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首页> 外文期刊>Dalton transactions: An international journal of inorganic chemistry >Calcium L-tartrate complex formation in neutral and in hyperalkaline aqueous solutions
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Calcium L-tartrate complex formation in neutral and in hyperalkaline aqueous solutions

机译:在中性和高碱性水溶液中形成L-酒石酸钙络合物

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The complex formation reaction between the L-tartrate (Tar(2-)) and calcium ions taking place in neutral and in hyperalkaline (pH > 13) aqueous solutions has been investigated. It was demonstrated that upon NaOH addition the solubility of the CaTarr((S)) precipitate significantly increases. Conductometric and freezing point depression measurements further confirmed that in this process water soluble species are formed as a result of a reaction between the CaTar((S)) and the hydroxide ion (or, conversely, between Ca(OH)(2(S)) and the Tar(2-) ion). C-13 NMR spectroscopic measurements yielded the value of pK(3) = 15.4 +/- 0.2 for the proton dissociation of one of the alcoholic OH groups of Tar(2-) (at 25.0 degrees C and 4 M Na(Cl) ionic strength). Upon addition of calcium ions to an alkaline Tar(2-) solution, the H-1 NMR signal gradually broadened and the C-13-satellite peaks split to two components, which also indicate complexation. From H-2/Pt potentiometric titrations performed with solutions in the 13.6 <= pH <= 14.4 range, it was observed, that this complex formation is accompanied by a hydroxide ion consuming process. The titration curves can be best described via assuming the formation of the CaTarH(-1) ((aq)) (lg beta(11-1) = -11.2 +/- 0.1) and CaTarH(-2)(2) ((aq)) (lg beta(11-2) = -25.3 +/- 0.1) complexes. In hyperalkaline solutions, these two species account for more than 90-99% of the calcium ions present and the contribution of the other reasonable and well-established calcium-containing solution species is rather small. The possible structures of the above complexes have been modeled via ab initio calculations. The stoichiometries are consistent both with species containing coordinated alcoholate group(s) and with mixed Ca(II)-hydroxo-tartrato complexes. From the data available at present, both types of structures can be considered as chemically reasonable.
机译:研究了酒石酸L(Tar(2-))与钙离子在中性和高碱性(pH> 13)水溶液中的络合物形成反应。结果表明,添加NaOH后,CaTarr((S))沉淀物的溶解度显着增加。电导和冰点降低测量结果进一步证实,在此过程中,CaTar((S))与氢氧根离子(或相反,Ca(OH)(2(S))之间的反应形成了水溶性物质)和Tar(2-)离子)。 C-13 NMR光谱测量得出Tar(2-)的一个醇羟基的质子解离的pK(3)= 15.4 +/- 0.2(在25.0摄氏度和4 M Na(Cl)离子强度)。向碱性Tar(2-)溶液中添加钙离子后,H-1 NMR信号逐渐加宽,C-13卫星峰分裂为两个组分,这也表明存在络合物。从在13.6 <= pH <= 14.4范围内的溶液中进行的H-2 / Pt电位滴定中可以看出,这种络合物的形成伴随着氢氧根离子的消耗过程。通过假设形成CaTarH(-1)((aq))(lg beta(11-1)= -11.2 +/- 0.1)和CaTarH(-2)(2)(( aq))(lg beta(11-2)= -25.3 +/- 0.1)复合物。在高碱性溶液中,这两种物质占存在的钙离子的90-99%以上,而其他合理且完善的含钙溶液物质的贡献也很小。上述复合物的可能结构已通过从头算来建模。该化学计量学与含有配位的醇盐基团的物种和混合的Ca(II)-羟基-酒石酸配合物都是一致的。从目前可获得的数据来看,两种类型的结构都可以认为是化学上合理的。

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