dissipation,” the study said.