...
首页> 外文期刊>PLoS One >Orchard recycling improves climate change adaptation and mitigation potential of almond production systems
【24h】

Orchard recycling improves climate change adaptation and mitigation potential of almond production systems

机译:果园回收改善了杏仁生产系统的气候变化适应和缓解潜力

获取原文
   

获取外文期刊封面封底 >>

       

摘要

There is an urgent need to develop climate smart agroecosystems capable of mitigating climate change and adapting to its effects. In California, high commodity prices and increased frequency of drought have encouraged orchard turnover, providing an opportunity to recycle tree biomass in situ prior to replanting an orchard. Whole orchard recycling (WOR) has potential as a carbon (C) negative cultural practice to build soil C storage, soil health, and orchard productivity. We tested the potential of this practice for long term C sequestration and hypothesized that associated co-benefits to soil health will enhance sustainability and resiliency of almond orchards to water-deficit conditions. We measured soil health metrics and productivity of an almond orchard following grinding and incorporation of woody biomass vs. burning of old orchard biomass 9 years after implementation. We also conducted a deficit irrigation trial with control and deficit irrigation (-20%) treatments to quantify shifts in tree water status and resilience. Biomass recycling led to higher yields and substantial improvement in soil functioning, including nutrient content, aggregation, porosity, and water retention. This practice also sequestered significantly higher levels of C in the topsoil (+5 t ha -1 ) compared to burning. We measured a 20% increase in irrigation water use efficiency and improved soil and tree water status under stress, suggesting that in situ biomass recycling can be considered as a climate smart practice in California irrigated almond systems.
机译:迫切需要开发气候智能农业系统,能够减轻气候变化并适应其影响。在加利福尼亚州,高商品价格和干旱频率增加鼓励果园营业额,在重新装修果园之前,为原位循环生物量提供机会。整个果园回收(WOR)具有碳(C)负面文化实践,以建立土壤C储存,土壤健康和果园生产力。我们测试了这种做法的长期C封存,假设对土壤健康有关的共同益处将提高杏仁果园对水赤字条件的可持续性和弹性。在实施后,我们测量了杏仁果园的土壤健康度量和生产力,林业生物量与旧果园生物质燃烧的磨削和实施。我们还通过控制和赤字灌溉(-20%)治疗进行了赤字灌溉试验,以量化树脂地位和弹性的转变。生物质回收导致土壤功能较高的产量和显着提高,包括营养含量,聚集,孔隙率和水保持。与燃烧相比,这种做法在表土(+ 5吨HA -1)中也会显着较高的C水平。我们在压力下测量了灌溉用水效率和改善的土壤和树水状况增加了20%,提示,原位生物量回收可被视为加州灌溉杏仁系统的气候智能实践。

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