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Sequencing batch biofilter granular reactor for textile wastewater treatment

机译:顺序分批生物滤池颗粒反应器处理纺织废水

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Textile wastewater is difficult to treat as it usually contains considerable amounts of different pollutants, which are often recalcitrant, toxic and inhibitory. Therefore, complex treatment schemes based on the sequence of various steps are usually required for an effective treatment. This explains why textile effluents are often treated in centralized plants and sometimes mixed with municipal wastewater. The adoption of new technologies for on-site treatment, instead, would be optimal, deeply reducing treatment costs. An innovative technology exhibiting several characteristics appropriate for the attainment of such a goal is sequencing batch biofilter granular reactor (SBBGR). To assess the suitability of this technology, two lab-scale reactors were operated, treating mixed municipal-textile wastewater and a pure textile effluent, respectively. Results have demonstrated that mixed wastewater can be successfully treated with very low hydraulic retention times (less than 10 hours). Furthermore, SBBGR shows to be an effective pre-treatment for textile wastewater for discharge into sewer systems. The economic evaluation of the process showed operative costs of 0.10 and 0.19 ∈ per m~3 of mixed wastewater and textile wastewater, respectively.
机译:纺织品废水很难处理,因为它通常包含大量不同的污染物,这些污染物通常具有顽固性,毒性和抑制性。因此,有效治疗通常需要基于各个步骤的顺序的复杂治疗方案。这解释了为什么纺织废水经常在集中式工厂中处理,有时与市政废水混合。相反,采用新技术进行现场治疗将是最佳选择,可大大降低治疗成本。展示适合实现此目标的几个特征的创新技术是分批生物滤池颗粒反应器(SBBGR)的排序。为了评估该技术的适用性,运行了两个实验室规模的反应器,分别处理混合的市政纺织品废水和纯纺织品废水。结果表明,混合废水可以以非常低的水力停留时间(少于10小时)成功处理。此外,SBBGR被证明是一种有效的纺织废水预处理方法,可排放到下水道系统中。该工艺的经济评估表明,每m〜3混合废水和纺织废水的运行成本分别为0.10和0.19ε。

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