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Treatment of Sewage Water Using Microalgae in Combination with Membrane Bioreactor: An Eco-Friendly Approach

机译:用微藻与膜生物反应器组合使用微藻治疗污水 - 一种环保方法

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Background: The treatment of sewage water is an important problem faced by many cities across India. Conventional methods are costly and require high space, therefore, there is a need to develop an eco-friendly and cost effective technique for the treatment of sewage water.Methods: The present work deals with the treatment of sewage water using three different microalgae cultures in combination with the Membrane Bioreactor (MBR). Open raceway pond was used to grow microalgae (three species) in presence of sunlight (12:12 hlight-dark cycle) with continuous monitoring of nutrients and organic matter depletion for 5 days. Algal growth was measured using hemocytometer. Nutrients and organic matter uptake was measured using standard APHA & TOC analyzer respectively. The grownalgal biomass was dewatered using three different membrane modules.Results: The effect of various operating parameters such as the concentration of microalgae, types of membranes (viz. ceramic, polysulfone and polyacrylonitrile (PAN)), and transmembrane pressure, on the quality of treated water was investigated in detail. During the operation, various process parameters such as nutrients uptake, pH and organic matters were monitored. It was found that at higher initial biomass concentration (5xl06 cells/ml), the rate of the nutrients uptake was maximum for all the three cultures, and PAN membrane gave the highest permeate flux with less fouling compared to other membranes.Conclusion: Efficient biomass production and high quality permeate water was achieved together by the combination of microalgae and membrane bioreactor system.
机译:背景:污水的处理是面对印度的许多城市的一个重要问题。传统的方法是昂贵的,并且需要高的空间,因此,有必要开发一种环保和成本效益的技术用于污水water.Methods治疗:使用三种不同的微藻培养与污水处理目前的工作涉及与膜生物反应器(MBR)的组合。开管道水塘是用来生长在太阳光的存在下与连续监测的营养物质和有机物质耗尽微藻(3种)(12:12 hlight - 暗循环)5天。藻类生长,使用血球计数器测量。营养物和有机物质的吸收分别使用标准APHA&TOC分析仪测得。该grownalgal生物质使用三种不同的膜modules.Results脱水:各种操作参数的影响,如微藻的浓度,类型的膜(即陶瓷,聚砜和聚丙烯腈(PAN)。),和跨膜压力,对品质的处理过的水在详细研究。在操作过程中,各种工艺参数,如营养物质摄取,pH和有机物进行了监测。结果发现,在更高的初始生物量浓度(5×10 6个细胞/ ml),所述的营养物质的速率摄取最大为所有三个培养物,和PAN膜​​给予最高渗透通量具有较少结垢相比其他membranes.Conclusion:高效生物质生产和高品质的渗透水通过微藻类和膜生物反应器系统的组合一起实现。

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