Numerical study of sorption of asphalt binders on minerals

[1]  Daniel J. Oldham,et al.  Application of surface-modified silica nanoparticles with dual silane coupling agents in bitumen for performance enhancement , 2020 .

[2]  Shenghua Wu,et al.  State-of-art carbon and graphene family nanomaterials for asphalt modification , 2019, Road Materials and Pavement Design.

[3]  Prabin Kumar Ashish,et al.  Use of nanomaterial for asphalt binder and mixtures: a comprehensive review on development, prospect, and challenges , 2019, Road Materials and Pavement Design.

[4]  Daniel J. Oldham,et al.  Surface functionalization of silica nanoparticles to enhance aging resistance of asphalt binder , 2019, Construction and Building Materials.

[5]  Prabin Kumar Ashish,et al.  Investigation on influence of nanoclay addition on rheological performance of asphalt binder , 2017 .

[6]  E. Santagata,et al.  Fatigue and healing properties of nano-reinforced bituminous binders , 2015 .

[7]  Jeramie J. Adams Asphaltene Adsorption, a Literature Review , 2014 .

[8]  Ezio Santagata,et al.  Rheological Characterization of Bituminous Binders Modified with Carbon Nanotubes , 2012 .

[9]  Armen N. Amirkhanian,et al.  Influence of Carbon Nanoparticles on the Rheological Characteristics of Short-Term Aged Asphalt Binders , 2011 .

[10]  Qingli Dai,et al.  Nanoclay-modified asphalt materials: Preparation and characterization , 2011 .

[11]  J. C. Petersen,et al.  A Review of the Fundamentals of Asphalt Oxidation: Chemical, Physicochemical, Physical Property, and Durability Relationships , 2009 .

[12]  E. Ensley Multilayer adsorption with molecular orientation of asphalt on mineral aggregate and other substrates , 2007 .

[13]  Hans-Jürgen Butt,et al.  Physics and Chemistry of Interfaces , 2003 .

[14]  J. C. Petersen,et al.  FUNDAMENTAL PROPERTIES OF ASPHALTS AND MODIFIED ASPHALTS, VOLUME II: FINAL REPORT, NEW METHODS , 2001 .

[15]  Junboum Park,et al.  Adsorption and Thermal Desorption Behaviour of Asphalt-like Functionalities on Silica , 2000 .

[16]  Jean-Baptiste Lully,et al.  The collected works , 1996 .

[17]  Y. Jeon,et al.  ADSORPTION OF ASPHALTENE FUNTIONALITIES AND ASPHALTENE ON GOETHTTE , 1995 .

[18]  L. Schramm,et al.  Electrokinetic and adsorption properties of asphaltenes , 1995 .

[19]  J F Branthaver,et al.  Chemical properties of asphalts and their relationships to pavement performance , 1991 .

[20]  R. Pugh,et al.  Surface acidity/basicity of road stone aggregates by adsorption from non-aqueous solutions , 1991 .

[21]  Y. Jeon,et al.  ADSORPTION OF ASPHALT FUNCTIONALITIES AND OXIDIZED ASPHALTS ON AGGREGATE SURFACES , 1989 .

[22]  J. C. Petersen,et al.  LIME TREATMENT OF ASPHALT TO REDUCE AGE HARDENING AND IMPROVE FLOW PROPERTIES (WITH DISCUSSION) , 1987 .

[23]  J Claine Petersen,et al.  QUANTITATIVE FUNCTIONAL GROUP ANALYSIS OF ASPHALTS USING DIFFERENTIAL INFRARED SPECTROMETRY AND SELECTIVE CHEMICAL REACTIONS--THEORY AND APPLICATION , 1986 .

[24]  Douglas M. Ruthven,et al.  Principles of Adsorption and Adsorption Processes , 1984 .

[25]  J. C. Petersen,et al.  CHEMISTRY OF ASPHALT-AGGREGATE INTERACTION: RELATIONSHIP WITH PAVEMENT MOISTURE-DAMAGE PREDICTION TEST , 1982 .

[26]  J. C. Petersen,et al.  Quantitative determination of carboxylic acids and their salts and anhydrides in asphalts by selective chemical reactions and differential infrared spectrometry , 1981 .

[27]  J. C. Petersen,et al.  PAVING ASPHALT; REDUCTION OF OXIDATIVE HARDENING OF ASPHALTS BY TREATMENT WITH HYDRATED LIME-A MECHANISTIC STUDY , 1977 .

[28]  J. C. Petersen,et al.  Identification of dicarboxylic anhydrides in oxidized asphalts , 1975 .

[29]  J. C. Petersen Quantitative method using differential infrared spectrometry for the determination of compound types absorbing in the carbonyl region in asphalts , 1975 .

[30]  J. C. Petersen,et al.  CATALYSIS OF ASPHALT OXIDATION BY MINERAL AGGREGATE SURFACES AND ASPHALT COMPONENTS , 1974 .

[31]  I. Langmuir THE ADSORPTION OF GASES ON PLANE SURFACES OF GLASS, MICA AND PLATINUM. , 1918 .