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Flow diagram for the hydrogenation of coal-derived naphthalene

Flow diagram for the hydrogenation of phenol

Flow diagram for the IC1 process. Source

Flow diagram for the ISAT algorithm.

Flow diagram for the isolation of brassins from rape pollen.

Flow diagram for the isolation of toxins Gambierdiscus toxicus.

Flow diagram for the isothermal dehydrogenation of ethylbenzene

Flow diagram for the manufacture of acrylic fiber

Flow diagram for the manufacture of nylon 66 yarn

Flow diagram for the manufacture of titanium dioxide pigments.

Flow diagram for the manufacture of vinal by dry spinning.

Flow diagram for the manufacture of vinal by wet spinning.

Flow diagram for the manufacture of water-soluble Cr compounds.

Flow diagram for the manufacturing process of nitrocellulose

Flow diagram for the measurement and characterization of a material-electrode system.

Flow diagram for the measurement of glucose using alkaline ferri-cyanide. The pump tubes are specified with respect to their internal diameters and position on the end-blocks. The colour coding of the tubes is

Flow diagram for the Mobil Oil fixed-bed process to convert methanol into gasoline

Flow diagram for the oxidation of CH4 at low and intermediate temperatures, with and without presence of nitrogen oxides .

Flow diagram for the oxidation of CH4 in stoichiometric methane-air flames at F 1 bar, 298 K. The calculations were done with a one-dimensional laminar flat flame model using a mechanism described by Warnatz et al . The thickness of the arrows is proportional to the reaction rates integrated over the whole flame front.

Flow diagram for the oxidation of CH4 under moderately fuel-rich to lean conditions in atmospheric pressure flames and under flow reactor conditions.

Flow diagram for the oxo—aldol manufacture of 2-ethyIhexanol.

Flow diagram for the oxo—aldol manufacture of 2-ethylhexauol.

Flow diagram for the oxo—aldol manufacture of 2-etliylhexanol.

Flow diagram for the phosphorus cycling subroutine in the CENTURY model. M multiplier for effects of moisture and temperature L lignin N.

Flow diagram for the preparation of rare-earth, Y, and Sc orthophosphate powders with controlled particle size by means of precipitation from molten urea. Powders synthesized by this technique have been compacted by hot pressing to form ceramic bodies with 97 of the theoretical density of the compound .



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