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Development of Vulnerability Framework for Assessing the Air Pollution-Related Health Impacts in Four Districts of Delhi, India


Affiliations
1 The Energy and Resources Institute, School of Advance Studies, Plot No. 10, Institutional Area, Vasant Kunj, New Delhi 110 070, India
 

Air pollution and its deleterious public health risks are a major concern across the world. It is one of the leading health risk factors causing high mortality and disease burden in many cities. Epidemiological risk assessment studies have generated considerable evidence of disease burden due to air pollution. Such evidence proves useful as inputs for framing various air quality management and public health protection policies. Implementation of these policies also necessitates a critical insight from a perspective of differential population vulnerability to air pollution. Hence, the present study proposes a methodological approach for developing an integrated vulnerability assessment framework that focuses on multidimensional aspects adhering to vulnerability in nexus with health risk characterization. The designed framework has been applied in a pilot case study undertaken in four districts of Delhi, India. Weightage has been multiplied by a normalized score for each indicator to calculate the vulnerability score. The score reflects relative vulnerability level based on the components – emission load, exposure, land use–land cover features, sensitivity and coping capacity. Findings of the study have shown maximum score for East Delhi and minimum score for New Delhi. Hence the study throws light on the factors that are contributing towards the vulnerability of human health to air pollution.

Keywords

Coping Capacity, Emission Load, Exposure, Land Use–land Cover, Sensitivity.
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  • Aggarwal, P. and Jain, S., The impact of air pollutants from sur-face transport sources on human health: A modeling and epidemi-ological approach. Environ. Int., 2015, 83, 146–157.
  • Brauer, M. et al., Ambient air pollution exposure estimation for the global burden of disease 2013. Environ. Sci. Technol., 2016, 50(1), 79–88.
  • Jain, S. and Khare, M., Urban air quality in megacities: a case study of Delhi city using vulnerability analysis. Environ. Monit. Assess., 2008, 136(1–3), 257–265.
  • Kumar, P., Jain, S., Gurjar, B. R., Sharma, P., Khare, M., Morawska, L. and Britter, R., Can a ‘Blue Sky’ return to Indian megacities? Atmos. Environ., 2013, 71, 198–201.
  • Gurjar, B. and Nagpure, A., Indian megacities as localities of environmental vulnerability from air quality perspective. J. Smart Cities, 2015, 1, 15–30; doi:10.18063.
  • Banerjee, M., Siddique, S., Mukherjee, S., Roychoudhury, S., Das, P., Ray, M. R. and Lahiri, T., Hematological, immunological, and cardiovascular changes in individuals residing in a polluted city of India: a study in Delhi. Int. J. Hyg. Environ. Health, 2012, 215(3), 306–311.
  • Holgate, S. T., Every breath we take: the lifelong impact of air pollution – a call for action. Clin. Med., 2017, 17(1), 8.
  • Lim, S. S. et al., A comparative risk assessment of burden of dis-ease and injury attributable to 67 risk factors in 21 regions, 1990–2010: a systematic analysis for the Global Burden of Disease Study 2010. Lancet, 2012, 380, 2224–2260.
  • Gadhok, T. K., Risks in Delhi: Environmental concerns. In Geo-spatial World, 2011.
  • Cropper, M. L., Simon, N. B., Alberini, A. and Sharma, P. K., The health effects of air pollution in Delhi, India. Policy Research Working Papers No. 1860, The World Bank, Washington, DC, 1997.
  • Pande, J. N., Bhatta, N., Biswas, D., Pandey, R. M., Ahluwalia, G., Siddaramaiah, N. H. and Khilnani, G. C., Outdoor air pollution and emergency room visits at a hospital in Delhi. Indian J. Chest Dis. Allied Sci., 2001, 44, 13–19.
  • Jayaraman, G. N., Air quality and respiratory health in Delhi. Environ. Monit. Assess., 2007, 135(1–3), 313–325.
  • Siddique, S., Banerjee, M., Ray, M. R. and Lahiri, T., Air pollu-tion and its impact on lung function of children in Delhi, the capital city of India. Water, Air and Soil Pollut., 2010, 212(1–4), 89–100.
  • Singh, A. L. and Jamal, S., Indoor air pollution: types of cooking fuel used and its impact on the health of women in Aligarh city. Int. J. Environ. Health, 2011, 5(3), 205–220.
  • Nardo, M., Saisana, M., Saltelli, A., Tarantola, S., Hoffman, H. and Giovannini, E., Handbook on Constructing Composite Indica-tors: Methodology and User Guide. OECD Statistics Working Paper, 2005; www.olis.oecd.org/olis/2005doc.nsf/LinkTo/std-doc
  • Wright, C. Y. and Diab, R., International perspectives: air pollu-tion and vulnerability: solving the puzzle of prioritization. J. Envi-ron. Health, 2011, 73(6), 56–64.
  • Samet, J. M., Some current challenges in research on air pollution and health. Salud Pública México, 2014, 56(4), 379–385.
  • Sharma, M. and Dikshit, O., Comprehensive study on air pollution and Green House Gases (GHGs) in Delhi (Indian Institute of Technology, Kanpur). A report submitted to Government of NCT Delhi and DPCC Delhi, 2016, pp. 1–334.
  • Chandramouli, C. and General, R., Provisional Population Totals, Paper 1 of 2011, India, Series 1. Office of the Registrar General and Census Commissioner, India, 2011, p. 188; www.censusindia. gov.in/2011-prov-results/prov_results_paper1_india.html
  • Annual Report, Directorate General of Health Services, Govern-ment of National Capital Territory of Delhi, 2015, pp. 156–184.
  • World Health Organization (WHO), Health aspects of air pollu-tion: results from the WHO project ‘Systematic review of health aspects of air pollution in Europe’ (No. EUR/04/5046026). WHO Regional Office for Europe, Copenhagen, 2004.
  • World Health Organization (WHO), WHO Global Urban Ambient Air Pollution/Database, 2016; www.who.int/phe/health_topics/outdoorair/databases/cities/en/
  • CPCb.GOV.IN/CAAQM/frmUserAvgReportCriteria.aspx
  • ISFR, India State of Forest Report. Forest Survey of India, Minis-try of Environment Forest and Climate Change, Government of India, Dehra Dun, 2015.
  • USEPA (United State Environmental Protection Agency), Expo-sure Factors Handbook, 2011.
  • Munda, G., ‘Measuring sustainability’: a multi-criterion frame-work. Environ. Dev. Sustain., 2005, 7(1), 117–134.
  • Bateson, T. F. and Schwartz, J., Children’s response to air pollutants. J. Toxicol. Environment. Health, Part A, 2007, 71(3), 238–243.
  • Makri, A. and Stilianakis, N. I., Vulnerability to air pollution health effects. Int. J. Hygiene Environ. Health, 2008, 211(3–4), 326–336.
  • Stilianakis, N. I., Susceptibility and vulnerability to health effects of air pollution: The case of nitrogen dioxide. Joint Research Centre, European Commission, 2015.
  • Burri, P. H., Fetal and postnatal development of the lung. Ann. Rev. Physiol., 1984, 46, 617–628.
  • Garg, A., Pro-equity effects of ancillary benefits of climate change policies: A case study of human health impacts of outdoor air pollution in New Delhi. World Dev., 2011, 39(6), 1002–1025.
  • Kwatra, S., Kumar, A., Sharma, P., Sharma, S. and Singhal, S., Benchmarking sustainability using indicators: an Indian case study. Ecol. Indic., 2016, 61, 928–940.
  • Feigin, V. L. et al., Global burden of stroke and risk factors in 188 countries, during 1990–2013: a systematic analysis for the Global Burden of Disease Study 2013. Lancet Neurol., 2016, 15(9), 913–924.

