大气气溶胶:过去到最近几年的一些亮点和亮点

IF 1.6 4区 环境科学与生态学 Q4 ENVIRONMENTAL SCIENCES
Zainab Mushtaq, Manish Sharma, Pargin Bangotra, Alok Sagar Gautam, Sneha Gautam
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引用次数: 10

摘要

大气气溶胶对环境的严重有害影响导致了人类的各种兴趣和担忧。研究人员和科学家采取了各种渐进步骤来了解基本原理,如成核和生长机制、颗粒动力学的形式化、颗粒尺寸分配机制的表征、大气颗粒源化学过程的检测。人口增长的增加和不同的人为活动导致了环境条件的变化,从而污染了不同的周边地区。环境的不同变化,如土地利用模式、各种温室气体浓度的增加和工业污染物,改变了我们气候条件下的能量平衡,并影响了地球大气的辐射预算。气候变化和环境污染给人类带来了许多与健康相关的疾病。本研究概述了大气气溶胶的最新研究前景,通过不同的模式和影响对其进行的估计,并概述了在完全纳入之前需要解决的现状。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Atmospheric Aerosols: Some Highlights and Highlighters, Past to Recent Years

The severe harmful impact of atmospheric aerosols over the environment leads to create the diverse human interests and concerns. Various progressive steps were taken by researchers and scientists to understand the fundamentals, such as nucleation and growth mechanisms, formalization of particle dynamics, characterization of the mechanisms for the particle-size dispensation, detection of chemical processes for atmospheric particle sources. The increase in population growth and different manmade activities have led to change in the environmental conditions causes to pollute the distinct vicinities. Different changes in the environment such as land use pattern, increased concentration of various greenhouse gases, and Industrial pollutants change the energy balance in our climatic conditions and affect the radiation budget of earth’ atmosphere. Such changes in climate and polluted environment leads to many health-related ailments to mankind. The present study outlines the recent research perspectives of atmospheric aerosols, their estimation through different modes, effects, and an overview of the current situations that need to be addressed before they become completely incorporated.

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来源期刊
Aerosol Science and Engineering
Aerosol Science and Engineering Environmental Science-Pollution
CiteScore
3.00
自引率
7.10%
发文量
42
期刊介绍: ASE is an international journal that publishes high-quality papers, communications, and discussion that advance aerosol science and engineering. Acceptable article forms include original research papers, review articles, letters, commentaries, news and views, research highlights, editorials, correspondence, and new-direction columns. ASE emphasizes the application of aerosol technology to both environmental and technical issues, and it provides a platform not only for basic research but also for industrial interests. We encourage scientists and researchers to submit papers that will advance our knowledge of aerosols and highlight new approaches for aerosol studies and new technologies for pollution control. ASE promotes cutting-edge studies of aerosol science and state-of-art instrumentation, but it is not limited to academic topics and instead aims to bridge the gap between basic science and industrial applications.  ASE accepts papers covering a broad range of aerosol-related topics, including aerosol physical and chemical properties, composition, formation, transport and deposition, numerical simulation of air pollution incidents, chemical processes in the atmosphere, aerosol control technologies and industrial applications. In addition, ASE welcomes papers involving new and advanced methods and technologies that focus on aerosol pollution, sampling and analysis, including the invention and development of instrumentation, nanoparticle formation, nano technology, indoor and outdoor air quality monitoring, air pollution control, and air pollution remediation and feasibility assessments.
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