在线监测奶牛场奶牛循环垫料的温度和相对湿度

Yong Wei, Kun Liu, Yaao Li, Zhixing Li, Tianyu Zhao, Pengfei Zhao, Yayin Qi, Meiying Li, Zongyuan Wang
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引用次数: 0

摘要

在规模化奶牛养殖中,使用高温发酵的奶牛粪便垫料代替稻壳垫料和其他商品垫料受到广泛青睐。条垛式好氧发酵是奶牛粪便垫料的主要生产方式,但存在发酵不稳定、病原菌二次繁殖等问题。在这项工作中,采用了温度和相对湿度的多探头集成在线监测系统来优化发酵过程。系统研究了发酵温度和相对湿度的时空分布对粪便垫料养分含量曲线、水分和灰分含量的影响。分析了发酵过程对有效垫料(纤维素、半纤维素和木质素)保留率的影响。实验证明,通过合理的堆积发酵可以获得高质量的垫料。制成的垫料中纤维素、半纤维素和木质素的总干基含量为 78%,灰分含量为 6%,营养成分含量为 17%。生产出的垫料可提高卧床休息率,并持续抑制垫料中的细菌含量,使其在 5 天内保持在较低水平。这项研究证明,温湿度监测可指导优化奶牛粪便的条状堆放发酵过程,并可应用于大规模牧场,以改善发酵参数。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Online Monitoring of the Temperature and Relative Humidity of Recycled Bedding for Dairy Cows on Dairy Farms
In large-scale dairy farming, the use of high-temperature-fermented dairy manure bedding instead of rice husk-based bedding and other commercial types of bedding is widely favored. Strip-stacking aerobic fermentation is the main production method of dairy manure bedding, but it has problems including unstable fermentation and the secondary breeding of pathogens. In this work, a multi-probe, integrated, online monitoring system for temperature and relative humidity was used for fermentation process optimization. The effects of the temporal and spatial distribution of fermentation temperature and relative humidity on the nutrient content curve and the moisture and ash content of manure bedding materials were systematically studied. The effect of the fermentation process on the retention rate of effective bedding materials (cellulose, hemicellulose, and lignin) was analyzed. The experiments proved that high-quality bedding material can be obtained through reasonable stacking fermentation. The fabricated bedding material has a total dry base content consisting of cellulose, hemicellulose, and lignin of 78%, an ash content of 6%, and a nutrient content of 17%. The obtained bedding material was produced to increase the bed rest rate and continuously inhibit the bedding bacteria content, keeping it at a low level for 5 days. This study proves that temperature and humidity monitoring can guide the optimization of the strip-stacking fermentation process of dairy manure and that it can be applied to large-scale farms to improve fermentation parameters.
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