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Biotoxicity of Water-Soluble UV Photodegradation Products for 10 Typical Gaseous VOCs

Ultraviolet (UV) photodegradation is increasingly applied to control volatile organic compounds (VOCs) due to its degradation capabilities for recalcitrant compounds. However, sometimes the UV photodegradation products are also toxic and can affect human health. Here, 10 VOCs at 150~200 ppm in air w...

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Autores principales: Sun, Zhuqiu, Kang, In-Sun, Wu, Qianyuan, Xi, Jinying, Hu, Hongying
Formato: Online Artículo Texto
Lenguaje:English
Publicado: MDPI 2018
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC6069044/
https://www.ncbi.nlm.nih.gov/pubmed/30021988
http://dx.doi.org/10.3390/ijerph15071520
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author Sun, Zhuqiu
Kang, In-Sun
Wu, Qianyuan
Xi, Jinying
Hu, Hongying
author_facet Sun, Zhuqiu
Kang, In-Sun
Wu, Qianyuan
Xi, Jinying
Hu, Hongying
author_sort Sun, Zhuqiu
collection PubMed
description Ultraviolet (UV) photodegradation is increasingly applied to control volatile organic compounds (VOCs) due to its degradation capabilities for recalcitrant compounds. However, sometimes the UV photodegradation products are also toxic and can affect human health. Here, 10 VOCs at 150~200 ppm in air were treated using a laboratory-scale UV reactor with 185/254 nm irradiation, and the biotoxicity of their off-gas was studied by investigating their off-gas absorption solutions. The CO(2) increase and VOC decrease were 39~128 ppm and 0~42 ppm, respectively, indicating that the VOCs and their products were mineralized in off-gas absorption solutions. The total organic carbon (TOC) of the absorption solutions are 4~20 mg∙L(−1). Luminescent bacteria and Daphnia magna were used to detect the acute toxicity, and an umu assay was used to determine the genotoxic potential. Trichloroethylene showed a highest toxicity to luminescent bacteria, while chlorobenzene had the lowest toxicity. Water-soluble UV photodegradation products for styrene are very toxic to Daphnia magna. In the umu assay, the genotoxicities of off-gas absorption solutions of trichloroethylene, methylbenzene, ethyl acetate, butyl alcohol, and styrene were 51.26, 77.80, 86.89, 97.20, and 273.62 mg (4-NQO)·L(−1) respectively. In addition, the analysis of the genotoxicity/TOC and intermediates products indicated that the off-gas absorption solutions of styrene, trichloroethylene, and butyl alcohol contain many highly toxic substances.
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spelling pubmed-60690442018-08-07 Biotoxicity of Water-Soluble UV Photodegradation Products for 10 Typical Gaseous VOCs Sun, Zhuqiu Kang, In-Sun Wu, Qianyuan Xi, Jinying Hu, Hongying Int J Environ Res Public Health Article Ultraviolet (UV) photodegradation is increasingly applied to control volatile organic compounds (VOCs) due to its degradation capabilities for recalcitrant compounds. However, sometimes the UV photodegradation products are also toxic and can affect human health. Here, 10 VOCs at 150~200 ppm in air were treated using a laboratory-scale UV reactor with 185/254 nm irradiation, and the biotoxicity of their off-gas was studied by investigating their off-gas absorption solutions. The CO(2) increase and VOC decrease were 39~128 ppm and 0~42 ppm, respectively, indicating that the VOCs and their products were mineralized in off-gas absorption solutions. The total organic carbon (TOC) of the absorption solutions are 4~20 mg∙L(−1). Luminescent bacteria and Daphnia magna were used to detect the acute toxicity, and an umu assay was used to determine the genotoxic potential. Trichloroethylene showed a highest toxicity to luminescent bacteria, while chlorobenzene had the lowest toxicity. Water-soluble UV photodegradation products for styrene are very toxic to Daphnia magna. In the umu assay, the genotoxicities of off-gas absorption solutions of trichloroethylene, methylbenzene, ethyl acetate, butyl alcohol, and styrene were 51.26, 77.80, 86.89, 97.20, and 273.62 mg (4-NQO)·L(−1) respectively. In addition, the analysis of the genotoxicity/TOC and intermediates products indicated that the off-gas absorption solutions of styrene, trichloroethylene, and butyl alcohol contain many highly toxic substances. MDPI 2018-07-18 2018-07 /pmc/articles/PMC6069044/ /pubmed/30021988 http://dx.doi.org/10.3390/ijerph15071520 Text en © 2018 by the authors. Licensee MDPI, Basel, Switzerland. This article is an open access article distributed under the terms and conditions of the Creative Commons Attribution (CC BY) license (http://creativecommons.org/licenses/by/4.0/).
spellingShingle Article
Sun, Zhuqiu
Kang, In-Sun
Wu, Qianyuan
Xi, Jinying
Hu, Hongying
Biotoxicity of Water-Soluble UV Photodegradation Products for 10 Typical Gaseous VOCs
title Biotoxicity of Water-Soluble UV Photodegradation Products for 10 Typical Gaseous VOCs
title_full Biotoxicity of Water-Soluble UV Photodegradation Products for 10 Typical Gaseous VOCs
title_fullStr Biotoxicity of Water-Soluble UV Photodegradation Products for 10 Typical Gaseous VOCs
title_full_unstemmed Biotoxicity of Water-Soluble UV Photodegradation Products for 10 Typical Gaseous VOCs
title_short Biotoxicity of Water-Soluble UV Photodegradation Products for 10 Typical Gaseous VOCs
title_sort biotoxicity of water-soluble uv photodegradation products for 10 typical gaseous vocs
topic Article
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC6069044/
https://www.ncbi.nlm.nih.gov/pubmed/30021988
http://dx.doi.org/10.3390/ijerph15071520
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