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Dynamic coupling of ferrihydrite transformation and associated arsenic desorption/redistribution mediated by sulfate-reducing bacteria
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作者 Wenjing Zhou huiyan zhu +4 位作者 Shiwen Hu Bowei Zhang Kun Gao Zhi Dang Chongxuan Liu 《Journal of Environmental Sciences》 SCIE EI CAS CSCD 2024年第1期39-50,共12页
Sulfate-reducing bacteria play an important role in the geochemistry of iron(oxyhydr)oxide and arsenic(As)in natural environments;however,the associated reaction processes are yet to be fully understood.In this study,... Sulfate-reducing bacteria play an important role in the geochemistry of iron(oxyhydr)oxide and arsenic(As)in natural environments;however,the associated reaction processes are yet to be fully understood.In this study,batch experiments coupled with geochemical,spectroscopic,microscopic,and thermodynamic analyses were conducted to investigate the dynamic coupling of ferrihydrite transformation and the associated As desorption/redistribution mediated by Desulfovibrio vulgaris(D.vulgaris).The results indicated that D.vulgaris could induce ferrihydrite transformation via S^(2-)-driven and direct reduction processes.In the absence of SO_(4)^(2-),D.vulgaris directly reduced ferrihydrite,and As desorption and re-sorption occurred simultaneously during the partial transformation of ferrihydrite to magnetite.The increase in SO_(4)^(2-)loading promoted the S^(2-)-driven reduction of ferrihydrite and accelerated the subsequent mineralogical transformation.In the low and medium SO_(4)^(2-)treatments,ferrihydrite was completely transformed to a mixture of magnetite and mackinawite,which increased the fraction of As in the residual phase and stabilized As.In the high SO_(4)^(2-)treatment,although the replacement of ferrihydrite by only mackinawite also increased the fraction of As in the residual phase,22.1%of the total As was released into the solution due to the poor adsorption affinity of As to mackinawite and the conversion of As^(5+)to As^(3+).The mechanisms of ferrihydrite reduction,mineralogy transformation,and As mobilization and redistribution mediated by sulfate-reducing bacteria are closely related to the surrounding SO_(4)^(2-)loadings.These results advance our understanding of the biogeochemical behavior of Fe,S,and As,and are helpful for the risk assessment and remediation of As contamination. 展开更多
关键词 Sulfate-reducing bacteria ARSENIC FERRIHYDRITE TRANSFORMATION REDISTRIBUTION
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Traveling wavefronts of a nonlinear reaction-diffusion model of tumor growth under the acid environment 被引量:1
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作者 huiyan zhu Yang Luo Xiufang Wang 《International Journal of Biomathematics》 2014年第3期183-199,共17页
关键词 反应扩散模型 肿瘤生长 酸性环境 BANACH不动点定理 非线性 FREDHOLM 波前 行驶
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Dynamics on tumor immunotherapy model with periodic impulsive infusion
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作者 huiyan zhu Qian Ding +1 位作者 Fangjuan Wang Huilan Wang 《International Journal of Biomathematics》 2016年第5期261-275,共15页
关键词 微分方程模型 周期脉冲 免疫治疗 肿瘤 动力学 Floquet乘子 脉冲微分方程 瞬态行为
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