Potential of Biogas Production from Anaerobic Co-digestion of Hydrothermal Pre-treated OPEFB and Digested Sludge

Q3 Chemical Engineering
Muhammad Bukhari Rosly, Pramila Tamunaidu, Nurhamieza Md Huzir, Azlan Nur Rasyid Amin, Masafumi Goto, Abd Halim Md Ali, Mohd Danial Muhd Ali
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Abstract

The palm oil industry plays a vital role in Malaysia, but it generates substantial amounts of biomass waste, which, if not properly managed, can lead to environmental pollution. Among these waste products, oil palm empty fruit bunch (OPEFB) is the most abundant and underutilized, being generated daily without any commercial value. The aim is to efficiently convert OPEFB into fermentable sugars for improved biogas production. Nevertheless, the challenge lies in efficiently degrading OPEFB within a short timeframe before fermentation into biogas can occur. This study aims to explore the potential of hydrothermal pre-treatment as a means to enhance biogas production from OPEFB. The pre-treatment process was optimized by varying reaction temperatures (100 to 250°C), and reaction times (10 to 40 minutes). The main objective was to maximize the total soluble sugar yield, a crucial precursor for efficient biogas production. The optimal conditions for hydrothermal pre-treatment are identified at a temperature of 175°C and a reaction time of 20 minutes, resulting in a yield of 49.2 mg of glucose per gram of OPEFB. Subsequent anaerobic co-digestion of the treated OPEFB with digested sludge increased methane yield to 100.53 ml/g-VS, representing a remarkable 392% increase compared to the low 20.44 ml/g-VS produced by untreated OPEFB. Nonetheless, elevated pre-treatment temperatures (200°C and above) led to reduced biogas production due to inhibitory compounds. This study demonstrates the effectiveness of hydrothermal pre-treatment as a low-temperature, green technology for enhancing OPEFB-based biogas production, contributing to Malaysia's renewable energy goals. Future research should focus on scale-up and validation of this integrated process.
厌氧协同消化经热预处理的 OPEFB 和消化污泥产生沼气的潜力
棕榈油产业在马来西亚发挥着重要作用,但它会产生大量的生物质废物,如果管理不当,会导致环境污染。在这些废弃物中,油棕空果束(OPEFB)的数量最多,但利用率却很低,每天都在产生,没有任何商业价值。我们的目标是将油棕空果束有效转化为可发酵糖,以提高沼气产量。然而,在发酵成沼气之前,如何在短时间内有效降解 OPEFB 是一项挑战。本研究旨在探索水热预处理作为提高 OPEFB 沼气产量的一种手段的潜力。通过改变反应温度(100 至 250°C)和反应时间(10 至 40 分钟)对预处理过程进行了优化。主要目的是最大限度地提高可溶性糖的总产量,这是高效生产沼气的关键前体物。水热预处理的最佳条件是温度为 175°C,反应时间为 20 分钟,从而使每克 OPEFB 的葡萄糖产量达到 49.2 毫克。随后,经处理的 OPEFB 与消化污泥进行厌氧共同消化,甲烷产量增至 100.53 毫升/克-VS,与未经处理的 OPEFB 产生的 20.44 毫升/克-VS 相比,显著增加了 392%。然而,由于抑制性化合物的存在,预处理温度升高(200°C 及以上)导致沼气产量减少。这项研究证明了水热预处理作为一种低温绿色技术在提高 OPEFB 沼气产量方面的有效性,有助于实现马来西亚的可再生能源目标。未来的研究应侧重于这一综合工艺的放大和验证。
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来源期刊
Journal of Advanced Research in Fluid Mechanics and Thermal Sciences
Journal of Advanced Research in Fluid Mechanics and Thermal Sciences Chemical Engineering-Fluid Flow and Transfer Processes
CiteScore
2.40
自引率
0.00%
发文量
176
期刊介绍: This journal welcomes high-quality original contributions on experimental, computational, and physical aspects of fluid mechanics and thermal sciences relevant to engineering or the environment, multiphase and microscale flows, microscale electronic and mechanical systems; medical and biological systems; and thermal and flow control in both the internal and external environment.
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