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Introduction to Special Issue - In-depth study of air pollution sources and processes within Beijing and its surrounding region (APHH-Beijing)

  • Zongbo Shi
  • , Tuan Vu
  • , Simone Kotthaus
  • , Sue Grimmond
  • , Roy M. Harrison
  • , Siyao Yue
  • , Tong Zhu
  • , James Lee
  • , Yiqun Han
  • , Matthias Demuzere
  • , Rachel E. Dunmore
  • , Lujie Ren
  • , Di Liu
  • , Yuanlin Wang
  • , Oliver Wild
  • , James Allan
  • , Janet Barlow
  • , David Beddows
  • , William J. Bloss
  • , David Carruthers
  • David C. Carslaw, Lia Chatzidiakou, Leigh Crilley, Hugh Coe, Tie Dai, Ruth Doherty, Fengkui Duan, Pingqing Fu, Baozhu Ge, Maofa Ge, Daobo Guan, Jacqueline F. Hamilton, Kebin He, Matthew Heal, Dwayne Heard, C. Nicholas Hewitt, Min Hu, Dongsheng Ji, Xujiang Jiang, Rod Jones, Markus Kalberer, Frank J. Kelly, Louisa Kramer, Ben Langford, Chun Lin, Alastair C. Lewis, Jie Li, Weijun Li, Huan Liu, Miranda Loh, Keding Lu, Graham Mann, Gordon McFiggans, Mark Miller, Graham Mills, Paul Monk, Eiko Nemitz, Fionna O’Connor, Bin Ouyang, Paul I. Palmer, Carl Percival, Olalekan Popoola, Claire Reeves, Andrew R. Rickard, Longyi Shao, Guangyu Shi, Dominick Spracklen, David Stevenson, Yele Sun, Zhiwei Sun, Shu Tao, Shengrui Tong, Qingqing Wang, Wenhua Wang, Xinming Wang, Zifang Wang, Lisa Whalley, Xuefang Wu, Zhijun Wu, Pinhua Xie, Fumo Yang, Qiang Zhang, Yanli Zhang, Yuanhang Zhang, Mei Zheng
  • University of Birmingham
  • Tianjin University
  • University of Reading
  • Service d'Aéronomie
  • King Abdulaziz University
  • Institute of Atmospheric Physics Chinese Academy of Sciences
  • Tsinghua University
  • University of York
  • King's College London
  • Ghent University
  • Lancaster Environment Centre
  • University of Manchester
  • Cambridge Environmental Research Consultants
  • Ricardo Energy and Environment
  • University of Cambridge
  • University of Edinburgh
  • Tsinghua University
  • Institute of Chemistry Chinese Academy of Sciences
  • University of East Anglia
  • University of Leeds
  • Centre for Ecology and Hydrology
  • School of Earth Sciences, Zhejiang University
  • Institute of Occupational Medicine
  • University of Edinburgh
  • University of Leicester
  • Now at Met Office Hadley Centre
  • China University of Mining and Technology
  • Capital Medical University
  • Guangzhou Institute of Geochemistry
  • Chinese Academy of Sciences
  • College of Architecture and Environment

Research output: Contribution to journalReview articlepeer-review

3 Citations (Scopus)

Abstract

APHH-Beijing (Atmospheric Pollution and Human Health in a Chinese Megacity) is an international collaborative project to examine the emissions, processes and health effects of air pollution in Beijing. The four research themes of APHH-China are: (1) sources and emissions of urban atmospheric pollution; (2) processes affecting urban atmospheric pollution; (3) exposure science and impacts on health; and (4) interventions and solutions to reduce health impacts. Themes 1 and 2 are closely integrated and support Theme 3, while Themes 1-3 provide scientific data for Theme 4 on the development of cost-effective solutions. A key activity within APHH-Beijing was the two month-long intensive field campaigns at two sites: (i) central Beijing, and (ii) rural Pinggu. The coordinated campaigns provided observations of the atmospheric chemistry and physics in and around Beijing during November – December 2016 and May- June 2017. The campaigns were complemented by numerical air quality modelling and air quality and meteorology data at the 12 national monitoring stations in Beijing. This introduction paper provides an overview of (i) APHH-Beijing programme, (ii) the measurement and modelling activities performed as part of it in Beijing, and (iii) the air quality and meteorological conditions during the two field campaigns. The winter campaign was characterized by high PM2.5 pollution events whereas the summer experienced high ozone pollution events. Air quality was poor during the winter campaign, but less severe than in the same period in 2015 when there were a number of major pollution episodes. PM2.5 levels were relatively low during the summer period, matching the cleanest periods over the previous five years. Synoptic scale meteorological analysis suggests that the greater stagnation and weak southerly circulation in November/December 2016 may have contributed to the poor air quality.

Original languageEnglish
JournalAtmospheric Chemistry and Physics
Volume19
DOIs
Publication statusPublished - 1 Jan 2018
Externally publishedYes

UN SDGs

This output contributes to the following UN Sustainable Development Goals (SDGs)

  1. SDG 3 - Good Health and Well-being
    SDG 3 Good Health and Well-being
  2. SDG 11 - Sustainable Cities and Communities
    SDG 11 Sustainable Cities and Communities

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