A Reusable Electrochemical Sensor for Simultaneous Determination of Trace Lead and Cadmium in Shellfish

被引:0
|
作者
Peng A. [1 ]
Peng J. [1 ]
Chen X. [1 ]
机构
[1] College of Ocean Food and Biological Engineering, Jimei University, Xiamen
关键词
Cadmium; Differential pulse anodic stripping voltammetry; Graphene; Lead; Shellfish;
D O I
10.16429/j.1009-7848.2021.11.028
中图分类号
学科分类号
摘要
Lead (Pb) and Cadmium (Cd) have emerged as major mussel pollutants in recent decades, thus the development of sensors capable of detecting both of Pb and Cd is of considerable interest. In this work, a bismuth film modified homemade electrode (HME) composed of ionic liquid/graphene composite (IL/GNs) was used as a working electrode for simultaneous detection of trace Pb2+ and Cd2+ in shellfish by differential pulse anodic stripping voltammetry (DPASV). The best experimental parameters were optimized and set as follows: the mass concentration of Bi3+ at 500 μg/L, the enrich time of 420 s, enrich voltage at -1.1 V, stirring speed of 600 r/min, and HAc-NaAc buffer pH at 4.2. Under the optimal conditions, the DPASV peak currents showed good linear relationships with the mass concentrations of Pb2+ and Cd2+ in the same range of 1.0~45.0 μg/L and the detection limits for Pb2+ and Cd2+ were 0.5 μg/L and 0.8 μg/L, respectively. The analysis system was successfully applied to simultaneous detection of Pb2+ and Cd2+ contents in Scallop, Ostrea plicatula, Solen gouldi, Ruditapes philippinarum, and the results were comparable with those obtained from ICP-MS. The electrochemical sensor based on IL/GNS HME is easy to be operated and has high sensitivity toward sensing Pb2+ and Cd2+. It can be used for the rapid, accurate, and simultaneous detection of trace Pb2+ and Cd2+ in shellfish. © 2021, Editorial Office of Journal of CIFST. All right reserved.
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页码:252 / 260
页数:8
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共 32 条
  • [1] JACKSON S L, SPENCE J, JANSSEN D J, Et al., Determination of Mn, Fe, Ni, Cu, Zn, Cd and Pb in seawater using offline extraction and triple quadrupole ICP-MS/MS, Journal of Analytical Atomic Spectrometry, 33, 2, pp. 304-313, (2018)
  • [2] HENRIQUES B, ROCHA L S, LOPES C B., A macroalgae-based biotechnology for water remediation: Simultaneous removal of Cd, Pb and Hg by living Ulva lactuca, Journal of Environmental Management, 191, pp. 275-289
  • [3] HENRIQUES B, LOPES C B, FIGUEIRA P, Et al., Bioaccumulation of Hg, Cd and Pb by Fucus vesiculosus in single and multi-metal contamination scenarios and its effect on growth rate, Chemosphere, 171, pp. 208-222, (2017)
  • [4] MUHAMMAD F, HUANG X, LI S, Et al., Strength evaluation by using polycarboxylate superplasticizer and solidification efficiency of Cr<sup>6+</sup>, Pb<sup>2+</sup> and Cd<sup>2+</sup> in composite based geopolymer, Journal of Cleaner Production, 188, pp. 807-815, (2018)
  • [5] ZHOU X W, ZHENG N, SU C Y, Et al., Relationships between Pb, As, Cr, and Cd in individual cows' milk and milk composition and heavy metal contents in water, silage, and soil, Environmental Pollution, 255, 2, (2019)
  • [6] QI X, XIE F C., Promotion effects of potassium permanganate on removal of Pb(II), Ni(II) and Cd(II) from hydrous manganese dioxide, Chemical Engineering Journal, 351, pp. 22-30, (2019)
  • [7] DE ANDRADE C K, DE BRITO P M K, DOS ANJOS V E, Et al., Determination of Cu, Cd, Pb and Cr in yogurt by slurry sampling electrothermal atomic absorption spectrometry: A case study for Brazilian yogurt, Food Chemistry, 240, pp. 268-274, (2018)
  • [8] (2018)
  • [9] 1
  • [10] HAO C, SHEN Y R, SHEN J X, Et al., A glassy carbon electrode modified with bismuth oxide nanoparticles and chitosan as a sensor for Pb(II) and Cd(II), Microchimica Acta, 183, 6, pp. 1823-1830, (2016)