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Removal of Cr(VI) and Ni(II) from aqueous solution by fused yeast: Study of cations release and biosorption mechanism

机译:融合酵母从水溶液中去除Cr(VI)和Ni(II):阳离子释放及生物吸附机理的研究

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摘要

Biosorption of Cr(VI) and Ni(II) by a fused yeast from Candida tropicalis and Candida lipolytica under varying range of pH, initial metal concentration and reaction time was investigated. Net cation release and Cr removal reached 2.000 mmol/l and 81.37% when treating 20 mg/l Cr(VI) at pH 2 with 25 mg/l biomass for 30 min, while for Ni were 0.351 mmol/l and 64.60%, respectively. Trace metal elements such as Co, Cu, Mn, Mo, Se and Zn played active role in biosorption as important ingredients of functional enzymes. Cr(VI) was reduced to less toxic Cr(III) and chelated with extracellular secretions, and further accumulated inside the cells. For Ni biosorption, however, largely a passive uptake process influenced by ion gradient led to lower adsorption capacity and cations release. Fourier transform infrared (FTIR) spectrum analysis indicated that amide and pyridine on cells were involved in binding with Cr, but for Ni. bound-OH and nitro-compounds were the main related functional groups. Scanning electron microscopy (SEM) and atomic force microscopy (AFM) analysis confirmed that considerable amounts of metals precipitated on cell surface when dealing with high concentration metals.
机译:研究了热带假丝酵母和解脂假丝酵母融合酵母在不同pH,初始金属浓度和反应时间下对Cr(VI)和Ni(II)的生物吸附。当在pH 2下用25 mg / l生物量处理20 mg / l Cr(VI)30分钟时,净阳离子释放量和Cr去除量分别达到2.000 mmol / l和81.37%,而Ni分别为0.351 mmol / l和64.60% 。微量金属元素如Co,Cu,Mn,Mo,Se和Zn在作为功能酶的重要成分的生物吸附中起着积极的作用。 Cr(VI)还原为毒性较低的Cr(III),并与细胞外分泌物螯合,并进一步积累在细胞内。但是,对于Ni生物吸附,很大程度上受离子梯度影响的被动吸收过程导致较低的吸附能力和阳离子释放。傅里叶变换红外光谱(FTIR)分析表明,细胞上的酰胺和吡啶与Cr结合,但与Ni结合。结合的OH和硝基化合物是主要的相关官能团。扫描电子显微镜(SEM)和原子力显微镜(AFM)分析证实,处理高浓度金属时,大量金属沉淀在细胞表面。

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