Effect of process parameters on quality of alfalfa block

Haijun Du, Ting Lei, Yanhua Ma, Yubin Li, Xianyong Yang, Xiaochen Du
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Abstract

To address the imbalance in the supply of grass resources caused by seasonality and regional factors, it is crucial to efficiently store and transport alfalfa. Exploring suitable grass feed processing techniques contributes to the stable transportation of grass blocks and long-term storage of nutritional components. The Central Composite Design response surface design was used to design experiments, with moisture content and compressive force as the test factors. Based on the experimental results, it was found that lower moisture content and a certain compressive force were beneficial for the stability, high density, and protein storage of alfalfa blocks. The microscopic examination of alfalfa particles revealed that a certain moisture content (15%) facilitates the formation of solid bridges between particles, leading to more stable alfalfa blocks. The final optimized process parameters were moisture content of 14.3% and compressive force of 34.8 kN. Under these conditions, the density of the molded alfalfa block was 1001 kg/m3, with R-CP at 96.96%, R-EE at 67.23%, and R-CF at 114.13%.
工艺参数对苜蓿块质量的影响
为解决季节性和地区性因素造成的草资源供应不平衡问题,有效储存和运输紫花苜蓿至关重要。探索合适的草饲料加工技术有助于草块的稳定运输和营养成分的长期储存。实验设计采用中央复合设计响应面设计,以含水量和压缩力为试验因子。根据实验结果发现,较低的含水量和一定的压缩力有利于苜蓿块的稳定性、高密度和蛋白质储存。苜蓿颗粒的显微镜检查显示,一定的含水量(15%)有利于颗粒之间形成固体桥,从而使苜蓿块更加稳定。最终优化的工艺参数为含水量 14.3%,抗压强度 34.8 千牛。在这些条件下,成型苜蓿块的密度为 1001 kg/m3,R-CP 为 96.96%,R-EE 为 67.23%,R-CF 为 114.13%。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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