Asphaltene and resid pyrolysis. 2. The effect of reaction environment on pathways and selectivities M Yasar, DM Trauth, MT Klein Energy & fuels 15 (3), 504-509, 2001 | 143 | 2001 |
The Effect of Ag Content of the Chitosan‐Silver Nanoparticle Composite Material on the Structure and Antibacterial Activity S Akmaz, E Dilaver Adıgüzel, M Yasar, O Erguven Advances in Materials Science and Engineering 2013 (1), 690918, 2013 | 122 | 2013 |
Investigation of the effects of fatty acids on the compressive strength of the concrete and the grindability of the cement AT Albayrak, M Yasar, MA Gurkaynak, I Gurgey Cement and Concrete Research 35 (2), 400-404, 2005 | 121 | 2005 |
The structural characterization of saturate, aromatic, resin, and asphaltene fractions of Batiraman crude oil S Akmaz, O Iscan, MA Gurkaynak, M Yasar Petroleum Science and Technology 29 (2), 160-171, 2011 | 117 | 2011 |
Graft copolymerization of acrylic acid on cellulose: Reaction kinetics of copolymerization G Gürdağ, M Yaşar, MA Gürkaynak Journal of Applied Polymer Science 66 (5), 929-934, 1997 | 108 | 1997 |
The competitive heavy metal removal by hydroxyethyl cellulose-g-poly (acrylic acid) copolymer and its sodium salt: The effect of copper content on the adsorption capacity S Çavuş, G Gürdağ, M Yaşar, K Güçlü, MA Gürkaynak Polymer Bulletin 57, 445-456, 2006 | 61 | 2006 |
Investigation of glass transition temperatures of Turkish asphaltenes M Yasar, S Akmaz, MA Gurkaynak Fuel 86 (12-13), 1737-1748, 2007 | 51 | 2007 |
The effect of temperature on the molecular structure of Raman asphaltenes during pyrolysis S Akmaz, MA Gurkaynak, M Yasar Journal of analytical and applied pyrolysis 96, 139-145, 2012 | 42 | 2012 |
CPU issues in the representation of the molecular structure of petroleum resid through characterization, reaction, and Monte Carlo modeling TF Petti, DM Trauth, SM Stark, M Neurock, M Yasar, MT Klein Energy & fuels 8 (3), 570-575, 1994 | 38 | 1994 |
Effect of asphaltenes on pyrolysis kinetics of saturates M Yasar, FE Cerci, H Gulensoy Journal of Analytical and Applied Pyrolysis 56 (2), 219-228, 2000 | 36 | 2000 |
Asphaltene and resid pyrolysis: Effect of reaction environment DM Trauth, M Yasar, M Neurock, A Nigam, MT Klein, SG Kukes Fuel science & technology international 10 (7), 1161-1179, 1992 | 36 | 1992 |
Refinery bitumen and domestic unconventional heavy oil upgrading in supercritical water RO Canıaz, S Arca, M Yaşar, C Erkey The Journal of Supercritical Fluids 152, 104569, 2019 | 35 | 2019 |
Investigation of the molecular structure of Turkish asphaltenes M Yasar, S Akmaz, MA Gurkaynak Petroleum science and technology 27 (10), 1044-1061, 2009 | 26 | 2009 |
A new extended structural parameter set for stochastic molecular reconstruction: application to asphaltenes CU Deniz, M Yasar, MT Klein Energy & Fuels 31 (8), 7919-7931, 2017 | 15 | 2017 |
Stochastic reconstruction of complex heavy oil molecules using an artificial neural network CU Deniz, M Yasar, MT Klein Energy & Fuels 31 (11), 11932-11938, 2017 | 12 | 2017 |
Effect of boiling point and density prediction methods on stochastic reconstruction CU Deniz, SHO Yasar, M Yasar, MT Klein Energy & Fuels 32 (3), 3344-3355, 2018 | 11 | 2018 |
Representation of the molecular structure of petroleum resid through characterization and Monte Carlo modelling DM Trauth, SM Stark, TF Petti, M Neurock, M Yasar, M Klein American Chemical Society, Division of Petroleum Chemistry, Preprints 38 (2 …, 1993 | 8 | 1993 |
The temporal variation of asphaltene structure during Raman crude oil pyrolysis S Akmaz, M Yasar Journal of analytical and applied pyrolysis 113, 672-679, 2015 | 7 | 2015 |
The effects of fatty acids on the particle size distribution of the Portland cement AT Albayrak, M Yasar, MA Gurkaynak, I Gurgey Journal of materials science 42, 5170-5174, 2007 | 7 | 2007 |
Structurally explicit composition model of petroleum vacuum residue M Haktanir, K Seda, M Yasar Fuel 300, 2021 | 6 | 2021 |