Production of a Highly Concentrated Gold Solution from Aqua Regia Gold Leachate Using Sugarcane Bagasse Nanoparticles

IF 0.5 Q4 ENGINEERING, CHEMICAL
O. Teniola, Abraham A. Adeleke, Simeon Ademola Ibitoye, Moshood Dehinde Shittu
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Abstract

This study produced a highly concentrated gold solution using nanoparticles (NPs) synthesized from sugarcane bagasse as an adsorbent for gold(III) recovery from an aqua regia gold leached lean solution. A 100 kg sample of gold ore collected from a mining site in Iperindo was concentrated. Mineralogical characterization and a fire assay test of the ore were carried out. Atmospheric and agitation leaching were conducted using aqua regia. Sugarcane bagasse NPs were prepared and used to study the gold(III) adsorption kinetics. Gold-loaded sugarcane bagasse NPs were desorbed in a 4 M aqua regia solution. The results revealed that the ore has a low water retention capacity which renders it friable. A microscopic examination established the presence of gold particles and pyrite in the ore. Ore leaching was eminently favoured by agitation yielding a weight loss of 6.3 % when an acid concentration of 4 M was used, the temperature was 90 ºC and the leaching time was 30 minutes. Synthesized nanocellulose was able to adsorb gold(III) from the leachate optimally with the following process parameters: 14 mL/g of adsorbent, 106.2 minute-long contact time, a temperature of 56 ºC and an agitation rate of 45 rpm when the concentration of leachate was 84 mg/L. The adsorption efficiency of the sugarcane bagasse NPs is comparable with that of commercial activated carbon, namely 92 and 95 %, respectively. The study concluded that NPs synthesized from sugarcane bagasse could be effectively used when upgrading gold and in purification processes.
利用甘蔗渣纳米颗粒从 Aqua Regia 金浸出液中生产高浓度金溶液
本研究利用甘蔗渣合成的纳米颗粒(NPs)作为吸附剂,从王水浸金贫液中回收金(III),制备出一种高浓度金溶液。从伊佩林多矿区收集的 100 千克金矿石样品被浓缩。对矿石进行了矿物学特征描述和火法化验测试。使用王水进行了大气浸出和搅拌浸出。制备了甘蔗渣 NPs,并用于研究金(III)的吸附动力学。甘蔗渣 NPs 在 4 M 王水溶液中解吸。结果显示,该矿石的保水能力较低,因此易碎。显微镜检查确定矿石中存在金颗粒和黄铁矿。矿石在搅拌下浸出的效果很好,当使用浓度为 4 M 的酸,温度为 90 ºC,浸出时间为 30 分钟时,重量损失为 6.3%。合成的纳米纤维素能够从浸出液中吸附金(III),其最佳工艺参数如下:当浸出液浓度为 84 mg/L 时,吸附剂用量为 14 mL/g,接触时间为 106.2 分钟,温度为 56 ºC,搅拌速率为 45 rpm。甘蔗渣 NPs 的吸附效率与商用活性炭相当,分别为 92% 和 95%。研究得出结论,甘蔗渣合成的氮氧化物可有效地用于金的提纯和净化过程。
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来源期刊
自引率
50.00%
发文量
9
审稿时长
6 weeks
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