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Dark-Fermentative Biological Hydrogen Production from Mixed Biowastes Using Defined Mixed Cultures

机译:使用确定的混合培养物从混合生物废料中生产暗发酵生物氢

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摘要

Biological hydrogen (H2) production from the biowastes is widely recognized as a suitable alternative approach to utilize low cost feed instead of costly individual sugars. In the present investigation, pure and mixed biowastes were fermented by defined sets of mixed cultures for hydrolysis and H2 production. Under batch conditions, up to 65, 67 and 70 L H2/kg total solids (2%, TS) were evolved from apple pomace (AP), onion peels (OP) and potato peels (PP) using a combination of hydrolytic mixed culture (MHC5) and mixed microbial cultures (MMC4 or MMC6), respectively. Among the different combinations of mixed biowastes including AP, OP, PP and pea-shells, the combination of OP and PP exhibited maximum H2 production of 73 and 84 L/kg TS with MMC4 and MMC6, respectively. This study suggested that H2 production can be effectively regulated by using defined sets of mixed cultures for hydrolysis and H2 production from pure and mixed biowastes as feed even under unsterile conditions.Electronic supplementary materialThe online version of this article (doi:10.1007/s12088-017-0643-7) contains supplementary material, which is available to authorized users.
机译:从生物废料中生产生物氢(H2)被广泛认为是利用低成本饲料代替昂贵的单糖的合适替代方法。在本研究中,纯净的和混合的生物废物通过混合培养物的特定组合进行发酵,以进行水解和产氢。在分批条件下,结合水解混合培养法从苹果渣(AP),洋葱皮(OP)和马铃薯皮(PP)释放出高达65、67和70 L2 / kg的总固体(2%,TS) (MHC5)和混合微生物培养物(MMC4或MMC6)。在包括AP,OP,PP和豌豆壳的混合生物废物的不同组合中,与MMC4和MMC6组合使用的OP和PP的最大H2产生量分别为73和84 L / kg TS。这项研究表明,即使在非无菌条件下,也可以通过使用特定的混合培养物来水解和从纯净的混合生物废料中生产H2作为饲料,从而有效地调节H2的产生。电子补充材料本文的在线版本(doi:10.1007 / s12088-017) -0643-7)包含补充材料,授权用户可以使用。

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