缩小废渣与大规模面包酵母生产之间的实施差距

Josipa Lisičar Vukušić, Thomas Millenautzki, S. Barbe
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引用次数: 0

摘要

《欧洲绿色协议》中设定的目标构成了本次审查的起点,然后重点关注农业-工业废物作为大规模生物过程资源(例如,面包酵母、生物乙醇、柠檬酸和氨基酸)之间的当前实施差距。这篇综述强调了目前葡萄和苹果收获后加工缺乏可持续性。根据欧洲绿色协议,工业生物技术往往也缺乏可持续性。我们回顾了近年来文献报道的提高葡萄和苹果渣增值的进展,以及目前在技术过程中实施这一研究的失败。然而,最近的一些论文展示了通过在学术团队和工业伙伴之间建立密切合作来弥合这一差距的新视角。最后,我们第一次绘制了一个循环流程图,通过将苹果和葡萄渣大量转化为可再生能源(固体生物燃料)和糖提取物作为大规模生物工艺(生产面包酵母工业、柠檬酸、生物乙醇和氨基酸)的原料,将农业收获后转化与工业生物技术和其他行业联系起来。最后,我们讨论了成功弥合学术研究与产业创新之间的实施差距所需的要求。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Bridging the Implementation Gap between Pomace Waste and Large-Scale Baker’s Yeast Production
The objectives set in the European Green Deal constitute the starting point of this review, which then focuses on the current implementation gap between agro-industrial wastes as resources for large-scale bioprocesses (e.g., baker’s yeast, bioethanol, citric acid, and amino acids). This review highlights the current lack of sustainability of the post-harvest processing of grapes and apples. In light of the European Green Deal, industrial biotechnology often lacks sustainability as well. We reviewed the recent progress reported in the literature to enhance the valorization of grape and apple pomace and the current failure to implement this research in technical processes. Nevertheless, selected recent papers show new perspectives to bridge this gap by establishing close collaborations between academic teams and industrial partners. As a final outcome, for the first time, we drew a circular flow diagram that connects agriculture post-harvest transformation with the industrial biotechnology and other industries through the substantial valorization of apple and grape pomace into renewable energy (solid biofuels) and sugar extracts as feedstock for large-scale bioprocesses (production of baker’s yeast industry, citric acid, bioethanol and amino acids). Finally, we discussed the requirements needed to achieve the successful bridging of the implementation gap between academic research and industrial innovation.
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