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Dissection of the NAG pH Test: Tracking Efficacy Through Examining Reaction Products

机译:NAG pH检测的解剖:通过检查反应产物跟踪疗效

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In this study we sought to better understand the mechanics of the NAG pH test and determine the influence each variable has in controlling the resulting NAG pH, a value which is commonly used by the mining industry for waste classification. Three bulk samples (20 kg) representative of waste types A (alkaline), B (weakly-NAF) and D (PAP) were obtained from the Savage River mine, Tasmania. Variables tested included initial reaction time> heating temperature, heating length, post reaction cooling time and hydrogen peroxide (H_2O_2) strength (n=126). Our observations showed that for this suite, a multi-addition NAG pH test facilitated efficient sulphide oxidation for low sulphide sulphur samples (i.e., < 0.3 wt. %) with an initial reaction time of at least 480 minutes given per 15% H_2O_2 addition, heating to 80 to 90 °C for 2.5 hours, and then cooling of the reaction solution overnight with the NAG pH reading taken the following morning. Ihis study demonstrated that using the recommended standard conditions given in Smart et al. (2002) is not appropriate for general use. Rather a suite of representative waste samples should initially be selected and the optimal conditions to facilitate sulphide oxidation determined on a site-per-site basis.
机译:在这项研究中,我们寻求更好地了解NAG pH测试的机制,并确定每个变量在控制所得NAG pH中的影响,该值是采矿行业常用废物分类的值。从萨斯马尼亚州萨斯马尼亚州的萨斯马尼亚州萨尔马克斯获得了三种散装样品(20kg)代表废物类型(碱性),b(弱南部)和d(pap)。测试的变量包括初始反应时间>加热温度,加热长度,后反应后冷却时间和过氧化氢(H_2O_2)强度(n = 126)。我们的观察结果表明,对于该套件,用于低硫化物硫样品(即<0.3重量%)的多加入NAG pH试验促进有效的硫化物氧化,其初始反应时间为每15%H_2O_2加入至少480分钟,加热至80至90℃,保持2.5小时,然后通过第二天早晨采用NAG pH读数冷却反应溶液过夜。 IHIS研究表明,使用SMART等人的推荐标准条件。 (2002)不适合一般使用。 Rather a suite of representative waste samples should initially be selected and the optimal conditions to facilitate sulphide oxidation determined on a site-per-site basis.

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