Determine the Required Log Reductions of Human Intestinal Helminth Eggs by Waste Stabilization Pond: A Simulation for Wastewater Recycling in Agriculture

A. Faskol, G. Racovițeanu
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Abstract

Abstract This paper investigates the determined the required log reductions for human intestinal helminth eggs by waste stabilization ponds as simulation as assessing of mitigating health risk to satisfy practice WHO, 2006 guidelines for the safe use of wastewater in agriculture (≤ 0.1 helminth egg/L) to protect the health of children under 15 years was the development of MATLAB, a computer program based waste stabilization ponds design based on parameter uncertainty and 10,000-trial Monte Carlo simulations were developed for a series of anaerobic, facultative and maturation ponds based on 95%-ile of effluent (≤ 0.1 helminth egg/L) which the result in a health-based target. Whereas the influent of the helminth eggs (Nematode) was (932.500 eggs/L). While the treatment provided (100 % reduction/removal) for the overall treatment process with total hydraulic retention time in climatic conditions of Libya it took 36.207 days in the anaerobic pond, facultative pond, first maturation pond and one of the subsequent maturation pond.
利用废物稳定池确定人肠蠕虫卵所需减对数:农业废水回收的模拟
摘要:本文研究了通过废物稳定池确定人体肠道蠕虫卵所需的减对数,作为模拟减轻健康风险评估,以满足WHO 2006年农业废水安全使用指南(≤0.1蠕虫卵/L),以保护15岁以下儿童的健康。基于参数不确定性和10000次蒙特卡罗模拟,开发了一种基于计算机程序的废物稳定池设计,针对一系列厌氧、兼性和成熟池,基于95%的流出物(≤0.1个蠕虫卵/L),从而获得基于健康的目标。虫卵(线虫)为932.500个/L。在利比亚的气候条件下,该处理为整个处理过程提供了(100%的还原/去除),总水力滞留时间为36.207天,其中厌氧池、兼性池、第一成熟池和一个后续成熟池耗时36.207天。
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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