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Enhancement of the submerged membrane electro-bioreactor (SMEBR) for nutrient removal and membrane fouling control

机译:增强浸没式膜电生物反应器(SMEBR),以去除营养和控制膜污染

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摘要

AbstractudEnhancement of the submerged membrane electro-bioreactor (SMEBR) for nutrient removal and membrane fouling controludSharif Ibeid, Ph.D.udConcordia University, 2011udA submerged membrane electro bioreactor (SMEBR) to enhance effluent quality and to reduce membrane fouling was patented by Elektorowicz et al (2009). In this system, activated sludge biological treatment, membrane filtration and electrokinetics are working together in one hybrid unit. The first objective of this research aimed to remove the major unwanted nutrients (Phosphorus and Nitrogen) in addition to the carbon in one single electro-bioreactor unit. The second objective was to investigate the relationship between the electrical input parameters (voltage gradient, current density and exposure mode) on sludge characteristics and therefore membrane fouling. This study consists of three phases: Phase 1 (batch tests), Phase 2 (lab-scale continuous flow) and Phase 3 (pilot-scale continuous flow). The results showed that the direct current (DC) field of medium current density (15 to 25 A/m2) has the potential to substantially improve sludge characteristics in terms of better dewaterability and high removal of soluble microbial products (SMP) and organic colloids. However, the electrical inputs should be selected based on the concentration of the mixed liquor suspended solids (MLSS). Subsequently, a high reduction of membrane fouling was obtained. The degree of membrane fouling reduction was ranging between 1 to 5 times based on the concentration of soluble microbial products (SMP) and the volatile suspended solids (VSS). This study demonstrated substantial removal efficiencies of nutrients up to more than 95% for carbon, 99% for phosphorus and 97% for nitrogen. However, the removal efficiency of nitrogen was found to be highly influenced by the temperature and the C/N ratio. High temperature (> 18º C) and high concentration of carbon in the influent wastewater led to a better removal efficiency of nitrogen. SMEBR showed outstanding results that make it a promising technology that can reduce fouling and remove all major macro nutrients at high efficiency in one single reactor.ud
机译:摘要 ud增强潜水膜电生物反应器(SMEBR)的养分去除和膜污染控制 udSharif Ibeid博士 ud康科迪亚大学,2011 udA潜水膜电生物反应器(SMEBR)可提高出水水质并减少膜Elektorowicz等人(2009年)获得了结垢专利。在该系统中,活性污泥的生物处理,膜过滤和电动动力学在一个混合单元中协同工作。这项研究的第一个目标旨在除去单个电子生物反应器单元中的碳以外的主要有害营养素(磷和氮)。第二个目的是研究电输入参数(电压梯度,电流密度和暴露模式)与污泥特性之间的关系,并因此对膜污染进行研究。该研究包括三个阶段:阶段1(批生产测试),阶段2(实验室规模的连续流量)和阶段3(中试规模的连续流量)。结果表明,中等电流密度(15至25 A / m2)的直流(DC)场具有更好的脱水性以及可溶微生物产物(SMP)和有机胶体的高去除率,可显着改善污泥特性。但是,应根据混合液悬浮固体(MLSS)的浓度选择电输入。随后,大大降低了膜结垢。基于可溶性微生物产物(SMP)和挥发性悬浮固体(VSS)的浓度,膜污染减少的程度为1-5倍。这项研究表明,营养物质的有效去除率对碳而言高达95%以上,对磷而言高达99%,对于氮而言高达97%。但是,发现氮的去除效率受温度和C / N比的很大影响。进水废水中的高温(>18ºC)和高浓度的碳导致更好的氮去除效率。 SMEBR显示出了出色的结果,这使其成为一种有前途的技术,它可以在一个反应​​器中减少结垢并高效去除所有主要的大量养分。

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