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离子交换树脂在镍钴湿法冶炼废水深度处理中的应用研究 被引量:9
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作者 和润秀 《冶金管理》 2020年第13期23-25,共3页
采用离子交换法深度处理镍钴湿法冶炼系统中产生的废水,使废水达到循环利用的目的,减少水资源的浪费。结果表明:采用Purolite?S960离子交换树脂处理含镍(0.52g/L)、钴(0.60g/L)、锰(0.45g/L)的生产废水,其饱和吸附容量为112.9g/L湿树脂... 采用离子交换法深度处理镍钴湿法冶炼系统中产生的废水,使废水达到循环利用的目的,减少水资源的浪费。结果表明:采用Purolite?S960离子交换树脂处理含镍(0.52g/L)、钴(0.60g/L)、锰(0.45g/L)的生产废水,其饱和吸附容量为112.9g/L湿树脂,处理后废水中的各金属含量均可降低至0.1mg/L,远低于排放标准的限制;采用分段洗脱法可以实现有价金属的分离和富集;树脂的再生性能较好,饱和树脂中各金属的洗脱率均大于98%,可满足生产需要。 展开更多
关键词 离子交换树脂反 镍钴冶炼废水 循环利用 金属回收
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RAPID DETERMINATION OF L-GLUTAMIC ACID WITH AN ENZYME REACTOR OF L-GLUTAMIC DECARBOXYLASE IMMOBILIZED ON ION EXCHANGE RESIN
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作者 WUGuoqi LING Daren +1 位作者 WANG Fan SONG Guoqiang 《Chinese Journal of Reactive Polymers》 2001年第2期160-167,共8页
The preparation and characterization of an immobilized L-glutamic decarboxylase (GDC) were studied. This work is to develop a sensitive method for the determination of L-glutamate using a new biosensor, which consists... The preparation and characterization of an immobilized L-glutamic decarboxylase (GDC) were studied. This work is to develop a sensitive method for the determination of L-glutamate using a new biosensor, which consists of an enzyme column reactor of GDC immobilized on a novel ion exchange resin (carboxymethyl-copolymer of allyl dextran and N.N?methylene-bisacrylamide CM-CADB) and ion analyzer coupled with a CO2 electrode. The conditions for the enzyme immobilization were optimized by the parameters: buffer composition and concentration, adsorption equilibration time, amount of enzyme, temperature, ionic strength and pH. The properties of the immobilized enzyme on CM-CADB were studied by investigating the initial rate of the enzyme reaction, the effect of various parameters on the immobilized GDC activity and its stability. An immobilized GDC enzyme column reactor matched with a flow injection system-ion analyzer coupled with CO2 electrode-data collection system made up the original form of the apparatus of biosensor for determining of L-glutamate acid. The limit of detection is 1.0×10-5 M. The linearity response is in the range of 5×10 -2-5×10 -5 M . The equation of linear regression of the calibration curve is y= 43.3x + 181.6 (y is the milli-volt of electrical potential response, x is the logarithm of the concentration of the substrate of L-glutamate acid). The correlation coefficient equals 0.99. The coefficient of variation equals 2.7%. 展开更多
关键词 Immobilized enzyme reactor L-glutamic decarboxylase Glutamate acid Ion exchanger..
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