Evaluating air quality efficiency in the major Indian cities using a directional distance function approach

سال انتشار: 1403
نوع سند: مقاله ژورنالی
زبان: انگلیسی
مشاهده: 92

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شناسه ملی سند علمی:

JR_EHEM-11-4_007

تاریخ نمایه سازی: 10 دی 1403

چکیده مقاله:

Background: The ongoing advancements in modern society have negatively impacted air quality, and India is one of the worst affected countries. This study aimed to evaluate the efficiency of maintaining air quality in ۱۰ major Indian cities. Methods: The present study employed a directional distance function (DDF) within the framework of data envelopment analysis (DEA) to evaluate the efficiency of ۱۰ major cities including Chennai, Delhi, Bengaluru, Ahmedabad, Hyderabad, Jaipur, Lucknow, Patna, Gurugram, and Thiruvananthapuram from January ۰۱, ۲۰۱۸ to December ۳۱, ۲۰۱۹. Results: The results indicate that air pollution is a significant issue in most cities in India. Thiruvananthapuram, Bengaluru, and Chennai were identified as the most efficient cities in terms of air quality for both ۲۰۱۸ and ۲۰۱۹ whereas Ahmedabad was noted as a purely inefficient city during the same period. Moreover, it was revealed that cities in the northern (Delhi, Lucknow, Patna), western (Ahmedabad), and northwestern (Jaipur, Gurugram) parts of India had higher levels of air pollution compared to the southern (Chennai, Bengaluru, Hyderabad, Thiruvananthapuram) part of India. Conclusion: There are significant disparities in air quality efficiency among the cities, revealing that southern cities perform better than their northern, western, and northwestern counterparts. It emphasizes the need for targeted interventions to improve air quality, particularly in cities like Delhi, Ahmedabad, and Jaipur.

نویسندگان

Arfan Parvaiz

Department of Mathematics and Actuarial Science, School of Computer, Information and Mathematical Sciences, B.S. Abdur Rahman Crescent Institute of Science and Technology, Chennai, India

Ashiq Mohd Ilyas

Department of Mathematical Sciences, School of Science, Islamic University of Science and Technology, Awantipora, Kashmir, India

Pattani Samsudeen Sheik Uduman

Corresponding author: Department of Mathematics and Actuarial Science, School of Computer, Information and Mathematical Sciences, B.S. Abdur Rahman Crescent Institute of Science and Technology, Chennai, India

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  • Beig G, Ghude SD, Deshpande A. Scientific Evaluation of Air ...
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  • Kumar A, Goyal P. Forecasting of daily air quality index ...
  • Künzli N, Kaiser R, Medina S, Studnicka M, Chanel O, ...
  • Liu F, Chen G, Huo W, Wang C, Liu S, ...
  • Nemmar A, Holme JA, Rosas I, Schwarze PE, Alfaro- Moreno ...
  • Brook RD, Rajagopalan S, Pope CA, ۳rd, Brook JR, Bhatnagar ...
  • Coker E, Liverani S, Ghosh JK, Jerrett M, Beckerman B, ...
  • Lippmann M. Toxicological and epidemiological studies of cardiovascular effects of ...
  • Ghorani-Azam A, Riahi-Zanjani B, Balali-Mood M. Effects of air pollution ...
  • Balakrishnan K, Dey S, Gupta T, Dhaliwal RS, Brauer M, ...
  • US Global Change Research Program. Global Climate Change Impacts in ...
  • Kelishadi R, Poursafa P. Air pollution and non-respiratory health hazards ...
  • Singh N, Singh S, Mall RK. Urban ecology and human ...
  • Di D, Zhang L, Wu X, Leng R. Long-term exposure ...
  • Hendryx M, Luo J, Chojenta C, Byles JE. Air pollution ...
  • Yuda M. Asian countries rush to fight toxic air pollution. ...
  • van Donkelaar A, Martin RV, Brauer M, Hsu NC, Kahn ...
  • Gong M, Yin S, Gu X, Xu Y, Jiang N, ...
  • Perera F. Pollution from fossil-fuel combustion is the leading environmental ...
  • Wang S, Zhao M, Xing J, Wu Y, Zhou Y, ...
  • Wu X, Wu Y, Zhang S, Liu H, Fu L, ...
  • United Nations. Department of Economic and Social Affairs. World Urbanization ...
  • Camastra F, Ciaramella A, Son LH, Riccio A, Staiano A. ...
  • Zhu S, Lian X, Liu H, Hu J, Wang Y, ...
  • Shekhar S. Central Pollution Control Board, National Air Quality Index ...
  • Pant P, Lal RM, Guttikunda SK, Russell AG, Nagpure AS, ...
  • Engel-Cox JA, Hoff RM, Haymet AD. Recommendations on the use ...
  • Zhou Z, Guo X, Wu H, Yu J. Evaluating air ...
  • Dyah Prasetyawati N, Tjiptowibisono S, Pranoto P, Sunarto S. Swot ...
  • Aboosaedi Z, Naddafi K, Nabizadeh Nodehi R, Hassanvand MS, Faridi ...
  • Kamarehie B, Ghaderpoori M, Jafari A, Karami M, Mohammadi A, ...
  • Charnes A, Cooper WW, Rhodes E. Measuring the efficiency of ...
  • Banker RD, Charnes A, Cooper WW. Some models for estimating ...
  • Álvarez I, Barbero J, Zofio Prieto J. A data envelopment ...
  • Chambers RG, Chung Y, Färe R. Benefit and Distance Functions. ...
  • Shah DP, Patel DP. A comparison between national air quality ...
  • Krishnan MA, Krishnaswami P, Selvam MR, Dass VA, Thangavel R, ...
  • Sharma D, Mauzerall D. Analysis of air pollution data in ...
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