首页> 外文期刊>European Journal of Soil Science >Application of mixed‐effects modelling and rule‐based models to explain copper variation in soil profiles of southern Germany
【24h】

Application of mixed‐effects modelling and rule‐based models to explain copper variation in soil profiles of southern Germany

机译:应用混合效应模型和基于规则的模型解释德国南部土壤剖面中的铜变化

获取原文
获取原文并翻译 | 示例
获取外文期刊封面目录资料

摘要

Abstract Copper (Cu) is an essential element for plants and microorganisms and at larger concentrations a toxic pollutant. A number of factors controlling Cu dynamics have been reported, but information on quantitative relationships is scarce. We aimed to (i) quantitatively describe and predict soil Cu concentrations (CuAR) in aqua regia considering site‐specific effects and effects of pH, soil organic carbon (SOC) and cation exchange capacity (CEC), and (ii) study the suitability of mixed‐effects modelling and rule‐based models for the analysis of long‐term soil monitoring data. Thirteen uncontaminated long‐term monitoring soil profiles in southern Germany were analysed. Since there was no measurable trend of increasing CuAR concentrations with time in the respective depth ranges of the sites, data from different sampling dates were combined and horizon‐specific regression analyses including model simplifications were carried out for 10 horizons. Fixed‐ and mixed‐effects models with the site as a random effect were useful for the different horizons and significant contributions (either of main effects or interactions) of SOC, CEC and pH were present for 9, 8 and 7 horizons, respectively. Horizon‐specific rule‐based cubist models described the CuAR data similarly well. Validations of cubist models and mixed‐effects models for the CuAR concentrations in A horizons were successful for the given population after random splitting into calibration and validation samples, but not after independent validations with random splitting according to sites. Overall, site, CEC, SOC and pH provide important information for a description of CuAR concentrations using the different regression approaches. Highlights Information on quantitative relationships for factors controlling Cu dynamics is scarce Site, CEC, SOC and pH provide important information for a description of Cu concentrations Validations of cubist models and mixed‐effects models for A horizons were successful for a closed population of sites
机译:摘要 铜(Cu)是植物和微生物的必需元素,在较高浓度下是一种有毒污染物。已经报道了许多控制铜动力学的因素,但关于定量关系的信息很少。我们旨在 (i) 定量描述和预测王水中土壤 Cu 浓度 (CuAR),考虑特定地点效应以及 pH 值、土壤有机碳 (SOC) 和阳离子交换能力 (CEC) 的影响,以及 (ii) 研究混合效应模型和基于规则的模型对长期土壤监测数据分析的适用性。分析了德国南部13个未受污染的长期监测土壤剖面。由于在各地点的深度范围内,CuAR浓度没有随时间增加的可测量趋势,因此将不同采样日期的数据合并,并对10个层位进行了包括模型简化在内的特定层位回归分析。以场地为随机效应的固定效应和混合效应模型对不同层位都有用,SOC、CEC和pH值分别在9、8和7层中均有显著贡献(主效应或交互作用)。基于地平线特定规则的立体模型同样很好地描述了 CuAR 数据。在随机拆分为校准样本和验证样本后,对给定群体的立体模型和混合效应模型的 A 层中 CuAR 浓度进行了验证,但在根据站点进行随机拆分独立验证后没有成功。总体而言,位点、CEC、SOC 和 pH 值为使用不同回归方法描述 CuAR 浓度提供了重要信息。亮点 关于控制铜动力学的因素的定量关系的信息很少 场地、CEC、SOC 和 pH 值为描述铜浓度提供了重要信息 A 层的立体模型和混合效应模型的验证在封闭的站点群体中取得了成功

著录项

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