Study of the Cyanide Leaching of Gold from Low-Grade Raw Materials in the Presence of Amino Acids

IF 3.1 4区 化学 Q2 CHEMISTRY, INORGANIC & NUCLEAR Inorganics Pub Date : 2023-11-27 DOI:10.3390/inorganics11120461
B. Kenzhaliyev, T. Surkova, A. Koizhanova, D. Yessimova, Leila Amanzholova, Z. Dosymbayeva
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Abstract

The article discusses the interaction in amino acid–gold cyanide systems using amino acids of different structures. The formation of complex compounds of gold cyanide with amino acids with the participation of carboxyl and amino groups is shown. A relationship has been established between the formation of gold complexes with amino acids and the degree of its extraction in the process of leaching from low-grade ore with sodium cyanide together with amino acids: the higher the degree of participation of the amino group in the formation of the complex, i.e., covalent bond, the more pronounced the effect of the amino acid on the degree of gold leaching. The contribution to the formation of the complex of the carboxyl group (ionic bond) and the amino group (covalent donor–acceptor) can be assessed by the intensity of the band at a wave number of 1419 cm−1 of the IR spectra of the systems: gold cyanide–amino acid. This approach makes it possible to predict the effect of amino acid structure on gold recovery during cyanide leaching based on IR spectra.
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在氨基酸存在的情况下从低级原料中氰化浸出金的研究
文章讨论了使用不同结构的氨基酸在氨基酸-氰化金体系中的相互作用。在羧基和氨基的参与下,氰化金与氨基酸形成了复合物。在用氰化钠和氨基酸从低品位矿石中浸出的过程中,金与氨基酸络合物的形成与金的浸出程度之间建立了一种关系:氨基酸基团参与形成络合物(即共价键)的程度越高,氨基酸对金浸出程度的影响就越明显。羧基(离子键)和氨基(共价供体-受体)对复合物形成的贡献可以通过氰化金-氨基酸体系红外光谱中波数为 1419 cm-1 的波段强度来评估。这种方法可以根据红外光谱预测氨基酸结构对氰化浸出过程中金回收的影响。
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来源期刊
Inorganics
Inorganics Chemistry-Inorganic Chemistry
CiteScore
2.80
自引率
10.30%
发文量
193
审稿时长
6 weeks
期刊介绍: Inorganics is an open access journal that covers all aspects of inorganic chemistry research. Topics include but are not limited to: synthesis and characterization of inorganic compounds, complexes and materials structure and bonding in inorganic molecular and solid state compounds spectroscopic, magnetic, physical and chemical properties of inorganic compounds chemical reactivity, physical properties and applications of inorganic compounds and materials mechanisms of inorganic reactions organometallic compounds inorganic cluster chemistry heterogenous and homogeneous catalytic reactions promoted by inorganic compounds thermodynamics and kinetics of significant new and known inorganic compounds supramolecular systems and coordination polymers bio-inorganic chemistry and applications of inorganic compounds in biological systems and medicine environmental and sustainable energy applications of inorganic compounds and materials MD
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