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从废弃食物和农作物生物量中开发新型牛饲料以提高农业食品系统效率的概念验证。

Proof of concept for developing novel feeds for cattle from wasted food and crop biomass to enhance agri-food system efficiency.

机构信息

Department of Clinical Studies, School of Veterinary Medicine, University of Pennsylvania, 382 W. Street Rd., Kennett Square, PA, 19348, USA.

School of Environmental Engineering, Zhejiang Gongshang University, Jianggan District, 18 Xuezheng St, Hangzhou, 314423, China.

出版信息

Sci Rep. 2022 Aug 10;12(1):13630. doi: 10.1038/s41598-022-17812-w.

Abstract

Modern agri-food systems generate large amounts of crop-based biomass that are unfit for direct human consumption but potentially suitable for livestock feeding in production of meats, milk, and eggs. This study aims to develop novel feeds for cattle from some of those biomass materials through the natural microbial-driven processes of ensiling. Fruit and vegetables resembling supermarket discards were ensiled alone or co-ensiled with corn crop residues, mushroom wastes, etc. via laboratory experiments. Longitudinal sample analyses showed that (co-)ensiling was successful, with pH and fermentation acids changing rapidly into desirable ranges (pH < 4.5, the acids 5-13% DM with lactic acid dominating). The (co-)ensiled products had key nutritional parameters comparable to those of good quality forages commonly used on dairy farms. Additionally, in vitro incubation experiments indicated that the ensiled products could substitute certain conventional feeds while maintaining diet digestibility. Findings from this pilot study provide a proof of principle that quality novel feeds for cattle can be generated by co-ensiling food discards and low-value crop residues. Future research and animal feeding trials to demonstrate the utility of this approach can help societies more effectively utilize untapped biomass resources, strengthening the regenerative capacity of agri-food systems towards a more sustainable food future.

摘要

现代农业食品系统产生了大量不适宜直接人类食用的作物生物质,但可用于生产肉类、牛奶和蛋类的牲畜饲料。本研究旨在通过青贮的自然微生物驱动过程,利用这些生物质材料中的一些来开发新型牛饲料。与超市丢弃物相似的水果和蔬菜单独青贮或与玉米作物残渣、蘑菇废物等共青贮通过实验室实验。纵向样本分析表明,(共)青贮是成功的,pH 值和发酵酸迅速变化到理想范围(pH < 4.5,酸 5-13%DM,以乳酸为主)。(共)青贮产品的关键营养参数与奶牛养殖场常用的优质饲料相当。此外,体外孵育实验表明,青贮产品在保持饲料消化率的同时可以替代某些常规饲料。这项初步研究的结果提供了一个原理上的证明,即通过共青贮食品废弃物和低价值作物残渣可以生产出高质量的新型牛饲料。未来的研究和动物喂养试验,以证明这种方法的实用性,可以帮助社会更有效地利用未开发的生物质资源,增强农业食品系统的再生能力,实现更可持续的食品未来。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/1e32/9365796/bafb6e898dac/41598_2022_17812_Fig1_HTML.jpg

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