Microbial-mediated oxidative dissolution of orpiment and realgar in circumneutral aquatic environments
Тип публикации: Journal Article
Дата публикации: 2024-03-01
scimago Q1
wos Q1
white level БС1
SJR: 3.843
CiteScore: 21.2
Impact factor: 12.4
ISSN: 00431354, 18792448
PubMed ID:
38266438
Environmental Engineering
Pollution
Civil and Structural Engineering
Waste Management and Disposal
Water Science and Technology
Ecological Modeling
Краткое описание
Arsenic (As) is a toxic metalloid that causes severe environmental contamination worldwide. Upon exposure to aqueous phases, the As-bearing minerals, such as orpiment (As2S3) and realgar (As4S4), undergo oxidative dissolution, in which biotic and abiotic activities both contributed significant roles. Consequently, the dissolved As and S are rapidly discharged through water transportation to broader regions and contaminate surrounding areas, especially in aquatic environments. Despite both orpiment and realgar are frequently encountered in carbonate-hosted neutral environments, the microbial-mediated oxidative dissolution of these minerals, however, have been primarily investigated under acidic conditions. Therefore, the current study aimed to elucidate microbial-mediated oxidative dissolution under neutral aquatic conditions. The current study demonstrated that the dissolution of orpiment and realgar is synergistically regulated by abiotic (i.e., specific surface area (SSA) of the mineral) and biotic (i.e., microbial oxidation) factors. The initial dissolution of As(III) and S2- from minerals is abiotically impacted by SSA, while the microbial oxidation of As(III) and S2- accelerated the overall dissolution rates of orpiment and realgar. In As-contaminated environments, members of Thiobacillus and Rhizobium were identified as the major populations that mediated oxidative dissolution of orpiment and realgar by DNA-stable isotope probing. This study provides novel insights regarding the microbial-mediated oxidative dissolution process of orpiment and realgar under neutral conditions.
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ГОСТ
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Sun X. et al. Microbial-mediated oxidative dissolution of orpiment and realgar in circumneutral aquatic environments // Water Research. 2024. Vol. 251. p. 121163.
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Sun X., Huang D., Huang Y., Häggblom M. M., Soleimani M., Jiayi L., Li J., Zheng C., Chen Z., Chen Z., Chen Z., Gao P., Li B., Sun W. Microbial-mediated oxidative dissolution of orpiment and realgar in circumneutral aquatic environments // Water Research. 2024. Vol. 251. p. 121163.
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TY - JOUR
DO - 10.1016/j.watres.2024.121163
UR - https://linkinghub.elsevier.com/retrieve/pii/S0043135424000630
TI - Microbial-mediated oxidative dissolution of orpiment and realgar in circumneutral aquatic environments
T2 - Water Research
AU - Sun, Xiaoxu
AU - Huang, Duanyi
AU - Huang, Yuqing
AU - Häggblom, Max M.
AU - Soleimani, Mohsen
AU - Jiayi, Li
AU - Li, Jiayi
AU - Zheng, Cuihong
AU - Chen, Zheng
AU - Chen, Zhenyu
AU - Chen, Zhen-Yu
AU - Gao, Pin
AU - Li, Baoqin
AU - Sun, Weimin
PY - 2024
DA - 2024/03/01
PB - Elsevier
SP - 121163
VL - 251
PMID - 38266438
SN - 0043-1354
SN - 1879-2448
ER -
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@article{2024_Sun,
author = {Xiaoxu Sun and Duanyi Huang and Yuqing Huang and Max M. Häggblom and Mohsen Soleimani and Li Jiayi and Jiayi Li and Cuihong Zheng and Zheng Chen and Zhenyu Chen and Zhen-Yu Chen and Pin Gao and Baoqin Li and Weimin Sun},
title = {Microbial-mediated oxidative dissolution of orpiment and realgar in circumneutral aquatic environments},
journal = {Water Research},
year = {2024},
volume = {251},
publisher = {Elsevier},
month = {mar},
url = {https://linkinghub.elsevier.com/retrieve/pii/S0043135424000630},
pages = {121163},
doi = {10.1016/j.watres.2024.121163}
}
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