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Use of human urine in phytoplankton production as a tool for ecological sanitation

机译:人类尿液在浮游植物生产中作为生态卫生的工具

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Measurements of primary productivity of phytoplankton and enumeration of the counts of coliform and heterotrophic bacteria (HB) were made in the water of 12 experimental tanks used for 3 treatments and control in triplicate as follows: (a) fresh human urine (0.02%), (b) stored human urine (0.02%), (c) mixed urine of fresh and stored human urine (0.02%) and (d) control without input of urine. The gross primary productivity of phytoplankton was highest in the stored urine treated tanks (508 mg C m~(- 2) h ~(-1)) followed by fresh urine (353 mg C m ~(-2) h ~(-1)), mixed urine (303 mg C m ~(-2) h ~(-1)) and control (215 mg C m ~(-2) h ~(-1)). Similar was the response of net primary production of phytoplankton. The mean count of HB observed in stored urine fed tanks was significantly higher (59-184%) than the remaining urine fed treatments. The mean count of Escherichia coli did not differ from urine treated tanks to control implying the good quality of water. The concentration of dissolved oxygen of water (7.6 to 12.8 mg L ~(-1)) in these tanks remained satisfactory for aquaculture. The mean concentration of ammonium-N observed in fresh urine treated tanks was more than 10 times higher than the remaining treatments employed. In contrast, the level of phosphate and electrical conductivity in the stored urine treated tanks were significantly higher than the remaining treatments. It is proposed that stored urine with a significantly reduced load of E. coli might be an effective low cost liquid fertilizer for algal biomass production.
机译:在12种用于3种处理和控制的实验水箱的水中进行了浮游植物初级生产力的测量以及大肠菌群和异养细菌(HB)计数的计数,一式三份:(a)新鲜人类尿液(0.02%), (b)储存的人类尿液(0.02%),(c)新鲜和储存的人类尿液的混合尿液(0.02%),以及(d)无需输入尿液的对照。在储存的尿液处理池中,浮游植物的总初级生产力最高(508 mg C m〜(-2)h〜(-1)),其次是新鲜尿液(353 mg C m〜(-2)h〜(-1) ),混合尿液(303 mg C m〜(-2)h〜(-1))和对照(215 mg C m〜(-2)h〜(-1))。浮游植物净初级生产力的响应也相似。在储存的尿液喂养罐中观察到的HB平均计数显着高于其余的尿液喂养治疗(59-184%)。大肠杆菌的平均计数与尿液处理过的水箱没有什么不同,以控制水的质量。这些水箱中水的溶解氧浓度(7.6至12.8 mg L〜(-1))对于水产养殖仍然令人满意。在新鲜尿液处理过的水箱中观察到的铵态氮平均浓度比其余的处理高出十倍以上。相反,储存的尿液处理过的水箱中的磷酸盐水平和电导率显着高于其余处理。有人提出,存储的尿液中大肠杆菌含量明显降低可能是藻类生物质生产的一种有效的低成本液体肥料。

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