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首页> 外文期刊>International Journal Of Recycling of Organic Waste in Agriculture >Bio-digestion and post-treatment of effluents by bio-fermentation, an opportunity for energy uses and generation of organic fertilizers from bovine manure
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Bio-digestion and post-treatment of effluents by bio-fermentation, an opportunity for energy uses and generation of organic fertilizers from bovine manure

机译:通过生物发酵对废水进行生物消化和后处理,这是能源利用和从牛粪中产生有机肥料的机会

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PurposeBio-fermentation has been routed as a viable alternative for the treatment of organic waste, which can provide renewable energy and can return nutrients to the soil with its byproducts. In this context, the objectives of the research were to analyze the benefits that a plastic plug-flow bio-digester can provide for treatment of bovine manure; and through bio-fermentation to control the E. coli number present in the bio-digester effluents. MethodsThe concentration of macronutrients and amount of the E. coli in the effluent was determined by the methods of analysis purposed by APHA standard methods and AOAC standard methods, respectively. In addition, the percentage composition of biogas was analyzed for determining the operative of the system. ResultsThe production of biogas showed of 52.55% mol of methane concentration which it fed one blowtorch and one kitchenette. The bio-digester effluents showed appreciable amounts of nitrogen, potassium, phosphates, calcium, magnesium and sodium but with E. coli presence; the reason why the bio-digester effluent was treated later by a second fermentation inoculated with mountain effective microorganism, post-treatment which eliminated in 100% E. coli presence. ConclusionBoth processes showed the viability as treatment of the bovine manure which brings renewable energy and effluents with nutritive loads to use it as a biofertilizer without risks to health and humanity. The project was located at the tropical zone into the Choco forest, at an average altitude of 1110?m above sea level and an average temperature annual of 21–22?°C.
机译:目的已将生物发酵作为一种可行的替代方法来处理有机废物,该废物可提供可再生能源,并可将养分及其副产品返回土壤。在这种情况下,研究的目的是分析塑料活塞流式生物消化器可为牛粪处理提供的好处;并通过生物发酵来控制存在于生物消解废水中的大肠杆菌数量。方法分别采用APHA标准方法和AOAC标准方法所针对的分析方法确定污水中大量营养素的浓度和大肠杆菌的含量。另外,分析了沼气的百分比组成以确定系统的运行情况。结果沼气产生的甲烷浓度为52.55%mol,将其送入一个喷灯和一个小厨房。生物消化物废水显示出相当数量的氮,钾,磷酸盐,钙,镁和钠,但存在大肠杆菌。后来用接种了山区有效微生物的第二次发酵处理了生物消化物废水的原因,后处理在100%的大肠杆菌中消除了。结论两种工艺均显示出可作为牛粪处理的可行性,这种牛粪处理带来了可再生能源和营养负荷的废水,可将其用作生物肥料,而不会危害健康和人类。该项目位于进入Choco森林的热带地区,平均海拔为1110?m,年平均气温为21-22?C。

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