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A new approach to stabilize waste biomass for valorization using an oxidative process at 90 °C

机译:一种在90°C下使用氧化过程稳定废物生物质以进行增值的新方法

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摘要

This study aimed to establish a new methodology for upgrading biomass quality using low-temperature (below 100 °C) oxidation to achieve simultaneous drying and decomposition. Sterilized manure (63% wet basis) was heated at 90 °C for 49 days under an oxidative environment. The obtained solid and moisture reduction curves indicated that drying and decomposition proceeded simultaneously. The biomass was decomposed by oxidation with the release of water, carbon dioxide, and volatile fatty acids such as acetic acid. The oxidation process stopped when the biomass was dehydrated, indicating that the water originally present in the biomass governed the process. Elemental and calorific analyses revealed no remarkable increase in carbon content or increased heating value, and a slight decrease in oxygen content. Although the severity of the process was insufficient to produce an optimum solid fuel due to the low temperature used, the process would enable the stabilization of waste biomass with low energy consumption such as using waste heat.
机译:这项研究旨在建立一种利用低温(低于100°C)氧化来提高生物质质量的新方法,以实现同时干燥和分解。在氧化环境下,将灭菌的粪肥(湿重为63%)在90°C下加热49天。所得的固体和水分减少曲线表明干燥和分解同时进行。生物质通过氧化分解,释放出水,二氧化碳和挥发性脂肪酸(例如乙酸)。当生物质脱水后,氧化过程停止,表明该生物质中最初存在的水决定了该过程。元素和热分析表明,碳含量或热值没有显着增加,而氧含量则略有下降。尽管由于使用的低温,该过程的严重性不足以产生最佳的固体燃料,但是该过程将能够以低能量消耗来稳定废物生物质,例如利用废热。

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