DISTRIBUTION OF SIZES WITHOUT CORES REACT TO THE EXIT OF A REACTOR IN A PROCESS FLUID-SOLID NONCATALYTIC
Keywords:
distribution of times of residence, distribution of sizes, controlling stage, flowing-solid, system non catalytic, continuous reactor with agitation
Abstract
This work is in charge of from the determination of the final distribution of sizes that will reach a mass of solid particles of different sizes, to the exit of a continuous reactor with agitation, once it has been subjected to a reaction process flowing - solid non catalytic; and of the resulting distribution of sizes of the mixture of two currents with different distributions. The used equipment has been the corresponding to the plant of Neutralization and to the laboratories of the CompanyMajor Pedro Sotto Alba and the procedure consisted in: to carry out a sampling process on the first stage of the battery of reactors, to carry out tests of having sifted to the solids of the coral pulp fed to the first reactor of the battery, to develop an appropriate mathematical model to the situation that is studied, to make an algorithm and a calculation program with the obtained mathematical pattern and lastly to validate the results. When concluding the work you can conclude that the
developed mathematical pattern, the algorithm and the program based on him allow, to predict, be which is the controlling mechanism of reaction, the distribution of sizes that will reach a mass of solid particles of well-known distribution, after not undergoing a reaction process flowing- solid non catalytic, in a continuous reactor with agitation, and also, to determine the resulting distribution of sizes of the flowed mixture of two suspension currents - solid; each one of them with different distributions.
Published
2017-01-03
How to Cite
Del Toro Alvarez, D., Pons Hernández, A., & Viera Bertrán, R. (2017). DISTRIBUTION OF SIZES WITHOUT CORES REACT TO THE EXIT OF A REACTOR IN A PROCESS FLUID-SOLID NONCATALYTIC. Chemical Technology, 28(2), 54-60. https://doi.org/10.1590/2224-6185.2008.2.%x
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Artículos
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