Literature DB >> 32556398

Design, application, and microbiome of sulfate-reducing bioreactors for treatment of mining-influenced water.

Hiroshi Habe1, Yuya Sato2, Tomo Aoyagi2, Tomohiro Inaba2, Tomoyuki Hori2, Takaya Hamai3, Kentaro Hayashi4, Mikio Kobayashi5, Takeshi Sakata4, Naoki Sato5.   

Abstract

Sulfate-reducing bioreactors, also called biochemical reactors, represent a promising option for passive treatment of mining-influenced water (MIW) based on similar technology to aerobic/anaerobic-constructed wetlands and vertical-flow wetlands. MIW from each mine site has a variety of site-specific properties related to its treatment; therefore, design factors, including the organic substrates and inorganic materials packed into the bioreactor, must be tested and evaluated before installation of full-scale sulfate-reducing bioreactors. Several full-scale sulfate-reducing bioreactors operating at mine sites provide examples, but holistic understanding of the complex treatment processes occurring inside the bioreactors is lacking. With the recent introduction of high-throughput DNA sequencing technologies, microbial processes within bioreactors may be clarified based on the relationships between operational parameters and key microorganisms identified using high-resolution microbiome data. In this review, the test design procedures and precedents of full-scale bioreactor application for MIW treatment are briefly summarized, and recent knowledge on the sulfate-reducing microbial communities of field-based bioreactors from fine-scale monitoring is presented.Key points• Sulfate-reducing bioreactors are promising for treatment of mining-influenced water.• Various design factors should be tested for application of full-scale bioreactors.• Introduction of several full-scale passive bioreactor systems at mine sites.• Desulfosporosinus spp. can be one of the key bacteria within field-based bioreactors.

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Keywords:  Metal removal; Microbial community analysis; Mining-influenced water treatment; Sulfate-reducing bacteria; Sulfate-reducing bioreactor

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Year:  2020        PMID: 32556398     DOI: 10.1007/s00253-020-10737-2

Source DB:  PubMed          Journal:  Appl Microbiol Biotechnol        ISSN: 0175-7598            Impact factor:   4.813


  2 in total

Review 1.  A Review on Microorganisms in Constructed Wetlands for Typical Pollutant Removal: Species, Function, and Diversity.

Authors:  Jianwu Wang; Yuannan Long; Guanlong Yu; Guoliang Wang; Zhenyu Zhou; Peiyuan Li; Yameng Zhang; Kai Yang; Shitao Wang
Journal:  Front Microbiol       Date:  2022-04-05       Impact factor: 6.064

2.  Extra benefit of microalgae in raw piggery wastewater treatment: pathogen reduction.

Authors:  Sang-Ah Lee; Minsik Kim; Hee-Sik Kim; Chi-Yong Ahn
Journal:  Microbiome       Date:  2022-08-31       Impact factor: 16.837

  2 in total

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