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Environmental impacts of nitrogen emissions in China and the role of policies in emission reduction

Authors :
Zhao Y
Baojing Gu
Gao Zl
Xuejun Liu
Yangyang Zhang
Feng Zhou
Hao Tx
Fusuo Zhang
Wen Xu
Feng Zz
Jianlin Shen
Yunhua Chang
Peter M. Vitousek
Jeffrey L. Collett
Lin Zhang
Keith Goulding
Yuepeng Pan
Yun Zhang
A. H. Tang
Zhang Wen
Enzai Du
Source :
Philos Trans A Math Phys Eng Sci
Publication Year :
2020
Publisher :
Royal Society Publishing, 2020.

Abstract

Atmospheric reactive nitrogen (N r ) has been a cause of serious environmental pollution in China. Historically, China used too little N r in its agriculture to feed its population. However, with the rapid increase in N fertilizer use for food production and fossil fuel consumption for energy supply over the last four decades, increasing gaseous N r species (e.g. NH 3 and NO x ) have been emitted to the atmosphere and then deposited as wet and dry deposition, with adverse impacts on air, water and soil quality as well as plant biodiversity and human health. This paper reviews the issues associated with this in a holistic way. The emissions, deposition, impacts, actions and regulations for the mitigation of atmospheric N r are discussed systematically. Both NH 3 and NO x make major contributions to environmental pollution but especially to the formation of secondary fine particulate matter (PM 2.5 ), which impacts human health and light scattering (haze). In addition, atmospheric deposition of NH 3 and NO x causes adverse impacts on terrestrial and aquatic ecosystems due to acidification and eutrophication. Regulations and practices introduced by China that meet the urgent need to reduce N r emissions are explained and resulting effects on emissions are discussed. Recommendations for improving future N management for achieving ‘win-win’ outcomes for Chinese agricultural production and food supply, and human and environmental health, are described. This article is part of a discussion meeting issue ‘Air quality, past present and future’.

Details

Database :
OpenAIRE
Journal :
Philos Trans A Math Phys Eng Sci
Accession number :
edsair.doi.dedup.....28509afe93cfb76cc17f1424011f0c8d