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Scale-growing mechanisms

Often heat removal causes design problems for scale-up. Mechanical agitation coupled with a metabolic heat from the growing biomass... [Pg.2140]

The oxidation mechanism proposed by all authors in that case is that the inner scale grows in the vacant space left by iron diffusion outwards to form the outer scale. Both scales, the outer and the inner ones, are made of Fe304 (with Fc203 at the oxide—gas interface), and for the inner scale to grow the oxidizing CO2 species must have an access to the underside. The reaction of CO2 molecules in the vacant space left below the outer oxide layer leads to oxidation and carbon transfer as observed by the carbon... [Pg.93]

Large-scale crude oil exploitation began in the late nineteenth century. Internal combustion engines, which make use of the heat and kinetic energy of controlled explosions in a combustion chamber, were developed at approximately the same time. The pioneers in this field were Nikolaus Otto and Gottleib Daimler. These devices were rapidly adapted to military purposes. Small internal-combustion motors were used to drive dynamos to provide electric power to fortifications in Europe and the United States before the outbreak of World War I. Several armies experimented vith automobile transportation before 1914. The growing demand for fossil fuels in the early decades of the twentieth centuiy was exacerbated by the modernizing armies that slowly introduced mechanization into their orders of battle. The traditional companions of the soldier, the horse and mule, were slowly replaced by the armored car and the truck in the early twentieth century. [Pg.800]

Recently there has been a growing emphasis on the use of transient methods to study the mechanism and kinetics of catalytic reactions (16, 17, 18). These transient studies gained new impetus with the introduction of computer-controlled catalytic converters for automobile emission control (19) in this large-scale catalytic process the composition of the feedstream is oscillated as a result of a feedback control scheme, and the frequency response characteristics of the catalyst appear to play an important role (20). Preliminary studies (e.g., 15) indicate that the transient response of these catalysts is dominated by the relaxation of surface events, and thus it is necessary to use fast-response, surface-sensitive techniques in order to understand the catalyst s behavior under transient conditions. [Pg.80]

A prominent feature of this mechanism is that the growing polymer chain alternately swings between two r/.v-disposed coordination sites during each monomer insertion. General mechanistic outlines of this reaction have been extensively examined by large-scale computations and confirmed by experimental means.59 Our present goal is to clarify the localized donor-acceptor-orbital interactions that underlie (4.106), particularly the nature of the alkyl-alkene complex II. [Pg.510]


See other pages where Scale-growing mechanisms is mentioned: [Pg.424]    [Pg.424]    [Pg.231]    [Pg.259]    [Pg.170]    [Pg.196]    [Pg.206]    [Pg.5032]    [Pg.195]    [Pg.3]    [Pg.123]    [Pg.201]    [Pg.608]    [Pg.2728]    [Pg.19]    [Pg.271]    [Pg.2225]    [Pg.254]    [Pg.867]    [Pg.898]    [Pg.18]    [Pg.1297]    [Pg.41]    [Pg.1302]    [Pg.88]    [Pg.549]    [Pg.291]    [Pg.125]    [Pg.163]    [Pg.131]    [Pg.581]    [Pg.102]    [Pg.140]    [Pg.81]    [Pg.592]    [Pg.582]    [Pg.155]    [Pg.173]    [Pg.349]    [Pg.351]    [Pg.127]    [Pg.254]    [Pg.330]    [Pg.112]   
See also in sourсe #XX -- [ Pg.424 ]




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