[HTML][HTML] A review of environmental occurrence, toxicity, biotransformation and biomonitoring of volatile organic compounds

AJ Li, VK Pal, K Kannan - Environmental Chemistry and Ecotoxicology, 2021 - Elsevier
Volatile organic compounds (VOCs) encompass hundreds of high production volume
chemicals that have been used in a wide range of household and industrial products …

Metal–organic framework-based nanomaterials for adsorption and photocatalytic degradation of gaseous pollutants: recent progress and challenges

M Wen, G Li, H Liu, J Chen, T An… - Environmental Science …, 2019 - pubs.rsc.org
The development of porous nanomaterials with high efficiency for environmental
remediation has been attracting significant attention and becoming an important topic …

Characteristics, source apportionment and contribution of VOCs to ozone formation in Wuhan, Central China

L Hui, X Liu, Q Tan, M Feng, J An, Y Qu, Y Zhang… - Atmospheric …, 2018 - Elsevier
Based on the detailed data of volatile organic compounds (VOCs) with 102 components
measured continuously from September 2016 to August 2017 in Wuhan, the pollution …

Synergistic mechanism of Cu-Mn-Ce oxides in mesoporous ceramic base catalyst for VOCs microwave catalytic combustion

S Feng, J Liu, B Gao - Chemical Engineering Journal, 2022 - Elsevier
Abstract Cu-Mn-Ce mesoporous catalysts with different aperture distribution were prepared
on ceramic bases by the impregnation method. The degradation process of volatile organic …

Compositions, sources and health risks of ambient volatile organic compounds (VOCs) at a petrochemical industrial park along the Yangtze River

H Zheng, S Kong, Y Yan, N Chen, L Yao, X Liu… - Science of the total …, 2020 - Elsevier
Petrochemical industry (PI) is an important emission sector of anthropogenic volatile organic
compounds (VOCs). The health impacts of VOCs from PI have caused a wide attention by …

Source apportionment of VOCs based on photochemical loss in summer at a suburban site in Bei**g

Y Wu, X Fan, Y Liu, J Zhang, H Wang, L Sun… - Atmospheric …, 2023 - Elsevier
Highlights•Photochemical reaction significantly influenced the VOC concentration.•
Photochemical loss accounted for 26.3% initial alkenes and 13.1% initial aromatics.•Vehicle …

Characteristics, secondary transformation, and health risk assessment of ambient volatile organic compounds (VOCs) in urban Bei**g, China

Y Liu, L Kong, X Liu, Y Zhang, C Li, Y Zhang… - Atmospheric Pollution …, 2021 - Elsevier
The long-term and high temporal resolution measurement of ambient volatile organic
compounds (VOCs) was continuously performed in urban Bei**g in 2016. Historical VOC …

Source apportionment of volatile organic compounds: Implications to reactivity, ozone formation, and secondary organic aerosol potential

H Zheng, S Kong, N Chen, Z Niu, Y Zhang, S Jiang… - Atmospheric …, 2021 - Elsevier
Volatile organic compounds (VOCs) are important contributors to atmospheric chemical
reactivity rate (L OH), ozone formation potential (OFP), and secondary organic aerosol …

Ambient volatile organic compounds (VOCs) in two coastal cities in western Canada: Spatiotemporal variation, source apportionment, and health risk assessment

Y **ong, MA Bari, Z **ng, K Du - Science of the total environment, 2020 - Elsevier
Ambient volatile organic compounds (VOCs) in urban areas is of great interest due to their
important roles in the atmospheric photochemistry as well as their potential adverse effects …

Component characteristics and source apportionment of volatile organic compounds during summer and winter in downtown Chengdu, southwest China

C **ong, N Wang, L Zhou, F Yang, Y Qiu, J Chen… - Atmospheric …, 2021 - Elsevier
Volatile organic compounds (VOCs) are critical precursors of secondary pollutants such as
O 3 and PM 2.5; some VOCs are also harmful to human health directly. In recent years, O 3 …