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Understanding the spatial formation and accumulation of fats, oils and grease deposits in the sewer collection system

机译:了解下水道收集系统中脂肪,油和油脂沉积物的空间形成和积累

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摘要

Sanitary sewer overflows are caused by the accumulation of insoluble calcium salts of fatty acids, which are formed by the reaction between fats, oils and grease (FOG) and calcium found in wastewaters. Different sewer structural configurations (i.e., manholes, pipes, wet wells), which vary spatially, along with other obstructions (roots intrusion) and pipe deformations (pipe sags), may influence the detrimental buildup of FOG deposits. The purpose of this study was to quantify the spatial variation in FOG deposit formation and accumulation in a pilot-scale sewer collection system. The pilot system contained straight pipes, manholes, roots intrusion, and a pipe sag. Calcium and oil were injected into the system and operated at alkaline (pH = 10) and neutral (pH = 7) pH conditions. Results showed that solid accumulations were slightly higher at neutral pH. Fourier transform infrared (FTIR) analysis on the solids samples confirmed that the solids were indeed calcium-based fatty acid salts. However, the fatty acid profiles of the solids deviated from the profile found from FOG deposits in sewer systems, which were primarily saturated fatty acids. These results confirm the work done previously by researchers and suggest an alternative fate of unsaturated fatty acids that does not lead to their incorporation in FOG deposits in full-scale sewer systems.
机译:下水道溢水是由于不溶性脂肪酸钙盐的积累而引起的,脂肪酸钙盐是由油脂,油脂,废水中的钙与钙之间的反应形成的。空间上变化的不同下水道结构配置(即人孔,管道,湿井)以及其他障碍物(根部侵入)和管道变形(下垂)可能会影响FOG沉积物的有害堆积。这项研究的目的是量化中试规模的污水收集系统中FOG沉积物形成和积累的空间变化。先导系统包含直管,人孔,根部侵入和管垂。将钙和油注入系统中,并在碱性(pH = 10)和中性(pH = 7)pH条件下运行。结果表明,在中性pH值下,固体积累略高。对固体样品进行傅里叶变换红外(FTIR)分析证实,固体确实是基于钙的脂肪酸盐。但是,固体的脂肪酸分布与下水道系统中的FOG沉积物(主要是饱和脂肪酸)的分布有所不同。这些结果证实了研究人员先前所做的工作,并提出了不饱和脂肪酸的另一种选择,即不会导致它们掺入全尺寸下水道系统的FOG沉积物中。

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