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Simultaneous adsorption and biodegradation processes in sequencing batch reactor (SBR) for treating copper and cadmium-containing wastewater

机译:分批间歇反应器(SBR)中同时吸附和生物降解工艺处理含铜和镉的废水

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The application of simultaneous adsorption and biodegradation processes in the same reactor is known to be effective in the removal of both biodegradable and non-biodegradable contaminants in various kinds of wastewater. The objective of this study is to evaluate the efficacy of the two processes under sequencing batch reactor (SBR) operation in treating copper and cadmium-containing synthetic wastewater with powdered activated carbon (PAC) as the adsorbent. The SBR systems were operated with FILL, REACT, SETTLE, DRAW and IDLE periods in the ratio of 0.5:3.5:1.0:0.75:0.25 for a cycle time of 6h. In the presence of 10mg/L Cu(II) arid 30mg/L Cd(II), respectively, the average COD removal efficiencies were above 85% with the PAC dosage in the influent solution at 143 mg/L compared to around 60% without PAC addition. Copper(II) was found to exert a more pronounced inhibitory effect on the bioactivity of the microorganisms compared to Cd(II). It was observed that the combined presence of Cu(II) and Cd(II) did not exert synergistic effects on the microorganisms. Kinetic study conducted for the REACT period showed that the addition of PAC had minimized the inhibitory effect of the heavy metals on the bioactivity of microorganisms.
机译:已知在同一反应器中同时进行吸附和生物降解过程可有效去除各种废水中可生物降解和不可生物降解的污染物。这项研究的目的是评估在顺序分批反应器(SBR)操作下使用粉状活性炭(PAC)作为吸附剂处理含铜和镉的合成废水的两种方法的效率。 SBR系统以FILL,REACT,SETTLE,DRAW和IDLE周期的比例为0.5:3.5:1.0:0.75:0.25进行操作,周期为6小时。在分别有10mg / L的Cu(II)和30mg / L的Cd(II)的情况下,进水溶液中的PAC剂量为143 mg / L时,平均COD去除效率高于85%,而不含PAC的情况下约为60% PAC添加。与Cd(II)相比,发现铜(II)对微生物的生物活性具有更明显的抑制作用。观察到,Cu(II)和Cd(II)的组合存在对微生物没有协同作用。在REACT期间进行的动力学研究表明,PAC的添加已使重金属对微生物生物活性的抑制作用最小化。

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