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Methane potential and biodegradability of rice straw, rice husk and rice residues from the drying process

机译:干燥过程中稻草,稻壳和稻谷残留物的甲烷潜力和生物降解性

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摘要

Agricultural solid residues are a potential renewable energy source. Rice harvesting and production in Sancti Spíritus province, Cuba, currently generates residues without an environmentally sustainable disposal route. Rice residues (rice straw, rice husk and rice residues from the drying process) are potentially an important carbon source for anaerobic digestion. For this paper, rice residues were placed for 36 days retention time in anaerobic batch reactor environments at both mesophilic (37 °C) and thermophilic (55 °C) conditions. Biogas and methane yield were determined as well as biogas composition. The results showed that rice straw as well as rice residues from the drying process had the highest biogas and methane yield. Temperature played an important role in determining both biogas yield and kinetics. In all cases, rice straw produced the highest yields; under mesophilic conditions the biogas yield was 0.43 m ~3 kg VS ~(-1), under thermophilic conditions biogas yield reached 0.52 m ~3 kg VS ~(-1). In the case of the rice husk, the biodegradability was very low. Methane content in all batches was kept above 55% vol. All digested material had a high carbon: nitrogen (C:N) ratio, even though significant biodegradation was recorded with the exception of rice husk. A first-order model can be used to describe the rice crop residues fermentation effectively.
机译:农业固体残渣是潜在的可再生能源。古巴SanctiSpíritus省的水稻收割和生产目前产生残留物,而没有环境可持续的处置途径。稻米残留物(稻草,稻壳和干燥过程中的稻米残留物)可能是厌氧消化的重要碳源。对于本文,将稻米残留物在中温(37°C)和嗜热(55°C)条件下,在厌氧间歇反应器环境中放置36天保留时间。确定沼气和甲烷的产率以及沼气组成。结果表明,稻草以及干燥过程中的稻渣具有最高的沼气和甲烷产量。温度在决定沼气产量和动力学方面起着重要作用。在所有情况下,稻草均能获得最高的产量。在中温条件下,沼气产量为0.43 m〜3 kg V​​S〜(-1),在高温条件下,沼气产量为0.52 m〜3 kg V​​S〜(-1)。在稻壳的情况下,生物降解性非常低。所有批次的甲烷含量均保持在55%以上。尽管除稻壳外,已记录到明显的生物降解,但所有消化的材料均具有高的碳:氮(C:N)比。一阶模型可用于有效描述水稻作物残渣发酵。

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