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A microbial fuel cell configured for the remediation of recalcitrant pollutants in soil environment

机译:一种微生物燃料电池,用于修复土壤环境中的醋酸醋酸污染物

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摘要

A pristine soil environment supports a healthy soil biodiversity, which is often polluted with recalcitrant compounds. The bioelectrochemical remediation of the contaminated soils using bioelectrochemical systems (BESs) is gaining significant attention with respect to the restoration of the soil ecosystem. In this direction, a microbial fuel cell (MFC, an application of BES), was employed for the treatment of total petroleum hydrocarbons (TPHs) in a soil microenvironment at three ranges of pollution (loading conditions - 320, 590 and 840 mg TPH per L). TPHs degraded effectively in the soil-electrode vicinity in the range of 158 mg TPHR per L (320 mg TPH per L) and 356 mg TPHR per L (840 mg TPH per L). The study also demosntrated a maximum bioelectrogenesis of 286.7 mW m(-2) (448 mV at 100 omega) at the highest TPH loading concentration studied (840 mg TPH per L). The conditions prevailing in the soil MFC also facilitated the removal of sulfates (114 mg SO42- per L; 62.64%) and the removal of total dissolved solids (910 mg TDS per L, 12.08%) at an 840 mg TPH per L loading condition. The pH of the outlet wastewater prevailing in the mild alkaline range of 7.6 and 8.4, along with improved sulfate and TPH removal in the respective conditions suggested suitable conditions for sulfate-reducing bacteria (SRB). This study also signified the sustainability of the process for the effective treatment of hydrocarbon contaminated soil that also generates green energy.
机译:原始的土壤环境支持健康的土壤生物多样性,其通常用醋酸纯化合物污染。使用生物电化学系统(BESS)的污染土壤的生物电化学修复在土壤生态系统的恢复方面取得了显着的关注。在这种方向上,使用微生物燃料电池(MFC,BES),用于在土壤微环境下在污染范围(装载条件 - 320,590和840mg TPH的土壤微环境中的总石油烃(TPH)治疗l)。 TPHS在土壤 - 电极附近有效地降解了158mg TPHR(每1小时320mg TPH)和356mg TPHR(每1小时840mg TPH)。该研究在研究的最高TPH加载浓度(每1小时为840mg TPH),研究还将286.7mWm(-2)(-2)(在100Ω)的最大生物电体发生在286.7mW mW m(-2)(448mV)中(每1小时840mg TPH)。土壤MFC中普遍的条件还促进了除去硫酸盐(114mg SO42- / L; 62.64%),并在每L负载条件下以840mg TPH去除总溶解固体(910mg TDS,12.08%) 。在7.6和8.4的温和碱度范围内的出口废水的pH在各种条件下以及改善的硫酸盐和TPH去除,表明还原细菌(SRB)的合适条件。本研究还意致意味着有效治疗碳氢化合物污染土壤的过程的可持续性,也产生了绿色能量。

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    《RSC Advances》 |2019年第71期|共10页
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  • 正文语种 eng
  • 中图分类 化学;
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