Addendum to the article “Viscosity data for kukersite shale gasoline fractionsˮ

The evaluation of experimental data is based on the disclosure of essential information related to data measurement. A recent paper published in the journal Oil Shale presented experimental viscosity data on narrow boiling range fractions, prepared by distillation from a wide gasoline fraction of Ku...

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Main Author: Vahur Oja
Format: Article
Language:English
Published: Estonian Academy Publishers 2023-04-01
Series:Oil Shale
Subjects:
Online Access:https://kirj.ee/wp-content/plugins/kirj/pub/OS-2-2023-166-175_20230430171601.pdf
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author Vahur Oja
author_facet Vahur Oja
author_sort Vahur Oja
collection DOAJ
description The evaluation of experimental data is based on the disclosure of essential information related to data measurement. A recent paper published in the journal Oil Shale presented experimental viscosity data on narrow boiling range fractions, prepared by distillation from a wide gasoline fraction of Kukersite oil shale pyrolysis oil (from an industrial plant). However, the article suffers from a deficiency of experimental description coupled with somewhat of an oversimplification of derivation of viscosity data from capillary viscometer measurements. Therefore, this addendum or short commentary supplemental article provides additional experimental information desirable for data evaluation and interpretation, along with corresponding corrections to the data.
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spelling doaj.art-617dc4aa2f374ebab510545661714d9a2023-04-30T14:19:18ZengEstonian Academy PublishersOil Shale0208-189X1736-74922023-04-01402166175https://doi.org/10.3176/oil.2023.2.05https://doi.org/10.3176/oil.2023.2.05Addendum to the article “Viscosity data for kukersite shale gasoline fractionsˮVahur Oja0KeemTeh OÜ, Pealtsaarmakose, 86803 Pärnu County, EstoniaThe evaluation of experimental data is based on the disclosure of essential information related to data measurement. A recent paper published in the journal Oil Shale presented experimental viscosity data on narrow boiling range fractions, prepared by distillation from a wide gasoline fraction of Kukersite oil shale pyrolysis oil (from an industrial plant). However, the article suffers from a deficiency of experimental description coupled with somewhat of an oversimplification of derivation of viscosity data from capillary viscometer measurements. Therefore, this addendum or short commentary supplemental article provides additional experimental information desirable for data evaluation and interpretation, along with corresponding corrections to the data.https://kirj.ee/wp-content/plugins/kirj/pub/OS-2-2023-166-175_20230430171601.pdfkukersite oil shale retort oilstraight run naphtha boiling range fractionkinematic viscositydynamic viscosityviscosity estimation methods.
spellingShingle Vahur Oja
Addendum to the article “Viscosity data for kukersite shale gasoline fractionsˮ
Oil Shale
kukersite oil shale retort oil
straight run naphtha boiling range fraction
kinematic viscosity
dynamic viscosity
viscosity estimation methods.
title Addendum to the article “Viscosity data for kukersite shale gasoline fractionsˮ
title_full Addendum to the article “Viscosity data for kukersite shale gasoline fractionsˮ
title_fullStr Addendum to the article “Viscosity data for kukersite shale gasoline fractionsˮ
title_full_unstemmed Addendum to the article “Viscosity data for kukersite shale gasoline fractionsˮ
title_short Addendum to the article “Viscosity data for kukersite shale gasoline fractionsˮ
title_sort addendum to the article viscosity data for kukersite shale gasoline fractionsˮ
topic kukersite oil shale retort oil
straight run naphtha boiling range fraction
kinematic viscosity
dynamic viscosity
viscosity estimation methods.
url https://kirj.ee/wp-content/plugins/kirj/pub/OS-2-2023-166-175_20230430171601.pdf
work_keys_str_mv AT vahuroja addendumtothearticleviscositydataforkukersiteshalegasolinefractionsˮ