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Potential use of solar energy for waste activated sludge treatment

机译:太阳能潜在地用于废物活性污泥处理

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The use of solar energy as a disintegration unit operation for waste activated sludge was tested in a pilot plant. The effect of the treatment process on chemical oxygen demand (COD), total suspended solids (TSS), settling time and filtration index was investigated in single (solar) and sequential processes (solar & biological). Solar oxidation was found to be a good sludge disintegration technology. Available solar photons were utilised to degrade the soluble organic matter and release the cell liquids. The highest COD and TSS removal efficiencies were obtained by the month of June. Sequential process efficiencies were related to accumulate solar photons, aerobic treatment time and operational condition. Sequential process resulted in COD and TSS removal efficiency of 16% and 13%, respectively. Increasing aerobic treatment time and/or mixing the oxidised sludge with fresh sludge improved COD and TSS removal efficiencies to 23% and 27%, respectively. The use of sequential processes improves the settling tendency of sludge by bio-oxidation of the released portions and eliminates protein charge effect on sludge settling.
机译:在中试工厂中测试了将太阳能用作废料活性污泥的分解装置。研究了处理过程对化学需氧量(COD),总悬浮固体(TSS),沉降时间和过滤指数的影响,该过程在单个(太阳能)过程和顺序过程(太阳能和生物过程)中进行了研究。发现太阳氧化是一种很好的污泥分解技术。利用可用的太阳光子来降解可溶性有机物并释放细胞液。到6月,COD和TSS去除效率最高。顺序过程效率与太阳光子的累积,好氧处理时间和操作条件有关。顺序过程导致COD和TSS去除效率分别为16%和13%。增加好氧处理时间和/或将氧化污泥与新鲜污泥混合可将COD和TSS去除效率分别提高到23%和27%。顺序过程的使用通过释放部分的生物氧化提高了污泥的沉降趋势,并消除了蛋白质对污泥沉降的影响。

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