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Perspectives on the fate of micropollutants in mainstream anaerobic wastewater treatment

机译:主流厌氧废水处理中微污染物命运的观点

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Mainstream anaerobic treatment technologies are a viable alternative to conventional aerobic treatment to recover resources and improve process sustainability. However, resource recovery efforts must be coordinated with efforts to abate environmental risks associated with micropollutants (e.g. pharmaceuticals). The microbial and physical mechanisms of micropollutant removal in mainstream anaerobic systems remain poorly understood. Recent work suggests that anaerobic systems may enhance removal of compounds typically persistent during aerobic wastewater treatment, such as sulfamethoxazole, trimethoprim, clozapine, triclocarban, and amitriptyline. Process enhancements such as using sorptive materials or multi-stage treatment may further improve system-wide micropollutant removal. A better understanding of removal mechanisms in mainstream anaerobic treatment could reduce environmental pervasiveness of recalcitrant contaminants, while concomitantly advancing resource recovery.
机译:主流Anaerobic治疗技术是常规有氧治疗的可行替代方案,以回收资源,提高流程可持续性。 然而,必须协调资源恢复努力,以努力减轻与微污染物相关的环境风险(例如药品)。 主流Anaerobic系统中微胶体去除的微生物和物理机制仍然明白很差。 最近的工作表明,厌氧系统可以增强通常在有氧废水处理期间持续的化合物的除去,例如磺胺甲恶唑,三甲双胍,氯氮平,三氯萘和阿米替林。 处理增强功能,例如使用吸附材料或多级处理可以进一步提高系统宽的微胶体去除。 更好地了解主流厌氧治疗中的去除机制可以降低顽固污染物的环境渗透,同时伴随着资源恢复。

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