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Determination of Pb (Lead), Cd (Cadmium), Cr (Chromium), Cu (Copper), and Ni (Nickel) in Chinese tea with high-resolution continuum source graphite furnace atomic absorption spectrometry
by
Ren, Ting
, Zhao, Li-Jiao
, Zhong, Wen-Si
in
Absorption
/ Absorption spectroscopy
/ Agriculture
/ Atomic absorption analysis
/ atomic absorption spectrometry
/ Atomic absorption spectroscopy
/ Cadmium
/ Cancer
/ Carcinogens
/ China
/ Chinese tea
/ Chromium
/ compliance
/ Contamination
/ continuum source graphite furnace atomic absorption spectrometry
/ Copper
/ digestion
/ drugs
/ Graphite
/ guidelines
/ Heavy metals
/ High resolution
/ humans
/ Jasmine
/ lead
/ leaves
/ Metals
/ Nickel
/ Nitrates
/ Original
/ Quantitative analysis
/ Reference materials
/ risk
/ Sample preparation
/ Scientific imaging
/ Spectral analysis
/ Spectrometry
/ statistical analysis
/ Tea
/ tea (beverage)
/ Toxicity
/ Toxicology
2016
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Determination of Pb (Lead), Cd (Cadmium), Cr (Chromium), Cu (Copper), and Ni (Nickel) in Chinese tea with high-resolution continuum source graphite furnace atomic absorption spectrometry
by
Ren, Ting
, Zhao, Li-Jiao
, Zhong, Wen-Si
in
Absorption
/ Absorption spectroscopy
/ Agriculture
/ Atomic absorption analysis
/ atomic absorption spectrometry
/ Atomic absorption spectroscopy
/ Cadmium
/ Cancer
/ Carcinogens
/ China
/ Chinese tea
/ Chromium
/ compliance
/ Contamination
/ continuum source graphite furnace atomic absorption spectrometry
/ Copper
/ digestion
/ drugs
/ Graphite
/ guidelines
/ Heavy metals
/ High resolution
/ humans
/ Jasmine
/ lead
/ leaves
/ Metals
/ Nickel
/ Nitrates
/ Original
/ Quantitative analysis
/ Reference materials
/ risk
/ Sample preparation
/ Scientific imaging
/ Spectral analysis
/ Spectrometry
/ statistical analysis
/ Tea
/ tea (beverage)
/ Toxicity
/ Toxicology
2016
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Determination of Pb (Lead), Cd (Cadmium), Cr (Chromium), Cu (Copper), and Ni (Nickel) in Chinese tea with high-resolution continuum source graphite furnace atomic absorption spectrometry
by
Ren, Ting
, Zhao, Li-Jiao
, Zhong, Wen-Si
in
Absorption
/ Absorption spectroscopy
/ Agriculture
/ Atomic absorption analysis
/ atomic absorption spectrometry
/ Atomic absorption spectroscopy
/ Cadmium
/ Cancer
/ Carcinogens
/ China
/ Chinese tea
/ Chromium
/ compliance
/ Contamination
/ continuum source graphite furnace atomic absorption spectrometry
/ Copper
/ digestion
/ drugs
/ Graphite
/ guidelines
/ Heavy metals
/ High resolution
/ humans
/ Jasmine
/ lead
/ leaves
/ Metals
/ Nickel
/ Nitrates
/ Original
/ Quantitative analysis
/ Reference materials
/ risk
/ Sample preparation
/ Scientific imaging
/ Spectral analysis
/ Spectrometry
/ statistical analysis
/ Tea
/ tea (beverage)
/ Toxicity
/ Toxicology
2016
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Determination of Pb (Lead), Cd (Cadmium), Cr (Chromium), Cu (Copper), and Ni (Nickel) in Chinese tea with high-resolution continuum source graphite furnace atomic absorption spectrometry
Journal Article
Determination of Pb (Lead), Cd (Cadmium), Cr (Chromium), Cu (Copper), and Ni (Nickel) in Chinese tea with high-resolution continuum source graphite furnace atomic absorption spectrometry
2016
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Overview
The contents of lead, cadmium, chromium, copper, and nickel were determined in 25 tea samples from China, including green, yellow, white, oolong, black, Pu'er, and jasmine tea products, using high-resolution continuum source graphite furnace atomic absorption spectrometry. The methods used for sample preparation, digestion, and quantificational analysis were established, generating satisfactory analytical precisions (represented by relative standard deviations ranging from 0.6% to 2.5%) and recoveries (98.91–101.32%). The lead contents in tea leaves were 0.48–10.57 mg/kg, and 80% of these values were below the maximum values stated by the guidelines in China. The contents of cadmium and chromium ranged from 0.01 mg/kg to 0.39 mg/kg and from 0.27 mg/kg to 2.45 mg/kg, respectively, remaining in compliance with the limits stipulated by China's Ministry of Agriculture. The copper contents were 7.73–63.71 mg/kg; only 64% of these values complied with the standards stipulated by the Ministry of Agriculture. The nickel contents ranged from 2.70 mg/kg to 13.41 mg/kg. Consequently, more attention must be paid to the risks of heavy metal contamination in tea. The quantitative method established in this work lays a foundation for preventing heavy metal toxicity in human from drinking tea and will help establish regulations to control the contents of heavy metals in tea.
Publisher
Elsevier B.V,Food and Drug Administration,Taiwan Food and Drug Administration
Subject
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