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Determination Of Bio-Methanol As Intermediate Product Of Anaerobic Co-Digestion Of Animal And Agriculture Wastes

机译:畜禽粪便厌氧厌氧消化中间产物生物甲醇的测定

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Many researchers have reported on the end products of the anaerobic digestion process as biogas and methane but the useful intermediate products in the anaerobic digester effluent, such as bio-methanol have typically been ignored. Bio-methanol is an auspicious substitute for fossil fuels with a variety of fuel applications and advantages with regard to the environment, the economy, and consumers. Thus the main objective of this study is to investigate the intermediate product of anaerobic co-digestion of animal and agriculture wastes. The wastes are characterized based on proximate and ultimate analyses. This study was conducted in a room-temperature, lab-scale reactor with a fixed retention time. Methanol was analyzed using high-pressure liquid chromatography (HPLC). It was observed that, banana peel (61.51 wt. %) and boiled rice (81.25 wt. %) substrates with cow dung inoculum have the greatest potential for bio-methanol production via anaerobic co-digestion. This study proofs that the methanol exists as intermediate product of anaerobic co-digestion. Finally, this study concludes that by enhancing the production of methanol at intermediate phase can reduce the production of methane gas.
机译:许多研究人员报道了厌氧消化过程的最终产物是沼气和甲烷,但是厌氧消化池废水中有用的中间产物,例如生物甲醇通常被忽略了。生物甲醇是化石燃料的吉祥替代品,具有多种燃料应用,并且在环境,经济和消费者方面具有优势。因此,本研究的主要目的是研究动物和农业废物厌氧消化的中间产物。根据最近的分析和最终的分析对废物进行表征。这项研究是在室温,实验室规模的反应器中进行的,固定时间是固定的。使用高压液相色谱法(HPLC)分析甲醇。观察到,带有牛粪接种物的香蕉皮(61.51 wt。%)和白米(81.25 wt。%)底物具有通过厌氧共消化生产生物甲醇的最大潜力。该研究证明甲醇作为厌氧共消化的中间产物存在。最后,这项研究得出的结论是,通过提高中间阶段的甲醇产量,可以减少甲烷气体的产量。

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