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Impact of Shutdown due to COVID-19 Pandemic on Aerosol Characteristics in Kanpur, India

机译:由于Covid-19在印度坎普尔的气溶胶特征导致关机的影响

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Background Since March 2020, the number of confirmed COVID-19 positive cases have steadily risen in India. Various preventive measures have been taken to contain the spread of COVID-19. With restrictions on human activities, anthropogenic emissions driving air pollution levels have seen a reduction since March 23, 2020, when the government imposed the first nationwide shutdown. The landlocked Indo-Gangetic Plain (IGP) has many densely-populated cities, witnessing high levels of particulate matter due to both nature-driven and anthropogenic elements. Kanpur is an urban metropolis in the IGP with high aerosol loading, and this paper explores the impact of restricted anthropogenic activities on aerosol characteristics in Kanpur. Objectives This study aims to investigate the change in aerosol optical depth level and its related parameters during the shutdown phases in Kanpur city compared to the same time periods in 2017–2019. Methods Aerosol optical properties such as aerosol optical depth (AOD) at 500 nm, Angstrom exponent (AE), fine mode fraction (FMF) of AOD at 500 nm and single scattering albedo (SSA) at 440 nm were obtained from the Aerosol Robotic Network (AERONET) station operating in Kanpur from the 1st March to the 30th April for 2017–2020. Results A significant decrease in aerosol loading was observed during the shutdown period compared to the pre-and partial shutdown periods in 2020 as well as during the same time periods of 2017–2019. Mean AOD, FMF and SSA were 0.37, 0.43 and 0.89, respectively, during the shutdown period in 2020. A 20–35% reduction in mean AOD levels was observed during the shutdown period in 2020 as compared to the same period in 2017–2019. Conclusions The shutdown led to an improvement in air quality due to decreases in anthropogenic emissions. As fine particles, typically from urban and industrial emissions, dominate episodic air pollution events, this study can be further utilized by the scientific community and regulators to strengthen the emergency response action plan to check high pollution episodes in Kanpur city until cleaner technologies are in place. Competing Interests The authors declare no completing financial interests.
机译:背景技术自3月2020年3月以来,确认的Covid-19阳性案件的数量在印度稳步上升。已经采取了各种预防措施来遏制Covid-19的传播。随着对人类活动的限制,自2020年3月23日,当政府紧紧全国关机时,驾驶空气污染水平的人为排放已经减少。由于自然驱动和人为元素而言,内陆难以突然平原(IGP)具有许多密集的城市,目睹了高水平的颗粒物质。 Kanpur是IGP中的城市大都市,具有高气溶胶荷载荷,本文探讨了受限制的人体活动对坎普尔气溶胶特性的影响。目的本研究旨在调查坎普尔城的关机阶段气雾光学深度水平及其相关参数的变化,而2017-2019的同期相比。方法从气溶胶机器机器人网络获得500nm处,抗气泡光学深度(AOD),抗气泡光学深度(AOD),抗AAD,anod和单次散射Albedo(SSA)的anod的精细模式分数(Fmf),是从气溶胶机器机器人网络获得的(AeroNet)站在坎普尔在3月1日至2017 - 2017年4月30日的4月30日。结果与2020年的预先和部分关断周期以及在2017-2019的同一时间段内,在关闭期间观察到在关闭期间观察到气溶胶载荷的显着降低。在2020年的关闭期间,平均AOD,FMF和SSA分别为0.37,0.43和0.89.在2020年在2017-2019的同期相比,在2020年的关闭期间观察到平均AOD水平的20-35% 。结论关断导致由于人为排放量减少而导致空气质量的提高。作为细颗粒,通常来自城市和工业排放,占据了整容空气污染事件,科学界和监管机构可以进一步利用这项研究,以加强应急响应行动计划检查坎普尔市的高污染发作,直到清洁技术到位。竞争利益提交人声明没有完成经济利益。

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