Institut Polytechnique LaSalle Beauvais, 19 rue Pierre Waguet, 60026 Beauvais, France.
Bioresour Technol. 2011 Jun;102(12):6750-6. doi: 10.1016/j.biortech.2011.03.107. Epub 2011 Apr 7.
This study aims at the optimisation of a microwave pretreatment for wheat straw solubilisation and anaerobic biodegradability. The maximum yield of methane production was obtained at 150°C with an improvement of 28% compared to an untreated sample. In addition, at this temperature, the time to reach 80% of the methane volume obtained from untreated straw was about 35%. The study of ramp time and holding time at targeted temperature showed that they had no improvement effect. Thus, the best conditions are the highest heating rate for a final temperature 150°C without any holding time. The reading of energy consumed by pretreatment and energy overproduced by pretreated samples showed that increasing tVS amount and heating rate led to a saving of energy consumption. Nevertheless, to obtain a positive energy balance, a microwave device should consume less than 2.65 kJ/g(tVS).
本研究旨在优化微波预处理以提高小麦秸秆的溶解率和厌氧生物降解性。在 150°C 下可获得最大的甲烷产量,与未经处理的样品相比提高了 28%。此外,在该温度下,达到未经处理的秸秆产生的甲烷体积 80%所需的时间约为 35%。对目标温度下斜坡时间和保持时间的研究表明,它们没有改善效果。因此,最佳条件是最高加热速率达到最终温度 150°C,没有任何保持时间。预处理消耗的能量和预处理样品产生的多余能量的读数表明,增加总挥发性固体(tVS)的量和加热速率可节省能耗。然而,要获得正的能量平衡,微波设备的能耗应低于 2.65 kJ/g(tVS)。