Effect of pretreatment on Typha biomass for biogas production

A. A. Mukhtar, H. M. Sadiq, A. Alhassan, H. Abdullahi
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引用次数: 1

Abstract

Plant biomass as an alternative energy source serves as a viable option for improving sustainable development and reducing greenhouse gas emissions. However, the tight bonding within its constituents may hinder anaerobic digestion, thus, requires pretreatment to break down the complex polysaccharide structure into simpler disaccharide and monosaccharide sugars to facilitate digestion and enhance the production of biogas. The research determined the effect physical and chemical pre-treatment methods of Typha biomass for biogas production. Characteristics determined include; carbonnitrogen (C-N) ratio for Typha biomass, temperature, pH, total solids (TS) and volatile solids (VS) of slurry formed by mixing the biomass with cow-dung in ratio 1:1. The volume of biogas produced was determined by water displacement method using an anaerobic digester while the mass balance approach was used to estimate the biogas yield from the TS/VS lost. Results indicated 31.6 C-N ratio; pH of 6.7; Temperature of 32.4OC and TS of 11.3%, which falls within suitable ranges reported for biogas production. The volume of biogas produced was 180 cm3, 235cm3 and 118cm3 for control, physical and chemical pre-treated samples respectively. Similarly, the biogas yield was 21mg/l, 15mg/l and 48mg/l for control, physical and chemical pre-treatment respectively. Hence the findings revealed physical pre-treatment as the best pretreatment method for biogas generation from Typha biomass in relation to chemical pretreatment and untreated Typha biomass.
预处理对草菇生物质产气的影响
植物生物质作为一种替代能源,是促进可持续发展和减少温室气体排放的可行选择。但其组分之间的紧密结合可能会阻碍厌氧消化,因此需要预处理将复杂的多糖结构分解为较简单的双糖和单糖,以促进消化,提高沼气产量。研究确定了菌丝生物质的理化预处理方法对产气效果的影响。确定的特征包括;Typha生物质碳氮比(C-N)、温度、pH、总固形物(TS)和挥发性固形物(VS)以1:1的比例与牛粪混合形成浆体。采用厌氧沼气池置换水法测定沼气产量,采用质量平衡法估算TS/VS损失的沼气产量。结果:C-N比值为31.6;pH为6.7;温度为32.4℃,TS为11.3%,这属于沼气生产的合适范围。对照样品、物理预处理样品和化学预处理样品的沼气产量分别为180 cm3、235cm3和118cm3。同样,对照处理、物理预处理和化学预处理的沼气产量分别为21mg/l、15mg/l和48mg/l。结果表明,相对于化学预处理和未处理的菌丝生物量,物理预处理是菌丝生物量产气的最佳预处理方法。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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