Department of Mechanical Engineering, SRM Institute of Science and Technology, Ghaziabad, India.
School of Mechanical Engineering, Sathyabama Institute of Science and Technology, India.
Environ Res. 2023 Aug 15;231(Pt 3):116216. doi: 10.1016/j.envres.2023.116216. Epub 2023 May 22.
The present investigation explores the feasibility of generating biogas from water hyacinth (WH) through a pretreatment process. The WH samples were subjected to a high concentration of HSO pretreatment to enhance biogas production. The HSO pretreatment aids in breaking down the lignocellulosic materials found in the WH. Additionally, it helps modify the cellulose, hemicellulose, and lignin, which assists in the anaerobic digestion process. The samples underwent pretreatment with 5% v/v HSO for 60 min. Biogas production was conducted for both untreated and pretreated samples. Furthermore, sewage sludge and cow dung were used as inoculants to promote fermentation in the absence of oxygen. The results of this study demonstrate that the pretreatment of water hyacinth with 5% v/v HSO for 60 min considerably enhances biogas production through the anaerobic co-digestion process. The maximum biogas production was recorded by T. Control-1, with a production rate of 155 mL on the 15th day compared to all other controls. All the pretreated samples showed the highest biogas production on the 15th day, which is comparatively five days earlier than the untreated samples. In terms of CH production, the maximum yield was observed between the 25th and 27th days. These findings suggest that water hyacinth is a viable source of biogas production, and the pretreatment method significantly improves biogas yield. This study presents a practical and innovative approach to biogas production from water hyacinth and highlights the potential for further research in this area.
本研究探讨了通过预处理工艺从水葫芦(WH)中产生沼气的可行性。将 WH 样品进行高浓度 HSO 预处理,以提高沼气产量。HSO 预处理有助于分解 WH 中的木质纤维素材料。此外,它还有助于修饰纤维素、半纤维素和木质素,从而有助于厌氧消化过程。样品用 5%v/v HSO 预处理 60 分钟。对未经处理和预处理的样品进行沼气生产。此外,污水污泥和牛粪用作接种物,以促进在无氧条件下的发酵。本研究的结果表明,用 5%v/v HSO 预处理水葫芦 60 分钟,通过厌氧共消化过程显著提高了沼气产量。T.Control-1 的最大沼气产量最高,第 15 天的产率为 155 mL,高于所有其他对照。所有预处理样品在第 15 天的沼气产量最高,比未经处理的样品早五天。就 CH 产量而言,最大产量出现在第 25 天至 27 天之间。这些发现表明水葫芦是一种可行的沼气生产源,预处理方法显著提高了沼气产量。本研究提出了一种从水葫芦生产沼气的实用和创新方法,并强调了在该领域进一步研究的潜力。