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- W3193737231 endingPage "126959" @default.
- W3193737231 startingPage "126959" @default.
- W3193737231 abstract "In this study, the mechanism of bio-electrokinetic (BIO-EK) remediation to improve the degradation of pyrene was evaluated based on an analysis of the intermediate products and the microbial community. The results show that BIO-EK remediation has a higher pyrene degradation efficiency on pyrene and its intermediate products than the bioremediation and electrokinetic (EK) remediation processes. A series of intermediate products were detected. According to the type of the intermediate products, two degradation pathways, biological metabolism and electrochemical oxidation, are proposed in the BIO-EK remediation of pyrene. Furthermore, the primary microbial taxa involved in the pollutant degradation changed, which led to variations in the functional gene components. The abundant and functional genes related to metabolism were specifically analyzed. The results indicate that the electric field promotes the expression of metabolisms associated with 14 carbohydrates, 13 lipids, 13 amino acids, five energies, and in particular, 11 xenobiotics. These results suggest that in addition to the promotion effect on the microbial metabolism caused by the electric field, BIO-EK remediation can promote the degradation of pollutants due to the coexistence of a microbial metabolic pathway and an electrochemical oxidation pathway." @default.
- W3193737231 created "2021-08-30" @default.
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- W3193737231 date "2022-01-01" @default.
- W3193737231 modified "2023-10-15" @default.
- W3193737231 title "Mechanism of bio-electrokinetic remediation of pyrene contaminated soil: Effects of an electric field on the degradation pathway and microbial metabolic processes" @default.
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- W3193737231 cites W161985692 @default.
- W3193737231 cites W1981359080 @default.
- W3193737231 cites W1986088865 @default.
- W3193737231 cites W1986473831 @default.
- W3193737231 cites W1987758828 @default.
- W3193737231 cites W1999808831 @default.
- W3193737231 cites W2011678299 @default.
- W3193737231 cites W2018445419 @default.
- W3193737231 cites W2019431946 @default.
- W3193737231 cites W2024668360 @default.
- W3193737231 cites W2024708837 @default.
- W3193737231 cites W2029554562 @default.
- W3193737231 cites W2030068809 @default.
- W3193737231 cites W2033243924 @default.
- W3193737231 cites W2037571711 @default.
- W3193737231 cites W2044139626 @default.
- W3193737231 cites W2044513383 @default.
- W3193737231 cites W2050958836 @default.
- W3193737231 cites W2051235734 @default.
- W3193737231 cites W2051254779 @default.
- W3193737231 cites W2053618304 @default.
- W3193737231 cites W2057277525 @default.
- W3193737231 cites W2080120813 @default.
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- W3193737231 cites W2093709210 @default.
- W3193737231 cites W2115495202 @default.
- W3193737231 cites W2142902303 @default.
- W3193737231 cites W2173492472 @default.
- W3193737231 cites W2204233708 @default.
- W3193737231 cites W2221399298 @default.
- W3193737231 cites W2247952874 @default.
- W3193737231 cites W2256616625 @default.
- W3193737231 cites W2317543110 @default.
- W3193737231 cites W2470108491 @default.
- W3193737231 cites W2482827944 @default.
- W3193737231 cites W2485770324 @default.
- W3193737231 cites W2519314139 @default.
- W3193737231 cites W2591089249 @default.
- W3193737231 cites W2606552704 @default.
- W3193737231 cites W2618404743 @default.
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- W3193737231 doi "https://doi.org/10.1016/j.jhazmat.2021.126959" @default.
- W3193737231 hasPubMedId "https://pubmed.ncbi.nlm.nih.gov/34449353" @default.
- W3193737231 hasPublicationYear "2022" @default.
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