Standard

Fast flow-based method for automated and miniaturized determination of ferrocene in gasoline. / Shishov, Andrey; Gorbunov, Ilya; Bulatov, Andrey.

в: Microchemical Journal, Том 130, 01.01.2017, стр. 185-190.

Результаты исследований: Научные публикации в периодических изданияхстатьяРецензирование

Harvard

APA

Vancouver

Author

BibTeX

@article{310e416f152e4efc9687049494c0dc41,
title = "Fast flow-based method for automated and miniaturized determination of ferrocene in gasoline",
abstract = "An easily performed fully automated and miniaturized procedure for the determination of antiknock agent ferrocene in gasoline is presented. The flow system was designed to focus on automation and miniaturization with minimal sample and reagent consumption by inexpensive instrumentation. As a result sample and reagent consumption was 0.4 mL. The procedure is based on on-line oxidation of ferrocene with benzoyl peroxide in gasoline-methanol mixture to color-forming ferrocenium-hydroxyl associate, followed by spectrophotometric determination in a stepwise injection system. The process of ferrocene oxidation to obtain color-forming ferrocenium-hydroxyl associate in homogeneous solution of gasoline sample in different organic solvents was studied. Under optimal experimental conditions (10 mM benzoyl peroxide, 0.1 mM HCl, oxidation time of 2 min) the linear detection range was found to be 1–100 mg L− 1 in terms of Fe. The LOD, calculated from a blank test, based on 3σ, was found to be 0.3 mg L− 1 in terms of Fe, with sample volume of 0.1 mL. The relative standard deviation for the determination of 1 mg Fe L− 1 was 4.5% (n = 5). The sample throughput was 15 h− 1. The proposed method was successfully applied for the determination of ferrocene in gasoline samples, and the analytical results agreed fairly well with the results obtained by reference UV-Vis and FAAS methods.",
keywords = "Antiknock agent, Ferrocene, Ferrocenium ions, Ferrocenium-hydroxyl associate, Flow analysis, Gasoline, Stepwise injection analysis",
author = "Andrey Shishov and Ilya Gorbunov and Andrey Bulatov",
year = "2017",
month = jan,
day = "1",
doi = "10.1016/j.microc.2016.09.006",
language = "English",
volume = "130",
pages = "185--190",
journal = "Microchemical Journal",
issn = "0026-265X",
publisher = "Elsevier",

}

RIS

TY - JOUR

T1 - Fast flow-based method for automated and miniaturized determination of ferrocene in gasoline

AU - Shishov, Andrey

AU - Gorbunov, Ilya

AU - Bulatov, Andrey

PY - 2017/1/1

Y1 - 2017/1/1

N2 - An easily performed fully automated and miniaturized procedure for the determination of antiknock agent ferrocene in gasoline is presented. The flow system was designed to focus on automation and miniaturization with minimal sample and reagent consumption by inexpensive instrumentation. As a result sample and reagent consumption was 0.4 mL. The procedure is based on on-line oxidation of ferrocene with benzoyl peroxide in gasoline-methanol mixture to color-forming ferrocenium-hydroxyl associate, followed by spectrophotometric determination in a stepwise injection system. The process of ferrocene oxidation to obtain color-forming ferrocenium-hydroxyl associate in homogeneous solution of gasoline sample in different organic solvents was studied. Under optimal experimental conditions (10 mM benzoyl peroxide, 0.1 mM HCl, oxidation time of 2 min) the linear detection range was found to be 1–100 mg L− 1 in terms of Fe. The LOD, calculated from a blank test, based on 3σ, was found to be 0.3 mg L− 1 in terms of Fe, with sample volume of 0.1 mL. The relative standard deviation for the determination of 1 mg Fe L− 1 was 4.5% (n = 5). The sample throughput was 15 h− 1. The proposed method was successfully applied for the determination of ferrocene in gasoline samples, and the analytical results agreed fairly well with the results obtained by reference UV-Vis and FAAS methods.

AB - An easily performed fully automated and miniaturized procedure for the determination of antiknock agent ferrocene in gasoline is presented. The flow system was designed to focus on automation and miniaturization with minimal sample and reagent consumption by inexpensive instrumentation. As a result sample and reagent consumption was 0.4 mL. The procedure is based on on-line oxidation of ferrocene with benzoyl peroxide in gasoline-methanol mixture to color-forming ferrocenium-hydroxyl associate, followed by spectrophotometric determination in a stepwise injection system. The process of ferrocene oxidation to obtain color-forming ferrocenium-hydroxyl associate in homogeneous solution of gasoline sample in different organic solvents was studied. Under optimal experimental conditions (10 mM benzoyl peroxide, 0.1 mM HCl, oxidation time of 2 min) the linear detection range was found to be 1–100 mg L− 1 in terms of Fe. The LOD, calculated from a blank test, based on 3σ, was found to be 0.3 mg L− 1 in terms of Fe, with sample volume of 0.1 mL. The relative standard deviation for the determination of 1 mg Fe L− 1 was 4.5% (n = 5). The sample throughput was 15 h− 1. The proposed method was successfully applied for the determination of ferrocene in gasoline samples, and the analytical results agreed fairly well with the results obtained by reference UV-Vis and FAAS methods.

KW - Antiknock agent

KW - Ferrocene

KW - Ferrocenium ions

KW - Ferrocenium-hydroxyl associate

KW - Flow analysis

KW - Gasoline

KW - Stepwise injection analysis

UR - http://www.scopus.com/inward/record.url?scp=84988038447&partnerID=8YFLogxK

U2 - 10.1016/j.microc.2016.09.006

DO - 10.1016/j.microc.2016.09.006

M3 - Article

AN - SCOPUS:84988038447

VL - 130

SP - 185

EP - 190

JO - Microchemical Journal

JF - Microchemical Journal

SN - 0026-265X

ER -

ID: 9160155