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评估用于硫化物生成反应器中处理酸性矿山排水的精细有机混合物。

Evaluation of fine organic mixtures for treatment of acid mine drainage in sulfidogenic reactors.

作者信息

Pérez N, Schwarz A, de Bruijn J

机构信息

Centro de Recursos Hídricos para la agricultura y Minería (CRHIAM), Universidad de Concepción, Barrio Universitario sn, Concepción, Chile E-mail:

Facultad de Ingeniería Agrícola, Universidad de Concepción, Avenida Vicente Méndez 595, Chillán, Chile.

出版信息

Water Sci Technol. 2018 Nov;78(8):1715-1725. doi: 10.2166/wst.2018.452.

DOI:10.2166/wst.2018.452
PMID:30500795
Abstract

The performance of passive biochemical reactors in acid mine drainage (AMD) treatment could be enhanced by using fine organic substrates in new reactor designs, such as diffusive exchange reactors. This work evaluated the effect of fine cellulosic components in organic mixtures and of enrichment with inoculum, on sulfate and metals removal in discontinuous cultures for three types of synthetic AMD. The cellulosic substrates evaluated were sawdust, microcrystalline cellulose, and forestry cellulose fibers, supplemented with cow manure and leaf compost. Using microcrystalline cellulose and forestry cellulose fibers with the less concentrated AMD, high sulfate reduction rates (73 mg/L-d and 58.2 mg/L-d, respectively) were achieved. Correspondingly, iron concentrations were reduced by 69% and 86.6%. Based on their higher sulfate reducing capacity, cellulose fibers obtained as fiber boards from a local kraft pulp mill were selected for treating a synthetic AMD with a high copper concentration (273 mg/L) and pH 4.94. In batch culture, low sulfate reducing activity (13.10 mg/L-d) was only observed at the highest substrate/AMD ratio (0.5:10) tested. Results show that the use of forestry cellulose fibers in reactive mixtures supplemented with inoculum could be an alternative for optimization of diffusive exchange reactors for AMD treatment.

摘要

通过在新型反应器设计(如扩散交换反应器)中使用精细有机底物,可以提高被动生化反应器处理酸性矿山排水(AMD)的性能。这项工作评估了有机混合物中精细纤维素成分以及接种物富集对三种类型合成AMD的不连续培养中硫酸盐和金属去除的影响。所评估的纤维素底物有锯末、微晶纤维素和林业纤维素纤维,并添加了牛粪和树叶堆肥。使用微晶纤维素和林业纤维素纤维处理浓度较低的AMD时,分别实现了较高的硫酸盐还原率(分别为73 mg/L·d和58.2 mg/L·d)。相应地,铁浓度降低了69%和86.6%。基于其较高的硫酸盐还原能力,选用了从当地硫酸盐制浆厂获得的纤维板形式的纤维素纤维来处理铜浓度高(273 mg/L)且pH值为4.94的合成AMD。在分批培养中,仅在测试的最高底物/AMD比例(0.5:10)下观察到较低的硫酸盐还原活性(13.10 mg/L·d)。结果表明,在添加接种物的反应混合物中使用林业纤维素纤维可能是优化用于AMD处理的扩散交换反应器的一种替代方法。

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