Leveraging Environmental Research and Observation Networks to Advance Soil Carbon Science

Leveraging Environmental Research and Observation Networks to Advance Soil Carbon Science
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DOI:
10.1029/2018jg004956
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发表时间:
2019-05
期刊:
Journal of Geophysical Research: Biogeosciences
影响因子:
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通讯作者:
S. Weintraub;A. Flores;W. Wieder;D. Sihi;Claudia Cagnarini;Daniel Ruiz Potma Gonçalves;M. Young;Li Li-Li;Y. Olshansky;R. Baatz;P. Sullivan;P. Groffman
S. Weintraub;A. Flores;W. Wieder;D. Sihi;Claudia Cagnarini;Daniel Ruiz Potma Gonçalves;M. Young;Li Li-Li;Y. Olshansky;R. Baatz;P. Sullivan;P. Groffman
中科院分区:
其他
文献类型:
--
作者:
S. Weintraub;A. Flores;W. Wieder;D. Sihi;Claudia Cagnarini;Daniel Ruiz Potma Gonçalves;M. Young;Li Li-Li;Y. Olshansky;R. Baatz;P. Sullivan;P. Groffman

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土壤有机质(SOM)是一个重要的生态系统变量,受物理、化学和生物过程相互作用的调节。通过合作努力,整合来自跨学科研究和观察网络的观点、数据和模型,可以显著提高对SOM的预测理解。我们概述了如何整合三个网络-长期生态研究,重点是生态动力学,关键区观测站的优势,景观/地质背景下,和国家生态观测站网络与标准化的多尺度测量-可以推进SOM知识。这种整合需要改进数据传播和共享,协调数据收集活动,并加强网络内部和网络之间的专家和建模者之间的合作。
Soil organic matter (SOM) is a critical ecosystem variable regulated by interacting physical, chemical, and biological processes. Collaborative efforts to integrate perspectives, data, and models from interdisciplinary research and observation networks can significantly advance predictive understanding of SOM. We outline how integrating three networks—the Long‐Term Ecological Research with a focus on ecological dynamics, the Critical Zone Observatories with strengths in landscape/geologic context, and the National Ecological Observatory Network with standardized multiscale measurements—can advance SOM knowledge. This integration requires improved data dissemination and sharing, coordinated data collection activities, and enhanced collaboration between empiricists and modelers within and across networks.