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首页> 外文期刊>Journal of Environmental Management >Simultaneous sludge minimization, biological phosphorous removal and membrane fouling mitigation in a novel plant layout for MBR
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Simultaneous sludge minimization, biological phosphorous removal and membrane fouling mitigation in a novel plant layout for MBR

机译:在MBR的新型工厂布局中同时减少污泥,生物除磷和减少膜结垢

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摘要

The integration of one anaerobic reactor in the mainstream (AMSR) of a pre-denitritication-MBR was evaluated with the aim to achieve simultaneous sludge minimization and phosphorous removal. The excess sludge production was reduced by 64% when the AMSR was operated under 8 h of hydraulic retention time (HRT). The highest nutrients removal performances referred to organic carbon (98%), nitrogen (90%) and phosphorous (97%) were obtained under 8 h of HRT. In contrast, prolonged anaerobic-endogenous conditions were found to be detrimental for all nutrients removal performances. Similarly, the lowest membrane fouling tendency (FR = 0.65 • 10~(11) m~(-1) d~(-1)) was achieved under 8 h of HRT, whereas it significantly increased under higher HRT. The highest polyphosphate accumulating organisms kinetics were achieved under HRT of 8 h, showing very high exogenous P-release (46.67 mgPO_(4-)P gVSS~(-1) h~(-1)) and P-uptake rates (48.6 mgPO_(4-)P gVSS~(-1) h~(-1)), as well as a not negligible P-release rate under endogenous conditions at low COD/P ratio (≈1).
机译:为了实现污泥最小化和除磷的同时,对一个预厌氧-MBR的主流(AMSR)中集成了一个厌氧反应器进行了评估。当AMSR在8 h的水力停留时间(HRT)下运行时,多余的污泥产生减少了64%。在HRT的8小时内,获得了最高的养分去除性能,分别是有机碳(98%),氮(90%)和磷(97%)。相反,长期的厌氧-内源条件被发现对于所有营养去除性能都是有害的。同样,在HRT的8 h内,膜污染趋势最低(FR = 0.65•10〜(11)m〜(-1)d〜(-1)),而在更高的HRT下明显增加。 HRT在8 h时达到最高的聚磷酸盐累积生物动力学,显示出很高的外源P释放(46.67 mgPO_(4-)P gVSS〜(-1)h〜(-1))和P吸收率(48.6 mgPO_ (4-)P gVSS〜(-1)h〜(-1)),以及内源条件下低COD / P比(≈1)时P释放速率不可忽略。

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