Time Series Analysis of the TSS, TDS, BOD, COD, and Turbidity of Waste Water in a Pre-filtration Chambers of Enhanced Household Septic Tank

Okonkwo Victor O, Mbachu Victor M, Bosah Nneka C, Mbachu Williams A, Alukwe Uche J
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Abstract

Beyond copious production of biogas, household septic tanks present largely untapped potentials for waste water recycling, especially in area with difficulty in getting sustainable supply of water and energy. The black water (the faeces and urine from the toilets) and grey water (the waste water from the bathrooms, kitchen and laundry) in the septic tank can be harnessed for biogas production and could be recycled for use in irrigation and other domestic uses. In this work, an enhanced septic tank system was designed and implemented in the preliminary treatment of domestic waste water. From the results obtained the system has the ability to significantly reduce the TDS, turbidity, and BOD of a given sample prior to filtration. The COD and TDS of the sample decreased and increased with time due to pressure buildup. This informs the timing for fluid transfer into the next phase of the recycling – sand filtration. Optimization of the design and operations of the new enhanced septic tank system is important in the actualization of the goal of having efficient bio-waste recycling and conversion.
增强型家用化粪池预滤池废水TSS、TDS、BOD、COD及浊度的时间序列分析
除了大量生产沼气之外,家用化粪池在废水循环利用方面具有很大未开发的潜力,特别是在难以获得可持续水和能源供应的地区。化粪池中的黑水(厕所的粪便和尿液)和灰水(浴室、厨房和洗衣房的废水)可以用来生产沼气,并可以回收用于灌溉和其他家庭用途。本研究设计并实施了一套强化化粪池系统,用于生活污水的初步处理。从得到的结果来看,该系统能够显著降低过滤前给定样品的TDS、浊度和BOD。由于压力的增加,样品的COD和TDS随时间的增加而减小。这就决定了将流体转移到回收的下一阶段——砂过滤的时间。优化新型增强型化粪池系统的设计和运行对实现高效的生物废物回收和转化目标具有重要意义。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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