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contributor authorRachamim Rubin
contributor authorJacob Yeheskel
contributor authorJacob Karni
date accessioned2017-05-09T00:14:17Z
date available2017-05-09T00:14:17Z
date copyrightAugust, 2004
date issued2004
identifier issn0199-6231
identifier otherJSEEDO-28356#858_1.pdf
identifier urihttp://yetl.yabesh.ir/yetl/handle/yetl/130763
description abstractThis study is aimed at developing a simulation model of a solar volumetric reactor for hydrocarbon reforming, operating at high temperature and pressure. It will then be used to optimize the reactor design and analyze its performance. The model development utilizes previous and on-going experimental work on volumetric receiver and catalyst development. The reaction’s kinetics are computed, using the CHEMKIN II simulation package. The chemical kinetic modeling of the relevant C-H-O system is based on: (i) Definition of the relevant computation domain and parameters: temperature, pressure, reactant compositions, residence time, and catalyst load, (ii) Utilizing laboratory measurements at 700–1400 K and 1–4 bar. to quantify the kinetic parameters for both, H2O, and CO2 reforming of CH4 and for the Reverse Water Shift reaction. Calculated and measured data are compared for three representative cases, showing a good agreement. The results indicate that the Arrhenius method can be a viable and practical way to predict the behavior of steam and CO2 reforming over a range of temperatures and pressures. Furthermore, it is shown that the present approach can provide a method for estimating the desirable dimensions of the reactor for reforming of CH4. Additional, on-going computational and experimental work, which would provide a more accurate simulation, can easily be implemented using the present numerical model.
publisherThe American Society of Mechanical Engineers (ASME)
titleChemical Kinetics Simulation of High Temperature Hydrocarbons Reforming in a Solar Reactor
typeJournal Paper
journal volume126
journal issue3
journal titleJournal of Solar Energy Engineering
identifier doi10.1115/1.1691439
journal fristpage858
journal lastpage866
identifier eissn1528-8986
keywordsPressure
keywordsTemperature
keywordsChemical kinetics
keywordsMeasurement
keywordsSimulation
keywordsSolar energy
keywordsCatalysts
keywordsComputation
keywordsSteam
keywordsWater
keywordsHigh temperature
keywordsDimensions
keywordsErrors
keywordsDesign
keywordsEquilibrium (Physics)
keywordsMethane
keywordsEquations
keywordsSteam reforming AND Stress
treeJournal of Solar Energy Engineering:;2004:;volume( 126 ):;issue: 003
contenttypeFulltext


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