Production of Biogas from Plantain Peels, Using Cow Dung as Substrate

Samuel Adesina Durogbade, Temitayo Bukola Korode, Bamidele Honesty Akpeji
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Abstract

In a biodigester setup, the researchers investigated the production of methane gas using plantain peel and cow dung as substrates. Two buncher flasks, corks, a glass tube, and a calibrated conical flask comprised the biodigester setup. The setup involved anaerobic digestion processes, analyzing different ratios of cow dung and plantain peel to produce biogas. The main anaerobic digestion process was carried out in Buncher flask one, after which the methane gas formed was sent to Buncher flask two through a rubber tube, where the by-products such as carbon dioxide and hydrogen sulfide were absorbed from the methane gas and the refined biogas was stored in a storage tube. For this study, there were seven setups of cow dung and plantain peel in digester1, digester2, digester3, digester4, digester5, digester6, and digester7 in the ratios of 0g;100g(100%), 10g(10%): 90g(90%), 20g(20%): 80g(80%), 30g(30%): 70g(70%), 40g(40%): 60g(60%), and 50g (50%): 50g(50%), respectively. After 15 days of retention, the slurry with the highest yield is digester 1, with 574 ml/day. The obtained kinetic modeling indicates a rise in yield as the retention time increases. Furthermore, it was observed that continuous mixing boosted the biogas production yield. The results provided valuable insights into the potential for biogas production from agricultural and animal wastes through anaerobic digestion, highlighting the impact of functional groups on biogas yield.
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以牛粪为基质利用车前草皮生产沼气
在生物发酵装置中,研究人员使用车前草皮和牛粪作为基质,研究了甲烷气体的产生。生物发酵装置由两个烧瓶、软木塞、一根玻璃管和一个校准锥形瓶组成。该装置包括厌氧消化过程,分析牛粪和车前草皮产生沼气的不同比例。主要的厌氧消化过程在一号贮气瓶中进行,之后形成的沼气通过橡胶管被输送到二号贮气瓶,在二号贮气瓶中,二氧化碳和硫化氢等副产品被从沼气中吸收,精制的沼气被储存在一个储存管中。在这项研究中,牛粪和车前草皮分别按 0g、100g(100%)、10g(10%)、90g(90%)90克(90%),20克(20%):80克(80%),30克(30%):70克(70%),40克(40%):60克(60%)和 50克(50%):分别为 50 克(50%):50 克(50%)。保留 15 天后,产浆量最高的是消化器 1,为 574 毫升/天。所获得的动力学模型表明,随着滞留时间的增加,产率也在上升。此外,还观察到连续搅拌提高了沼气产量。这些结果为通过厌氧消化从农业和动物废弃物中生产沼气的潜力提供了宝贵的见解,突出了功能基团对沼气产量的影响。
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