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E technology

Supp. E., Technology of Lurgi s Low Pressure Methanol Process, Chem. Tech., 3 430, 1973. [Pg.65]

Eig. 5. A horizontal-tube multi-effect (HTME) desalination unit, producing 5000 nT/d in St. Croix, U.S. Virgin Islands. Courtesy of I.D.E. Technologies... [Pg.244]

Trends Food Science e[ Technology (vol. 3), August / S eptember. [Pg.76]

Wager P, Schluep M, Muller E (2010) RoHS substances in mixed plastics from WEEE. E. Technology society lab, Swiss Federal Laboratories for Materials Science and Technology. St. Gallen... [Pg.347]

Bishop, J.E. Technology and health new chemicals boost blood s ability to deliver oxygen, researchers report. The Wall Street/., Sept. 29,1992. [Pg.483]

Ausubel, J.H. Sladovich, H.E. Technology and Environment, National Academy of Science Washington, DC, 1989. [Pg.13]

Al-Enezi, G., Fawzi, N., and Elkamel, A. (1999) Development of regression models to control product yields and properties of the fluid catalytic cracking process. Petroleum Science e[ Technology, 17, 535. [Pg.53]

Griffiths JB (1990) In Lubiniecki AS (ed) Large-scale mammalian cell cultm-e technology. Marcel Dekker, New York, p 217... [Pg.165]

The S.A.V.E. technology was developed to remediate problems caused by leaking underground storage tanks (LUSTs). The technology was patented by Remediation Services International. S.A.V.E. technology has been applied during full-scale remediation projects and is commercially available. [Pg.914]

The S.A.V.E. technology is self-contained and equipped with a traUer-hitch mount for transportation. Hydrocarbon vapors recovered through the system s remedial actions are directed to the engine intake where they are burned as part of the normal engine combustion process, which often eliminates the need for process waste stream controls and external power sources. Emissions from the engine are passed through a small catalytic converter to maximize the destruction of removed hydrocarbons. [Pg.914]

Glass. J.E. Technology for Waterborne Coatings, Vol. 663, American Chemical Society. Washington, DC, 1997. [Pg.1203]

Karyakina M.I., Poptsov V.E., Technology of Polymeric Coatings, Khimiya, Moscow (1983) in Russian. [Pg.231]

Kimura, K., Yamato, N., Yamamura, H. and Watanabe, Y. (2005) Membrane fouling in pilot-scale membrane bioreactors (MBRs) treating municipal wastewater. Environmental Science e[ Technology, 39, 6293-6299. [Pg.242]

The claims are critically important. They require careful drafting, preferably by highly qualified and experienced patent counsel, to cover the invention as broadly and comprehensively as appropriate. Normally the claims should be drafted as broadly as the prior art and the specification allow. Allowable claim scope will, of course, depend in large part on the state of the art. Inventions in a crowded art (i.e., technology with a relatively large amount of closely related prior art) can generally only be claimed relatively narrowly. Inventions for which there is relatively little prior art can be claimed more broadly. Generally, one attempts to draft one or more independent claims that describe the invention as broadly as the prior art will allow and then narrower, dependent claims specific to pre-... [Pg.724]

J. Clark, D. Macquarrie (eds.). Handbook of Green Ghemistry e[ Technology, Blackwell Sci. Ltd., London 2002. [Pg.104]

J.H. Clark and D.J. Macquarrie, Handbook of Green Chemistry e[ Technology, Blackwell, Oxford, 2002. [Pg.20]

He speaks first of complementarities, i.e., technologies seldom flourish in isolation,... [Pg.34]

Amedea Manfred CNR-Istituto di Scienze e Technologic, Molecolari, Milano, Italy... [Pg.1685]

What are your design processes for prodncts/services and their related production/delivery systems and processes How do you incorporate new technology, inclnding e-technology, into products/services and into prodnction/service delivery systems How do yon coordinate and test your design and production/delivery systems and processes What are your key performance measures/indicators used for the control and improvement of these processes ... [Pg.375]

Obviously, the next step was to investigate and transfer the low-E technology to transparent ETFE foil with the aim of achieving a transparent selective low-E material. The development of this ETFE material was started by SolarNext/Hightex in 2006. Results can be seen in Figs 12.11 and 12.12. [Pg.363]


See other pages where E technology is mentioned: [Pg.459]    [Pg.355]    [Pg.215]    [Pg.139]    [Pg.160]    [Pg.43]    [Pg.44]    [Pg.96]    [Pg.56]    [Pg.30]    [Pg.328]    [Pg.809]    [Pg.56]    [Pg.56]    [Pg.334]    [Pg.54]    [Pg.247]    [Pg.38]    [Pg.254]    [Pg.549]    [Pg.196]    [Pg.213]    [Pg.97]    [Pg.135]    [Pg.184]    [Pg.190]    [Pg.534]    [Pg.85]   
See also in sourсe #XX -- [ Pg.34 ]




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