首页> 外文期刊>Journal of Solution Chemistry >Formation and Stability of Binary Complexes of Divalent Ecotoxic Ions (Ni, Cu, Zn, Cd, Pb) with Biodegradable Aminopolycarboxylate Chelants (DL-2-(2-Carboxymethyl)Nitrilotriacetic Acid, GLDA, and 3-Hydroxy-2,2'-Iminodisuccinic Acid, HIDS) in Aqueous Solutions
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Formation and Stability of Binary Complexes of Divalent Ecotoxic Ions (Ni, Cu, Zn, Cd, Pb) with Biodegradable Aminopolycarboxylate Chelants (DL-2-(2-Carboxymethyl)Nitrilotriacetic Acid, GLDA, and 3-Hydroxy-2,2'-Iminodisuccinic Acid, HIDS) in Aqueous Solutions

机译:二价生态毒性离子(Ni,Cu,Zn,Cd,Pb)与可生物降解的氨基聚羧酸盐螯合物(DL-2-(2-羧甲基)亚硝基三乙酸,GLDA和3-Hydroxy-2,2'-)的二元配合物的形成和稳定性水溶液中的亚氨基二琥珀酸(HIDS)

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The protonation and complex formation equilibria of two biodegradable aminopolycarboxylate chelants {DL-2-(2-carboxymethyl)nitrilotriacetic acid (GLDA) and 3-hydroxy-2,2'-iminodisuccinic acid (HIDS)} with Ni~(2+), Cu~(2+), Zn~(2+), Cd~(2+) and Pb~(2+) ions were investigated using the potentiometric method at a constant ionic strength of I = 0.10 mol·dm~(-3) (KCl) in aqueous solutions at 25 ± 0.1℃. The stability constants of the proton–chelant and metal–chelant species for each metal ion were determined, and the concentration distributions of various complex species in solution were evaluated for each ion. The stability constants (log_(10) K_(ML)) of the complexes containing Ni~(2+), Cu~(2+), Zn~(2+), Cd~(2+) and Pb~(2+) ions followed the identical order of log_(10) K_(CuL)﹥log_(10) K_(NiL)﹥log_(10) K_(PbL)﹥log_(10) K_(ZnL)﹥log_(10) K_(CdL) for either GLDA (13.03﹥12.74﹥11.60﹥11.52﹥ 10.31) or HIDS (12.63﹥11.30﹥10.21﹥9.76﹥7.58). In each case, the constants obtained for metal–GLDA complexes were larger than the corresponding constants for metal–HIDS complexes. The conditional stability constants (log_(10) K'_(ML)) of the metal-chelant complexes containing GLDA and HIDS were calculated in terms of pH, and compared with the stability constants for EDTA and other biodegradable chelants.
机译:两种可生物降解的氨基聚羧酸螯合剂{DL-2-(2-羧甲基)硝基三乙酸(GLDA)和3-羟基-2,2'-亚氨基二琥珀酸(HIDS)}与Ni〜(2+)的质子化和复合物形成平衡,采用恒电位法在I = 0.10 mol·dm〜(-3)恒定离子强度下研究了Cu〜(2 +),Zn〜(2 +),Cd〜(2+)和Pb〜(2+)离子。 )(KCl)在25±0.1℃的水溶液中。确定了每种金属离子的质子螯合剂和金属螯合剂物种的稳定性常数,并评估了每种离子在溶液中各种复杂物种的浓度分布。含Ni〜(2 +),Cu〜(2 +),Zn〜(2 +),Cd〜(2+)和Pb〜(2+)的配合物的稳定常数(log_(10)K_(ML)) )离子遵循log_(10)K_(CuL)﹥ log_(10)K_(NiL)﹥ log_(10)K_(PbL)﹥ log_(10)K_(ZnL)﹥ log_(10)K_(CdL )适用于GLDA(13.03﹥ 12.74﹥ 11.60﹥ 11.52﹥ 10.31)或HIDS(12.63﹥ 11.30﹥ 10.21﹥ 9.76﹥ 7.58)。在每种情况下,金属-GLDA配合物获得的常数都大于金属-HIDS配合物的对应常数。含有GLDA和HIDS的金属螯合剂络合物的条件稳定性常数(log_(10)K'_(ML))是根据pH值计算的,并与EDTA和其他可生物降解的螯合剂的稳定性常数进行比较。

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