首页> 外文期刊>ISRN Soil Science >Passive and Active Restoration Strategies to Activate Soil Biogeochemical Nutrient Cycles in a Degraded Tropical Dry Land
【24h】

Passive and Active Restoration Strategies to Activate Soil Biogeochemical Nutrient Cycles in a Degraded Tropical Dry Land

机译:被动和主动的恢复策略,以激活退化的热带旱地土壤生物地球化学养分循环

获取原文
       

摘要

The potential use of two restoration strategies to activate biogeochemical nutrient cycles in degraded soils in Colombia was studied. The active model was represented by forest plantations of neem (Azadirachta indica) (FPN), while the passive model by successional patches of native plant species was dominated by mosquero (Croton leptostachyus) (SPM). In the field plots fine-litter traps and litter-bags were established; samples of standing litter and surface soil samples (0–10?cm) were collected for chemical analyses during a year. The results indicated that the annual contributions of fine litterfall in FPN and SPM were 557.5 and 902.2?kg?ha?1, respectively. The annual constant of decomposition of fine litter (k) was 1.58 for neem and 3.40 for mosquero. Consequently, the annual real returns of organic material and carbon into the soil from the leaf litterfall decomposition were 146 and 36?kg ha?1?yr?1 for FPN and 462 and 111 kg ha?1?yr?1 for SPM, respectively. Although both strategies showed potential to activate soil biogeochemical cycles with respect to control sites (without vegetation), the superiority of the passive strategy to supply fine litter and improve soil properties was reflected in higher values of soil organic matter content and cation exchange capacity.
机译:研究了在哥伦比亚退化的土壤中使用两种恢复策略激活生物地球化学养分循环的潜在用途。主动模型由印度em树人工林(FPN)代表,而被动模型由连续的天然植物物种斑块构成,主要由清真寺(Croton leptostachyus)(SPM)主导。在田间地块,建立了小型垃圾收集器和垃圾袋。一年中收集了立式垃圾的样本和表层土壤样本(0–10?cm)进行化学分析。结果表明,FPN和SPM的细凋落物的年贡献分别为557.5和902.2?kg?ha?1。 em的分解年常数(k),印em为1.58,清真寺为3.40。因此,叶片凋落物分解产生的有机物和碳的年实际实际返回量对于FPN为146和36?kg ha?1?yr?1,对于SPM为462和111 kg ha?1?yr?1。 。尽管两种策略都显示出有可能激活相对于控制地点(无植被)的土壤生物地球化学循环,但被动策略提供细垫料和改善土壤特性的优势体现在较高的土壤有机质含量和阳离子交换能力值上。

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