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通过沉淀法从亚硫酸镍火试金法溶解滤液中去除镍

Removal of Nickel from Nickel Sulfite-Fire Assay Dissolution Filtrate Through Precipitation.

作者信息

Mabowa Happy Mothepane, Mkhohlakali Andile, Mokoena Sam, Tshilongo James, Chimuka Luke

机构信息

Analytical Chemistry Division, MINTEK, 200 Malibongwe Drive, 2155 Randburg, South Africa.

School of Chemistry, University of the Witwatersrand, Private Bag 3, P.O. WITS, 2050 Johannesburg, South Africa.

出版信息

ACS Omega. 2024 Jan 25;9(5):5592-5600. doi: 10.1021/acsomega.3c07623. eCollection 2024 Feb 6.

Abstract

This study responds to stringent environmental regulations and increasing focus on resource conservation by exploring economically viable refining technologies through recycling. With the rising costs of filtrate disposal, there is a significant emphasis on removing and recycling valuable constituents, particularly nickel and copper (Ni and Cu). Herein, we employ analytical techniques with the aim of investigating an alternative method for recovering Ni and other valuable metals from a nickel sulfide-fire assay filtrate using -curve precipitation under optimal conditions. The waste from the fire assay procedure contains substantial amounts of Ni and other critical metals, with concentrations of 62.7 g/L of Ni and 3.87 g/L of Cu. Prior to precipitation, traditional solvent extraction was used for Cu extraction, selectively removed before separating primary impurities such as iron (Fe). A pivotal aspect of this research involves applying -curve precipitation with precise parameters at different pH levels. Analytical techniques reveal a minor depletion occurs as Ni is separated from Fe at a pH of 2.5, resulting in the formation of a refined Ni stream that is then refined into a mixed hydroxide Ni(OH) product. The efficiency of 5,8-diethyl-7-hydroxydodecan-6-oxime (LIX 63-70) in extracting value-added metals from fire assay waste is exceptionally high, integrating recycling and repurposing of value-added base metals to promote a circular economy.

摘要

本研究通过探索经济可行的回收精炼技术,以应对严格的环境法规和对资源节约日益增长的关注。随着滤液处置成本的上升,人们高度重视去除和回收有价值的成分,特别是镍和铜(Ni和Cu)。在此,我们采用分析技术,旨在研究一种在最佳条件下利用 -曲线沉淀从硫化镍火试金滤液中回收镍和其他有价值金属的替代方法。火试金过程产生的废物含有大量的镍和其他关键金属,镍浓度为62.7 g/L,铜浓度为3.87 g/L。在沉淀之前,采用传统溶剂萃取法萃取铜,在分离铁(Fe)等主要杂质之前将其选择性去除。本研究的一个关键方面是在不同pH值下应用具有精确参数的 -曲线沉淀。分析技术表明,在pH值为2.5时镍与铁分离会出现少量损耗,从而形成精制镍流,然后将其精制为混合氢氧化物Ni(OH)产品。5,8-二乙基-7-羟基十二烷-6-肟(LIX 63-70)从火试金废料中萃取增值金属的效率极高,将增值贱金属的回收和再利用相结合,以促进循环经济。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/1669/10851410/5bb9a212292c/ao3c07623_0001.jpg

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