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生物废弃物通过生物和物理转化过程生产生物燃料。

Biofuel production from bio-waste by biological and physical conversion processes.

机构信息

Faculty of Environment and Resource Studies, Mahidol University, Thailand.

出版信息

Waste Manag Res. 2020 Jan;38(1):69-77. doi: 10.1177/0734242X19868513. Epub 2019 Aug 18.

Abstract

This research is focused on the feasibility of biofuel from water hyacinth mixed with cassava starch sediment by biological and physical conversion processes and the comparison of the gross electricity production in these processes. The biological conversion process produced biomethane by anaerobic digestion. The optimal conditions of biomethane production were a ratio of water hyacinth and cassava starch sediment at 25:75, initial pH of 7.5, thermophilic temperature (55 ± 2°C) and C/N ratio of 30. The maximum biomethane yield measured was 436.82 mL CH g chemical oxygen demand (COD) and the maximum COD removal was 87.40%. The physical conversion process was bio-briquette. It was found that the ratios of water hyacinth and cassava starch sediment at 10:90, 20:80, 30:70, 40:60 and 50:50 were the best ratio of fuel properties and close to the Thai Community Product Standard, with heating values of 15.66, 15.43, 15.10, 14.88 and 14.58 MJ kg, respectively. Moreover, results showed that the gross electricity production of the biological conversion process (biomethane) was 3.90 kWh and the gross electricity production of the physical conversion process (bio-briquette) from the ratios of water hyacinth and cassava starch sediment at 10:90, 20:80, 30:70, 40:60 and 50:50 were 1.52, 1.50, 1.47, 1.45 and 1.42 kWh, respectively.

摘要

本研究聚焦于水葫芦与木薯淀粉渣通过生物和物理转化过程混合制备生物燃料的可行性,并比较这些过程中的总发电量。生物转化过程通过厌氧消化产生生物甲烷。生物甲烷生产的最佳条件为水葫芦与木薯淀粉渣的比例为 25:75、初始 pH 值为 7.5、嗜热温度(55±2°C)和 C/N 比为 30。测量的最大生物甲烷产量为 436.82 mL CH g 化学需氧量(COD),最大 COD 去除率为 87.40%。物理转化过程为生物制棒。结果发现,水葫芦与木薯淀粉渣的比例为 10:90、20:80、30:70、40:60 和 50:50 时燃料性能最佳,且接近泰国社区产品标准,热值分别为 15.66、15.43、15.10、14.88 和 14.58 MJ kg。此外,结果表明,生物转化过程(生物甲烷)的总发电量为 3.90 kWh,水葫芦与木薯淀粉渣的比例为 10:90、20:80、30:70、40:60 和 50:50 时物理转化过程(生物制棒)的总发电量分别为 1.52、1.50、1.47、1.45 和 1.42 kWh。

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