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Monitoring the extraction of copper from chicken dung leachate using an aluminium electrode as an indicator

机译:使用铝电极作为指示剂监测鸡粪渗滤液中铜的提取

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摘要

Copper is found in several minerals in the earth's crust with varying the elemental and mineralogical composition. Several techniques of extraction have been investigated all in the effort of obtaining a cheaper and viable method. This paper reports on further works done on copper extraction using a wet chemical method. According to the method, reduction of copper (II) ions using hydrazones from chlorinated chicken waste leachate was stoichiometrically driven. The chicken dung leachate used was an impure bio-material in which the concentration could not be determined. It was, therefore, difficult to quantify the stoichiometric ratios of species in that reaction. This paper reports on a method of monitoring the extent of copper reduction by chlorinated chicken dung leachate using an aluminum electrode as an indicator. Mineral rocks were obtained from Maragwa Location in Tharaka Nithi County in Kenya. The samples were ground into a fine powder of 250 micro millimeters. The samples were then subjected to mineralogical analysis using X-ray diffraction (XRD). Chemical analysis was done using atomic absorption spectroscopy (AAS) and X-ray fluorescence spectroscopy (XRFS). Ground samples were leached using 1.0 hydrochloric acid. The resulting leachate was treated with chicken dung leachate prepared from chicken dung in which chlorine gas was bubbled at a constant temperature of 28 °C. The pH of the resultant chicken dung leachate was adjusted from 4 to 12 using 1.0 M sodium hydroxide and then used as an electrolyte. An electrochemical cell was set up consisting of aluminum and graphite rods. The aluminum electrode was found not to corrode at pH above 11 while it was able to displace available copper ions. This property of the aluminum electrode was used to monitor when all copper ions were displaced. The recovered copper was analyzed using XRFS. The copper recovery rate from the samples ranged from 7.0 to 20.0 at level A and 7.4–26.8% at level B with a purity range of 84.9 level A to 88.6% level B. An overall positive potential in the reduction process confirmed the greater the tendency of copper reduction without an external source of electricity. The corrosion of the aluminium electrode in the process was not observed and therefore does not require frequent replacement. Therefore, a large scale extraction process needs to be investigated.
机译:在地壳的几种矿物中发现了铜,其元素和矿物组成也发生了变化。为了获得更便宜和可行的方法,已经研究了几种提取技术。本文报道了使用湿化学法提取铜的进一步工作。根据该方法,化学计量地驱动了使用nes从氯化的鸡废沥出液中还原(II)离子。使用的鸡粪渗滤液是一种不纯的生物材料,无法确定其浓度。因此,难以量化该反应中物质的化学计量比。本文报道了一种使用铝电极作为指示剂监测氯化鸡粪沥出液中铜还原程度的方法。矿物岩石是从肯尼亚Tharaka Nithi县的Maragwa地点获得的。将样品研磨成250毫米的细粉。然后使用X射线衍射(XRD)对样品进行矿物学分析。使用原子吸收光谱(AAS)和X射线荧光光谱(XRFS)进行化学分析。地面样品使用1.0盐酸浸提。用由鸡粪制得的鸡粪沥出液处理所得渗滤液,在恒定的28℃的温度下通入氯气。使用1.0M氢氧化钠将所得鸡粪沥出液的pH从4调节至12,然后用作电解质。建立了由铝和石墨棒组成的电化学电池。发现铝电极在能够置换可用铜离子的同时,在高于11的pH值下不会腐蚀。铝电极的这种特性用于监测所有铜离子何时被置换。使用XRFS分析回收的铜。样品中铜的回收率在A级为7.0至20.0,在B级为7.4–26.8%,纯度范围为A 84.9至B. 88.6%。还原过程中的总体正电位证实了较大的趋势无需外部电源即可减少铜。在该过程中未观察到铝电极的腐蚀,因此不需要频繁更换。因此,需要研究大规模的提取过程。

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