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A modelling approach to assess the long-term stability of a novel microbial/electrochemical system for the treatment of acid mine drainage

机译:评估新型微生物/电化学系统的长期稳定性酸性矿井排水的建模方法

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摘要

Microbial electrochemical processes have potential to remediate acid mine drainage (AMD) wastewaters which are highly acidic and rich in sulfate and heavy metals, without the need for extensive chemical dosing. In this manuscript, a novel hybrid microbial/electrochemical remediation process which uses a 3-reactor system - a precipitation vessel, an electrochemical reactor and a microbial electrochemical reactor with a sulfate-reducing biocathode - was modelled. To evaluate the long-term operability of this system, a dynamic model for the fluxes of 140 different ionic species was developed and calibrated using laboratory-scale experimental data. The model identified that when the reactors are operating in the desired state, the coulombic efficiency of sulfate removal from AMD is high (91%). Modelling also identified that a periodic electrolyte purge is required to prevent the build-up of Cl- ions in the microbial electrochemical reactor. The model furthermore studied the fate of sulfate and carbon in the system. For sulfate, it was found that only 29% can be converted into elemental sulfur, with the rest complexating with metals in the precipitation vessel. Finally, the model shows that the flux of inorganic carbon under the current operational strategy is insufficient to maintain the autotrophic sulfate-reducing biomass. The modelling approach demonstrates that a change in system operational strategies plus close monitoring of overlooked ionic species (such as Cl- and HCO3-) are key towards the scaling-up of this technology.
机译:微生物电化学过程具有潜在的补救这是高度酸性和富含硫酸盐和重金属的酸矿山排水(AMD)的废水,而不需要大量的化学剂量。在该手稿,一个新颖的混合微生物/电化学修复过程,其采用了3反应器系统 - 沉淀容器中,电化学反应器,并用硫酸盐还原生物阴极微生物电化学反应器 - 进行建模。为了评估该系统的长期操作性,对于140种不同的离子物质的通量的动态模型被开发并使用实验室规模的实验数据进行校准。该模型确定的是,当反应器在所需的状态下运行时,硫酸盐除去从AMD库仑效率是高的(91%)。建模还确定了一个周期性的电解质吹扫需要防止积聚Cl-离子的在微生物电化学反应器。该模型还研究了硫酸和碳的命运在系统中。为硫酸根,人们发现,只有29%的可被转化成元素硫,其余与所述沉淀容器金属complexating。最后,该模型表明,无机碳的下当前操作策略的磁通不足以维持自养硫酸盐还原生物质。建模方法表明,在系统运行策略的变化以及密切监测忽视的离子种类(如Cl-和HCO3-)是朝着规模的扩大这一技术的关键。

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  • 来源
    《RSC Advances》 |2018年第33期|共8页
  • 作者单位

    Univ Queensland Adv Water Management Ctr St Lucia Qld 4072 Australia;

    Univ Queensland Adv Water Management Ctr St Lucia Qld 4072 Australia;

    Univ Queensland Adv Water Management Ctr St Lucia Qld 4072 Australia;

    Univ Queensland Adv Water Management Ctr St Lucia Qld 4072 Australia;

    Univ Queensland Adv Water Management Ctr St Lucia Qld 4072 Australia;

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  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类 化学;
  • 关键词

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