Multi-element analysis of heavy metal content in soils using laser-induced breakdown spectroscopy: A case study in eastern China
暂无分享,去创建一个
Fei Liu | Yong He | Z. Qiu | Xingmei Liu | Tao Wang | Shen Tingting | Mingjiang He
[1] M. A. Baig,et al. Magnetic field enhanced detection of heavy metals in soil using laser induced breakdown spectroscopy , 2018, Spectrochimica Acta Part B: Atomic Spectroscopy.
[2] Pavel Pořízka,et al. On the utilization of principal component analysis in laser-induced breakdown spectroscopy data analysis, a review , 2018, Spectrochimica Acta Part B: Atomic Spectroscopy.
[3] Blair Thornton,et al. Quantitative methods for compensation of matrix effects and self-absorption in Laser Induced Breakdown Spectroscopy signals of solids , 2017 .
[4] Jihua Wang,et al. Modeling of Chromium, Copper, Zinc, Arsenic and Lead Using Portable X-ray Fluorescence Spectrometer Based on Discrete Wavelet Transform , 2017, International journal of environmental research and public health.
[5] Wenwen Kong,et al. Moisture Influence Reducing Method for Heavy Metals Detection in Plant Materials Using Laser-Induced Breakdown Spectroscopy: A Case Study for Chromium Content Detection in Rice Leaves. , 2017, Analytical chemistry.
[6] Pavel Pořízka,et al. Impact of Laser-Induced Breakdown Spectroscopy data normalization on multivariate classification accuracy , 2017 .
[7] Yong He,et al. Challenging applications for multi-element analysis by laser-induced breakdown spectroscopy in agriculture: A review , 2016 .
[8] S. Giguere,et al. Comparison of baseline removal methods for laser-induced breakdown spectroscopy of geological samples , 2016 .
[9] Ana Rita A. Nogueira,et al. Phosphorus quantification in fertilizers using laser induced breakdown spectroscopy (LIBS): a methodology of analysis to correct physical matrix effects , 2016 .
[10] Hongsheng Tang,et al. Quantitative and classification analysis of slag samples by laser induced breakdown spectroscopy (LIBS) coupled with support vector machine (SVM) and partial least square (PLS) methods , 2015 .
[11] Timur A. Labutin,et al. Determination of Ag, Cu, Mo and Pb in soils and ores by laser-induced breakdown spectrometry , 2014 .
[12] S. Saari,et al. Detection of Ni, Pb and Zn in water using electrodynamic single-particle levitation and laser-induced breakdown spectroscopy ☆ , 2014 .
[13] D. Milori,et al. Physical and Chemical Matrix Effects in Soil Carbon Quantification Using Laser-Induced Breakdown Spectroscopy , 2014 .
[14] Xiao Fang,et al. Elemental analysis in environmental land samples by stand-off laser-induced breakdown spectroscopy , 2014 .
[15] Jesús Hernán Camacho-Tamayo,et al. Near-infrared (NIR) diffuse reflectance spectroscopy for the prediction of carbon and nitrogen in an Oxisol Espectroscopia de reflectancia difusa por infrarrojo cercano (NIR) para la predicción de carbono y nitrógeno de un Oxisol , 2014 .
[16] Y. Markushin,et al. Packing density effects on the fluctuations of the emission lines in laser-induced breakdown spectroscopy , 2014 .
[17] Jihyun Kwak,et al. Rapid detection of soils contaminated with heavy metals and oils by laser induced breakdown spectroscopy (LIBS). , 2013, Journal of hazardous materials.
[18] Changyong Feng,et al. Log transformation: application and interpretation in biomedical research , 2013, Statistics in medicine.
[19] Ruichao Guo,et al. Heavy metal contamination of urban soil in an old industrial city (Shenyang) in Northeast China , 2013 .
[20] Jan Hannig,et al. Support vector machine classification of suspect powders using laser‐induced breakdown spectroscopy (LIBS) spectral data , 2012 .
[21] S. Clegg,et al. Comparison of partial least squares and lasso regression techniques as applied to laser-induced breakdown spectroscopy of geological samples , 2012 .
[22] Jeunghwan Choi,et al. Detection of nutrient elements and contamination by pesticides in spinach and rice samples using laser-induced breakdown spectroscopy (LIBS). , 2012, Journal of agricultural and food chemistry.
[23] David W. Hahn,et al. Evaluation of Laser-Induced Breakdown Spectroscopy (LIBS) as a Measurement Technique for Evaluation of Total Elemental Concentration in Soils , 2012 .
[24] Steven J. Spencer,et al. Comparison of principal components regression, partial least squares regression, multi-block partial least squares regression, and serial partial least squares regression algorithms for the analysis of Fe in iron ore using LIBS , 2012 .
[25] Weidou Ni,et al. A non-linearized PLS model based on multivariate dominant factor for laser-induced breakdown spectroscopy measurements , 2011, 1106.1043.
