锌试剂与微量汞反应的分光光度研究及环境学意义
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国家自然科学基金项目!(批准编号 :495 0 2 0 2 5 )资助


Spectrophometric Study of the Reaction of Zincon with Trace Mercury and Its Environmental Significance
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    摘要:

    本文研究了在pH=6.70的缓冲溶液(KH2PO4-NaOH)中锌试剂与汞生成的蓝色 配合物。在最大吸收处吸光度与汞离子的含量成线性关系,配合物的吸收峰值为λmax=545 nm, 比锌试剂本身吸收峰值490 nm位移55 nm,配合物的表观摩尔吸光系数εε=2.8×105L·mol-1· cm-1。汞离子的标准工作曲线在0.1~25μg·mL-1的范围内,符合朗伯-比耳定律。最低检测 浓度为0.01μg·mL-1,同时,研究了测定该配合物的基本条件。实验表明,此反应灵敏度较高, 稳定性和重现性好,操作方便,可用于环境中的生物体内微量汞的测定。

    Abstract:

    Interaction between the zincon (zinc reagent) and trace mercury in pH 6.70 buffer solution (the system KH2PO4_NaOH) gives rise to a purplish red complex compound. There is a linear relation between the absorptivity and the Hg2+content at the maximum absorption. The peak of the absorption spectrum isλmax=545 nm, which has a bathochromic shift of about 55 nm relative to zincon (the peak of zincon isλmax=490 nm). The apparent molar absorptivity is 2.8×105L·mol-1·cm-1. The standard curve is in the range of 0.1~25μg·mL-1, obeying the Lamber_Beer law, and the detection limit is 0.01μg·mL-1for Hg2+at same conditions, basic conditions of determination were studied. The reaction is fast, senstive and easy to operate and shows a good reproducibility. It can be applied in the determination of trace mercury in industrial waster water, soil, minerals and organisms.

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庄 稼,迟燕华,张仰刚,等, 2000. 锌试剂与微量汞反应的分光光度研究及环境学意义[J]. 岩石矿物学杂志, 19(4):363~368.
Zhuang Jia, Chi Yanhua, Zhang Yanggang, et al, 2000. Spectrophometric Study of the Reaction of Zincon with Trace Mercury and Its Environmental Significance[J]. Acta Petrologica et Mineralogica, 19(4): 363~368.

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  • 最后修改日期:1999-12-21
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