Detection of Pb in Tieguanyin tea and ash by laser-induced breakdown spectroscopy

REHAN I, GONDAL M A, ALDAKHEEL R K, et al. Determination of nutritional and toxic metals in black tea leaves using calibration free LIBS and ICP: AES technique[J]. Arabian journal for science and engineering, 2022, 47: 7531–7539.

Article  Google Scholar 

ZHANG M, ZHANG X, HO C T, et al. Chemistry and health effect of tea polyphenol[J]. Journal of agricultural and food chemistry, 2019, 67(19): 5374–5378.

Article  Google Scholar 

GONDAL M A, DASTAGEER M A, AL-ADEL F F, et al. Detection of highly toxic elements (lead and chromium) in commercially available eyeliner (kohl) using laser induced break down spectroscopy[J]. Optics and laser technology, 2015, 75: 99–104.

Article  ADS  Google Scholar 

YANG P, ZHOU R, ZHANG W, et al. High-sensitivity determination of cadmium and lead in rice using laser-induced breakdown spectroscopy[J]. Food chemistry, 2019, 272: 323–328.

Article  Google Scholar 

ZHOU R, LIU K, TANG Z Y, et al. Determination of micronutrient elements in soil using laser-induced breakdown spectroscopy assisted by laser-induced fluorescence[J]. Journal of analytical atomic spectrometry, 2021, 36(3): 614–621.

Article  Google Scholar 

STENIO K, COSTA V C, DE MORAIS C P, et al. Direct determination of nutrient elements in plant leaves by double pulse laser-induced breakdown spectroscopy: evaluation of calibration strategies using direct and inverse models for matrix-matching[J]. Analytical methods, 2022, 14(12): 1246–1253.

Article  Google Scholar 

JIN M T, YUAN H, LIU B, et al. Review of the distribution and detection methods of heavy metals in the environment[J]. Analytical methods, 2020, 12(48): 5747–5766.

Article  Google Scholar 

REHAN I, REHAN K, KHAN M Z, et al. Detection of nutritional and toxic elements in Pakistani pepper powders using laser induced breakdown spectroscopy[J]. Analytical methods, 2020, 12(20): 2590–2598.

Article  Google Scholar 

GONDAL M A, HABIBULLAH Y B, BAIG U, et al. Direct spectral analysis of tea samples using 266 nm UV pulsed laser-induced breakdown spectroscopy and cross validation of LIBS results with ICP-MS[J]. Talanta, 2016, 152: 341–352.

Article  Google Scholar 

LU X, LIU Y Z, ZHANG Q H, et al. Study on tea harvested in different seasons based on laser-induced breakdown spectroscopy[J]. Laser physics letters, 2020, 17(1): 015701.

Article  ADS  Google Scholar 

WANG J, SHI M, ZHENG P, et al. Quantitative analysis of lead in tea samples by laser-induced breakdown spectroscopy[J]. Journal of applied spectroscopy, 2017, 84(1): 188–193.

Article  ADS  Google Scholar 

YANG X Y, HAO Z Q, LI C M, et al. Sensitive determinations of Cu, Pb, Cd, and Cr elements in aqueous solutions using chemical replacement combined with surface-enhanced laser-induced breakdown spectroscopy[J]. Optics express, 2016, 24(12): 13410–13417.

Article  ADS  Google Scholar 

WU M F, WANG X, NIU G H, et al. Ultrasensitive and simultaneous detection of multielements in aqueous samples based on biomimetic array combined with laser-induced breakdown spectroscopy[J]. Analytical chemistry, 2021, 93(29): 10196–10203.

Article  Google Scholar 

DE GIACOMO A, KORAL C, VALENZA G, et al. Nanoparticle enhanced laser-induced breakdown spectroscopy for microdrop analysis at subppm level[J]. Analytical chemistry, 2016, 88(10): 5251–5257.

Article  Google Scholar 

ZHU C W, TANG Z Y, LI Q Z, et al. Lead of detection in rhododendron leaves using laser-induced breakdown spectroscopy assisted by laser-induced fluorescence[J]. Science of the total environment, 2020, 738: 139402.

Article  ADS  Google Scholar 

BURAKOV V S, TARASENKO N V, NEDELKO M I, et al. Analysis of lead and sulfur in environmental samples by double pulse laser induced breakdown spectroscopy[J]. Spectrochimica acta part B-atomic spectroscopy, 2009, 64(2): 141–146.

Article  ADS  Google Scholar 

ZHAO S Y, SONG C, GAO X, et al. Quantitative analysis of Pb in soil by femtosecond-nanosecond double-pulse laser-induced breakdown spectroscopy[J]. Results in physics, 2019, 15: 102736.

Article  Google Scholar 

AKHTAR M, JABBAR A, AHMED N, et al. Analysis of lead and copper in soil samples by laser-induced breakdown spectroscopy under external magnetic field[J]. Applied physics B-lasers and optics, 2019, 125(6): 110.

Article  ADS  Google Scholar 

MENG D S, ZHAO N J, MA M J, et al. Heavy metal detection in soils by laser induced breakdown spectroscopy using hemispherical spatial confinement[J]. Plasma science & technology, 2015, 17(8): 632–637.

Article  ADS  Google Scholar 

LI X F, ZHOU W D, LI K X, et al. Laser ablation fast pulse discharge plasma spectroscopy analysis of Pb, Mg and Sn in soil[J]. Optics communications, 2012, 285(1): 54–58.

Article  ADS  Google Scholar 

WANG X S, WAN S S, HE Y G, et al. Rapid determination of all element in MAPbI3 thin films using laser induced breakdown spectroscopy[J]. Spectrochimica acta part B-atomic spectroscopy, 2021, 178: 106123.

Article  Google Scholar 

GORNUSHKIN I B, ANZANO J M, KING L A, et al. Curve of growth methodology applied to laser-induced plasma emission spectroscopy[J]. Spectrochimica acta part B-atomic spectroscopy, 1999, 54(3–4): 491–503.

Article  ADS  Google Scholar 

ARAGON C, PENALBA F, AGUILERA J A. Curves of growth of neutral atom and ion lines emitted by a laser induced plasma[J]. Spectrochimica acta part B-atomic spectroscopy, 2005, 60(7–8): 879–887.

Article  ADS  Google Scholar 

LU X, LIU Y Z, ZHANG Q H, et al. Study on tea harvested in different seasons based on laser-induced breakdown spectroscopy[J]. Laser physics letters, 2020, 17(1): 8.

Article  Google Scholar 

留言 (0)

沒有登入
gif