Iron mineral-humic acid complex enhanced Cr(VI) reduction by Shewanella oneidensis MR-1

舍瓦内拉 针铁矿 腐植酸 化学 铁细菌 X射线光电子能谱 核化学 电子顺磁共振 鳞片岩 铁酸盐 无机化学 希瓦氏菌属 微生物燃料电池 铁质 化学工程 细菌 有机化学 地质学 阳极 电极 肥料 核磁共振 古生物学 吸附 物理化学 物理 工程类
作者
Abdelkader Mohamed,Yu Lu,Yu Fang,Noha Mohamed Ashry,Yassine Riahi,Intisar Uddin,Dan Ke,Qiaoyun Huang
出处
期刊:Chemosphere [Elsevier]
卷期号:247: 125902-125902 被引量:68
标识
DOI:10.1016/j.chemosphere.2020.125902
摘要

Microorganisms, iron minerals, and humic acid are widely common in the soil and water environment and closely interact within environmental processes. In this study, the Cr(VI) removal by Shewanella oneidensis MR-1 (S. oneidensis) was examined in the presence of goethite and humic acid (HA) to mimic the real environment situation. Scanning electron microscopy (SEM) combined with energy disperse spectroscopy (EDS), X-ray photoelectron spectroscopy (XPS), and electron paramagnetic resonance (EPR) technologies were used to probe the Cr(VI) reduction mechanism. Our results showed that S. oneidensis alone could reduce 65% of 1.0 mM Cr(VI) after 8 h of the reduction process. Meanwhile, Cr(VI) reduction rate was declined to 56% in the presence of goethite or humic acid. Contrary, the Cr(VI) reduction rate was mightily increased to 79% by the ternary complex of S. oneidensis-goethite-HA where reduced humic acid (HAred) acted as electron shuttles and diminished the bacterial adhesion to the goethite surface thereby enhanced electron transfer and increased the extent of Cr(VI) reduction by 1.3 fold. XPS analysis indicated that Cr(VI) was reduced to Cr(III), and the final yields were Cr(OH)3 and Cr2O3 precipitated on the surface of bacterial cells. S. oneidensis could also reduce Fe(III) in goethite to Fe(II), which in turn reduced Cr(VI). These results suggested that iron mineral-humic acid complex could enhance the microbial reduction of Cr(VI) and revealed the promotion role of HA in the Cr(VI) bioreduction process. This study affords inclusive insights on the Cr(VI) reduction kinetics and mechanisms in the most complicated systems.
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