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Electroanalytical tools to investigate the divalent state of Eu(Ⅲ) and Nd(Ⅲ) ions in non-aqueous medium 被引量:1
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作者 Jignasu P Mehta Himanshu M Pandya Kahan I Pandya 《Journal of Rare Earths》 SCIE EI CAS CSCD 2012年第4期392-396,共5页
The divalent state of Ln(III) ions has attracted much interest because of their ability to serve isomorphously in many biological system of divalent Ca(II) ion. Therefore, present paper deals with the study of div... The divalent state of Ln(III) ions has attracted much interest because of their ability to serve isomorphously in many biological system of divalent Ca(II) ion. Therefore, present paper deals with the study of divalent state of Eu(III) and Nd(III) ions in non-aqueous medium. In present study, cyclic voltammetry and chronopotentiometry were utilized to establish the divalent state of Eu(III) and Nd(III) ions. The cyclic voltammetric technique showed two-step reduction process at cathode for both Ln(III) ions under specified experimental conditions and chronopotentiometric method also showed two different transition times (r). Looking to the shape of cyclic voltammogram we calculated het- erogeneous forward rate constant (K^fh, cm/s) and diffusion coefficient (D, cm2/s) for both ions, which suggested that sweep rate had great ef- fect on the shape of cyclic voltammogram of Eu(III) and Nd(III) ions. The result of chronopotentiometry also suggested that stable divalent states of Eu(III) and Nd(III) ions existed with chronopotentiogram with two distinct transition times. The diffusion coefficients (D, cm2/s) were calculated from Sand equation. The diffusion coefficients of both techniques were compared and the results suggested that the system at electrode surface was changing from being reversible to irreversible. 展开更多
关键词 Eu(IlI) and Nd(III) ions non-aqueous medium CYCLIC-VOLTAMMETRY chronopotentiomentry rare earths
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耐有机溶剂蛋白酶生产菌的筛选 被引量:5
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作者 欧阳华勇 李冰峰 +4 位作者 权静 夏凡 沈建华 张光东 李晓规 《安徽农业科学》 CAS 北大核心 2009年第28期13606-13609,共4页
由南京紫光精细化工厂污水中筛得一株耐苯微生物,且能大量分泌蛋白酶,经菌种鉴定,确认其为盐芽孢杆菌。该菌所产生的蛋白酶对脱脂奶粉蛋白质有较强的水解能力,产生的菌落透明圈与菌落直径比(R)为2.3,该菌能耐受苯、甲苯等多种有机溶剂... 由南京紫光精细化工厂污水中筛得一株耐苯微生物,且能大量分泌蛋白酶,经菌种鉴定,确认其为盐芽孢杆菌。该菌所产生的蛋白酶对脱脂奶粉蛋白质有较强的水解能力,产生的菌落透明圈与菌落直径比(R)为2.3,该菌能耐受苯、甲苯等多种有机溶剂。该菌所产蛋白酶粗酶的最适反应温度为50℃,最适pH值10.0,亚铁离子能有效提高其活性,且对含有50%(V/V)的苯、甲苯等多种有机溶剂具有良好的耐受性,可望将该酶应用于有机溶剂介质酶催化反应的生产工艺中。 展开更多
关键词 蛋白酶 盐芽孢杆菌 有机溶剂 有机溶剂介质酶催化反应
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