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Integrated processes can turn industrial food waste into valuable food by-products and/or ingredients: The cases of olive mill and pomegranate wastes

机译:集成过程可以将工业食品废弃物转化为有价值的食品副产品和/或配料:橄榄磨和石榴废弃物的情况

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Heavy food industry wastes present a constant threat to the environment and a serious operational problem for the respective food industries. While numerous research works are focused on the management of food wastes a lot of work has been done on several such wastes, process efficiency (i.e. extent of waste valorization) along with financial viability still remain serious drawbacks. This work deals with two difficult food wastes, the olive mill wastewater (OMW) and the pomegranate wastes (i.e. peels and seeds). It presents integrated approaches for complete utilization of these wastes in recovering valuable by-products and/or ingredients, while succeeding total depollution (zero waste). Specially designed fermentation, spray drying and encapsulation technologies were properly applied to OMW to produce a number of valuable by-products, such as olive paste spread or olive powder (to be included in food formulations) and encapsulated polyphenols. Clean water is the only remaining "waste stream" that can be reutilized in the olive mill plant, thus reaching total exploitation of the original OMW. In the case of pomegranate waste, an integrated approach is suggested for complete utilization of pomegranate seeds and peels based on ultrasound-assisted extraction of oil and phenolics from seeds and peels, respectively; optimized extraction is followed by isolated ingredient encapsulation using a suitable spray drying technique. (C) 2015 Elsevier Ltd. All rights reserved.
机译:重食品工业废物对环境造成持续威胁,并给相应的食品工业带来严重的运营问题。尽管许多研究工作集中在食物垃圾的管理上,但已经对几种这类垃圾进行了许多工作,但是过程效率(即废物的增值程度)以及财务可行性仍然是严重的缺点。这项工作处理了两种困难的食物垃圾,橄榄磨坊废水(OMW)和石榴垃圾(即果皮和种子)。它提出了用于完全利用这些废物以回收有价值的副产物和/或成分,同时成功实现总污染(零废物)的综合方法。经过特殊设计的发酵,喷雾干燥和封装技术已适当地应用于OMW,以产生许多有价值的副产品,例如橄榄酱或橄榄粉(将包含在食品配方中)和封装的多酚。清洁水是橄榄制工厂中唯一可以再利用的“废物流”,因此可以完全利用原始的OMW。对于石榴废料,建议采用综合方法,分别基于超声辅助从种子和果皮中提取油和酚类物质来完全利用石榴种子和果皮。优化提取后,使用合适的喷雾干燥技术将成分包封。 (C)2015 Elsevier Ltd.保留所有权利。

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