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Comprehensive Influence of Salinity and Organic Load on Anaerobic Sequencing Batch Biofilm Reactor (ASBBR) Treating Mustard Tuber Wastewater

机译:盐度和有机载荷对厌氧测序分批生物膜反应器(ASBBR)治疗芥末块茎废水的综合影响

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According to the characteristics of high concentration of organic matters and high biodegradability, a new and efficient anaerobic sequencing batch biofilm reactor (ASBBR) was chosen as an anaerobic pretreatment unit to treat mustard tuber wastewater. As temperature, pH, organic load, salinity and other factors affect the anaerobic biological treatment system significantly, in order to reveal the comprehensive influence of salinity and organic load on COD removal, an orthogonal experiment was investigated when temperature, pH and other factors were controlled in constant. Test results show that: both salinity and organic load have significant influences on effluent COD removal rate of ASBBR reactor treating mustard wastewater, and the impact of salinity is more obvious than organic load. But the interact effects of salinity and organic load are not significant. The linear regression equation within the effluent COD of ASBBR reactor, salinity ¦Ñ and organic load Nv was obtained as: COD=-686.17+353.33Nv+0.075¦Ñ. According to the regression equation, organic load under two different conditions can be predicted respectively. One condition is the ASBBR reactor effluent discharged directly into sewer and treated together with municipal wastewater. Another condition is the effluent discharged directly into natural water body after comprehensive treatment. Also the guidance role of the equation in the actual design and operation of ASBBR reactor was been discussed.
机译:根据高浓度的有机物质和高生物降解性的特点,选择一种新的和高效的厌氧测序分批生物膜反应器(ASBBR)作为一种厌氧预处理单元,以治疗芥末块茎废水。随着温度,pH,有机载荷,盐度等因素显着影响厌氧生物处理系统,为了揭示盐度的综合影响和有机载荷对COD去除的影响,当温度,pH和其他因素被控制时研究了正交实验常量。测试结果表明:盐度和有机载荷均对Asbbr反应器处理芥菜废水的废水COD去除率的显着影响,并且盐度的影响比有机载荷更明显。但盐度和有机载荷的相互作用不显着。 ASBBR反应器流出鳕鱼中的线性回归方程,盐度¦Ñ获得有机载荷NV为:COD = -686.17 + 353.33nV + 0.075¦Ñ根据回归方程,可以分别预测两个不同条件下的有机载荷。一个条件是ASBBR反应器流出物直接排放到下水道中并与市政废水一起处理。另一种条件是在综合治疗后直接排出到天然水体中的流出物。还讨论了等式在ASBBR反应器的实际设计和操作中的指导作用。

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