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Opportunities to improve sustainability on commercial pasture-based dairy farms by assessing environmental impact

机译:通过评估环境影响,提高商业牧场乳业农场可持续性的机会

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For pasture-based dairy farming to become more sustainable, the negative environmental impacts associated with milk production must be minimized. These negative impacts include eutrophication, ammonia emissions and greenhouse gas (GHG) emissions. Two tools, a nutrient budget and a carbon footprint calculator, allow farm level assessments of these negative impacts. In this study, a nutrient budget was used to calculate the efficiency of nitrogen and phosphorous use, and a carbon footprint calculator was used to calculate GHG emissions. Farm system descriptors were used to identify the farm systems that had the lowest environmental impact. Soil carbon was measured as an indicator of soil health, and the link between soil health, nutrient use efficiency and GHG emissions was examined. Nitrogen and phosphorous were not efficiently utilized on the farms included in this study, with a large excess of nutrients imported onto the farms each year. The average use efficiency was 29% for nitrogen, and 36% for phosphorous. The GHG emissions per liter of milk production were higher on the farms included in this study than found in previous studies on dairy farms, with an average of 1.39 kg of carbon dioxide equivalents emitted per kilogram of energy-corrected milk. Farm systems which optimized milk production on the available land, while applying the least amount of fertilizer and feeding the least amount of purchased feeds per milk produced, had the lowest environmental impact. Farms with higher soil carbon levels had higher nitrogen use efficiencies and lower GHG emissions. This is the first South African research to examine environmental impact on pasture-based dairy farms in this manner. It is possible for pasture-based dairy farmers to reduce the environmental impact of milk production by adopting some of the principles identified in this study.
机译:对于基于牧场的乳制品养殖成为更可持续的,必须最大限度地减少与牛奶生产相关的负面环境影响。这些负面影响包括富营养化,氨排放和温室气体(GHG)排放。两种工具,营养预算和碳足迹计算器,允许对这些负面影响的农业水平评估。在这项研究中,使用营养预算来计算氮和磷的效率,并且使用碳足迹计算器来计算温室气​​体排放。农场系统描述符用于识别环境影响最低的农用系统。将土壤碳作为土壤健康的指标,检查土壤健康,营养利用效率和温室气体排放之间的联系。本研究中包含的农场没有有效地利用氮和磷,每年进口农场的营养素大量过量。氮的平均用效率为29%,磷的36%。本研究中含有的农场的GHG排放量高于以往的乳制品农场研究中发现的农场,平均每千克能量矫正牛奶发出1.39千克二氧化碳等同物。优化牛奶生产在可用土地上的农场系统,同时施用最少的肥料并喂养每次牛奶的最少购买的购买饲料,具有最低的环境影响。土壤碳水平较高的农场具有更高的氮气使用效率和更低的温室气体排放。这是第一个南非研究,以这种方式研究基于牧场的乳制品农场的环境影响。牧场的乳制品可能通过采用本研究中确定的一些原则来降低牛奶产量的环境影响。

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