[26] Rosalba Gaudiuso,et al. Monitoring of Cr, Cu, Pb, V and Zn in polluted soils by laser induced breakdown spectroscopy (LIBS). , 2011, Journal of environmental monitoring : JEM.
[27] Georg Ankerhold,et al. Elemental misinterpretation in automated analysis of LIBS spectra , 2011, Analytical and bioanalytical chemistry.
[28] C. Black,et al. Assessing risk to human health from tropical leafy vegetables grown on contaminated urban soils. , 2010, The Science of the total environment.
[29] Jianming Xu,et al. Heavy metal contaminations in a soil-rice system: identification of spatial dependence in relation to soil properties of paddy fields. , 2010, Journal of hazardous materials.
[30] Angela Milne,et al. Determination of Mn, Fe, Co, Ni, Cu, Zn, Cd and Pb in seawater using high resolution magnetic sector inductively coupled mass spectrometry (HR-ICP-MS). , 2010, Analytica chimica acta.
[31] Awadhesh K. Rai,et al. Contaminant concentration in environmental samples using LIBS and CF-LIBS , 2010 .
[32] T. Miano,et al. Heavy metal concentrations in soils as determined by laser-induced breakdown spectroscopy (LIBS), with special emphasis on chromium. , 2009, Environmental research.
[33] A. K. Rai,et al. Screening of brick-kiln area soil for determination of heavy metal Pb using LIBS , 2009, Environmental monitoring and assessment.
[34] Nicolas André,et al. Extraction of information from laser-induced breakdown spectroscopy spectral data by multivariate analysis. , 2008, Applied optics.
[35] Ji‐Zheng He,et al. Multivariate geostatistical analysis of heavy metals in topsoils from Beijing, China , 2008 .
[36] S. Lu,et al. Magnetic properties as indicators of heavy metals pollution in urban topsoils: a case study from the city of Luoyang, China , 2007 .
[37] Patrícia Valderrama,et al. Variable selection, outlier detection, and figures of merit estimation in a partial least-squares regression multivariate calibration model. A case study for the determination of quality parameters in the alcohol industry by near-infrared spectroscopy. , 2007, Journal of agricultural and food chemistry.
[38] W-X Liu,et al. Uptake of Toxic Heavy Metals by Rice (Oryza sativa L.) Cultivated in the Agricultural Soil near Zhengzhou City, People’s Republic of China , 2007, Bulletin of environmental contamination and toxicology.
[39] R. Russo,et al. UV-femtosecond and nanosecond laser ablation-ICP-MS: internal and external repeatability , 2006 .
[40] G. Cristoforetti,et al. Double pulse, calibration-free laser-induced breakdown spectroscopy : A new technique for in situ standard-less analysis of polluted soils , 2006 .
[41] Han Yongming,et al. Multivariate analysis of heavy metal contamination in urban dusts of Xi'an, Central China. , 2006, The Science of the total environment.
[42] Asmaa Elhassan,et al. LIBS limit of detection and plasma parameters of some elements in two different metallic matrices , 2004 .
[43] L. Marinangeli,et al. Investigation of LIBS feasibility for in situ planetary exploration: An analysis on Martian rock analogues , 2004 .
[44] S. Davis,et al. Rapid field screening of soils for heavy metals with spark-induced breakdown spectroscopy. , 2003, Applied optics.
[45] M. Sabsabi,et al. Quantitative analysis of pharmaceutical products by laser-induced breakdown spectroscopy☆ , 2002 .
[46] F. Barbosa,et al. Determination of Cd and Pb in food slurries by GFAAS using cryogenic grinding for sample preparation , 2002, Analytical and bioanalytical chemistry.
[47] David W. Hahn,et al. Sampling statistics and considerations for single-shot analysis using laser-induced breakdown spectroscopy , 2002 .
[48] Roberta Fantoni,et al. Determination of heavy metals in soils by Laser Induced Breakdown Spectroscopy , 2002 .
[49] J. R. Brown,et al. Measuring total soil carbon with laser-induced breakdown spectroscopy (LIBS). , 2001, Journal of environmental quality.
[50] Wang Qingren Y. Dong,et al. Instances of Soil and Crop Heavy Metal Contamination in China , 2001 .
[51] D. Body,et al. Optimization of the spectral data processing in a LIBS simultaneous elemental analysis system , 2001 .
[52] C. Hurburgh,et al. Near-Infrared Reflectance Spectroscopy–Principal Components Regression Analyses of Soil Properties , 2001 .
[53] E. Tognoni,et al. New Procedure for Quantitative Elemental Analysis by Laser-Induced Plasma Spectroscopy , 1999 .
[54] J. D. Winefordner,et al. Fundamentals and Applications of Laser-Induced Breakdown Spectroscopy , 1997 .