Perspectives on the Fate of Absorbed Nitrogen in Dairy Farms

K. Zhao, B. Luo, Y. Wu, W. Liu
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Abstract

The demand for milk rises dramatically due to the increased global population without damaging the standard of living. As a result, the scale of the dairy industry in the world is growing rapidly. Consequently, a concomitant problem that needs to be faced is the environmental impact of the by-products produced during the operation of the dairy farm. Among the substances produced in dairy farms, the most harmful pollutant to the environment is nitrogen (N). In addition, the N pollution from dairy farms is significant and N has a great danger to human health and society. This study provides a systematic review on how to alleviate N pollution from dairy cows during milk production and the removal of ammonia and nitrate from dairy wastewater via biochar adsorption. First, from a physiological perspective, the metabolic pathways of amino acids and ammonia in the rumen, portal-drained viscera, liver, and mammary gland of dairy cows are elaborated, as well as the measures to improve N utilization. In the second part, the progress of research on the removal of ammonia and nitrate by biochar adsorption and the involved mechanisms are summarized. Modified biochar has a significant improvement in nitrate removal due to weakening the repulsive effect of ions. Based on the review of this paper, it can provide relevant theoretical support for future studies on N pollution mitigation from dairy farms.
对奶牛场吸收氮命运的展望
由于全球人口的增加,对牛奶的需求急剧上升,但却没有损害生活水平。因此,世界乳业的规模正在迅速增长。因此,需要面对的一个伴随问题是奶牛场运营过程中产生的副产品对环境的影响。在奶牛场产生的物质中,对环境危害最大的污染物是氮(N)。此外,奶牛场的氮污染显著,对人体健康和社会都有很大的危害。本研究就如何缓解奶牛产奶过程中的氮污染以及利用生物炭吸附去除奶牛废水中的氨和硝酸盐进行了系统的综述。首先,从生理角度阐述了奶牛瘤胃、门静脉引流脏器、肝脏和乳腺中氨基酸和氨的代谢途径,以及提高氮利用率的措施。第二部分综述了生物炭吸附法去除氨氮和硝酸盐的研究进展及其机理。改性生物炭由于削弱了离子的排斥作用,对硝酸盐的去除率有显著提高。通过对本文的综述,可以为今后奶牛场氮污染缓解研究提供相关的理论支持。
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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