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Sludge accumulation and conversion to methane in a septic tank treating domestic wastewater or black water

机译:污泥在处理生活污水或黑水的化粪池中积累并转化为甲烷

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摘要

Although the septic tank is the most applied on-site system for wastewater pre-treatment, limited research has been performed to determine sludge accumulation and biogas production in the tank. Therefore a dynamic mathematical model based on the Anaerobic Digestion Model No. 1 (ADM1) was developed for anaerobic digestion of the accumulated sludge in a septic tank treating domestic wastewater or black water. The results showed that influent chemical oxygen demand (COD) concentration and hydraulic retention time (HRT) of the tank mainly control the filling time with sludge, while operational temperature governs characteristics of the accumulated sludge and conversion to methane. For obtaining stable sludge and high conversion, the tank needs to be operated for a period more than a year without sludge wasting. Maximum conversion to methane in the tank is about 50 and 60% for domestic wastewater and black water, respectively. The required period for sludge wasting depends on the influent COD concentration and the HRT, while characteristics of the wasted sludge are affected by operational temperature followed by the influent COD concentration and the HRT. Sludge production from the tank ranges between 0.19 to 0.22 and 0.13 to 0.15 L/(person.d), for the domestic wastewater and black water, respectively.
机译:尽管化粪池是用于废水预处理的最常用的现场系统,但为确定污泥在池中的积聚和沼气的生产进行了有限的研究。因此,开发了基于1号厌氧消化模型(ADM1)的动态数学模型,用于厌氧消化处理生活污水或黑水的化粪池中累积的污泥。结果表明,进水池的化学需氧量(COD)浓度和水力停留时间(HRT)主要控制污泥的填充时间,而工作温度控制着污泥的累积和转化为甲烷的特性。为了获得稳定的污泥和高转化率,必须将储罐运行一年以上,而不会浪费污泥。对于生活废水和黑水,水箱中甲烷的最大转化率分别约为50%和60%。污泥浪费所需的时间取决于进水的COD浓度和HRT,而浪费的污泥的特性受操作温度以及进水COD浓度和HRT的影响。对于生活废水和黑水,水箱产生的污泥分别在0.19至0.22和0.13至0.15 L /(人.d)之间。

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