近地表土壤碳清单采样策略优化:一种方法不适合所有

IF 2.9 Q2 SOIL SCIENCE Soil Systems Pub Date : 2023-03-17 DOI:10.3390/soilsystems7010027
C. Bettigole, Juliana Hanle, Daniel A. Kane, Zoe Pagliaro, Shaylan Kolodney, Sylvana Szuhay, Miles Chandler, Eli Hersh, S. Wood, B. Basso, Douglas Jeffrey Goodwin, Shane Hardy, Zachary Wolf, K. Covey
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引用次数: 0

摘要

土壤是最大的陆地碳库,但由于人类活动已经失去了大量储量。农田和放牧系统的土地管理变化提供了在土壤中大规模固碳的机会。这种潜在影响程度的不确定性主要是由于测量近地表(0-30厘米)土壤碳浓度的困难和成本;土壤碳储量评估的关键组成部分。存在许多优化采样的技术,但很少有研究在不同的样本强度下比较这些技术。在这项研究中,我们对美国东部四个农场的土壤碳浓度进行了事前高强度采样。我们使用蒙特卡罗自举法研究了最有效的土壤碳清查采样方法:k均值分层、条件拉丁超立方采样(cLHS)、简单随机采样和规则网格。没有两个研究地点在所有采样技术中都显示出相似的模式,尽管cLHS和网格在所有地点和地层尺寸中都是最有效的采样方案。使用K-means分层时选择的层数会对样本效率产生重大影响,我们警告未来的库存不要使用小层n,同时避免在层之间均匀分配样本。我们的研究结果加强了适应性采样方法的必要性,在这种方法中,初始站点清单可以通过特定站点的采样技术为主要的、可靠的清单提供信息。
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Optimizing Sampling Strategies for Near-Surface Soil Carbon Inventory: One Size Doesn’t Fit All
Soils comprise the largest pool of terrestrial carbon yet have lost significant stocks due to human activity. Changes to land management in cropland and grazing systems present opportunities to sequester carbon in soils at large scales. Uncertainty in the magnitude of this potential impact is largely driven by the difficulties and costs associated with measuring near-surface (0–30 cm) soil carbon concentrations; a key component of soil carbon stock assessments. Many techniques exist to optimize sampling, yet few studies have compared these techniques at varying sample intensities. In this study, we performed ex-ante, high-intensity sampling for soil carbon concentrations at four farms in the eastern United States. We used post hoc Monte-Carlo bootstrapping to investigate the most efficient sampling approaches for soil carbon inventory: K-means stratification, Conditioned Latin Hypercube Sampling (cLHS), simple random, and regular grid. No two study sites displayed similar patterns across all sampling techniques, although cLHS and grid emerged as the most efficient sampling schemes across all sites and strata sizes. The number of strata chosen when using K-means stratification can have a significant impact on sample efficiency, and we caution future inventories from using small strata n, while avoiding even allocation of sample between strata. Our findings reinforce the need for adaptive sampling methodologies where initial site inventory can inform primary, robust inventory with site-specific sampling techniques.
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来源期刊
Soil Systems
Soil Systems Earth and Planetary Sciences-Earth-Surface Processes
CiteScore
5.30
自引率
5.70%
发文量
80
审稿时长
11 weeks
期刊最新文献
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