Welcome to Scholar Publishing Group

Academic Journal of Environmental Biology, 2021, 2(1); doi: 10.38007/AJEB.2021.020104.

Air Pollution Control Based on Ecological Compensation and Financing Mechanism

Author(s)

Yujia Bai

Corresponding Author:
Yujia Bai
Affiliation(s)

School of Economics, Northwest University of Political Science and Law, Xi’an 710122, China

Abstract

At present, with the rapid development of my country's economy and the acceleration of the process of urban integration, various environmental pollution problems such as dust pollution, vehicle exhaust pollution, and open burning are frequent, and the problem of air pollution control is particularly prominent. The purpose of this paper is to study air pollution control based on ecological compensation and financing mechanism. The construction of my country's air pollution control ecological compensation fund system is mainly discussed from the aspects of legislative construction, specific system construction, fund type, fund source, fund use and payment, compensation scope, level setting, etc., and analyzes the operation of the air pollution ecological compensation fund system. principle. The improvement suggestions are put forward from two aspects: strengthening the supervision of the ecological compensation fund for air pollution control and improving the use efficiency of the ecological compensation fund for air pollution control. According to the research results, most of the heavy-industry-led cities and service-oriented cities have achieved the goal of green economic growth, and with the increase of per capita GDP, the concentration of PM2.5 has gradually decreased.

Keywords

Ecological Compensation, Financing Mechanism, Air Pollution, Pollution Control

Cite This Paper

Yujia Bai. Air Pollution Control Based on Ecological Compensation and Financing Mechanism. Academic Journal of Environmental Biology (2021), Vol. 2, Issue 1: 30-38. https://doi.org/10.38007/AJEB.2021.020104.

References

[1] Gordon T, Balakrishnan K, Dey S, et al. Air pollution health research priorities for India: Perspectives of the Indo-U.S. Communities of Researchers. Environment International, 2018, 119(OCT.):100-108. https://doi.org/10.1016/j.envint.2018.06.013

[2] Newell K, Kartsonaki C, Lam K, et al. Cardiorespiratory health effects of gaseous ambient air pollution exposure in low and middle income countries: a systematic review and meta-analysis. Environmental Health, 2018, 17(1):1-14. https://doi.org/10.1186/s12940-018-0380-3

[3] Lee K K, Miller M R, Shah A . Air Pollution and Stroke. Journal of Stroke, 2018, 20(1):2-11. https://doi.org/10.5853/jos.2017.02894

[4] Nhung N, Schindler C, Dien T M, et al. Acute effects of ambient air pollution on lower respiratory infections in Hanoi children: An eight-year time series study. Environment International, 2018, 110(jan.):139-148. https://doi.org/10.1016/j.envint.2017.10.024

[5] Dmitrienko, MA, Strizhak, et al. Coal-water slurries containing petrochemicals to solve problems of air pollution by coal thermal power stations and boiler plants: An introductory review. SCI TOTAL ENVIRON, 2018, 2018,613(-):1117-1129.

[6] Lee K K, Miller M R, Shah A . Air Pollution and Stroke. Journal of Stroke, 2018, 20(1):2-11. https://doi.org/10.5853/jos.2017.02894

[7] Patel K S, Yadav A, Sahu Y K, et al. Tree Bark as a Bioindicator for Arsenic and Heavy Metal Air Pollution in Rajnandgaon District, Chhattisgarh, India. Practice Periodical of Hazardous, Toxic, and Radioactive Waste Management, 2020, 24(1):05019006.1-05019006.5.

[8] Mello K D, Fendrich A N, Sparovek G, et al. Achieving private conservation targets in Brazil through restoration and compensation schemes without impairing productive lands. Environmental Science & Policy, 2021, 120(4):1-10. https://doi.org/10.1016/j.envsci.2021.02.014

[9] Santi D, Magnani E, Michelangeli M, et al. Seasonal variation of semen parameters correlates with environmental temperature and air pollution: A big data analysis over 6 years. Environmental Pollution, 2018, 235(apr.):806-813. https://doi.org/10.1016/j.envpol.2018.01.021

[10] Apparicio P, Gelb J, Carrier M, et al. Exposure to noise and air pollution by mode of transportation during rush hours in Montreal. Journal of Transport Geography, 2018, 70(JUN.):182-192.

[11] Mutlu E A, Comba I Y, Cho T, et al. Inhalational exposure to particulate matter air pollution alters the composition of the gut microbiome. Environmental Pollution, 2018, 240(SEP.):817-830. https://doi.org/10.1016/j.envpol.2018.04.130

[12] Minina V I, Sinitsky M Y, Druzhinin V G, et al. Chromosome aberrations in peripheral blood lymphocytes of lung cancer patients exposed to radon and air pollution. European Journal of Cancer Prevention, 2018, 27(1):6-12.

[13] Teixeira A, Riul P, Brito S V, et al. Ecological release in lizard endoparasites from the Atlantic Forest, northeast of the Neotropical Region. Parasitology, 2020, 147(4):1-30. https://doi.org/10.1017/S0031182020000025

[14] Dmitrienko, MA, Strizhak, et al. Coal-water slurries containing petrochemicals to solve problems of air pollution by coal thermal power stations and boiler plants: An introductory review. SCI TOTAL ENVIRON, 2018, 2018,613(-):1117-1129.

[15] Cruz J, Barella C F, Fonseca A . Compensating deforestation with forest surplus: Key regulatory issues within Brazil's atlantic forest. Ecological Economics, 2020, 167(Jan.):106444.1-106444.9. https://doi.org/10.1016/j.ecolecon.2019.106444

[16] Shetty C, Sowmya B J, Seema S, et al. Air pollution control model using machine learning and IoT techniques - ScienceDirect. Advances in Computers, 2020, 117( 1):187-218. https://doi.org/10.1016/bs.adcom.2019.10.006

[17] Rameezdeen R, Kaluarachchi M, Waidyasekara K . Antecedents of noise pollution control behaviour of employees of construction companies. Built Environment Project and Asset Management, 2021, 12(2):277-292.

[18] Nhung N, Schindler C, Dien T M, et al. Acute effects of ambient air pollution on lower respiratory infections in Hanoi children: An eight-year time series study. Environment International, 2018, 110(jan.):139-148. https://doi.org/10.1016/j.envint.2017.10.024