4.6 Article

Rapid, Simultaneous, and Automatic Determination of Lead and Cadmium in Cereals with a New High Performance Composite Hollow Cathode Lamp Coupled to Graphite Furnace Atomic Absorption Spectrometry

Journal

MOLECULES
Volume 27, Issue 23, Pages -

Publisher

MDPI
DOI: 10.3390/molecules27238571

Keywords

cadmium; lead; simultaneous determination; pretreatment method; automatic; lead-cadmium composite hollow cathode lamp; cereals

Funding

  1. National special project for Key science and technology of food safety [2017YFC1601300]
  2. research project of public welfare grain industry [201513006]

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This paper presents a rapid, low-cost, and highly automated method for detecting Cd and Pb in cereals. The method uses a diluted acid extraction pre-treatment method and a high-performance lead-cadmium composite hollow-cathode lamp, and achieves automatic determination from sample weighing to result output through an automatic diluted acid extraction system.
A simple, rapid, sensitive, accurate, and automatic graphite furnace atomic absorption spectrometry (GFAAS) method for detecting Cd and Pb in cereals is presented. This method enables the simultaneous determination of Cd and Pb in cereals with a pre-treatment method of diluted acid extraction and a high-performance lead-cadmium composite hollow-cathode lamp (LCC-HCL), and it realizes automatic determination from sample weighing to result output through an automatic diluted acid extraction system. Under the optimization, Pb and Cd in cereals were simultaneously and automatically detected in up to 240 measurements in 8 h. The LOD and LOQ of this method were 0.012 and 0.040 mg center dot kg(-1) for Pb, and 0.0014 and 0.0047 mg center dot kg(-1) for Cd, respectively. The results of the four certified reference materials were satisfied; there was no significant difference compared with the ICP-MS method according to a t-test, and the RSDs were less than 5% for Cd and Pb. The recoveries of naturally contaminated samples compared with the ICP-MS method were favorable, with 80-110% in eight laboratories. The developed method is rapid, low-cost, and highly automated and may be a good choice for grain quality discrimination and rapid analysis of Cd and Pb in different institutions.

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