由屋顶特性引起的雨水水质变化

J. Utsev
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引用次数: 1

摘要

雨水收集作为一种可替代的饮用水来源,在世界范围内受到越来越多的关注。虽然有些人通常不经过任何消毒就饮用收集的雨水,但这种水源的微生物和其他物理化学质量可能很差。本文利用尼日利亚Gboko工业化地区和农村地区随机收集的数据,研究了屋顶特征对雨水水质的影响。在农村地区随机进行问卷调查,以获得有关屋顶材料类型和屋顶年龄的数据。此外,还收集了两个地区的样品,并检测了碱度、pH、no3−、so4.2−、nh4 +、ca2 +、mg2 +、溶解重金属(Fe、Cu、Mn、Zn、Ni和Cr)和总大菌群(未检测到)。测定的碱度、pH、no3−、so4−、nh4 +、ca2 +、mg2 +、Fe、Zn的平均值分别为4.8mg/l、7.77、23.9mg/l、1.2mg/l、26.1mg/l、120.3mg/l、99.6mg/l、0.12mg/l、0.13mg/l。研究发现,降雨周期、环境因素、屋面材料类型和龄期对雨水特性有不同的影响。从实验结果来看,Gboko的屋顶排水水质可以作为生活中水,但需要经过处理才能用作饮用水。关键词:雨水质量,水分利用率,雨水收集,变异性,屋顶排水
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Variability of Rain Water Quality due to Roof Characteristics
Rainwater harvesting is receiving increased attention worldwide as an alternative source of drinking water. Although, some people typically consume collected rainwater without any type of disinfection, the microbial and other physic-chemical qualities of this water source can be poor. In this paper, the variability of rain water quality due to roof characteristics was investigated using some randomly collected data from both industrialized and rural areas in Gboko, Nigeria. Questionnaires were randomly administered in the rural areas to obtain data on the type of roofing materials and age of the roof. In addition, samples were also collected from both areas and examined for alkalinity, pH, NO 3 − , SO 4 2− , NH 4 + , Ca 2+ , Mg 2+ , dissolved heavy metals (Fe, Cu, Mn, Zn, Ni and Cr), and total coliform (not detected). The examined parameters gave average values of alkalinity, pH, NO 3 − , SO 4 2− , NH 4 + , Ca 2+ , Mg 2+ , Fe, Zn as 4.8mg/l, 7.77, 23.9mg/l, 1.2mg/l, 26.1mg/l, 120.3mg/l, 99.6mg/l, 0.12mg/l, 0.13mg/l respectively. It was discovered that, the period of rainfall, environmental factors, type and age of roofing materials have varying effects on the characteristics of rainwater. From the experimental result, the roof drainage water quality in Gboko can be used as grey water for domestic purposes but requires treatment to be used as drinking water. KEYWORDS: Rainwater quality, Water availability, Rainwater harvesting, Variability, Roof drainage
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