Lopez Zavala Miguel Angel, Funamizu Naoyuki, Takakuwa Tetsuo
Department of Environmental Engineering, Graduate School of Engineering, Hokkaido University, Kita-13, Nishi-8, Kita-ku, Sapporo 060-8628, Japan.
Water Res. 2004 Mar;38(5):1327-39. doi: 10.1016/j.watres.2003.10.028.
Composting in the bio-toilet system is a continuous thermophilic-aerobic biodegradation process. Unlike to the traditional composting systems, biodegradation rates of organic matter are very important because feces are daily added into the composting reactor of the bio-toilet and an accelerated decomposition is aimed. The models developed for conventional composting processes include simple formulations of biodegradation kinetics and deal mainly with energy and water balances. Therefore, formulation of kinetics that can reasonably describe the biodegradation process in the bio-toilet system is required for better modeling predictions. In this work, a bio-kinetic model was introduced to describe the aerobic biodegradation of feces in the bio-toilet system. This model includes three processes for carbonaceous material degradation and is prepared by using the activated sludge modeling techniques and formulations. Stoichiometric parameters were adopted from literature on activated sludge processes. Kinetic parameters were estimated by conducting batch tests for several organic loadings and by using respirometry, curve-fitting techniques, and sensitivity analysis. Feasibility and applicability of these parameters were assessed by conducting feces intermittent-feeding tests and by simulating the experimental respiration rates. Model, stoichiometric and kinetic parameters proved to be affordable for describing the biodegradation of feces in the bio-toilet system.
生物厕所系统中的堆肥是一个持续的嗜热好氧生物降解过程。与传统堆肥系统不同,由于粪便每天都被添加到生物厕所的堆肥反应器中,且目标是加速分解,所以有机物的生物降解速率非常重要。为传统堆肥过程开发的模型包括简单的生物降解动力学公式,主要处理能量和水平衡。因此,需要能够合理描述生物厕所系统中生物降解过程的动力学公式,以进行更好的模型预测。在这项工作中,引入了一个生物动力学模型来描述生物厕所系统中粪便的好氧生物降解。该模型包括三个含碳物质降解过程,采用活性污泥建模技术和公式编制而成。化学计量参数取自活性污泥工艺的文献。通过对几种有机负荷进行批次试验,并使用呼吸测定法、曲线拟合技术和敏感性分析来估计动力学参数。通过进行粪便间歇投喂试验和模拟实验呼吸速率来评估这些参数的可行性和适用性。模型、化学计量和动力学参数被证明适用于描述生物厕所系统中粪便的生物降解。