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Fermentation and elutriation of primary sludge: Effect of SRT on process performance

机译:初级污泥的发酵和淘洗:SRT对工艺性能的影响

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A primary sludge fermentation-elutriation pilot plant was operated using in-line and side-stream schemes. The influence of solids retention time, recirculation sludge flow-rate and solids concentration on the fermentation-elutriation process performance has been assessed in this paper. The use of high elutriation flows (12% of influent flow) improved the volatile fatty acids (VFA) concentration in the effluent stream. Suspended solids removal efficiency decreased in the primary settler when the solids retention time (SRT) was increased from 4 to 8 days. Disintegration step during hydrolysis process was pointed out as the main reason for that decrease. Maximum VFA productions were achieved at SRT between 6 and 8 days at the highest elutriation flow tested for both configurations. Propionic, butyric and valeric volatile fatty acids percentage increased when total solids sludge concentrations above 23,000 mg l~(-1) were used. Hydrogen accumulation, causing acetogenic bacteria inhibition, was indicated as the reason for C_3-C_5 fatty acids accumulation.
机译:初级污泥发酵淘析中试设备使用在线和侧流方案进行操作。本文评估了固体停留时间,再循环污泥流速和固体浓度对发酵-淘析过程性能的影响。使用高淘水流量(占进水流量的12%)可提高废水中挥发性脂肪酸(VFA)的浓度。当固体保留时间(SRT)从4天增加到8天时,初级沉降器中的悬浮物去除效率降低。指出了水解过程中的崩解步骤是该减少的主要原因。在两种配置下测试的最高淘水流量下,SRT在6到8天之间都能获得最大的VFA产量。当使用总固体污泥浓度高于23,000 mg l〜(-1)时,丙酸,丁酸和戊酸挥发性脂肪酸的百分比会增加。氢积累,导致产乙酸细菌的抑制,被指示为C_3-C_5脂肪酸积累的原因。

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