Determination of cyanide concentration by chronoamperometry, cyclic voltammetry and fast Fourier transform electrochemical impedance spectroscopy

Journal of Electroanalytical Chemistry - Tập 895 - Trang 115449 - 2021
Povilas Virbickas1, Aušra Valiūnienė1, Diana Baryševa1, Georgi Popkirov2, Arūnas Ramanavičius1,3
1Faculty of Chemistry and Geosciences, Vilnius University, Naugarduko 24, LT-03225, Vilnius, Lithuania
2Central Laboratory of Solar Energy and New Energy Sources, Bulgarian Academy of Sciences, Sofia, Bulgaria
3Laboratory of Nanotechnology, State Research Institute Center for Physical Sciences and Technology, Sauletekio ave. 3, LT-10257 Vilnius, Lithuania

Tóm tắt

Từ khóa


Tài liệu tham khảo

Dash, 2009, Cyanide in industrial wastewaters and its removal: A review on biotreatment, J. Hazard. Mater., 163, 1, 10.1016/j.jhazmat.2008.06.051

Ma, 2010, Recent developments in cyanide detection: A review, Anal. Chim. Acta, 673, 117, 10.1016/j.aca.2010.05.042

Hu, 2016, An indanedione-based chemodosimeter for selective naked-eye andfluorogenic detection of cyanide, Sens. Actuators B Chem., 233, 510, 10.1016/j.snb.2016.04.100

Kenfield, 1988, Cyanide recovery across hollow fiber gas membranes, Environ. Sci. Technol., 22, 1151, 10.1021/es00175a003

Wild, 1994, Fate and effects of cyanide during wastewater treatment processes, Sci. Total Environ., 156, 93, 10.1016/0048-9697(94)90346-8

ECHA, 2020

Promchat, 2017, A novel indolium salt as a highly sensitive and selective fluorescent sensor for cyanide detection in water, J. Hazard. Mater., 329, 255, 10.1016/j.jhazmat.2017.01.024

Xu, 2010, Sensors for the optical detection of cyanide ion, Chem. Soc. Rev., 39, 127, 10.1039/B907368J

Park, 2020, Spontaneous optical response towards cyanide ion in water by a reactive binding site probe, Spectrochim, Acta Part A: Mol. Biomol. Spectrosc., 233, 118190, 10.1016/j.saa.2020.118190

Shamsipur, 2017, A novel electrochemical cyanide sensor using gold nanoparticles decorated carbon ceramic electrode, Microchem. J., 133, 485, 10.1016/j.microc.2017.04.017

Taheri, 2009, Investigation of a new electrochemical cyanide sensor based on Ag nanoparticles embedded in a three-dimensional sol–gel, J. Electroanal. Chem., 628, 48, 10.1016/j.jelechem.2009.01.003

Noroozifar, 2011, Determination of cyanide in wastewaters using modified glassy carbon electrode with immobilized silver hexacyanoferrate nanoparticles on multiwall carbon nanotube, J. Hazard. Mater., 185, 255, 10.1016/j.jhazmat.2010.09.026

Okochi, 2004, Development of an automated water toxicity biosensor using Thiobacillus ferrooxidans for monitoring cyanides in natural water for a water filtering plant, Biotechnol. Bioeng., 87, 905, 10.1002/bit.20193

Özcan, 2016, A new PANI biosensor based on catalase for cyanide determination, Artif. Cells Nanomed. Biotechnol., 44, 664, 10.3109/21691401.2014.978979

Kumar, 2018, A potentiometric biosensor for cyanide detection using immobilized whole cell cyanide dihydratase of flavobacterium indicum MTCC 6936, J. Anal. Chem., 73, 1014, 10.1134/S1061934818100039

Meher, 2018, An improved method for direct estimation of free cyanide in drinking water by Ion Chromatography-Pulsed Amperometry Detection (IC-PAD) on gold working electrode, Food Chem., 240, 131, 10.1016/j.foodchem.2017.07.041

Destanoğlu, 2016, Determination of cyanide, thiocyanate, cyanate, hexavalent chromium and metal cyanide complexes in various mixtures by Ion Chromatography with conductivity detection, J. Liquid Chromatogr. Relat. Technol., 39, 465, 10.1080/10826076.2016.1192044

