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Food Waste Impact Study: Sewer Process Modelling for Future Options Assessment

机译:厨余影响研究:下水道过程建模,用于未来的方案评估

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The City of Los Angeles Bureau of Sanitation (LASAN) has conducted a study to assess the impacts associated with conveying food waste using an existing wastewater collection system. A proposed Organics Processing Facility (OPF) is located 29 kilometer (17 miles) upstream of the Hyperion Wastewater Reclamation Plant (HWRP). The OPF will separate food waste and other digestible organics from non-processable and non-digestible materials to create an organic food waste slurry. The combined waste stream (existing municipal wastewater and food waste slurry) will be treated at HWRP with a portion of the waste converted into renewable energy via anaerobic digestion. This study examines (1) the food waste characteristics and (2) predicts impacts to the conveyance system and the influent wastewater quality to HWRP. To determine the impacts, the volumes and constituents, including the physical, chemical, and biochemical characteristics of the food waste slurry relevant to process analysis, are defined. Physical-chemical characteristics of the food waste slurry, as well as its biochemical characteristics are detailed based on available technical literature. Sewer process modeling using the Interceptor-powered-by-WATS model is undertaken to predict the impact of the food waste on the HWRP influent water quality and the wastewater conveyance, including sewer ventilation odor treatment systems. The sewer model covers microbial and chemical transformation processes in the conveyance system network related to relevant process parameters such as organic matter, pH and sulfurous compounds under aerobic, anoxic, and anaerobic conditions. The impacts to the HWRP influent key constituent characteristics are estimated. This includes an approximation of changes to the properties of the food waste slurry within the conveyance system prior to reaching the HWRP. The impact of the additional food waste to the wastewater conveyance system on the existing sewer ventilation odor treatment systems are also estimated. Limitations relative to prediction of waste characteristics and the potential impacts of the additional food waste are noted, with some recommendations provided for further verification and/or analyses.
机译:洛杉矶市卫生局(LASAN)进行了一项研究,以评估与使用现有废水收集系统输送食物垃圾相关的影响。拟议的有机物处理设施(OPF)位于Hyperion废水回收厂(HWRP)上游29公里(17英里)处。 OPF将食品垃圾和其他可消化的有机物与不可加工和不可消化的物料分离,以产生有机食品垃圾浆。合并后的废物流(现有的城市废水和食物垃圾浆)将在HWRP进行处理,一部分废物通过厌氧消化转化为可再生能源。这项研究检查(1)食物垃圾的特征,以及(2)预测对输送系统的影响以及对HWRP的进水废水质量。为了确定影响,定义了与过程分析相关的食物垃圾浆的体积和成分,包括物理,化学和生化特性。根据现有的技术文献,对餐厨垃圾的物理化学特性及其生化特性进行了详细介绍。进行了使用拦截器驱动的WATS模型的下水道过程建模,以预测食物垃圾对HWRP进水水质和废水输送的影响,包括下水道通风气味处理系统。下水道模型涵盖了输送系统网络中微生物和化学转化过程,这些过程与相关过程参数有关,例如好氧,缺氧和厌氧条件下的有机物,pH和含硫化合物。估计了对HWRP进水口关键组成特征的影响。这包括在达到HWRP之前,输送系统内食物垃圾浆的特性变化的近似值。还估计了额外的食物垃圾到废水输送系统对现有下水道通风气味处理系统的影响。指出了与预测废物特性和其他食物废物的潜在影响有关的限制,并提供了一些建议以供进一步验证和/或分析。

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