首页> 外文会议>Conference on advanced topics in optolectronics, microelectronics, and nanotechnologies IV;ATOM-N 2008; 20080828-31;20080828-31; Constanta(RO);Constanta(RO) >Studies of obtaining and stability in aqueous medium of new complex compounds of Ti(IV) and Zr(IV) used in ecological leather tanning
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Studies of obtaining and stability in aqueous medium of new complex compounds of Ti(IV) and Zr(IV) used in ecological leather tanning

机译:用于生态皮革鞣制的新型Ti(IV)和Zr(IV)的复合化合物在水介质中的获得和稳定性研究

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摘要

In this paper, the study of obtaining new coordination compounds of Ti(IV) and Zr(IV) using as ligand: D,L-β-iso-butyric acid, is presented. Also, the stability of these compounds in aqueous medium is studied. The studies of obtaining and of stability of the new compounds were accomplished in aqueous solutions using methods characteristic for coordination compounds: conductance and pH measurements. The combination ratios and the stability were determined with methods characteristic for studies in solutions. From experimental data resulted that the combination ratio of central metallic atoms with the ligand derived from D,L-β-iso-butyric acid was 1:2. From experimental data resulted that in strong acid and strong basic mediums, the coordination compounds could not be obtained. The optimal stability of the studied compounds is limited between 3 -6, pH - values. This fact is in accordance with the conditions of using these compounds in ecological leather tanning. Of great importance is that these compounds were used with very good results in tanning processes of different types of leather. This fact evidenced that the ecological alternative of tanning is better than non-ecological tanning using chrome compounds. The importance of this paper consists in obtaining new coordination compounds that can be used in ecological leather tanning.
机译:本文研究了以D,L-β-异丁酸为配体获得Ti(IV)和Zr(IV)的新配位化合物的研究。此外,还研究了这些化合物在水性介质中的稳定性。使用配位化合物的特征方法(电导和pH测量)在水溶液中完成了新化合物的获得及其稳定性的研究。结合比和稳定性用溶液研究的特征方法确定。根据实验数据,中心金属原子与衍生自D,L-β-异丁酸的配体的结合比为1:2。根据实验数据,在强酸和强碱性介质中无法获得配位化合物。研究化合物的最佳稳定性限制在3 -6,pH-值之间。这符合在生态皮革鞣制中使用这些化合物的条件。至关重要的是,这些化合物在不同类型皮革的鞣制过程中均具有很好的效果。这一事实证明,鞣制的生态替代比使用铬化合物的非生态鞣制更好。本文的重要性在于获得可用于生态皮革鞣制的新型配位化合物。

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