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Effect of Agricultural Organic Inputs on Nanoplastics Transport in Saturated Goethite-Coated Porous Media: Particle Size Selectivity and Role of Dissolved Organic Matter

[Image: see text] The transport of nanoplastics (NPs) through porous media is influenced by dissolved organic matter (DOM) released from agricultural organic inputs. Here, cotransport of NPs with three types of DOM (biochar(DOM) (BC(DOM)), wheat straw(DOM) (WS(DOM)), and swine manure(DOM) (SM(DOM)))...

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Autores principales: Ma, Jie, Qiu, Yan, Zhao, Junying, Ouyang, Xiaoxue, Zhao, Yujie, Weng, Liping, MD Yasir, Arafat, Chen, Yali, Li, Yongtao
Formato: Online Artículo Texto
Lenguaje:English
Publicado: American Chemical Society 2022
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC8928475/
https://www.ncbi.nlm.nih.gov/pubmed/35226472
http://dx.doi.org/10.1021/acs.est.1c07574
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author Ma, Jie
Qiu, Yan
Zhao, Junying
Ouyang, Xiaoxue
Zhao, Yujie
Weng, Liping
MD Yasir, Arafat
Chen, Yali
Li, Yongtao
author_facet Ma, Jie
Qiu, Yan
Zhao, Junying
Ouyang, Xiaoxue
Zhao, Yujie
Weng, Liping
MD Yasir, Arafat
Chen, Yali
Li, Yongtao
author_sort Ma, Jie
collection PubMed
description [Image: see text] The transport of nanoplastics (NPs) through porous media is influenced by dissolved organic matter (DOM) released from agricultural organic inputs. Here, cotransport of NPs with three types of DOM (biochar(DOM) (BC(DOM)), wheat straw(DOM) (WS(DOM)), and swine manure(DOM) (SM(DOM))) was investigated in saturated goethite (GT)-coated sand columns. The results showed that codeposition of 50 nm NPs (50NPs) with DOM occurred due to the formation of a GT–DOM–50NPs complex, while DOM loaded on GT-coated sand and 400 nm NPs (400NPs) aided 400NPs transport due to electrostatic repulsion. According to the quantum chemical calculation, humic acid and cellulose played a significant role in 50NPs retardation. Owing to its high concentration, moderate humification index (HIX), and cellulose content, SM(DOM) exhibited the highest retardation of 50NPs transport and promoting effect on 400NPs transport. Owing to a high HIX, the effect of BC(DOM) on the mobility of 400NPs was higher than that of WS(DOM). However, high cellulose content in WS(DOM) caused it to exhibit a 50NPs retardation ability that was similar to that of BC(DOM). Our results highlight the particle size selectivity and significant influence of DOM type on the transport of NPs and elucidate their quantum and colloidal chemical-interface mechanisms in a typical agricultural environment.
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spelling pubmed-89284752022-03-18 Effect of Agricultural Organic Inputs on Nanoplastics Transport in Saturated Goethite-Coated Porous Media: Particle Size Selectivity and Role of Dissolved Organic Matter Ma, Jie Qiu, Yan Zhao, Junying Ouyang, Xiaoxue Zhao, Yujie Weng, Liping MD Yasir, Arafat Chen, Yali Li, Yongtao Environ Sci Technol [Image: see text] The transport of nanoplastics (NPs) through porous media is influenced by dissolved organic matter (DOM) released from agricultural organic inputs. Here, cotransport of NPs with three types of DOM (biochar(DOM) (BC(DOM)), wheat straw(DOM) (WS(DOM)), and swine manure(DOM) (SM(DOM))) was investigated in saturated goethite (GT)-coated sand columns. The results showed that codeposition of 50 nm NPs (50NPs) with DOM occurred due to the formation of a GT–DOM–50NPs complex, while DOM loaded on GT-coated sand and 400 nm NPs (400NPs) aided 400NPs transport due to electrostatic repulsion. According to the quantum chemical calculation, humic acid and cellulose played a significant role in 50NPs retardation. Owing to its high concentration, moderate humification index (HIX), and cellulose content, SM(DOM) exhibited the highest retardation of 50NPs transport and promoting effect on 400NPs transport. Owing to a high HIX, the effect of BC(DOM) on the mobility of 400NPs was higher than that of WS(DOM). However, high cellulose content in WS(DOM) caused it to exhibit a 50NPs retardation ability that was similar to that of BC(DOM). Our results highlight the particle size selectivity and significant influence of DOM type on the transport of NPs and elucidate their quantum and colloidal chemical-interface mechanisms in a typical agricultural environment. American Chemical Society 2022-02-28 2022-03-15 /pmc/articles/PMC8928475/ /pubmed/35226472 http://dx.doi.org/10.1021/acs.est.1c07574 Text en © 2022 American Chemical Society https://creativecommons.org/licenses/by/4.0/Permits the broadest form of re-use including for commercial purposes, provided that author attribution and integrity are maintained (https://creativecommons.org/licenses/by/4.0/).
spellingShingle Ma, Jie
Qiu, Yan
Zhao, Junying
Ouyang, Xiaoxue
Zhao, Yujie
Weng, Liping
MD Yasir, Arafat
Chen, Yali
Li, Yongtao
Effect of Agricultural Organic Inputs on Nanoplastics Transport in Saturated Goethite-Coated Porous Media: Particle Size Selectivity and Role of Dissolved Organic Matter
title Effect of Agricultural Organic Inputs on Nanoplastics Transport in Saturated Goethite-Coated Porous Media: Particle Size Selectivity and Role of Dissolved Organic Matter
title_full Effect of Agricultural Organic Inputs on Nanoplastics Transport in Saturated Goethite-Coated Porous Media: Particle Size Selectivity and Role of Dissolved Organic Matter
title_fullStr Effect of Agricultural Organic Inputs on Nanoplastics Transport in Saturated Goethite-Coated Porous Media: Particle Size Selectivity and Role of Dissolved Organic Matter
title_full_unstemmed Effect of Agricultural Organic Inputs on Nanoplastics Transport in Saturated Goethite-Coated Porous Media: Particle Size Selectivity and Role of Dissolved Organic Matter
title_short Effect of Agricultural Organic Inputs on Nanoplastics Transport in Saturated Goethite-Coated Porous Media: Particle Size Selectivity and Role of Dissolved Organic Matter
title_sort effect of agricultural organic inputs on nanoplastics transport in saturated goethite-coated porous media: particle size selectivity and role of dissolved organic matter
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC8928475/
https://www.ncbi.nlm.nih.gov/pubmed/35226472
http://dx.doi.org/10.1021/acs.est.1c07574
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