首页> 外文期刊>Journal of Cleaner Production >No-till and mulching enhance energy use efficiency and reduce carbon footprint of a direct-seeded upland rice production system
【24h】

No-till and mulching enhance energy use efficiency and reduce carbon footprint of a direct-seeded upland rice production system

机译:没有直到和覆盖,提高能源利用效率,减少直播旱稻生产系统的碳足迹

获取原文
获取原文并翻译 | 示例
       

摘要

Sustainability of conventional agricultural production systems is threatened by triple challenges of energy and environmental crises, deteriorating natural resources bases, and declining farm profitability. Current agricultural management practices (energy-intensive, inefficient external and natural input use, and crop biomass burning) are negatively impacting the ecosystem services which are the principal drivers for food security and human survival. Hence, there is a need to shift from unsustainable production practices to cleaner production systems. Energy use, carbon footprint (CF), and economic sustainability are important indicators of any clean production systems. Thus, a hypothesis was formulated that no-till (NT) cultivation along with mulching can provide an environmentally clean crop production practice that can enhance energy use efficiency, economic profitability, and reduce the CF. Therefore, the present experiment was conducted for four consecutive years (2012-15) to evaluate the energy budget, CF, and economics of NT along with bio-mulching for a cleaner upland rice production system. The experiment comprised of two tillage practices i.e., conventional tillage (CT) and NT in main plots and four bio- mulches in subplots i.e., rice straw mulch (RSM), Gliricidia sepium mulch (GLM), brown manuring mulch (BMM) of cowpea (Vigna unguiculata), and no mulch (NM) as a control. Results revealed that the adoption of NT curtailed energy use by 48.50%, specific energy by 49.63%, CF by 16.48%, and cost of cultivation by 35% in addition to enhancing energy use efficiency and benefit to cost ratio in comparison to CT. It was also observed that mulching, particularly the BMM, boosted the energy use efficiency, economic productivity, net returns, and benefit to cost ratio over NM. The results suggested that NT with BMM is an environmentally clean production technology to enhance the energy use efficiency, besides reducing the CF of direct-seeded upland rice production system in the Eastern Himalayas and similar eco-regions of the world. (C) 2020 Elsevier Ltd. All rights reserved.
机译:传统农业生产系统的可持续性受到能源和环境危机的三重挑战,自然资源基础恶化,农业盈利下降。目前的农业管理实践(能源密集型,低效的外部和自然投入使用以及作物生物量燃烧)对生态系统服务产生负面影响,这些服务是粮食安全和人类生存的主要司机。因此,需要从不可持续的生产实践转向清洁生产系统。能源使用,碳足迹(CF)和经济可持续性是任何清洁生产系统的重要指标。因此,制定了假设,即含有覆盖的耕种可以提供环境清洁的作物生产实践,可以提高能源利用效率,经济盈利能力和减少CF。因此,本实验连续四年(2012-15)进行,以评估NT的能源预算,CF和经济学以及对清洁旱稻生产系统的生物覆盖。由两种耕作实践组成的实验,即主图中的常规耕作(CT)和NT,在凹陷中的四种生物覆盖物中,稻草覆盖物(RSM),神经胶质型丘疹覆盖(GLM),棕色挤压覆盖物(BMM)的豇豆(Vigna Unguiculata),没有覆盖物(nm)作为对照。结果表明,除了提高能源利用效率和与CT的效益相比,除了提高能源利用效率和效益与CT相比,除了提高能源利用效率外,将NT缩减能量低48.5.5%,特定能量低49.63%,培养成本为35%,而且与CT相比,效益为成本比。还观察到覆盖,特别是BMM,提高了能源利用效率,经济生产力,净回报,以及与NM的成本比值有益。结果表明,除了减少喜马拉雅山东部和世界类似生态地区的直接种子山区生产系统的CF之外,NT的NT是一种环保的生产技术,可以提高能源利用效率。 (c)2020 elestvier有限公司保留所有权利。

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