HUANG Zhi-xuan,HE Tian-lun,GUO Xiang,CHEN Da.Research on a Novel Intelligent Spectral Methodology for Detection of Cadmium,Copper and Other Heavy Metals in Liquid Milk[J].Journal of Instrumental Analysis,2024,43(07):1032-1038.
HUANG Zhi-xuan,HE Tian-lun,GUO Xiang,CHEN Da.Research on a Novel Intelligent Spectral Methodology for Detection of Cadmium,Copper and Other Heavy Metals in Liquid Milk[J].Journal of Instrumental Analysis,2024,43(07):1032-1038. DOI: 10.12452/j.fxcsxb.24032502.
Research on a Novel Intelligent Spectral Methodology for Detection of Cadmium,Copper and Other Heavy Metals in Liquid Milk
Heavy metal elements represent a significant threat to the quality safety of dairy products,making their rapid detection a focal point in food safety research. This paper introduces a novel detection method,surface enhanced scanning laser induced breakdown spectrum(SES-LIBS),for improving the detection sensitivity and throughput of heavy metals in liquid milk. The SES-LIBS utilized the principle of metal displacement reactions to enrich trace heavy metal ions in specific areas above an active metal substrate. Subsequently,LIBS scanned the specific surface area of the metal substrate to collect trace heavy metal signals in liquid milk. The SES-LIBS was capable of avoiding the plasma cancellation with the improvement of detection sensitivity for trace heavy metal ions. To
overcome both interference of sample collection and matrix in SES-LIBS signals,the paper developed a reweighted characteristic spectrum driven auto-encoder siamese multitasking network(RCSD-ASMN),which accurately extracted spectral information of the interested analytes from complex and fluctuant LIBS signals. The results demonstrated that the SES-LIBS was capable of detecting multiple heavy metal elements such as Cd and Cu simultaneously,with limitation of detection of 0.11 mg/kg and 0.13 mg/kg,respectively. The linearity(
R
2
) of the detected elements is not less than 0.97. These results revealed that the SES-LIBS methodology supressed cross-interference from different liquid milk substrates and heavy metal elements,presenting excellent detection accuracy and linearity. This would definitely provide a novel approach for high-throughput detection of heavy metals in liquid milk samples,which may well extend to other liquid systems.
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