...
首页> 外文期刊>Global change biology >From pools to flow: The PROMISE framework for new insights on soil carbon cycling in a changing world
【24h】

From pools to flow: The PROMISE framework for new insights on soil carbon cycling in a changing world

机译:从游泳池流动:新洞察于改变世界中土壤碳循环的新见解的承诺框架

获取原文
获取原文并翻译 | 示例
           

摘要

Soils represent the largest terrestrial reservoir of organic carbon, and the balance between soil organic carbon (SOC) formation and loss will drive powerful carbon-climate feedbacks over the coming century. To date, efforts to predict SOC dynamics have rested on pool-based models, which assume classes of SOC with internally homogenous physicochemical properties. However, emerging evidence suggests that soil carbon turnover is not dominantly controlled by the chemistry of carbon inputs, but rather by restrictions on microbial access to organic matter in the spatially heterogeneous soil environment. The dynamic processes that control the physicochemical protection of carbon translate poorly to pool-based SOC models; as a result, we are challenged to mechanistically predict how environmental change will impact movement of carbon between soils and the atmosphere. Here, we propose a novel conceptual framework to explore controls on belowground carbon cycling:ProbabilisticRepresentation ofOrganicMatterInteractions within theSoilEnvironment (PROMISE). In contrast to traditional model frameworks, PROMISE does not attempt to define carbon pools united by common thermodynamic or functional attributes. Rather, the PROMISE concept considers how SOC cycling rates are governed by the stochastic processes that influence the proximity between microbial decomposers and organic matter, with emphasis on their physical location in the soil matrix. We illustrate the applications of this framework with a new biogeochemical simulation model that traces the fate of individual carbon atoms as they interact with their environment, undergoing biochemical transformations and moving through the soil pore space. We also discuss how the PROMISE framework reshapes dialogue around issues related to SOC management in a changing world. We intend the PROMISE framework to spur the development of new hypotheses, analytical tools, and model structures across disciplines that will illuminate mechanistic controls on the flow of carbon between plant, soil, and atmospheric pools.
机译:土壤代表了最大的有机碳储层,土壤有机碳(SoC)形成和损失之间的平衡将推动未来世纪的强大碳气候反馈。迄今为止,预测SOC动态的努力已经依靠基于池的模型,其假设具有内部均匀物理化学性质的SOC类。然而,新兴的证据表明,土壤碳营业额未被碳投入的化学化学控制,而是通过对空间异质土壤环境中的微生物进入对有机物质的限制。控制碳的物理化学保护的动态过程转化为基于池的SoC模型的差价。因此,我们受到机械主义地预测环境变化如何影响土壤和大气之间的碳的运动。在这里,我们提出了一种新颖的概念框架,探讨了以下地下碳循环的控制:概率主义者的概率主义互连在Thesoilen环境(承诺)内。与传统的模型框架相比,承诺不会试图通过公共热力学或功能属性来定义碳池。相反,承诺概念考虑了SoC循环率如何受到影响微生物分解和有机物质邻近的随机过程的管辖,重点是土壤基质中的物理位置。我们用新的生物地球化学仿真模型来说明该框架的应用,这些模拟模型追踪各个碳原子的命运,因为它们与其环境相互作用,正在进行生化转化并穿过土壤孔隙空间。我们还讨论了承诺框架在不断变化的世界中与SoC管理有关的问题的对话。我们打算承诺框架促进跨学科的新假设,分析工具和模型结构的开发,以照亮植物,土壤和大气池之间的碳流动的机械控制。

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