Ali, 2017, Potentiometric determination of cyanide in polluted water samples using screen-printed electrode modified with ruthenium(ii) complexes ionophores, Int. J. Electrochem. Sci., 12, 11904, 10.20964/2017.12.26

Ayankojo, 2020, Molecularly imprinted polymer-based sensor for electrochemical detection of erythromycin, Talanta, 209, 120502, 10.1016/j.talanta.2019.120502

Fleet, 1971, The determination of low levels of cyanide ion using a silver responsive ion selective electrode, Anal. Lett., 4, 425, 10.1080/00032717108058633

Valiūnienė, 2013, The degradation of cyanide by anodic electrooxidation using different anode materials, Process Saf. Environ. Prot., 91, 269, 10.1016/j.psep.2012.06.007

Valiūnienė, 2015, Electrooxidation of cyanide ion on a platinized Ti electrode, React. Kinetics Mech. Catal., 115, 449, 10.1007/s11144-015-0860-1

Kelsall, 1991, Cyanide oxidation at nickel anodes II. Voltammetry and coulometry of systems, J. Electrochem. Soc., 138, 117, 10.1149/1.2085520

Szpyrkowicz, 2000, Comparison of the performance of a reactor equipped with a Ti: Pt and an SS anode for simultaneous cyanide removal and copper recovery, Electrochim. Acta, 46, 381, 10.1016/S0013-4686(00)00595-8

Hine, 1986, On the oxidation of cyanide solutions with lead dioxide coated anode, Electrochim. Acta, 31, 1389, 10.1016/0013-4686(86)87049-9

El-Ghaoui, 1982, Application of the trickle tower to problems of pollution-control. II. The direct and indirect oxidation of cyanide, J. Appl. Electrochem., 12, 669

Öğütveren, 1999, Removal of cyanide by anodic oxidation for wastewater treatment, Water Res., 33, 1851, 10.1016/S0043-1354(98)00362-5

T. Arikado, C. Iwakura, H. Yoneyama, H. Tamura, Anodic oxidation of potassium cyanide on the graphite electrode, Electrochim. Acta 21:1021–1027. https://doi.org/10.1016/0013-4686(76)85080-3.

Tamura, 1974, Anodic oxidation of potassium cyanide on platinum electrode, Electrochim. Acta, 19, 273, 10.1016/0013-4686(74)85078-4

Xu, 2012, Destruction of cyanide in aqueous solution by electrochemical oxidation method, Int. J. Electrochem. Sci., 7, 7516, 10.1016/S1452-3981(23)15801-9

Popkirov, 1992, A new impedance spectrometer for investigation of electrochemical systems, Rev. Sci. Instrum., 63, 5366, 10.1063/1.1143404

Valiūnienė, 2019, Redox-probe-free scanning electrochemical microscopy combined with fast fourier transform electrochemical impedance spectroscopy, Phys. Chem. Chem. Phys., 21, 9831, 10.1039/C9CP00187E

Belevskii, 2010, The role of mass transfer in the formation of the composition and structure of CoW coatings electrodeposited from citrate solutions, Surf. Eng. Appl. Electroch., 46, 570, 10.3103/S1068375510060050

Valiūnienė, 2017, Fast Fourier transformation electrochemical impedance spectroscopy for the investigation of inactivation of glucose biosensor based on graphite electrode modified by Prussian blue, polypyrrole and glucose oxidase, Colloids Surf. A Physicochem. Eng. Asp., 532, 165, 10.1016/j.colsurfa.2017.05.048

Website of the Department of Statistics and Data Science of Yale University. http://www.stat.yale.edu/Courses/1997-98/101/chigf.htm (accessed 17 May 2021).

Daujotis, 1997, The mechanism of electroreduction of silver cyanide complexes in aqueous electrolytes. 1. Time-resolved EQCM study, Electrochim. Acta 2, 1337, 10.1016/S0013-4686(96)00310-6

Hu, 2009, Electrochemical oxidation of ammonia-containing wastewater using Ti/RuO2-Pt electrode, Water Sci. Eng., 2, 103

Pikaar, 2011, Electrochemical sulfide oxidation from domestic wastewater using mixed metal-coated titanium electrodes, Water Res., 45, 5381, 10.1016/j.watres.2011.07.033