Composition of the C6+ Fraction of Natural Gas by Multiple Porous Layer Open Tubular Capillaries Maintained at Low Temperatures.
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[1] Callum Smith. Analysis of Natural Gas Hydrates using Inert Gases , 2017 .
[2] T. Bruno,et al. Direct nuclear magnetic resonance observation of odorant binding to mouse odorant receptor MOR244-3. , 2016, Analytical biochemistry.
[3] T. Bruno,et al. Field portable low temperature porous layer open tubular cryoadsorption headspace sampling and analysis part II: Applications. , 2016, Journal of chromatography. A.
[4] T. Bruno. Field portable low temperature porous layer open tubular cryoadsorption headspace sampling and analysis part I: Instrumentation. , 2016, Journal of chromatography. A.
[5] Tara M. Lovestead,et al. Analysis of arson fire debris by low temperature dynamic headspace adsorption porous layer open tubular columns. , 2014, Journal of chromatography. A.
[6] T. Bruno,et al. Method and apparatus for pyrolysis--porous layer open tubular column--cryoadsorption headspace sampling and analysis. , 2013, Journal of chromatography. A.
[7] N. Rawson,et al. Findings and Recommendations From the Joint NIST—AGA Workshop on Odor Masking , 2011, Journal of research of the National Institute of Standards and Technology.
[8] Tara M. Lovestead,et al. Detecting gravesoil with headspace analysis with adsorption on short porous layer open tubular (PLOT) columns. , 2011, Forensic science international.
[9] A. Kidnay,et al. Fundamentals of Natural Gas Processing, Second Edition , 2011 .
[10] Brad Vidrine. CHROMATOGRAPHIC ANALYSIS OF NATURAL GAS LIQUIDS , 2011 .
[11] Thomas J. Bruno,et al. Detection of poultry spoilage markers from headspace analysis with cryoadsorption on a short alumina PLOT column , 2010 .
[12] K. Hall,et al. Characterization of Deepwater Natural Gas Samples. Part 1: 78 % Methane Mixture with Heavy Components , 2010 .
[13] Tara M Lovestead,et al. Trace headspace sampling for quantitative analysis of explosives with cryoadsorption on short alumina porous layer open tubular columns. , 2010, Analytical chemistry.
[14] P. G. Hill,et al. The influence of fuel composition on a heavy-duty, natural-gas direct-injection engine , 2010 .
[15] T. Bruno. Simple, quantitative headspace analysis by cryoadsorption on a short alumina PLOT column. , 2009, Journal of chromatographic science.
[16] O. Vaselli,et al. Scrubbing process and chemical equilibria controlling the composition of light hydrocarbons in natural gas discharges: An example from the geothermal fields of El Salvador , 2007 .
[17] Avi Pfeffer,et al. INFLUENCE OF , 2014 .
[18] H. Petersen,et al. SOURCE ROCK PROPERTIES OF LACUSTRINE MUDSTONES AND COALS (OLIGOCENE DONG HO FORMATION), ONSHORE SONG HONG BASIN, NORTHERN VIETNAM , 2005 .
[19] H. Beucher,et al. Reservoir Characterization , 2005 .
[20] E. D. Sloan,et al. Fundamental principles and applications of natural gas hydrates , 2003, Nature.
[21] Fabian Mauss,et al. Homogeneous charge compression ignition operation with natural gas: Fuel composition implications , 2003 .
[22] T. Bruno,et al. Wall-coated open-tubular column chromatography on an organo-clay stationary phase. , 2002, Journal of chromatography. A.
[23] L. Snowdon. Natural gas composition in a geological environment and the implications for the processes of generation and preservation , 2001 .
[24] T. Bruno,et al. Gas Chromatographic Retention Parameters: The Basis of Chromatographic Peak Identification for Extended Natural Gas Analysis , 1998 .
[25] J. Iwamoto,et al. Characterization of heavy components in NGL and natural gas (extended analysis) , 1995 .
[26] D. G. Howell,et al. The future of energy gases , 1995 .
[27] T. Elliot,et al. Carbon, helium, neon and argon isotopes in a Po Basin (Northern Italy) Natural Gas Field. , 1993 .
[28] T. Schulz,et al. Natural gas treatment: simultaneous water and hydrocarbon-dew point-control. I: Process design, adsorbent selection and performance , 1993 .
[29] Karen Schou Pedersen,et al. PVT calculations on petroleum reservoir fluids using measured and estimated compositional data for the plus fraction , 1992 .
[30] F. Ahrens,et al. What's in a flame , 1992 .
[31] Colin Ta. Prediction of Natural Gas Composition in Ultradeep Sandstone Reservoirs (1) , 1992 .
[32] F. David,et al. Analysis of C10‐C20 hydrocarbons in natural gas by solid phase extraction and CGC , 1989 .
[33] I. Kaplan,et al. Origin of Natural Gas in Sacramento Basin, California , 1989 .
[34] S. Igari,et al. Origin of natural gas of dissolved-in-water type in Japan inferred from chemical and isotopic compositions: Occurrence of dissolved gas of thermogenic origin , 1989 .
[35] T. Bruno. Laboratory applications of the vortex tube , 1987 .
[36] T. Bruno. Vortex cooling for subambient temperature gas chromatography , 1986 .
[37] J. Mačák,et al. Analysis of natural gas by gas chromatography , 1978 .