Wartini Ng, Sandra J. Evangelista, José Padarian, Julio Pachon, Tom O’Donoghue, Peipei Xue, Nicolas Francos, Alex B. McBratney
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McBratney","doi":"10.1071/sr23138","DOIUrl":null,"url":null,"abstract":"<strong> Context</strong><p>Legacy data from prior studies enable preliminary analysis for soil security assessment which will inform future research questions.</p><strong> Aims</strong><p>This study aims to utilise the soil security assessment framework (SSAF) to evaluate the capacity of soil in fulfilling various roles and understand the underlying drivers.</p><strong> Methods</strong><p>The framework entails: (1) defining a combination of role(s) × dimension(s) and identifying a target indicator (a soil property that can be used to evaluate a particular role × dimension combination) or a surrogate indicator (an alternative indicator when there is not a clear target indicator); (2) transforming the indicator into a unitless score (ranging from 0 to 1) using a utility graph based on expert knowledge; (3) fitting the remaining soil properties (potential indicators) into utility graphs and weighing them using (a) ordination and (b) regression method. 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引用次数: 0
摘要
背景先前研究中的遗产数据可为土壤安全评估提供初步分析,为今后的研究问题提供依据。目的本研究旨在利用土壤安全评估框架(SSAF)来评估土壤发挥各种作用的能力,并了解潜在的驱动因素。方法该框架包括(1)定义角色×维度的组合,确定目标指标(可用于评估特定角色×维度组合的土壤特性)或替代指标(在没有明确目标指标时的替代指标);(2)利用基于专家知识的效用图将指标转化为无单位分数(范围从 0 到 1);(3)将其余土壤特性(潜在指标)拟合到效用图中,并利用(a)排序法和(b)回归法对其进行权衡。该框架在澳大利亚新南威尔士州猎人谷下游地区的养分储存和生物多样性栖息地(分别以 pH 值和微生物 DNA 香农多样性指数作为替代指标)这两种土壤作用的评估中得到了应用。主要结果与排序模型得出的效用相比,回归模型提供的效用估计值与代用指标得出的效用估计值相似。结论这项研究提供了一种方法论途径,可用于研究发挥不同土壤作用的能力和驱动因素。该方法的标准化为根据 SSAF 进行全面量化打开了大门。意义从遗留数据集中得出的指标可用于土壤安全评估。
Estimating surrogates, utility graphs and indicator sets for soil capacity and security assessments using legacy data
Context
Legacy data from prior studies enable preliminary analysis for soil security assessment which will inform future research questions.
Aims
This study aims to utilise the soil security assessment framework (SSAF) to evaluate the capacity of soil in fulfilling various roles and understand the underlying drivers.
Methods
The framework entails: (1) defining a combination of role(s) × dimension(s) and identifying a target indicator (a soil property that can be used to evaluate a particular role × dimension combination) or a surrogate indicator (an alternative indicator when there is not a clear target indicator); (2) transforming the indicator into a unitless score (ranging from 0 to 1) using a utility graph based on expert knowledge; (3) fitting the remaining soil properties (potential indicators) into utility graphs and weighing them using (a) ordination and (b) regression method. The application of this framework is demonstrated in evaluating two soil roles: nutrient storage and habitat for biodiversity (with pH and microbial DNA Shannon’s diversity index as surrogates, respectively) for an area in the lower Hunter Valley region, New South Wales, Australia.
Key results
The regression model provides utility estimates that were similar to those obtained from surrogates, in comparison to the utility derived from the ordination model.
Conclusions
This study provides a methodological pathway to examine the capacity and drivers of fulfilling different soil roles. The standardisation of this method opens the door to a complete quantification under the SSAF.
Implications
Indicators derived from a legacy dataset can be used for soil security assessment.
期刊介绍:
Soil Research (formerly known as Australian Journal of Soil Research) is an international journal that aims to rapidly publish high-quality, novel research about fundamental and applied aspects of soil science. As well as publishing in traditional aspects of soil biology, soil physics and soil chemistry across terrestrial ecosystems, the journal welcomes manuscripts dealing with wider interactions of soils with the environment.
Soil Research is published with the endorsement of the Commonwealth Scientific and Industrial Research Organisation (CSIRO) and the Australian Academy of Science.