supported by the National Natural Science Foundation of China(42077211);the Natural Science Foundation of Guangdong Province(2021A1515012570,2022A1515011734).
The dissimilatory reduction of Fe(III)oxides driven by Fe(III)-reducing bacteria(FRB)is an important biogeo-chemical process that influences not only iron cycling but also the biogeochemical cycles of carbon,trace met...
supported by the National Natural Science Foundation of China(Nos.42107017 and 32172121)。
In soil-rice systems,microbial reduction of iron(Fe)has been recognized as a crucial biogeochemical process that regulates Fe and chromium(Cr)translocation;however,the underlying processes are unknown.To investigate t...
supported by the Science and Technology Innovation Program of Hunan Province(No.2022RC1026);Shenzhen Science and Technology Program(No.JCYJ20220530160412027);Guangdong Basic and Applied Basic Research Foundation(No.2023A1515011807);the Project of the National Key Research and Development Program of China(No.2021YFC1910400);the Technical Innovation Leading Plan Project for Hunan High-tech Industry(Nos.2020SK2042 and 2022GK4062);the Key R&D Project of Hunan Province of China(No.2022SK2067)。
In order to explore an efficient and green method to deal with nitrobenzene(NB)pollutant,reduced graphene oxide(r GO)as an electron shuttle was applied to enhance the extracellular electron transfer(EET)process of Geo...
China Scholarship Council(CSC201804910500)for 4-year granting study abroad;supported by the Helmholtz Association in the frame of the Integration Platform“Tapping nature's potential for sustainable production and a healthy environment”at the UFZ.
Microbial electrochemical technologies have been extensively employed for phenol removal.Yet,previous research has yielded inconsistent results,leaving uncertainties regarding the feasibility of phenol degradation und...
This study was supported by the Army Research Office and was accomplished under grant number W911NF‐17‐1‐0345.
Direct interspecies electron transfer(DIET)may be most important in methanogenic environments,but mechanistic studies of DIET to date have primarily focused on cocultures in which fumarate was the terminal electron ac...
supported by the National Natural Science Foundation of China(Grant Nos.NSFC91851211&41772363);the One Hundred Talents Program of Hubei Province and China University of Geosciences-Wuhan
Electromicrobiology is a sub-discipline of microbiology that investigates electrical interplay between microorganisms and redox active materials, such as electrodes and solid-phase minerals, and the mechanisms underly...
supported by the Postdoctoral Science Foundation of China(Grant No.2018M632735);the National Natural Science Foundation of China(Grant Nos.91751112,and 41573071);the Senior User Project of RV KEXUE(Grant No.KEXUE2018G01);the Natural Science Foundation(Grant No.JQ201608);the Young Taishan Scholars Program(Grant No.tsqn20161054)of Shandong Province
Geobacter metallireducens is known to be capable of removing nitroaromatic compounds via an oxidation mode. However, little attention has been paid to investigate the reductive removal of chlorinated nitroaromatic com...
supported by the National Natural Science Foundation of China (Nos. 41571449, 41271260, 41276101 and 41807035);the Fundamental Research Fund for the Central Universities of China (No. 20720160083);the Natural Science Foundation of Fujian Province of China (Nos. 2018J05073 and 2018Y0074);the Project of Educational Scientific Research of Fujian Province of China (Nos. JAT170831 and JA13344);the Open Fund of Key Laboratory of Measurement and Control System for Coastal Environment of China (No. S1-KF1701)
Microbially mediated bioreduction of iron oxyhydroxide plays an important role in the biogeochemical cycle of iron.Geobacter sulfurreducens is a representative dissimilatory ironreducing bacterium that assembles elect...