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麦夸特算法在X射线衍射物相定量分析中的应用
引用本文:曾蒙秀,宋友桂. 麦夸特算法在X射线衍射物相定量分析中的应用[J]. 地球科学, 2013, 38(2): 431-440. DOI: 10.3799/dqkx.2013.043
作者姓名:曾蒙秀  宋友桂
作者单位:1.中国科学院地球环境研究所黄土与第四纪地质国家重点实验室,陕西西安 710075
摘    要:常规的X射线衍射物相定量分析方法有各自的优点,但这些方法往往也存在一些不足.在实际应用中迫切需要一种简便、高效的普适性多物相无标样定量分析方法.选择麦夸特算法、粒子群算法、遗传算法、差分进化算法这4种迭代搜索领域的经典算法构建了基于非线性模型参数估计方法的4模冗余系统,以19个配制的4相样品中各相“前三强线”的积分强度之和作为计算的原始数据,通过Matlab软件进行了含量计算.理论分析及试验结果表明,运用麦夸特算法进行定量分析具有更小的计算复杂度、更快的收敛速度及更好的全局搜索能力,各相含量的计算值与配比值的绝对误差在5%以内的约占总计算量的83%.为了验证该算法,计算了昭苏黄土剖面82个混合样品及青海湖二郎剑钻孔359个混合样品中刚玉的含量,刚玉含量的配比值与计算值的相关性分别达到0.83和0.63,刚玉含量的误差超过5%的分别占总计算量的4.88%和9.75%.基于麦夸特算法的定量分析方法在批量化处理多物相定量中具有效率高、可操作性强、准确度高等优点. 

关 键 词:XRD   物相定量方法   麦夸特算法   4模冗余系统
收稿时间:2012-02-25

Application of the Levenberg-Marquardt Algorithm to X-Ray Diffraction Quantitative Phase Analysis
ZENG Meng-xiu,SONG You-gui. Application of the Levenberg-Marquardt Algorithm to X-Ray Diffraction Quantitative Phase Analysis[J]. Earth Science-Journal of China University of Geosciences, 2013, 38(2): 431-440. DOI: 10.3799/dqkx.2013.043
Authors:ZENG Meng-xiu  SONG You-gui
Affiliation:1.State Key Laboratory of Loess and Quaternary Geology, Institute of Earth Environment, Chinese Academy of Sciences, Xi’an 710075, China 2.Graduate University of the Chinese Academy of Sciences, Beijing 100049, China
Abstract:The conventional X-ray diffraction quantitative phase analysis methods are over-reliant on pure standard substances, working curve and K value. If the phases are more than 3, the fitting results are not good by Rietveld method. In addition, the versatility of quantitative methods with large calculation and fussy operation also need to be expanded. A new non-standard quantitative phase analysis method based on nonlinear model parameters estimation method of 4 modular redundant systems that consist of Levenberg-Marquardt, Particle Swarm Optimization, Genetic Algorithm and Differential Evolution is proposed. Taking the content of 4 phases in 19 mixture powder as the original data, performing the whole process of computing in the Matlab environment, the experimental results show that the Levenberg-Marquardt algorithm is an effective tool with smaller computing complexity, faster convergence speed and better global searching capability and other advantages. It is no need to add reference phase to the samples, which overcomes the problems that all the samples must be determined more than one time, and the method with no need for K value which enlarges the applications and enhances the accuracy of the X-ray diffraction method for quantitative phase analysis of the mixture samples. Replacing the conventional specific single spectrum line intensity or intensity rations by the sum of the integrated intensity of the top three peaks can improve the precision of the X-ray diffraction quantitative phase analysis. With this method, the content of Corundum in 82 samples of Zhaosu section in Ili basin and 359 samples in ELJ drilling core of ICDP in Qinghai Lake are computed. The correlation coefficient of the match ratio and the calculated value of Corundum in Zhaosu section and ELJ drilling core have reached 0.83 and 0.63. Practice has proved that it is a feasible, effective, rapid and correct technique of quantitative analysis of minerals, and the stability is satisfactory. It can be used for quantifying the phases in more than 9-phase materials. 
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