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Laboratory studies on enhancement of granulation in the anaerobic sequencing batch reactor

机译:厌氧顺序分批反应器中增强造粒的室内研究

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The phenomenon of granulation was studied in anaerobic sequencing batch reactors (ASBRs) treating a synthetic sucrose wastewater, The objective was to study methods of minimizing the time typically required for start-up of high rate anaerobic processes, such as the ASBR, when utilizing biomass from typical anaerobic digesters, More specifically, the goal was to develop granular biomass soon after initial start-up of the ASBR in order to decrease the overall time required to achieve high rate anaerobic treatment, Laboratory-scale ASBRs were seeded with anaerobically digested municipal biosolids and operated until granulation was observed, Granule development was measured by determination of the average particle diameter of a representative sample of biosolids from the ASBRs. Cationic polymer was added to the test ASBR to enhance rapid granule development and to aid in start-up. Cationic polymer addition reduced the time required to form granules by approximately 75% compared to an un-enhanced control ASBR.
机译:在处理合成蔗糖废水的厌氧排序间歇反应器(ASBR)中研究了颗粒化现象,目的是研究使利用生物质的高速率厌氧工艺(例如ASBR)启动通常所需的时间最小化的方法更具体地说,目标是在ASBR初次启动后立即开发颗粒状生物质,以减少实现高速率厌氧处理所需的总时间。实验室规模的ASBR接种了厌氧消化的市政生物固体并操作直至观察到造粒,通过确定来自ASBR的代表性生物固体样品的平均粒径来测量颗粒的发展。将阳离子聚合物添加到测试ASBR中,以增强颗粒的快速发育并有助于启动。与未增强的对照ASBR相比,加入阳离子聚合物可将形成颗粒所需的时间减少约75%。

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