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Updated: May 21, 2025

An Anaerobic Biosensor Assay for the Detection of Mercury and Cadmium
Published on: December 17, 2018
Effects of redox-modified biochar on mercury reduction and methylation on electron transfer in Geobacter
Zhenya Tang1, Jie Yu1, Fangling Fan2
1Faculty of Modern Agricultural Engineering, Kunming University of Science and Technology, Kunming 650500, China.
Abstract:
Geobacterplays a key role in mercury (Hg) methylation and reduction in rice fields.Biochar boosts microbial electron transfer, but its impact on Hg reduction and methylation remains unclear. This study investigates how oxidative (OBC) and reductive (RBC) biochar influence Hg reduction and methylation by Geobacter sulfurreducens PCA. OBC increased electron donating capacity (EDC) but reduced electron accepting capacity (EAC), while RBC decreased electric resistance. Correlation analysis revealed biochar's electron exchange capacity (EEC) positively correlated with -OH (r = 0.73*), O-CO (r = 0.81*), COO/CO (r = 0.73*), -NH (r = 0.67*), and electron transfer number (n) (r = 0.99**), but negatively with -CH (r = -0.70*) and -NH3 (r = -0.80**). Both total Hg (THg) and methylmercury (MeHg) negatively correlated with EEC (THg:r = -0.99**, MeHg: r = -0.92**), EDC (THg:r = -0.99**,MeHg:r = -1.00**), and n (THg:r = -1.00**,MeHg: r = -0.85**), but positively with ΔIp (THg:r = 1.00**,MeHg:r = 0.80**). These findings suggest biochar with higher EEC, EDC, and electron transfer capacity enhances Hg2+ reduction and inhibits methylation, highlighting its potential for Hg pollution control.
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