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Pilot-Scale Sludge Treatment by a Force-Fed Serpentine Plug-Flow Reactor (SPFR)

机译:用力筛选的蛇形塞流反应器(SPFR)的试验级污泥处理

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Anaerobic digestion is among the oldest and most commonly used biological forms for both wastewater treatment and sludge treatment. With the relatively long retention time (15-30 days generally), there is interest in developing a high-rate and more economic anaerobic digester. Development of such a digester has applications in coastal communities, municipal wastewater treatment plants and coastal-based industries that are the essential economic fabric of the coastal Gulf Coast. The objective of this study is to develop and evaluate the operation and viability of an economic and high efficiency small-scale anaerobic digester that utilizes a force-fed fast rate digestion process for treatment of wastewater and sludge with gas production under a range of flow conditions. The warm climate in Louisiana allows the potential that the digester does not require heating. The flow pattern achieved by the specific configuration and gas production provides enough mixing for the digestion process, and consequently, no need for further costly mixing facilities. And the most important is that the plug flow automatically partially separates the whole anaerobic digestion, resulting in a multiple phase process. This design also has an advantage of relatively low hydraulic retention time, leading to substantial savings in digester capacity. A 935-gallon digester has been loaded at a steady state rate of 500-gallons per day of primary wastewater sludge at Center Wastewater Treatment Plant, Baton Rouge, Louisiana. The results indicated that COD, TSS and VSS reductions were significant for a 48-hour residence time without any heating, temperature control or pH control. The mean removal efficiency of total COD, TSS and VSS were 67%, 84%, and 80%, respectively. Data showed that temperatures of about 70% of the study period were in the optimal range of mesophilic digestion, while even during in the other days, the effluent quality was still tolerable to the primary clarifiers. Although literature suggests that the supplement of a carbon source would substantially improve the anaerobic digestion, the presence of sugar in this study, on the contrary, deteriorated the bioprocess. The high price of natural gas makes the digester’s ability to produce methane as valuable of a by-product as its primary design objectives of wastewater/sludge treatment. The digester design can also be modified to treat a variety of organic-rich waste streams from coastal industries and communities for its simplicity and robust behavior.
机译:厌氧消化是废水处理和污泥处理的最古老,最常用的生物形式之一。通过相对较长的保留时间(一般15-30天),有兴趣开发高速率和更经济的厌食式消化器。这种挖掘机的发展在沿海社区,市污水处理厂和基于沿海湾海岸的基本经济面料的应用。本研究的目的是开发和评估经济和高效率小型厌氧蒸煮器的运行和可行性,该挖掘机利用了一种用于在一系列流动条件下处理废水和气体产量的废水和污泥。路易斯安那州温暖的气候允许蒸煮器不需要加热。通过特定配置和气体产生实现的流动模式为消化过程提供了足够的混合,因此不需要进一步昂贵的混合设施。最重要的是,塞流动自动部分分离整个厌氧消化,从而产生多相过程。这种设计还具有相对较低的液压保留时间的优势,导致消化器容量的显着节省。 935加仑的消化器以500加仑的500加仑的主要废水污泥在中锋废水处理厂,巴登胭脂,路易斯安那州。结果表明,在没有任何加热,温度控制或pH控制的情况下,COD,TSS和VSS减少对于48小时的停留时间很大。总鳕鱼,TSS和VSS的平均去除效率分别为67%,84%和80%。数据表明,约70%的研究期的温度在嗜苯胺消化的最佳范围内,同时甚至在另一天期间,流出物质仍然仍然可容忍于初级澄清剂。虽然文献表明,碳源的补充将大大改善厌氧消化,但这项研究中的糖存在,相反,生物过程劣化。天然气的高价格使得挖掘机能够生产甲烷的能力,作为副产物的宝贵能力,作为其污水/污泥处理的主要设计目标。蒸煮器设计也可以修改,以治疗来自沿海行业和社区的各种丰富的废物流,以实现其简单性和鲁棒的行为。

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