...
首页> 外文期刊>Renewable Agriculture and Food Systems >Environment and integrated agricultural systems. (Special Issue: Principles of integrated agricultural systems.)
【24h】

Environment and integrated agricultural systems. (Special Issue: Principles of integrated agricultural systems.)

机译:环境与农业综合系统。 (特刊:农业综合系统原理。)

获取原文
获取原文并翻译 | 示例
           

摘要

Modern agriculture has done an excellent job producing food, feed and fiber for the world's growing population, but there are concerns regarding its continued ability to do so, especially with the world's limited resources. To adapt to these challenges, future agricultural systems will need to be diverse, complex and integrated. Integrated agricultural systems have many of these properties, but how they are shaped by the environment and how they shape the environment is still unclear. In this paper, we used commonly available county-level data and literature review to answer two basic questions. First, are there environmental limitations to the adoption of integrated agricultural systems? Second, do integrated agricultural systems have a lower environmental impact than more specialized systems? We focused on the Great Plains to answer these questions. Because of a lack of farm-level data, we used county-level surrogate indicators. The indicators selected were percent land base in pasture and crop diversity along a precipitation gradient in North Dakota, South Dakota, Nebraska and Kansas. Evaluated over the four-state region, neither indicator had a strong relationship with precipitation. In the Dakotas, both percent pasture land and crop diversity suggested greater potential for agricultural integration at the mid-point of the precipitation gradient, but there was no clear trend for Kansas and Nebraska. Integrated agricultural systems have potential to reduce the impact of agriculture on the environment despite concerns with nutrient management. Despite advantages, current adoption of integrated agricultural systems appears to be limited. Future integrated agricultural systems need to work with environmental limitations rather than overcoming them and be capable of enhancing environmental quality.
机译:现代农业在为世界不断增长的人口生产粮食,饲料和纤维方面做得非常出色,但是人们对它的持续能力,尤其是在世界资源有限的情况下,仍存在担忧。为了适应这些挑战,未来的农业系统将需要多样化,复杂和一体化。农业综合系统具有许多这些特性,但是如何被环境塑造以及如何塑造环境仍不清楚。在本文中,我们使用了常用的县级数据和文献综述来回答两个基本问题。首先,采用综合农业系统是否存在环境限制?第二,综合农业系统是否比更专业的系统对环境的影响更低?我们专注于大平原地区,以回答这些问题。由于缺乏农场一级的数据,我们使用了县一级的替代指标。选择的指标是北达科他州,南达科他州,内布拉斯加州和堪萨斯州的降水梯度下的牧场和作物多样性的土地面积百分比。在四州地区进行评估,这两个指标均与降水没有密切关系。在达科他州,牧场面积百分比和作物多样性都表明在降水梯度中点有更大的农业整合潜力,但堪萨斯州和内布拉斯加州没有明显的趋势。尽管对养分管理感到担忧,但综合农业系统有潜力减少农业对环境的影响。尽管有优势,但目前对综合农业系统的采用似乎受到限制。未来的综合农业系统需要克服环境限制,而不是克服环境限制并能够提高环境质量。

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