edta标准溶液的配制和标定原理

2025-03-15 06:01:38
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EDTA标准溶液的配制与的标定一、实验目的1.了解EDTA标液的配制和标定原理;2.掌握常用的标定EDTA的方法。二、实验原理EDTA即乙二胺四乙酸H4Y(本身是四元酸),由于在水中的溶解度很小,通常把它制成二钠盐(Na2H2Y·2H2O),也称为EDTA或EDTA二钠盐。EDTA相当于六元酸,在水中有六级离解平衡。与金属离子形成螯合物时,络合比皆为1:1。EDTA因常吸附0.3%的水分且其中含有少量杂质而不能直接配制标准溶液,通常先把EDTA配制所需要的大概浓度,然后用基准物质标定。标定EDTA的基准物质有纯的金属(>99.95%):如Cu、Zn、Ni、Pb,以及它们的氧化物,或某些盐类:如CaCO3、ZnSO4.7H2O、MgSO4.7H2O等。在选用纯金属做为标准物质时,应注意金属表面氧化膜的存在会带来标定时的误差,届时应将氧化膜用细砂纸擦去,或用稀酸把氧化膜溶掉,先用蒸馏水,再用乙醚或丙酮冲洗,于105℃的烘箱中烘干,冷却后再称重。显色原理:在络合滴定时,与金属离子生成有色络合物来指示滴定过程中金属离子浓度的变化。M + In  ←→ MIn         颜色甲    颜色乙滴入EDTA后,金属离子逐步被络合,当达到反应化学计量点时,已与指示剂(In)络合的金属离子被EDTA夺出,释放出指示剂的颜色:MIn + Y ←→  MY +In颜色乙颜色甲指示剂变化的pMep应尽量与化学计量点的pMsp一致。金属离子指示剂一般为有机弱酸,存在着酸效应,要求显色灵敏,迅速,稳定。

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