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Baltimore Thermal

Conrad Industries operates a pyrolysis unit in Centralia, Washington. Other firms involved in tire pyrolysis include Nu-Tech Systems J.H. Beers, Inc. Baltimore Thermal and TecSon Corporation. [Pg.361]

W. H. Avery, R. W. Blevins, G. L. Dugyer, and E. J. Francis, Executive Summary—Maritime and Construction Aspects of Ocean Thermal Energy Conversion (OTEC) Plant Ships, Apphed Physics Laboratory, The Johns Hopkins University, Baltimore, Md., Apr. 1976. [Pg.360]

S. Mrozowski. Mechanical strength, thermal expansion and structure of cokes and carbons. Proc. 1st and 2nd Conf on Carbon., Waverley Press, Baltimore, MD,... [Pg.532]

Reineccius GA (2006) Flavor chemistry and technology. Taylor Francis, Boca Raton Gerstel (2006) Thermal desorber catalogue. Gerstel, Baltimore, http //www.gerstel.com/tds-eng.pdf... [Pg.425]

CA 43, 405 (1949) (Thermal decompn of PETN, NG, Ethylenediamine Dinitrate AN) l6)Ibid, TrFaradSoc 45, 85-93 (1949) CA 43, 5187 (1949) (Thermal decompn of RDX HMX) 17)A. J.B.Robertson, Third Symposium on Combustion and Flame and Explosion Phenomena , Williams Wilkins, Baltimore, Md (1949), 545 -51 (Thermal initiation of expln in liquid expls) I8)S. Livingston W.R.Tomlinson Jr, Fundamental Research on Explosives. Decomposition of Explosives at Elevated Temperatures , PAIR 1737 (1949) 19)Anon, Artillery Ammunition ,... [Pg.456]

In 1946, the problem was demonstrating that the most fundamental assumptions did in fact hold. Initially, this meant obtaining measurements of the natural radiocarbon concentrations in living organics to see if it occurred in the amount expected and if the worldwide distribution of radiocarbon was essentially constant. An experiment was devised whereby biological methane gas derived from the sewage disposal plant at Baltimore, MD and petroleum methane from the Sun Oil Co. refinery were each enriched by a similar factor in a thermal diffusion column. It was assumed that the petroleum methane contained no because of its age in excess of many tens of millions of years whereas the biological methane contained about 17-18 dpm radiocarbon per g of carbon. The experiment was conducted, and the results confirmed the calculations (26). [Pg.39]

Sekins, K. M., and Emery, A. F. (1982) Thermal Seienee for Physical Medicine, Therapeutic Heat and Cold, J. F. Lehman (ed.) Williams and Wilkins, Baltimore, pp. 70-132. [Pg.464]

Samples of biological methane ( biomethane ) obtained from a sewage disposal plant in Baltimore, Md., and of petroleum methane ( pe-tromethane ) from an oil refinery were enriched by equal amounts of in a thermal diffusion column. Whereas the activity of the biomethane increased in direct proportion to the amount of enrichment, there was no significant increase in the counting rate of the petro-methane with enrichment (4). The confirmation of Libby s prediction initiated an extensive study of the distribution of in nature. However,... [Pg.334]

M. T. J. Keene, P. L. Llewellyn, R, Denoyel, R.D.M. Gougeon, R.K. Harris and J. Rouquerol, Controlled Thermal Extraction of Templates from Zeolite-Type Materials - Part II MCM41 Mesopores , International Conference on Mesoporous Materials, Baltimore, USA, 1998. [Pg.513]

Fine DH, Rounbehler DP, Rounbehler A, et al. 1977b. Determination of dimethylnitrosamine in air, water, and soil by thermal energy analysis measurements in Baltimore, MD. Environ Sci Technol 11 581.584. [Pg.106]

For the stir bar sorptive extraction, 500ml of boiling water was added to approximately 50g of dried mushrooms and left to soak for 30 minutes to rehydrate. The mushrooms were removed by filtration and the resulting aqueous solution transferred to Twister (Gerstel Inc., Baltimore, MD) vessels on a stirrer plate. The Twister bars in Figure 3, were added and volatiles were collected with spinning for 4 hours and 24 hours respectively, at 1800 revs per minute. The stir bars were rinsed with distilled water, padded dry with tissue paper and thermally desorbed onto GC-FID and GC-MS systems. [Pg.165]

Tenax TA traps and Twister bars were thermally desorbed onto an HP6890 gas chromatograph equipped with a flame ionization detector (FID) using a Gerstel thermal desorber Model TDS 2 (Gerstel Inc., Baltimore, MD). Desorption time was 5 minutes at 250 C. The column was an OV-1 capillary column and the analysis was performed in splitiess mode. The injector temperature was programmed from -1S0 C (held for 5 min during the thermal desorption) to 250°C. Detector temperature was 320 C. [Pg.168]

Golben, M., DaCosta, D.H. 2001. "Advanced Thermal Hydrogen Compression." In Proceedings of the 2001 U.S. DOE Hydrogen Program Review, Baltimore, MD NREL/CP-570-30535. [Pg.217]

E.A. Kmetko. The structure and graphitization of fine coke particles and of thermal carhon blacks. Proc. 1st (1953) and 2nd conf. (1955) on Carbon. Waverly Press, Baltimore, MD, 1956, 21-30. [Pg.83]

Avery W, Wu C (1994) Ocean thermal energy conversion. John Hopkins Applied Physics Laboratory, Baltimore... [Pg.22]

Catalyst Research Corporation. 1421 Clark View Road, Baltimore 21209, Maryland Primary batteries, lithium-iodine, silver oxide-zinc, thermal batteries. [Pg.727]

NATESAN, K., et al., Thermal Hydraulic Analysis of Primary Pump Pipe Rupture Event in PFBR , Proc 8 Inti Conf on Nuclear Engineering (ICONE-8), 2000, Baltimore, MD, USA, American Society of Mechanical Engineers (ASME), New York (2000). [Pg.103]

T. Nakatsuka, Y. Oka and S. Koshizuka, Startup Thermal Considerations for Supercritical-Pressure Light Water-Cooled Reactors, Nuclear Technology, Vol. 134(3), 221-230 (2001) T. Nakatsuka, Y. Oka and S. Koshizuka, Start-up of Supersritical-pressure Light Wtater Cooled Reactors, Proc. ICONE-8, Baltimore, MD., April 2-6, 2000, ICONE-8304 (2000) T. T. Yi, Y. Ishiwatari, S. Koshizuka and Y. Oka, Startup Thermal Analysis of a High-Temperature Supercritical-Pressure Light Water Reactor, Journal of Nuclear Science and Technology, Vol. 41(8), 790-801 (2004)... [Pg.72]

VIHAVAINEN, J., Calculation of Standalone Passive Safety Injection System with New Thermal Stratification Solution Method of APROS Code, Proceedings of ICONE8, 8 International Conference on Nuclear Engineering, April 2-6, 2000, Baltimore, MD, USA. [Pg.194]


See other pages where Baltimore Thermal is mentioned: [Pg.67]    [Pg.67]    [Pg.41]    [Pg.41]    [Pg.456]    [Pg.3]    [Pg.532]    [Pg.670]    [Pg.381]    [Pg.148]    [Pg.90]    [Pg.181]    [Pg.39]    [Pg.102]    [Pg.6]    [Pg.457]   


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