对生活污水处理和回用的初级、常规活性污泥、SBR和MBBR装置进行分阶段设计

S. Aziz, Imad A. Omar, M. Bashir, A. Mojiri
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引用次数: 6

摘要

迄今为止,伊拉克库尔德斯坦地区埃尔比勒市没有中央污水处理厂。因此,在埃尔比勒市的一些地区,未经处理的WW被处理到环境中,有时直接用于灌溉。将未经处理的废水排放到自然环境中并用于灌溉,这给人类和环境带来了问题。本研究的目的是研究废水的特点、一级和不同二级处理装置的设计以及废水的资源化利用。采集灰城-埃尔比勒市WW原料样品,分析其总悬浮物(TSS)、总溶解固形物、总挥发性和非挥发性固形物、总酸度、总碱度、总硬度、5天生化需氧量(BOD5)、化学需氧量(COD)、生物降解比(BOD5/COD)、浊度等23项质量参数。结果表明,废水处理中BOD5、TSS等指标均超标。介绍了一级和二级处理(生物处理)工艺的设计和计算。设计了筛分、砂室、流量均衡池等一级处理单元,并进行了详细计算。采用常规活性污泥法(CAS)、序批式反应器(SBR)和移动床生物膜反应器(MBBR)对废水进行生物处理。结果表明,MBBR是生物处理WW的最佳经济技术。处理后的污水适合重复利用,在Ashty city校园内没有限制用于灌溉绿地。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Stage by stage design for primary, conventional activated sludge, SBR and MBBR units for residential wastewater treatment and reusing
To date, there is no central wastewater (WW) treatment plant in Erbil city, Kurdistan region, Iraq. Therefore, raw WW disposes to the environment and sometimes it used directly for irrigation in some areas of Erbil city. Disposal of the untreated WW to the natural environment and using for irrigation it causes problems for the people and the environment. The aims of the current work were to study the characteristics, design of primary and different secondary treatment units and reusing of produced WW. Raw WW samples from Ashty city-Erbil city were collected and analyzed for twenty three quality parameters such as Total Suspended Solids (TSS), total dissolved solids, total volatile and non-volatile solids, total acidity, total alkalinity, total hardness, five-day Biochemical Oxygen Demand (BOD5), Chemical Oxygen Demand (COD), biodegradability ratio (BOD5/COD), turbidity, etc. Results revealed that some parameters such as BOD5 and TSS were exceeded the standards for disposal of WW. Design and calculations for primary and secondary treatment (biological treatment) processes were presented. Primary treatment units such as screening, grit chamber, and flow equalization tank were designed and detailed calculation were illustrated. While, Conventional Activated Sludge (CAS), Sequencing Batch Reactor (SBR) and Moving Bed Biofilm Reactors (MBBR) were applied for the biological treatment of WW. Results revealed that MBBR was the best and economic technique for the biological treatment of WW. Treated WW is suitable for reusing and there is no restriction on use for irrigation of green areas inside Ashty city campus.
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