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首页> 外文期刊>Catena: An Interdisciplinary Journal of Soil Science Hydrology-Geomorphology Focusing on Geoecology and Landscape Evolution >On the use of remote sensing techniques for monitoring spatio-temporal soil organic carbon dynamics in agricultural systems. (Special Issue: Soil erosion and the global carbon cycle.)
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On the use of remote sensing techniques for monitoring spatio-temporal soil organic carbon dynamics in agricultural systems. (Special Issue: Soil erosion and the global carbon cycle.)

机译:关于使用遥感技术监测农业系统中时空土壤有机碳动态的研究。 (特刊:土壤侵蚀和全球碳循环。)

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摘要

Soil organic carbon (SOC) dynamics affect soil quality, agricultural productivity and atmospheric CO2 concentration. Despite the need for spatial assessments of SOC content over time, reliable estimates from traditional field survey methods are limited by data availability; where measurements are often made at discrete point locations, at a coarse sample spacing or over a limited spatial extent. Remote sensing (RS) is in a strong position to provide spatially distributed, reproducible, scale-appropriate and resource-efficient measurements of SOC content and fluxes at field, landscape and regional scales. This paper provides a critical review of optical RS techniques for such applications. The first part of the paper reviews the methods, instruments and techniques used for developing predictive models for monitoring spatial SOC content. Secondly, sources of spatio-temporal SOC variations are examined, including the lateral transfer of SOC by erosion, soil structural breakdown and land management practices, in the context of RS data and techniques. The key challenges of using RS to monitor SOC contents are discussed along with opportunities for improving SOC predictions within a spatial framework. Such opportunities include the use of ancillary data, scale-specific methods, improved development of spectral libraries and better integration of RS technologies into empirical and simulation SOC models. This paper aims to provide a transparent assessment and practical guide to RS techniques and products in order to further advance and better incorporate the use of RS methods within soil science.
机译:土壤有机碳(SOC)的变化会影响土壤质量,农业生产力和大气中CO 2 的浓度。尽管需要随时间进行SOC含量的空间评估,但是传统的现场调查方法的可靠估计受到数据可用性的限制;测量通常在离散的点位置,粗略的样品间距或有限的空间范围内进行。遥感(RS)处于优势地位,可以提供空间分布,可再现,适合规模且资源高效的SOC含量和通量的野外,景观和区域尺度测量。本文提供了针对此类应用的光学RS技术的重要综述。本文的第一部分回顾了用于开发用于监视空间SOC含量的预测模型的方法,工具和技术。其次,在遥感数据和技术的背景下,研究了时空SOC变化的来源,包括由于侵蚀引起的SOC横向转移,土壤结构破坏和土地管理实践。讨论了使用RS监视SOC内容的主要挑战,以及在空间框架内改善SOC预测的机会。这样的机会包括使用辅助数据,特定比例的方法,改进频谱库的开发以及将RS技术更好地集成到经验和模拟SOC模型中。本文旨在为RS技术和产品提供透明的评估和实用指南,以进一步推进RS方法并在土壤科学中更好地结合使用。

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