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Cardboard proportions and total solids contents as driving factors in dry co-fermentation of food waste

机译:纸板比例和总固体含量作为食物垃圾干燥共同发酵的驱动因子

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This study evaluated the influence of the co-substrate proportions (0-60% of cardboard in dry basis) and the initial total solid contents (20-40%) on the batch fermentation performance. Maximum hydrogen yields were obtained when mono-fermenting food waste at high solids contents (89 ml H-2.gVS(-1)). The hydrogen yields were lower when increasing the proportions of cardboard. The lower hydrogen yields at higher proportions of cardboard were translated into higher yields of caproic acid (up to 70.1 gCOD.kgCOD(bio)1), produced by consumption of acetic acid and hydrogen. The highest substrate conversions were achieved at low proportions of cardboard, indicating a stabilization effect due to higher buffering capacities in co-fermentation. Clostridiales were predominant in all operational conditions. This study opens up new possibilities for using the cardboard proportions for controlling the production of high added-value products in dry co-fermentation of food waste. (C) 2017 Elsevier Ltd. All rights reserved.
机译:该研究评估了共衬底比例的影响(0-60%的纸板在干基础上),初始总固体内容物(20-40%)对分批发酵性能进行了影响。当在高固体内容物(89ml H-2.GVS(-1))中单发酵食品废物时获得最大氢产率。当增加纸板比例时,氢气产率较低。较高比例的载体较低的氢气产率转化为己酸(最多70.1Gcod.kgcod(Bio)1)的产率高,由乙酸和氢气产生。在低比例的纸板上实现了最高的基板转化,表明由于共发酵中的更高缓冲能力,稳定效应。在所有操作条件下,梭菌是主要的。本研究开辟了利用纸板比例来控制对食物垃圾干燥共同发酵生产高附加值产品的新的可能性。 (c)2017 Elsevier Ltd.保留所有权利。

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