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Chemistry

D-Index
56
Citations
9653
World Ranking
11809
National Ranking
3178

Overview

Thomas J. Bruno is affiliated with the National Institute of Standards and Technology in the United States. Their research focus encompasses several fields and subfields within engineering and chemical sciences.

The main fields of study associated with Bruno's work include:

  • Engineering
  • Chemical Engineering

In terms of subfields, their contributions span:

  • Computational Mechanics
  • Fluid Flow and Transfer Processes
  • Organic Chemistry
  • Aerospace Engineering

Bruno's research addresses key scientific topics such as:

  • Heat transfer and supercritical fluids
  • Advanced Combustion Engine Technologies
  • Chemical Thermodynamics and Molecular Structure
  • Rocket and propulsion systems research

Recent published papers by Thomas J. Bruno include:

  • "Heat capacity measurements of conventional aviation fuels," 2022, published in Fuel Processing Technology
  • "Comparison of Heat Capacity Measurements of Alternative and Conventional Aviation Fuels," 2022, published in International Journal of Thermophysics

The scientist has collaborated frequently with the following co-authors:

  • Tara J. Fortin
  • Tara M. Lovestead

Bruno's works have appeared predominantly in the publication venues of:

  • Fuel Processing Technology
  • International Journal of Thermophysics

Best Publications

  • CRC handbook of chemistry and physics : a ready-reference book of chemical and physical data

    Robert C. Weast;Melvin Jensen Astle;William H. Beyer

  • Handbook of basic tables for chemical analysis

    Thomas J. Bruno;Paris D.N. Svoronos

  • Methodology for Formulating Diesel Surrogate Fuels with Accurate Compositional, Ignition-Quality, and Volatility Characteristics

    Charles J. Mueller;William J. Cannella;Thomas J. Bruno;Bruce Bunting

  • CRC Handbook of Fundamental Spectroscopic Correlation Charts

    Thomas J. Bruno;Paris D.N. Svoronos

  • Supercritical fluid technology : reviews in modern theory and applications

    Thomas J. Bruno;James F. Ely

  • Surrogate Mixture Model for the Thermophysical Properties of Synthetic Aviation Fuel S-8: Explicit Application of the Advanced Distillation Curve

    M. L. Huber;B. L. Smith;L. S. Ott;T. J. Bruno

  • Carbonyl Sulfide: A Review of Its Chemistry and Properties

    Paris D. N. Svoronos;Thomas J. Bruno

  • Diesel Surrogate Fuels for Engine Testing and Chemical-Kinetic Modeling: Compositions and Properties

    Charles J. Mueller;William J. Cannella;J. Timothy Bays;Thomas J. Bruno

  • Solubilities of Copper(II) and Chromium(III) Beta-Diketonates in Supercritical Carbon-Dioxide

    Anthony F. Lagalante;Brian N. Hansen;Thomas J. Bruno;Robert E. Sievers

  • Rapid Screening of Fluids for Chemical Stability in Organic Rankine Cycle Applications

    Wendy C. Andersen;Thomas J. Bruno

  • Surrogate Mixture Models for the Thermophysical Properties of Aviation Fuel Jet-A

    Marcia L. Huber;Eric W. Lemmon;Thomas J. Bruno

  • Improvements in the measurement of distillation curves. 1. A composition-explicit approach

    Thomas J. Bruno

  • Advanced Distillation Curve Analysis on Ethyl Levulinate as a Diesel Fuel Oxygenate and a Hybrid Biodiesel Fuel

    Bret C. Windom;Tara M. Lovestead;Mark Mascal;Edward B. Nikitin

  • Improvements in the measurement of distillation curves. 3. Application to gasoline and gasoline + methanol mixtures

    Beverly L. Smith;Thomas J. Bruno

  • Improvements in the Measurement of Distillation Curves. 2. Application to Aerospace/Aviation Fuels RP-1 and S-8†

    Thomas J. Bruno;Beverly L. Smith

  • Improvements in the measurement of distillation curves. 4. Application to the aviation turbine fuel Jet-A

    Beverly L. Smith;Thomas J. Bruno

  • Model for the Thermodynamic Properties of a Biodiesel Fuel

    Marcia L. Huber;Eric W. Lemmon;Andrei Kazakov;Lisa S. Ott

  • Thermochemical and thermophysical properties of JP-10

    Thomas J. Bruno;Marcia L. Huber;Arno D. Laesecke;Eric W. Lemmon

  • Chemically Authentic Surrogate Mixture Model for the Thermophysical Properties of a Coal-Derived Liquid Fuel

    Marcia L. Huber;Eric W. Lemmon;Vladimir Diky;Beverly L. Smith

  • Preliminary Surrogate Mixture Models for the Thermophysical Properties of Rocket Propellants RP-1 and RP-2

    Marcia L. Huber;Eric W. Lemmon;Lisa S. Ott;Thomas J. Bruno

  • Evaluation of the Physicochemical Authenticity of Aviation Kerosene Surrogate Mixtures. Part 2: Analysis and Prediction of Thermophysical Properties

    Thomas J. Bruno;Marcia L. Huber

Frequent Co-Authors

Marcia L. Huber
Marcia L. Huber National Institute of Standards and Technology
Eric W. Lemmon
Eric W. Lemmon National Institute of Standards and Technology
Ilmutdin M. Abdulagatov
Ilmutdin M. Abdulagatov Russian Academy of Sciences
William J. Pitz
William J. Pitz Lawrence Livermore National Laboratory
Charles J. Mueller
Charles J. Mueller Sandia National Laboratories
Robert E. Sievers
Robert E. Sievers University of Colorado Boulder
Robert E. Synovec
Robert E. Synovec University of Washington
James F. Ely
James F. Ely Colorado School of Mines
Harvey W. Yarranton
Harvey W. Yarranton University of Calgary
Michael R. Moldover
Michael R. Moldover National Institute of Standards and Technology

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