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Microbial Analysis and Biogas Yield of WaterHyacinth, Cow Dung and Poultry Dropping FedAnaerobic Digesters

机译:水葫芦,牛粪和家禽粪便厌氧消化池的微生物分析和沼气产量

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Aim: Biogas research and subsequent production is fundamental to mitigating the possible depletion of crude oil and energy crisis, especially in Nigeria. This research paper was aimed at evaluating the biogas production capacity of water hyacinth, poultry droppings, cow dung and their combination.Methods: One kilogram, two kilograms and three kilograms weight of these substrates were subjected to anaerobic digestion in starter and without starter cultures for 45 days at the interval of 5 days.Results: Our results showed that heterotrophic bacteria and fungi counts were substrate-specific with poultry dropping fed-digester having the highest. Different bacteria and fungi were isolated including methane-producing bacteria such as methanolreoibacteria, methanoculleus bourgense, methanogenium cariaci, methanocorpusium parvum, methanoscrcimon barkeri, methanoplanus lunicola, methanococcoides methyluteus and methanothrix sochngenic . There were significant differences in the amount of biogas produced by the different substrates. However there was no significant differences (P>0.05) between the biogas produced by water hyacinth-fed digester (170.41mls) and poultry droppings-fed digester (182.88 mls). Combining all the substrates (WH+PD+CD) yielded the highest biogas (423.80 mls), which was followed by biogas production of cow dung (331.8 mls).Conclusion: Explicitly, our present report showed that higher biogas yield can be achieved by the combination of different biogas feedstock.
机译:目的:沼气研究和后续生产对于减轻原油和能源危机的可能耗竭至关重要,特别是在尼日利亚。本研究旨在评估水葫芦,家禽粪便,牛粪及其组合的沼气生产能力。方法:在发酵剂和无发酵剂中对一公斤,两公斤和三公斤重量的这些底物进行厌氧消化。结果:每5天间隔45天。结果:我们的结果表明,异养细菌和真菌计数是特定于底物的,家禽掉食的饲喂二酯的数量最高。分离出了不同的细菌和真菌,包括产甲烷的细菌,例如甲醇复细菌,布尔甲烷甲烷,产甲烷甲烷菌,小甲烷甲烷,巴氏甲烷菌,产甲烷甲烷菌,产甲烷甲烷球菌和嗜甲基甲烷菌。不同底物产生的沼气量存在显着差异。然而,由水葫芦饲喂的消化池(170.41mls)和家禽粪便喂养的消化池(182.88mls)之间产生的沼气之间没有显着差异(P> 0.05)。结合所有底物(WH + PD + CD)产生最高的沼气(423.80 mls),其次是牛粪产生的沼气(331.8 mls)。结论:明确地,我们目前的报告显示,通过以下方法可以实现更高的沼气产量不同沼气原料的组合。

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