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Recovery of elemental sulfur with a novel integrated bioelectrochemical system with an electrochemical cell

机译:使用带有电化学电池的新型集成生物电化学系统回收元素硫

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Several industrial activities produce wastewater with high sulfate content that can cause significant environmental issues. Although bioelectrochemical systems (BESs) have recently been studied for the treatment of sulfate contained in this wastewater, the recovery of elemental sulfur with BESs is still in its beginnings. This work proposes a new reactor configuration named BES-EC, consisting of the coupling of a BES with an electrochemical cell (EC), to treat this type of wastewater and recover elemental sulfur. The reactor consisted of four electrodes: i) an abiotic anode, ii) a biocathode for the autotrophic sulfate reduction, an anode of an electrochemical cell (EC) for the partial oxidation of sulfide to elemental sulfur (the biocathode and the EC anode were placed in the same chamber) and iv) an abiotic EC cathode. Several cathode potentials and sulfate loads were tested, obtaining high sulfate removal rates (up to 888 mg SO(4)(2-)SL(-1)d(-1) at -0.9 V vs. SHE with a specific energy consumption of 9.18 +/- 0.80 kWh kg(-1) SO42--S). Exceptionally high theoretical elemental sulfur production rates (up to 498 mg S-0-S L-1 d(-1)) were achieved with the EC controlled at a current density of 2.5 A m(-2). Electron recovery around 80% was observed throughout most of the operation of the integrated system. In addition, short experiments were performed at different current densities, observing that sulfate removal did not increase proportionally to the higher applied current density. However, when the BES was controlled at 30 A m(-2) and the EC at 7.5 A m(-2) , the proportion of elemental sulfur produced corresponded to 92.9 +/- 1.9% of all sulfate removed. (C) 2019 Published by Elsevier B.V.
机译:几种工业活动产生的硫酸盐含量很高,会引起严重的环境问题。尽管最近已经研究了生物电化学系统(BESs)来处理废水中的硫酸盐,但是用BESs回收元素硫仍处于起步阶段。这项工作提出了一种名为BES-EC的新型反应器配置,其中包括将BES与电化学电池(EC)耦合,以处理此类废水并回收元素硫。反应器由四个电极组成:i)一个非生物阳极,ii)一个用于自养硫酸盐还原的生物阴极,一个用于将硫化物部分氧化成元素硫的电化学电池(EC)的阳极(放置了生物阴极和EC阳极) iv)非生物EC阴极。测试了几个阴极电势和硫酸盐负荷,获得了较高的硫酸盐去除率(相对于SHE,在-0.9 V时高达888 mg SO(4)(2-)SL(-1)d(-1),单位能耗为9.18 +/- 0.80 kWh kg(-1)SO42--S)。通过将EC控制在2.5 A m(-2)的电流密度下,可以实现极高的理论元素硫产生率(最高498 mg S-0-S L-1 d(-1))。在整个集成系统的大多数操作过程中,观察到约80%的电子回收率。另外,在不同的电流密度下进行了简短的实验,观察到硫酸盐的去除并没有与更高的施加电流密度成比例地增加。但是,当BES控制在30 A m(-2)且EC控制在7.5 A m(-2)时,生成的元素硫的比例相当于所有硫酸盐去除量的92.9 +/- 1.9%。 (C)2019由Elsevier B.V.发布

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