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Integrating anaerobic processes into wastewater treatment

机译:将厌氧工艺整合到废水处理中

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Over the past decade, the concept of anaerobic processes for the treatment of low temperature domestic wastewater has been introduced. This paper uses a developed wastewater flowsheet model and experimental data from several pilot scale studies to establish the impact of integrating anaerobic process into the wastewater flowsheet. The results demonstrate that, by integrating an expanded granular sludge blanket reactor to treat settled wastewater upstream of the activated sludge process, an immediate reduction in imported electricity of 62.5% may be achieved for a treated flow of c. 10,000 m3 d ~(-1). This proposed modification to the flowsheet offers potential synergies with novel unit processes including physico-chemical ammonia removal and dissolved methane recovery. Incorporating either of these unit operations can potentially further improve the flowsheet net energy balance to between +0.037 and +0.078 kWh m~(-3) of produced water. The impact of these secondary unit operations is significant as it is this contribution to the net energy balance that facilitates the shift from energy negative to energy positive wastewater treatment.
机译:在过去的十年中,引入了厌氧工艺来处理低温生活废水的概念。本文使用已开发的废水流模型和来自多个中试规模研究的实验数据来建立将厌氧工艺集成到废水流中的影响。结果表明,通过集成一个扩展的颗粒污泥毯式反应器来处理活性污泥工艺上游的沉降废水,对于处理过的c流量,进口电力可立即减少62.5%。 10,000立方米d〜(-1)。提议的对流程的修改可提供与新型单元工艺(包括物理化学氨去除和溶解甲烷回收)的潜在协同作用。结合这些单元操作中的任何一个都可以潜在地将流程的净能量平衡进一步提高到采出水的+0.037至+0.078 kWh m〜(-3)之间。这些次级单元操作的影响是巨大的,因为正是这种对净能量平衡的贡献促进了从负能量到正能量废水处理的转变。

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