Min Xiao,∗,∗∗ Qian Hu,∗,∗∗ Dong Ren,∗,∗∗ Anxiang Lu,∗,∗∗,∗∗∗ and Yi An∗∗∗∗
[1] D. Ren, C. Zhang, S. Ren, Z. Zhang, J.H. Wang, and A.X. Lu,An improved approach of cars for longjing tea detection basedon near infrared spectra, International Journal of Robotics andAutomation, 33(1), 2018, 97–103. [2] L. Zhong, Analysis of soil heavy metal pollution situation anddetection technology in agricultural production areas, SouthChina Agriculture, 11(13), 2017, 62–64. [3] B.X. Zhou, and Y. Qi, Current situation and development trendof soil heavy metals detection, Applied Chemical Industry,44(1), 2015, 131–138. [4] L.H. Liu , J. Sun , L. Chen, W. Che, L. Dai, and Y. Wang,Advances in detection technology of heavy metals in soil,Chemical Industry Times, 31(2), 2017, 41–44. [5] W.H. Zhou, J.J. Zhang, M.M. Zou, X.L. Du, Y. Zhang, Y.Yang, and J.L. Li, The detection and monitoring of availableheavy metal content in soil: A review, Chinese Journal ofEco-Agriculture, 25(4), 2017, 605–615. [6] S.F. Wang, P. Han, J.H. Wang, A.X. Lu, and F. Li, Progressin the application of X-ray fluorescence spectroscopy to thedetermination of heavy metals in soil, Journal of Food Safetyand quality Inspection, 7(11), 2016, 4394–4400. [7] M.Q. Hu, Application of portable X-ray fluorescence spectrom-eter analyzer in field detection of heavy metal, EnvironmentalScience & Technology, 38(S2), 2015, 269–272. [8] X.M. Duan, Y.B. Zhang, J. Wen, and J.Y. Zeng, A studyon application of portable XRF instrument for heavy metalmeasuring in environmental emergency monitoring, Environ-mental Monitoring Management and Technology, 29(3), 2017,49–52. [9] A. Gi, Development of X-ray fluorescence spectrometry inthe 30 Years, Rock and Mineral Analysis, 31(3), 2012,383–398. [10] L.Q. Ge, Research development in in-situ X-ray fluorescenceanalysis technique, Rock and Mineral Analysis, 32(2), 2013,203–212. [11] W.Q. Wu, T. Xu, Q. Hao, Q. Wang, S.J. Zhang, and C.Y.Zhao, Research and progress on X-ray fluorescence analysis ofrare earth, Metallurgical Analysis, 31(3), 2011, 33–41. [12] F. Li , J.H. Wang , A.X. Lu, and P. Han, Establishment andimprovement of detection model of portable X-ray fluorescencespectrometer based on wavelet transform, Spectroscopy andSpectral Analysis, 35(4), 2015, 1111–1115.58 [13] R. Zhang, Y.J. Zhang, and W. Zhang, Determination andanalysis of soil heavy metal lead by X-ray fluorescence spec-troscopy, Spectroscopy and Spectral Analysis, 33(2), 2013,554–557. [14] National Standards of the People’s Republic of China (Na-tional Standard of the People’s Republic of China). Environ-ment Quality Standard for Soils (Soil Environmental qualityStandard), GB/T 15618, 1995. [15] G.D. Du, M. Lei, G.D. Zhou, T.B. Chen, and R.L. Qiu,Evaluation of field portable X-ray fluorescence performance forthe analysis of Ni in soil, Spectroscopy & Spectral Analysis,35(3), 2015, 809–813. [16] A. Goyal, I. Khatri, A.K. Singh, R. Sharma, and M. Mohan, X-ray diffraction patterns and diffracted intensity of Kα spectrallines of He-like ions, Radiation Physics and Chemistry, 138,2017, 16–21. [17] A. Kubala-Kuku, D. Bana, J. Braziewicz, M. Dziadowicz, E.Kope, U. Majewska, M. Mazurek, M. Pajek, M. Sobisz, andI. Stabrawa, X-ray spectrometry and X-ray microtomographytechniques for soil and geological samples analysis, NuclearInstruments & Methods in Physics Research, 364, 2015, 85–92. [18] R.N. Brent, H. Wines, J. Luther, N. Irving, J. Collins, and B.L.Drake, Validation of handheld X-ray fluorescence for in situmeasurement of mercury in soils, Journal of EnvironmentalChemical Engineering, 5(1), 2017, 768–776. [19] X. Zou, J. Zhao, and Y. Li, Selection of the efficient wavelengthregions in FT-NIR spectroscopy for determination of SSC of‘Fuji’ apple based on BiPLS and FiPLS models, Vibrationalspectroscopy, 44(2), 2007, 220–227. [20] J. Xu, F. Huang, Y.P. Li, Z. Chen, and Y. Wang, Rapiddetection of total nitrogen content in soy sauce using NIRspectroscopy, Czech Journal of Food Sciences, 33(6), 2015,518–522.
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