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Gasoline- and diesel-like products from heavy oils via catalytic pyrolysis

Petroleum Science and Technology · Ağustos 2017

Özet
Heavy oil is less expensive than light crude oil, but heavy oil is more expensive to obtain light oil products. Conventional light crude oil resources are decreasing, therefore heavy oil resources will be needed more in the future. There are huge differences from field to field for heavy oil deposits. In terms of final productive use, heavy oil is considered as an unconventional resource. Heavy oil upgrading depends on four important factors: catalyst selection, heavy oil classification, process design, and production economics. Heavy and extra-heavy oils are unconventional reservoirs of oil. Globally, 21.3% of total oil reserves are heavy oil. Heavy oil is composed of long chain organic molecules called heavy hydrocarbons. The thermal degradation of the heavy hydrocarbons in heavy oil generates liquid and gaseous products. All kinds of heavy oils contain asphaltenes, and therefore are considered to be very dense material. The most similar technologies for upgrading of heavy oils are pyrolysis and catalytic pyrolysis, thermal and catalytic cracking, and hydrocracking. The amount of liquid products obtained from pyrolysis of heavy oil was dependent on the temperature and the catalyst. Pyrolytic oil contains highly valuable light hydrocarbons as gasoline and diesel components range. The constant increase in the use of crude oils has raised prices of the most common commercial conventional products and consequently seeking for new alternative petroleum resources, like some unconventional oil resources, becomes an interesting issue. The mass contents of gasoline, diesel, and heavy oil in the crude oil are 44.6%, 38.3%, and 17.1%, respectively. The gasoline yield from the heavy oil catalytic (Na2CO3) pyrolysis is higher than the diesel efficiency for all conditions. The yield of gasoline products increases with increasing pyrolysis temperature (from 230°C to 350°C) and percentage of catalyst (from 5% to 10%). The yields of gasoline-like product are from 21.5% to 39.1% in 5% catalytic run and from 32.5% to 42.5% in 10% catalytic run. The yields of diesel-like product are from 9.3% to 29.8% in 5% catalytic run and from 15.5% to 33.7% in 10% catalytic run.
7 atıf Ağustos 2017 DOI
YÖKSİS Kayıtları — ISSN Eşleşmesi
Bu dergide (ISSN eşleşmesi) kurumun 4 kaydı bulundu.
Gasoline- and diesel-like products from heavy oilsvia catalytic pyrolysis
2017 ISSN: 1091-6466 SCI
Dr. Öğr. Üyesi NEJDET ŞEN →
Calculation of higher heating values ofhydrocarbon compounds and fatty acids
2018 ISSN: 1091-6466 SCI-Expanded
Dr. Öğr. Üyesi NEJDET ŞEN →
Analysis of petroleum coke from low grade oily sludge of refinery
2018 ISSN: 1091-6466 SCI
Dr. Öğr. Üyesi ŞÜKRÜ ACAR →
Chemical analyses of shale gas and conventional natural gas
2018 ISSN: 1091-6466 SCI
Dr. Öğr. Üyesi ŞÜKRÜ ACAR →

Makale Bilgileri

Toplam Atıf 7 atıf · Scopus
ISSN10916466
Yayın TarihiAğustos 2017
Cilt / Sayfa35 · 1607-1613

Kurumlar

Faculty of Engineering, King Abdulaziz University
Jeddah Saudi Arabia
Manisa Celâl Bayar Üniversitesi
Manisa Turkey
Selçuk Üniversitesi
Selçuklu Turkey

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Scimago Dergi (ISSN Eşleşmesi)
Petroleum Science and Technology
Q3
SJR Skoru0,342
H-Index68
YayıncıTaylor and Francis Ltd.
ÜlkeUnited States
Chemical Engineering (miscellaneous) (Q3)
Chemistry (miscellaneous) (Q3)
Energy Engineering and Power Technology (Q3)
Fuel Technology (Q3)
Geotechnical Engineering and Engineering Geology (Q3)
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