EbrahimiMKhalesiBMansouri DaneshvarMR. Driving powers of the globalization on the urban ecology, a comparative study. Environ Syst Res. DOI: 10.1186/s40068-021-00244-2(accessed 13 December 2021).
2.
AmponsahOBlijaDKAyambireRATakyiSAMensahHBraimahI. Global urban sprawl containment strategies and their implications for rapidly urbanising cities in Ghana. Land Use Policy2022; 114: 105979.
3.
YangJYShiYYuCCaoSJ. Challenges of using mobile phone signalling data to estimate urban population density: towards smart cities and sustainable urban development. Indoor Built Environ2020; 29: 147–150.
4.
WangSJXieZHWuRFengKS. How does urbanization affect the carbon intensity of human well-being? A global assessment. Appl Energ2022; 312: 118798.
5.
AhmadMJiangPMurshedMShehzadKAkramRCuiLBKhanZ. Modelling the dynamic linkages between eco-innovation, urbanization, economic growth and ecological footprints for G7 countries: does financial globalization matter?Sustain Cities Soc2021; 70: 102881.
6.
XiCRenCWangJQFengZBCaoSJ. Impacts of urban-scale building height diversity on urban climates: a case study of Nanjing, China. Energ Buildings2021; 251: 111350.
7.
XiCDingJWRenCWangJQFengZBCaoSJ. Green glass space based design for the driven of sustainable cities: a case study. Sustain Cities Soc2022; 80: 103809.
8.
KumarPHamaSAbbassRANogueiraTBrandVSAbhijithKVAndradeMDAsfawAAzizKHCaoSJEl-GendyAKhareMMuulaASNagendraSMSNgowiAVOmerKOlayaYSalamA. Potential health risks due to in-car aerosol exposure across ten global cities. Environ Int2021; 155: 106688.
9.
WangJGCaoSJYuCW. Development trend and challenges of sustainable urban design in the digital age. Indoor Built Environ2021; 30: 3–6.
10.
XuCWLuoXLYuCCaoSJ. The 2019-nCoV epidemic control strategies and future challenges of building healthy smart cities. Indoor Built Environ2020; 29: 639–644.
11.
UsmanMHusnainMRiazARiazAAliY. Climate change during the COVID-19 outbreak: scoping future perspectives. Environ Sci Pollut R2021; 28: 49302–49313.
12.
QiuXZZhuYJangCLinCJWangSXFuJXieJPWangJDDingDALongSC. Development of an integrated policy making tool for assessing air quality and human health benefits of air pollution control. Front Env Sci Eng2015; 9: 1056–1065.
13.
United Nations Environment Programme. Actions on air quality: a global summary of policies and programmes to reduce air pollution. Report, UNON Publishing Services Section, Nairobi, 2021.
14.
HosseiniMRFouladi-FardRAaliR. COVID-19 pandemic and sick building syndrome. Indoor Built Environ2020; 29: 1181–1183.
ChenZRNiePY. Implications of a cap-and-trade system for emission reductions under an asymmetric duopoly. Bus Strateg Environ2020; 29: 3135–3145.
21.
MbanyeleWWangFR. Environmental regulation and technological innovation: evidence from China. Environ Sci Pollut R2022; 29: 12890–12910.
22.
ZhangGXJiaYQSuBXiuJ. Environmental regulation, economic development and air pollution in the cities of China: spatial econometric analysis based on policy scoring and satellite data. J Clean Prod2021; 328: 129496.
23.
LeautierTO. On the long-term impact price caps: investment, uncertainty, imperfect competition, and rationing. Int J Ind Organ2018; 61: 53–95.
24.
LetiziaPHendrikseG. Supply chain structure incentives for corporate social responsibility: an incomplete contracting analysis. Prod Oper Manag2016; 25: 1919–1941.
25.
FengLLiaoWJ. Legislation, plans, and policies for prevention and control of air pollution in China: achievements, challenges, and improvements. J Clean Prod2016; 112: 1549–1558.
26.
MengFRChenZTWuJN. How are anti-air pollution policies implemented? A network analysis of campaign-style enforcement in China. Sustainability2019; 11: 340.
TiltB. China's air pollution crisis: science and policy perspectives. Environ Sci Policy2019; 92: 275–280.
29.
FioreAMNaikVLeibenspergerEM. Air quality and climate connections. J Air Waste Manage2015; 65: 645–685.
30.
BrienSTEgerRJ. Exploring the Sub-state Intergovernmental Game. Perspect Public Man2021; 4: 394–403.
31.
YeungDWKZhangYXBaiHTIslamSMN. Collaborative environmental management for transboundary air pollution problems: a differential levies game. J Ind Manag Optim2021; 17: 517–531.
32.
XiCDingJWWangJQFengZBCaoSJ. Nature-based solution of greenery configuration design by comprehensive benefit evaluation of microclimate environment and carbon sequestration. Energ Buildings2022; 270: 112264.
33.
MillerCA. Fifty years of EPA science for air quality management and control. Environ Manage2021; 67: 1017–1028.
34.
TangXGaoXLiCLZhouQPRenCFengZB. Study on spatiotemporal distribution of airborne ozone pollution in subtropical region considering socioeconomic driving impacts: a case study in Guangzhou, China. Sustain Cities Soc2020; 54: 101989.
35.
MengMRXiCFengZBCaoSJ. Environmental co-benefits of urban design to mitigate urban heat island and PM2.5 pollution: considering prevailing wind's effects. Indoor Built Environ. DOI: 10.1177/1420326X221076815(accessed 31 May 2022).
36.
BoersNGoswamiBRheinwaltABookhagenBHoskinsBKurthsJ. Complex networks reveal global pattern of extreme-rainfall teleconnections. Nature2019; 566: 373–377.
37.
RenCXiCWangJQFengZBNasiriFCaoSJHaghighatF. Mitigating COVID-19 infection disease transmission in indoor environment using physical barriers. Sustain Cities Soc2021; 74: 103175.
38.
CaoSJ. Challenges of using CFD simulation for the design and online control of ventilation systems. Indoor Built Environ2019; 28: 3–6.
39.
WangJQYuCWCaoSJ. Technology pathway of efficient and climate-friendly cooling in buildings: towards carbon neutrality. Indoor Built Environ2021; 30: 1307–1311.
40.
KalajdjieskiJStojkoskaBRTrivodalievK. IoT based framework for air pollution monitoring in smart cities. 28th Telecommunications Forum (Telfor)2020: 391–394.