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Separation of elemental sulfur from zinc concentrate direct leaching residue by vacuum distillation

机译:通过真空蒸馏从锌精矿直接浸出残留物中分离元素硫

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Properly disposal and reutilization of direct leaching residue (DLR) from metal production industries can reduce environmental pollution as well as better conserve resources. In this study, recovery of elemental sulfur from zinc concentrate DLR using vacuum distillation was thoroughly investigated. The results show that elemental sulfur recovery using vacuum distillation was over 98% with a high purity under optimized conditions. The low temperature requirement (200-300 degrees C) of vacuum distillation may reduce the energy consumption comparing to traditional distillation under ambient pressure. Effects of parameters (distillation time, vacuum, temperature, particle size and distillation area) on sulfur recovery rate were presented. High sulfur recovery rate was observed with relative pressure lower than -0.09 megapascal (MPa). Sulfur recovery rate increased sharply with temperature in the range of 140-220 degrees C, while temperature above 220 degrees C only slightly promoted sulfur recovery. Smaller DLR particle size and larger distillation area facilitated mass and heat transportation, and resulted in higher sulfur recovery rates. The vacuum distillation separation technology reveals an alternative method to efficiently and economically separate elemental sulfur from zinc concentrate DLR. The impacts of operation parameters on the sulfur recovery rate were well documented in this study, and they are important for further optimizing the process and strategically applying the technology in a larger scale scenario. (C) 2014 Elsevier B.V. All rights reserved.
机译:适当处置和重复利用金属生产行业中的直接浸出残渣(DLR)可减少环境污染并更好地节约资源。在这项研究中,对使用真空蒸馏从锌精矿DLR中回收元素硫进行了深入研究。结果表明,在优化条件下,使用真空蒸馏回收的元素硫超过98%,纯度高。与传统蒸馏在环境压力下相比,真空蒸馏的低温要求(200-300摄氏度)可以减少能耗。提出了参数(蒸馏时间,真空度,温度,粒径和蒸馏面积)对硫回收率的影响。在相对压力低于-0.09兆帕(MPa)的情况下,观察到了较高的硫回收率。在140-220摄氏度的温度范围内,硫的回收率急剧增加,而在220摄氏度以上的温度下,硫的回收率却微幅提高。较小的DLR粒径和较大的蒸馏面积有助于质量和热量传输,并导致较高的硫回收率。真空蒸馏分离技术揭示了从锌精矿DLR中高效经济地分离出元素硫的替代方法。这项研究充分记录了操作参数对硫回收率的影响,它们对于进一步优化工艺和在更大规模的方案中战略性地应用该技术至关重要。 (C)2014 Elsevier B.V.保留所有权利。

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