International Journal of Clean Coal and Energy

International Journal of Clean Coal and Energy

ISSN Print: 2168-152X
ISSN Online: 2168-1538
www.scirp.org/journal/ijcce
E-mail: ijcce@scirp.org
"Green Oil Production by Hydroprocessing"
written by Song Chen,
published by International Journal of Clean Coal and Energy, Vol.1 No.4, 2012
has been cited by the following article(s):
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[2] Animal fats valorization to green transportations fuels: From concept to industrially relevant scale validation
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[3] Transformation of 1-G and 2-G liquid biomass to green fuels using hydroprocessing technology: A promising technology for biorefinery development
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[4] Current Status of the Green Diesel Industry
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[5] PRODUCTION OF GREEN DIESEL BASED ON PALM FATTY ACID DISTILLATE USING CATALYTIC HYDROGENATION METHOD
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[6] Estudos físico-químico e espectroscópico de misturas combustíveis
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[7] Konversi Minyak Kelapa Sawit Menjadi Biofuel Melalui Proses Continue Hydrocracking Dengan Katalis Nikel Oksida-Kadmium Oksida/Karbon Aktif
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[8] Biokonversi Asam Lemak Bebas Terhidrolisis Dari Minyak Kedelai Menjadi Biodiesel Menggunakan Lactobacillus Plantarum Dan Acetobacter
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[9] Comprehensive study on thermochemical putrefaction of Delonix Regia in non-catalytic, catalytic and hydro-catalytic pyrolysis atmospheres
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[10] Long-term Planning of the Fuel System in Indonesia using Optimization
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[11] Catalytic Cracking of Rapeseed Oil with Binary Oxide Systems: An Alternative to Production of Petrochemicals
2020
[12] Studi Pendahuluan Konversi Minyak Kelapa Sawit (Palm Oil) Menjadi Green Diesel Sebagai Bahan Bakar Alternatif Secara Elektrolisis Menggunakan Elektroda Nikel …
2020
[13] Tracking renewable carbon in bio-oil/crude co-processing with VGO through 13C/12C ratio analysis
2020
[14] Catalysis Deoxygenation and Hydrodeoxygenation of Edible and Inedible Oil to Green Fuel
2020
[15] Bio-Oil and Pyrolytic Oil
2019
[16] Challenges and Solutions for Utilization of Bioliquids in Microturbines
2019
[17] Waste cooking oils exploitation targeting EU 2020 diesel fuel production: Environmental and economic benefits
2019
[18] Studi pengaruh penambahan logam fe, cu, dan co terhadap katalis ni/sial pada konversi asam lemak menjadi alkana
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[19] Biodiesel at the Crossroads: A Critical Review
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[20] Refinery co-processing of renewable feeds
Progress in Energy and Combustion Science, 2018
[21] Integration of hydroprocessing modeling of bio-liquids into flowsheeting design tools for biofuels production
Fuel Processing Technology, 2018
[22] Technoeconomic analysis of biojet fuel production from camelina at commercial scale: Case of Canadian Prairies
Bioresource Technology, 2018
[23] Residual lipids incorporation in a petroleum refinery
International Journal of Global Warming, 2017
[24] Hydrotreatment of palmolein oil as fuel for diesel engines–An experimental study
2017
[25] An innovative technique to suppress alkene-bond in green diesel by Mg–Fe basic soap thermal decarboxylation
Global Health Action, 2017
[26] Hydroprocessed vegetable oil as a fuel for transportation sector: A review
Journal of the Energy Institute, 2017
[27] Hydrodeoxygenation of acrylic acid using Mo 2 C/Al 2 O 3
Applied Catalysis A: General, 2017
[28] Green diesel production over nickel-alumina co-precipitated catalysts
Applied Catalysis A: General, 2017
[29] Diseño de una planta de producción de diésel renovable a partir de los efluentes de una planta extractora de aceite de palma
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[30] Hydrodeoxygenation of acrylic acid using Mo2C/Al2O3
2017
[31] Process Simulation and Optimization of Alternative Liquid Fuels Production A techno-economic assessment of the production of HEFA Jet Fuel
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[32] Development of nickel based catalysts for the transformation of natural triglycerides and related compounds into green diesel: a critical review
Applied Catalysis B: Environmental, 2016
[33] Επίδραση της σύστασης και της τροποποίησης με Zn ή Cu νανοδομημένων καταλυτών Ni/Al2O3 στη δραστικότητα τους για την μετατροπή του ηλιελαίου σε …
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[34] Influence of rapeseed oil hydrotreating on hydrogenation activity of CoMo catalyst
Fuel Processing Technology, 2016
[35] Kajian Kinerja Katalis Ni-Mo-S/γ-Al2O3 Proses Hidrotreating Minyak Biji Kapok (Ceiba pentandra) untuk Sintesa Biohidrokarbon
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[36] Energy from Waste Materials and Unconventional Sources
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[37] Επίδραση της σύστασης και της τροποποίησης με Zn ή Cu νανοδομημένων καταλυτών Ni/Al2O3 στη δραστικότητα τους για την μετατροπή του ηλιελαίου σε …
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[38] Hybrid diesel from co-processing residual lipids with petroleum fractions
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[39] Techno-economic assessment of a heat-integrated process for hydrogenated renewable diesel production from palm fatty acid distillate
Biomass and Bioenergy, 2015
[40] An overview on glycerol-free processes for the production of renewable liquid biofuels, applicable in diesel engines
Renewable and Sustainable Energy Reviews, 2015
[41] Devolatilization kinetics of swine manure solid pyrolysis using deconvolution procedure. Determination of the bio-oil/liquid yields and char gasification
Fuel Processing Technology, 2015
[42] HYDROPROCESSING MICROALGAE DERIVED HYDROTHERMAL LIQUEFACTION BIO-CRUDE FOR MIDDLE DISTILLATE FUELS PRODUCTION–A REVIEW
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[43] Recovery of Gasoline and Diesel Range Hydrocarbons From Waste Vegetable Oils
Petroleum Science and Technology, 2015
[44] Ανάπτυξη καταλυτών κοβαλτίου στηριγμένων σε οξείδιο του αργιλίου για την μετατροπή ηλιελαίου σε ανανεώσιμο ντίζελ
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[45] Estudo da reacção de hidrogenação de misturas de óleos de origem animal e vegetal
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