Abdel-Aal El-Sayed M
Guelph Research and Development Centre, Agriculture and Agri-Food Canada, Guelph, ON N1G 5C9, Canada.
Foods. 2024 May 15;13(10):1532. doi: 10.3390/foods13101532.
Cereal grains and pulses are staple foods worldwide, being the primary supply of energy, protein, and fiber in human diets. The current practice of milling and fractionation yields large quantities of byproducts and waste, which are largely downgraded and end up as animal feeds or fertilizers. This adversely affects food security and the environment, and definitely implies an urgent need for a sustainable grain processing system to rectify the current issues, particularly the management of waste and excessive use of water and energy. The current review intends to discuss the limitations and flaws of the existing practice of grain milling and fractionation, along with potential solutions to make it more sustainable, with an emphasis on wheat and peas as common fractionation crops. This review discusses a proposed sustainable grain processing system for the fractionation of wheat or peas into flour, protein, starch, and value-added components. The proposed system is a hybrid model that combines dry and wet fractionation processes in conjunction with the implementation of three principles, namely, integration, recycling, and upcycling, to improve component separation efficiency and value addition and minimize grain milling waste. The three principles are critical in making grain processing more efficient in terms of the management of waste and resources. Overall, this review provides potential solutions for how to make the grain processing system more sustainable.
谷物和豆类是全球的主食,是人类饮食中能量、蛋白质和纤维的主要来源。目前的碾磨和分馏做法会产生大量副产品和废料,这些大多被降级处理,最终成为动物饲料或肥料。这对粮食安全和环境产生不利影响,也明确表明迫切需要一个可持续的谷物加工系统来解决当前问题,特别是废料管理以及水和能源的过度使用问题。本综述旨在讨论现有谷物碾磨和分馏做法的局限性和缺陷,以及使其更具可持续性的潜在解决方案,重点关注小麦和豌豆这两种常见的分馏作物。本综述讨论了一种拟议的可持续谷物加工系统,该系统可将小麦或豌豆分馏为面粉、蛋白质、淀粉和增值成分。拟议的系统是一种混合模式,结合了干法和湿法分馏工艺,并实施整合、回收和升级回收这三项原则,以提高成分分离效率和附加值,并尽量减少谷物碾磨废料。这三项原则对于在废料和资源管理方面提高谷物加工效率至关重要。总体而言,本综述为如何使谷物加工系统更具可持续性提供了潜在解决方案。