Weibull Technique for Evaluation of Swelling: Composite Graphite Resin Electrode for Electrochemical Treatment of Gold Mining Wastewaters

Kunle Opeyemi Olayanju, K. Bolorunduro, I. Oke
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Abstract

This paper evaluated the swelling of graphite resin electrodes developed for utilization in the electrochemical treatment of gold mining wastewater. Graphite-resin electrodes were developed from used dry cells and resin using non-heat treatment processes (segregation). The Microstructure of the electrode was determined using a scanning electron microscope (Carl Zeiss Smart Evo 10) to ascertain the composition of the electrode. The swelling property of the electrodes was measured using the standard method through a combination of gold mining wastewater and chloride salt solutions. Effects of operational factors (particle size, percentage binder and compressive “compacting” pressure) on the swelling of the electrodes were monitored and evaluated statistically (using analysis of variance). Weibull probability distribution (2 and 3 parameters) was applied to the swelling through Microsoft Excel Solver and Moment Likelihood Method to ascertain the usefulness of the electrode in environmental pollution control through computation of reliability. The study revealed that the swelling was in the range of 1.48 % to 2.24 %, particle size (F5,20 =196.48, p = 2.76 x 10-16), percentage binder (F4,12 =181.58, p = 1.27 x 10-10), and compressive pressure (F3,12 = 106.69, p = 6.43 x 10-9) were significant factors that influence swelling of graphite-resin electrode at 95 % confidence level. the values of α and β for 2-parameters Weibull distribution are 63.162 and 15.098, and 1.265 and 10.089 for MSE and MLM methods, respectively. The Table shows that the values of α, β and θ for 3-parameters Weibull distribution are 3.679, 8.097 and 0.168, and 4.350, 7.165 and 0.198 for MSE and MLM methods, respectively. It was concluded that particle size and compacting pressure are significant factors that had an effect on the swelling of graphite resin electrodes for treatment water and wastewater.
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评估膨胀的威布尔技术用于金矿废水电化学处理的复合石墨树脂电极
本文评估了为电化学处理金矿废水而开发的石墨树脂电极的膨胀情况。石墨-树脂电极由使用过的干电池和树脂通过非热处理工艺(偏析)制成。使用扫描电子显微镜(卡尔蔡司 Smart Evo 10)测定了电极的微观结构,以确定电极的成分。使用标准方法,结合金矿废水和氯化盐溶液测量了电极的溶胀特性。监测和统计评估了操作因素(粒度、粘合剂百分比和压缩 "压实 "压力)对电极膨胀的影响(使用方差分析)。通过 Microsoft Excel 求解器和矩量似然法,将 Weibull 概率分布(2 个和 3 个参数)应用于膨胀,通过计算可靠性来确定电极在环境污染控制中的用途。研究表明,膨胀率在 1.48 % 至 2.24 % 之间,粒度(F5,20 =196.48,p = 2.76 x 10-16)、粘合剂百分比(F4,12 =181.58,p = 1.27 x 10-10)和压缩压力(F3,12 =106.69,p = 6.2 参数 Weibull 分布的 α 和 β 值分别为 63.162 和 15.098,MSE 和 MLM 方法的 α 和 β 值分别为 1.265 和 10.089。表中显示,3 参数 Weibull 分布的 α、β 和 θ 值分别为 3.679、8.097 和 0.168,MSE 和 MLM 方法分别为 4.350、7.165 和 0.198。结论是粒度和压实压力是影响水和废水处理石墨树脂电极膨胀的重要因素。
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