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Mine effluent treatment for recovery of gold ions using high capacity nanotechnology adsorbents

机译:使用高容量纳米技术吸附剂处理矿山废水以回收金离子

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Laboratory scale studies of the development and application of high capacity heavy metal ion adsorbents with uniform nanoscale porosity (denoted MP-HMS, mercaptopropyl - hexagonal mesoporous structure) to extract gold from solutions is described. The adsorbents are selective towards gold ions. The adsorption capacities of these materials are also among the highest reported. MP-HMS has shown the capability to adsorb 330-mg gold per gram adsorbent (up to 30% of their weight). Gold uptake by the adsorbent was found to increase dramatically with solution agitation. The adsorbent was found to be extremely effective in adsorbing gold ions from ultra- low concentrations, like those found in mine effluents. Experimental studies indicated that MP-HMS maximum adsorption of gold (99.9%) occurred under all solution concentrations. Another promising attribute of these materials is their favorable adsorption kinetics. The contact time required for 80% adsorption of gold was found to be less than 60 seconds. The efficiency of these nanoporous materials for the recovery of gold from mining effluent is evaluated and their prospect for application in the mining industry discussed. The process thus has the prospect of becoming an efficient and environmental friendly method to recover gold from aqueous solutions, such as gold mill effluents.
机译:描述了开发和应用具有均匀纳米级孔隙率的高容量重金属离子吸附剂(表示为MP-HMS,巯基丙基-六角形介孔结构)以从溶液中提取金的实验室规模研究。吸附剂对金离子具有选择性。这些材料的吸附能力也是最高的。 MP-HMS已显示出每克吸附剂可吸附330毫克金的能力(最多占其重量的30%)。发现随着溶液搅拌,吸附剂对金的吸收急剧增加。发现这种吸附剂与矿山废水中的吸附剂一样,在吸附超低浓度的金离子方面极为有效。实验研究表明,MP-HMS在所有溶液浓度下均具有最大的金吸附率(99.9%)。这些材料的另一个有希望的属性是它们有利的吸附动力学。发现金的80%吸附所需的接触时间小于60秒。评价了这些纳米多孔材料从采矿废水中回收金的效率,并讨论了其在采矿业中的应用前景。因此,该方法有望成为一种高效且环保的方法,用于从水溶液(如金厂废水)中回收金。

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