...
首页> 外文期刊>NJAS Wageningen Journal of Life Sciences >Sustainability evaluation of automatic and conventional milking systems on organic dairy farms in Denmark
【24h】

Sustainability evaluation of automatic and conventional milking systems on organic dairy farms in Denmark

机译:丹麦有机奶牛场自动和常规挤奶系统的可持续性评估

获取原文
获取原文并翻译 | 示例

摘要

Organic dairy farmers in Denmark currently are implementing automatic milking systems (AMS) to save labour costs. As organic agriculture aims at sustainable production, the introduction of a new technology such as AMS should be evaluated regarding its economic viability, environmental impact, and social acceptability, i.e., its contribution to sustainable development. The objective of this research, therefore, was to evaluate sustainability of AMS use on organic dairy farms in Denmark, by comparing results of a set of sustainability indicators for nine farms using AMS with nine farms using conventional milking systems (CMS). Sustainability indicators were quantified for economic performance of the farm, on-farm eutrophication, on-farm biodiversity, animal welfare (including health), grazing time, milk composition and labour time. Milk yield per cow per year was higher for AMS farms (9021 kg energy corrected milk ECMI per cow per year) than for CMS farms (7664 kg ECM), but did not result in a higher net profit or gross margin per cow for AMS farms. Nitrogen surplus per hectare of available land was higher for AMS farms (110 kg N ha(-1)) than for CMS farms (66 kg N ha(-1)). This difference was not due to the use of AMS but was caused by a higher export of manure by the CMS farms. The number of veterinary treatments per cow per year was unaffected by AMS use. but culling rate was higher for the AMS farms (38%) than for the CMS farms (32%). There was no difference between the AMS and CMS farms in milk composition indicators such as somatic cell count, clostridium spores, and urea. The acid degree value (ADV), measuring free fatty acids (FFA) in the milk, was higher in the milk from the AMS farms (0.78 meq I-1) compared with the CMS farms (0.49 meq I-1). Labour time measured in hours of work per dairy cow per day, was only half for the AMS compared with the CMS users; i.e., 2.3 min per cow per day. Grass intake by grazing as percentage of total feed intake was reduced by AMS (5.1 kg DM per cow per day for the AMS farms against 6.8 kg DM per cow per day for the CMS farms). From this quantification of selected sustainability indicators it can be concluded that organic dairy farms using AMS, in spite of the substantial decrease in grazing time, show the potential of economic and environmental sustainable development within the range of herd sizes investigated (65-157 cows per farm). Even though the lower number of grazing hours per cow per year on the AMS farms did not affect indicator scores for animal health or milk quality, this reduction in grazing hours might be a problem for consumers to accept AMS use. (C) 2011 Royal Netherlands Society for Agricultural Sciences. Published by Elsevier B.V. All rights reserved.
机译:丹麦的有机奶农目前正在实施自动挤奶系统(AMS),以节省人工成本。由于有机农业的目标是可持续生产,因此应评估诸如AMS等新技术的经济可行性,环境影响和社会可接受性,即其对可持续发展的贡献。因此,本研究的目的是通过比较9个使用AMS的农场和9个使用常规挤奶系统(CMS)的农场的一组可持续性指标的结果,评估丹麦有机奶牛场使用AMS的可持续性。量化了农场的经济绩效,农场富营养化,农场生物多样性,动物福利(包括健康),放牧时间,牛奶成分和劳动时间的可持续性指标。 AMS农场的每头牛每年的牛奶产量(每头母牛每年9021千克能量校正牛奶ECMI)高于CMS农场(7664千克ECM),但并没有提高AMS农场的每头母牛净利润或毛利率。 AMS农场(110 kg N ha(-1))每公顷可利用土地的氮过剩高于CMS农场(66 kg N ha(-1))。这种差异不是由于使用AMS造成的,而是由CMS农场较高的粪便出口量引起的。每年每头牛的兽医治疗次数不受AMS使用的影响。但是AMS农场(38%)的剔除率高于CMS农场(32%)的剔除率。在AMS和CMS农场之间,牛奶成分指标(如体细胞计数,梭状芽孢杆菌孢子和尿素)没有差异。与CMS农场(0.49 meq I-1)相比,AMS农场(0.78 meq I-1)的牛奶中测量游离牛奶(FFA)的酸度值(ADV)更高。以每天每头奶牛的工作小时数衡量的劳动时间,AMS仅是CMS用户的一半。即每头母牛每天2.3分钟。 AMS降低了通过放牧而占草料的草料摄入量(AMS农场每天每头母牛每天5.1千克干物质,而CMS农场每天每头牛每天6.8千克干物质)。从对选定的可持续性指标的量化可以得出结论,尽管放牧时间大大减少,但使用AMS的有机奶牛场仍显示出在所调查的牛群规模范围内经济和环境可持续发展的潜力(每头牛65-157头)农场)。即使AMS农场每年每头母牛的放牧小时数较少,也不会影响动物健康或牛奶质量的指标得分,但是这种放牧时间的减少可能是消费者接受AMS使用的问题。 (C)2011荷兰皇家农业科学学会。由Elsevier B.V.发布。保留所有权利。

著录项

相似文献

  • 外文文献
  • 中文文献
  • 专利
获取原文

客服邮箱:kefu@zhangqiaokeyan.com

京公网安备:11010802029741号 ICP备案号:京ICP备15016152号-6 六维联合信息科技 (北京) 有限公司©版权所有
  • 客服微信

  • 服务号