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Identifiability of sorption parameters in stirred flow-through reactor experiments and their identification with a Bayesian approach

机译:搅拌流通式反应器实验中吸附参数的可识别性及其贝叶斯方法的识别

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摘要

This paper addresses the methodological conditions particularly experimental design and statistical inference ensuring the identifiability of sorption parameters from breakthrough curves measured during stirred flow-through reactor experiments also known as continuous flow stirred-tank reactor (CSTR) experiments. The equilibrium-kinetic (EK) sorption model was selected as nonequilibrium parameterization embedding the Kd approach. Parameter identifiability was studied.formally on the equations governing outlet concentrations. It was also studied numerically on 6 simulated CSTR experiments on a soil with known equilibrium-kinetic sorption parameters. EK sorption parameters can not be identified from a single breakthrough curve of a CSTR experiment, because K-d,K-1 and k(-) were diagnosed collinear. For pairs of CSTR experiments, Bayesian inference allowed to select the correct models of sorption and error among sorption alternatives. Bayesian inference was conducted with SAMCAT software (Sensitivity Analysis and Markov Chain simulations Applied to Transfer models) which launched the simulations through the embedded simulation engine GNU-MCSim, and automated their configuration and post-processing. Experimental designs consisting in varying flow rates between experiments reaching equilibrium at contamination stage were found optimal, because they simultaneously gave accurate sorption parameters and predictions. Bayesian results were comparable to maximum likehood method but they avoided convergence problems, the marginal likelihood allowed to compare all modeK and credible interval gave directly the uncertainty of sorption parameters theta. Although these findings are limited to the specific conditions studied here, in particular the considered sorption model, the chosen parameter values and error structure, they help in the conception and analysis of future CSTR experiments with radionuclides whose kinetic behaviour is suspected. (C) 2016 Elsevier Ltd. All rights reserved.
机译:本文介绍了方法条件,特别是实验设计和统计推论,这些信息可确保从搅拌流过反应器实验(也称为连续流搅拌釜反应器(CSTR))实验中测得的穿透曲线确定吸附参数的可识别性。选择平衡动力学(EK)吸附模型作为嵌入Kd方法的非平衡参数化模型。正式研究了控制出口浓度方程的参数可识别性。还对具有已知平衡动力学吸附参数的土壤进行了6次模拟CSTR实验,对它进行了数值研究。由于C-d,K-1和k(-)被诊断为共线,因此无法从CSTR实验的单个穿透曲线中确定EK吸附参数。对于成对的CSTR实验,贝叶斯推断允许在吸附替代方案之间选择正确的吸附模型和误差模型。贝叶斯推断是通过SAMCAT软件(应用于传递模型的灵敏度分析和马尔可夫链模拟)进行的,该软件通过嵌入式仿真引擎GNU-MCSim启动了仿真,并自动进行了配置和后处理。发现在污染阶段达到平衡的实验之间,通过改变流速的实验设计是最优的,因为它们同时给出了准确的吸附参数和预测值。贝叶斯方法与最大似然法具有可比性,但是它们避免了收敛问题,允许比较所有modeK和可信区间的边际可能性直接给出了吸附参数θ的不确定性。尽管这些发现仅限于此处研究的特定条件,尤其是所考虑的吸附模型,所选参数值和误差结构,但它们有助于概念和分析未来怀疑具有动力学行为的放射性核素的CSTR实验。 (C)2016 Elsevier Ltd.保留所有权利。

著录项

  • 来源
    《Journal of Environmental Radioactivity》 |2016年第10期|328-339|共12页
  • 作者单位

    Ctr Cadarache, IRSN, Radionuclide Transfers Environm Res Lab LRTE, Bat 159,BP 3, F-13115 St Paul Les Durance, France;

    Ctr Cadarache, IRSN, Lab Biogeochem Bioavailabil & Transfers Radionucl, Bat 183,BP 3, F-13115 St Paul Les Durance, France;

    Ctr Cadarache, IRSN, Radionuclide Transfers Environm Res Lab LRTE, Bat 159,BP 3, F-13115 St Paul Les Durance, France;

    Ctr Cadarache, IRSN, Radionuclide Transfers Environm Res Lab LRTE, Bat 159,BP 3, F-13115 St Paul Les Durance, France;

    Ctr Cadarache, IRSN, Lab Biogeochem Bioavailabil & Transfers Radionucl, Bat 183,BP 3, F-13115 St Paul Les Durance, France;

    INERIS, Models Ecotoxicol & Toxicol Unit METO, Parc ALATA,BP 2, F-60550 Verneuil En Halatte, France;

  • 收录信息 美国《科学引文索引》(SCI);美国《工程索引》(EI);美国《生物学医学文摘》(MEDLINE);美国《化学文摘》(CA);
  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类
  • 关键词

    Bayesian inference; Sorption parameters; Identifiability; MCMC; Convergence monitoring; Equilibrium kinetic model;

    机译:贝叶斯推理吸附参数可识别性MCMC收敛性监测平衡动力学模型;
  • 入库时间 2022-08-17 13:35:16

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