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  • Development of Vulnerability Framework for Assessing the Air Pollution-Related Health Impacts in Four Districts of Delhi, India

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Authors

Anoop Raj Singh
The Energy and Resources Institute, School of Advance Studies, Plot No. 10, Institutional Area, Vasant Kunj, New Delhi 110 070, India
Neha Oli
The Energy and Resources Institute, School of Advance Studies, Plot No. 10, Institutional Area, Vasant Kunj, New Delhi 110 070, India

Abstract


Air pollution and its deleterious public health risks are a major concern across the world. It is one of the leading health risk factors causing high mortality and disease burden in many cities. Epidemiological risk assessment studies have generated considerable evidence of disease burden due to air pollution. Such evidence proves useful as inputs for framing various air quality management and public health protection policies. Implementation of these policies also necessitates a critical insight from a perspective of differential population vulnerability to air pollution. Hence, the present study proposes a methodological approach for developing an integrated vulnerability assessment framework that focuses on multidimensional aspects adhering to vulnerability in nexus with health risk characterization. The designed framework has been applied in a pilot case study undertaken in four districts of Delhi, India. Weightage has been multiplied by a normalized score for each indicator to calculate the vulnerability score. The score reflects relative vulnerability level based on the components – emission load, exposure, land use–land cover features, sensitivity and coping capacity. Findings of the study have shown maximum score for East Delhi and minimum score for New Delhi. Hence the study throws light on the factors that are contributing towards the vulnerability of human health to air pollution.

Keywords


Coping Capacity, Emission Load, Exposure, Land Use–land Cover, Sensitivity.

References





DOI: https://doi.org/10.18520/cs%2Fv120%2Fi6%2F1092-1098