Форма представления | Статьи в зарубежных журналах и сборниках |
Год публикации | 2019 |
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Варфоломеев Михаил Алексеевич, автор
Кудбанов Арман Гумарович, автор
Фархадиан Абдолреза , автор
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Хабирова Светлана Рашидовна, автор
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Библиографическое описание на языке оригинала |
Farhadian A, Varfolomeev MA, Kudbanov A, Gallyamova SR. A new class of promising biodegradable kinetic/anti-agglomerant methane hydrate inhibitors based on castor oil // Chem Eng Sci. 2019; 206: 507-517. DOI: 10.1016 / j. ces.2019.05.055
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Аннотация |
Chemical Engineering Science |
Ключевые слова |
methane hydratevegetable oilkinetic hydrate inhibitoranti-agglomerantbiodegradabilityflow assurancedifferential scanning calorimeter |
Название журнала |
Chemical Engineering Science
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Издательство |
ELSEVIER |
URL |
DOI: 10.1016 / j. ces.2019.05.055 |
Пожалуйста, используйте этот идентификатор, чтобы цитировать или ссылаться на эту карточку |
https://repository.kpfu.ru/?p_id=204227 |
Полная запись метаданных |
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Язык |
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Варфоломеев Михаил Алексеевич |
ru_RU |
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Кудбанов Арман Гумарович |
ru_RU |
dc.contributor.author |
Фархадиан Абдолреза |
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dc.contributor.author |
Хабирова Светлана Рашидовна |
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dc.date.accessioned |
2019-01-01T00:00:00Z |
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dc.date.available |
2019-01-01T00:00:00Z |
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dc.date.issued |
2019 |
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dc.identifier.citation |
Farhadian A, Varfolomeev MA, Kudbanov A, Gallyamova SR. A new class of promising biodegradable kinetic/anti-agglomerant methane hydrate inhibitors based on castor oil // Chem Eng Sci. 2019; 206: 507-517. DOI: 10.1016 / j. ces.2019.05.055
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https://repository.kpfu.ru/?p_id=204227 |
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dc.description.abstract |
Chemical Engineering Science |
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dc.description.abstract |
This study is devoted to the evaluation of vegetable oils (in this case castor oil) as an inexpensive, sustainable, environment-friendly, natural and promising resource to design/synthesis efficient kinetic/anti-agglomerant methane hydrate inhibitors. The castor-based waterborne polyurea/urethanes (CWPUUs) were synthesized on the basis of the waterborne technique. The high-pressure autoclave cell and high-pressure micro-differential scanning calorimeter (HP-μDSC) using methane gas were applied to evaluate the inhibition performance of CWPUUs as an inhibitor for methane gas hydrate formation. The results of gas uptake tests confirm that the CWPUUs show high efficiency as kinetic hydrate inhibitors (KHIs). The CWPUUs with ∼3.2 and 6.8 kD molecular weight delayed the onset time of methane hydrate formation by a factor of 26.8 and 13 times and reduced the methane hydrate growth rate by a factor of 3.8 and 2.5 times in comparison with pure water. The results were further confirmed through D |
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dc.language.iso |
ru |
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ELSEVIER |
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dc.title |
A new class of promising biodegradable kinetic/anti-agglomerant methane hydrate inhibitors based on castor oil |
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dc.type |
Статьи в зарубежных журналах и сборниках |
ru_RU |
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