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作 者:刘文涵[1] 杨未[1] 陈丹[1] 王丽丽[1] 马淳安[1]
机构地区:[1]浙江工业大学化材学院绿色化学合成技术国家重点实验室培育基地分析测试中心,浙江杭州310032
出 处:《光谱学与光谱分析》2008年第3期697-699,共3页Spectroscopy and Spectral Analysis
基 金:浙江省分析测试基金项目;浙江省重中之重实验室开放基金项目资助
摘 要:利用硫化锌法火焰原子吸收间接测定胱氨酸(Cystine,Cys-Cys)。在碱性条件下,胱氨酸能与硫化锌悬浮液反应生成可溶性碱式胱氨酸锌配位化合物,在pH9·40时达到最大浓度,原子吸收光谱法测定了最大浓度时的配合物含量,并对碱式胱氨酸锌稳定常数进行了测定和理论计算。碱式胱氨酸锌的稳定常数平均值β稳为9·916×1032,其logβ稳=32·996。表明原子吸收光谱不仅可用于微量元素的测定和有机化合物的间接测定,同时也可进行配合离子的物理形态、物理常数的研究和测定。Cystine was indirectly determined by flame atomic absorption spectrometry with ZnS.Base on the determination mechanism,the composition of complex,the complex balance reaction of soluble zinc ion,which formed in the determination of cystine by FAAS,and the stability constant of complex balance were discussed in the present paper.Under the alkalescent conditions,cystine(Cys-Cys) can react with zinc sulfide suspension solution to form a soluble complex or chelate of zinc cystine.The maximum concentration was reached at pH 9.4 and the quantity of the chelate was determined by flame atomic absorption spectrometry with zinc sulfide.The stability constants of the complex compound of zinc cystine were studied successfully,after the numeric measurements and theoretical investigations under the best-optimized acidity for determination.In conclusion,at the best optimized acidity pH 9.4,the stability constant of alkalescent zinc cystine is between 9.542×10^32 and 10.353×10^32,the average value is βW=9.916×10^32,and log βW=32.996.The standard deviation is 0.301×10^32.It is shown that the atomic absorption spectrometry can be used not only for the determination of trace elements and the indirect determination of organic compound,but also for the study of physical configuration and the determination of physical constant of complex ion.
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