霍马湾镇不同家庭灰水理化及微生物质量分析

K. Kotut, Victor G. Nganga, F. Kariuki
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引用次数: 22

摘要

近年来,人们对地下水储量日益减少以及污水处理厂超载或成本过高的担忧,引起了人们对污水再利用或再循环的极大兴趣。灰水的再利用有几个优点,包括减少对饮用水供应的需求。尽管灰水普遍被直接再利用,特别是在缺水地区,但其质量并没有得到很好的记录。本研究测定了霍马湾镇家庭生产的中水的理化和微生物质量。生成的大多数灰水具有较高的电导率和盐度,溶解氧浓度较低。灰水的pH值变化很大,但大多高于净水。生物需氧量变化很大(410 ~ 6250 mg L -1)。灰水样品中总大肠菌群(TC)计数在1.3 ~ 7.6 CFU/ 100 mL之间,粪便大肠菌群(FC)计数在3000 ~ 740万CFU/ 100 mL之间。现场观察表明,TC和FC计数的差异与家庭个人卫生水平、灰水回用强度和储存时间的差异有关。在调查的潜在致病菌中,沙门氏菌是最常见的,在收集的所有灰水样本中出现了31%。弧菌出现在最少的样本中(9%)。该研究的结论是,产生的中水最有可能被致病菌污染,因此应在重复使用前消毒。
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Physico-Chemical and Microbial Quality of Greywater from Various Households in Homa Bay Town
In recent years concerns over dwindling reserves of ground water and overloaded or costly sewage treatment plants has generated much interest in the reuse or recycling of greywater. Re-use of greywater offers several advantages including a reduction in the demand on potable water supplies. Despite the prevalent direct reuse of greywater, especially in water scarce areas, its quality is not well documented. This study determined the physico-chemical and microbial quality of greywater produced by households in Homa Bay town. Most of greywater generated had a higher electrical conductivity and salinity and lower concentration of dissolved oxygen. Greywater pH values varied widely but were mostly higher than that of clean water. Biological oxygen demand varied widely (410-6250 mg L -1 ). Total coliform (TC) counts in greywater samples ranged from 1.3 to 7.6 colony forming units (CFU)/ 100 mL while fecal coliform (FC) counts varied between 3000 and 7.4 million CFU/ 100 mL. Field observations showed that the variation in TC and FC counts resulted from differences in the level of households' personal hygiene, difference in the intensity of greywater reuse and duration of storage. Among the potentially pathogenic bacteria investigated, Salmonella was the most frequent, occurring in 31% of all the greywater samples collected. Vibrio occurred in the least number of samples (9%). The study concludes that greywater produced is most likely to be contaminated by pathogenic bacteria and should therefore be disinfected prior to reuse.
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