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Saline wastewater treatment by halophile-supplemented activated sludge culture in an aerated rotating biodisc contactor

机译:曝气旋转生物盘接触器中通过添加嗜盐菌的活性污泥培养法处理含盐废水

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Synthetic wastewater containing 0-10% salt (NaCl) was treated in a rotating biodisc unit operating in continuous mode. Salt tolerant, Halobacter halobium-supplemented activated sludge culture was used ill order to alleviate salt inactivation effects. Effects of important process variables suck as inclusion of Halobacter, A/Q ratio, COD lending rate, and salt concentration on the COD removal rate and efficiency, were investigated. The system performance improved with increasing A/Q ratio; however, it decreased with increasing COD lending rate and salt content. The liquid phase Ic as aerated in order to keep suspended cells active at feed COD concentrations of 5,000 mg l(-1). A mathematical model was developed to describe the system behavior Model parameters were determined by using the experimental data. Salt inhibition was Sound to be significant for salt contents larger then 3% NaCl. (C) 1998 Elsevier Science Inc. [References: 23]
机译:含有0-10%盐(NaCl)的合成废水在以连续模式运行的旋转生物盘装置中进行处理。为了减轻盐的失活作用,使用了耐盐的,添加了Halobacter卤化物的活性污泥培养物。研究了重要过程变量如盐菌,A / Q比,COD借出率和盐浓度对吸取对COD去除率和效率的影响。系统性能随着A / Q比的提高而提高;但是,随着COD放贷率和含盐量的增加而降低。为了使悬浮的细胞在进料COD浓度为5,000 mg l(-1)时保持活跃,对液相Ic进行了充气。建立了描述系统行为的数学模型,并使用实验数据确定了模型参数。对于大于3%NaCl的盐含量来说,抑制盐的作用是很重要的。 (C)1998 Elsevier Science Inc. [参考:23]

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