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High-Value-Added Compound Recovery with High-Temperature Hydrothermal Treatment and Steam Explosion and Subsequent Biomethanization of Residual Strawberry Extrudate

机译:具有高温水热处理和蒸汽爆炸的高附物复合回收随后的残留草莓挤出物的后续生物甲烷

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摘要

This study was on the comparison of hydrothermal treatments at 170 °C (steam injection) and 220 °C (steam explosion) to solubilize the organic matter contained in residual strawberry extrudate, focusing on phenolic compounds that were susceptible to be extracted and on sugars. After the extraction step, the remaining strawberry extrudate phases were subjected to anaerobic digestion to generate biogas that would compensate the energy requirements of the suggested hydrothermal treatments and to stabilize the remaining waste. Hydrothermal treatment at 220 °C allowed the recovery of 2053 mg of gallic acid eq. per kg of residual strawberry extrudate. By contrast, after hydrothermal treatment at 170 °C, only 394 mg of gallic acid eq. per kg of residual strawberry extrudate was recovered. Anaerobic digestion processes were applied to the de-phenolized liquid phase and the solid phase together, which generated similar methane productions, i.e., around 430 mL CH /g volatile solids, after both 170 °C and 220 °C hydrothermal treatments. Considering the latest observation, hydrothermal treatment at 220 °C is a preferable option for the valorization of residual strawberry extrudate (RSE) due to the high solubilization of valuable phenolic compounds that can be recovered.
机译:该研究是在170℃(蒸汽注入)和220℃(蒸汽爆炸)下的水热处理的比较,以溶解残留的草莓挤出物中所含的有机物质,聚焦含有易于提取的酚类化合物和糖。萃取步骤后,将剩余的草莓挤出液进行厌氧消化以产生沼气,这些沼气将补偿所提出的水热处理的能量要求并稳定剩余的废物。在220℃下水热处理允许回收2053mg神经酸等。每千克残留的草莓挤出物。相比之下,在170℃下的水热处理后,仅394mg的神经酸等。回收了每千克残留的草莓挤出物。将厌氧消化方法应用于去酚化液相和固相,在170℃和220℃的水热处理后,产生类似的甲烷制备,即约430mL CH / G挥发性固体。考虑到最新的观察,220℃的水热处理是由于可以回收的有价值的酚类化合物的高溶解,对残留的草莓挤出物(RSE)的较好选择。

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