Process Modeling in Pyrometallurgical Engineering

The Special Issue presents almost 40 papers on recent research in modeling of pyrometallurgical systems, including physical models, first-principles models, detailed CFD and DEM models as well as statistical models or models based on machine learning. The models cover the whole production chain from...

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Other Authors: Saxen, Henrik (Editor), Ramírez-Argáez, Marco (Editor), Conejo, Alberto (Editor), Dutta, Abhishek (Editor)
Format: Book Chapter
Published: Basel, Switzerland MDPI - Multidisciplinary Digital Publishing Institute 2021
Subjects:
GPR
PCA
DEM
SPH
SKS
EAF
CFD
n/a
Online Access:Get Fullteks
DOAB: description of the publication
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020 |a books978-3-0365-0655-5 
020 |a 9783036506548 
020 |a 9783036506555 
024 7 |a 10.3390/books978-3-0365-0655-5  |c doi 
041 0 |a English 
042 |a dc 
072 7 |a TB  |2 bicssc 
100 1 |a Saxen, Henrik  |4 edt 
700 1 |a Ramírez-Argáez, Marco  |4 edt 
700 1 |a Conejo, Alberto  |4 edt 
700 1 |a Dutta, Abhishek  |4 edt 
700 1 |a Saxen, Henrik  |4 oth 
700 1 |a Ramírez-Argáez, Marco  |4 oth 
700 1 |a Conejo, Alberto  |4 oth 
700 1 |a Dutta, Abhishek  |4 oth 
245 1 0 |a Process Modeling in Pyrometallurgical Engineering 
260 |a Basel, Switzerland  |b MDPI - Multidisciplinary Digital Publishing Institute  |c 2021 
300 |a 1 electronic resource (642 p.) 
506 0 |a Open Access  |2 star  |f Unrestricted online access 
520 |a The Special Issue presents almost 40 papers on recent research in modeling of pyrometallurgical systems, including physical models, first-principles models, detailed CFD and DEM models as well as statistical models or models based on machine learning. The models cover the whole production chain from raw materials processing through the reduction and conversion unit processes to ladle treatment, casting, and rolling. The papers illustrate how models can be used for shedding light on complex and inaccessible processes characterized by high temperatures and hostile environment, in order to improve process performance, product quality, or yield and to reduce the requirements of virgin raw materials and to suppress harmful emissions. 
540 |a Creative Commons  |f https://creativecommons.org/licenses/by/4.0/  |2 cc  |4 https://creativecommons.org/licenses/by/4.0/ 
546 |a English 
650 7 |a Technology: general issues  |2 bicssc 
653 |a steelmaking 
653 |a oxygen consumption 
653 |a GPR 
653 |a prediction model 
653 |a secondary refining 
653 |a water model 
653 |a mixing time 
653 |a slag entrapment 
653 |a stainless steel slag 
653 |a heating time 
653 |a Cr2O3 
653 |a spinel 
653 |a crystal size 
653 |a processing maps 
653 |a nickel-based alloy 
653 |a flow behavior 
653 |a arrhenius equation 
653 |a hearth 
653 |a drainage 
653 |a PCA 
653 |a analysis tool 
653 |a pattern 
653 |a tapholes 
653 |a blast furnace 
653 |a coke 
653 |a carbon solution loss 
653 |a numerical simulation 
653 |a pellet pile 
653 |a Discrete Element Method 
653 |a porosity distribution 
653 |a angle of repose 
653 |a coordination number 
653 |a bubble motion 
653 |a interfacial phenomena 
653 |a entrainment 
653 |a moving path 
653 |a arsenopyrite 
653 |a arsenic removal 
653 |a mechanism 
653 |a roasting 
653 |a arsenate 
653 |a dust ash 
653 |a arsenic recovery 
653 |a titanium distribution ratio 
653 |a thermodynamic model 
653 |a ion-molecule coexistence theory 
653 |a LF refining slags 
653 |a electric arc furnace 
653 |a simulation 
653 |a process model 
653 |a COREX 
653 |a raceway zone 
653 |a gas flow 
653 |a COREX melter gasifier 
653 |a mixed charging 
653 |a burden layer structure 
653 |a burden pile width 
653 |a DEM 
653 |a burden distribution 
653 |a particle flow 
653 |a validation 
653 |a tire cord steel 
653 |a TiN inclusion 
653 |a solidification 
653 |a segregation models 
653 |a hot rolling 
653 |a TOU electricity pricing 
653 |a hot rolling planning 
653 |a genetic algorithm 
653 |a C-H2 smelting reduction furnace 
653 |a double-row side nozzles 
653 |a dimensional analysis 
653 |a multiple linear regression 
653 |a ironmaking blast furnace 
653 |a coke bed 
653 |a trickle flow 
653 |a molten slag 
653 |a liquid iron 
653 |a SPH 
653 |a charging system 
653 |a mathematical model 
653 |a radar data 
653 |a main trough 
653 |a transient fluid of hot metal and molten slag 
653 |a wall shear stress 
653 |a conjugate heat transfer 
653 |a refractory 
653 |a shape rolling 
653 |a flat rolling 
653 |a wire rod 
653 |a temperature distribution 
653 |a machine learning 
653 |a artificial intelligence 
653 |a neural network 
653 |a BOS reactor 
653 |a copper smelting 
653 |a SKS 
653 |a Shuikoushan process 
653 |a oxygen bottom blown 
653 |a gated recurrent unit 
653 |a support vector data description 
653 |a time sequence prediction 
653 |a fault detection and identification 
653 |a Lignite 
653 |a microwave and ultrasound modification 
653 |a structural characterization 
653 |a 3D molecular model 
653 |a structural simulation 
653 |a coke combustion rate 
653 |a charcoal combustion rate 
653 |a iron ore sintering process 
653 |a biomass 
653 |a quasi-particle 
653 |a quasi-particle structure 
653 |a monomer blended fuel 
653 |a quasi-particle fuel 
653 |a apparent activation energy 
653 |a coupling effect 
653 |a dynamic model 
653 |a basic oxygen furnace 
653 |a computational fluid dynamics 
653 |a CFD-DEM 
653 |a coalescence 
653 |a settling 
653 |a funneling flow 
653 |a horizontal single belt casting process (HSBC) 
653 |a computational fluid dynamics (CFD) 
653 |a double impingement feeding system 
653 |a supersonic coherent jet 
653 |a decarburization 
653 |a steel refining 
653 |a EAF 
653 |a CFD 
653 |a mass transfer coefficient 
653 |a physical modeling 
653 |a mathematical modeling 
653 |a kinetic models 
653 |a natural gas 
653 |a fuel injection 
653 |a combustion 
653 |a RAFT 
653 |a roll design 
653 |a flat-rolled wire 
653 |a strain inhomogeneity 
653 |a normal pressure 
653 |a macroscopic shear bands 
653 |a numerical model 
653 |a dual gas injection 
653 |a slag eye 
653 |a electrical energy consumption 
653 |a Electric Arc Furnace 
653 |a scrap melting 
653 |a statistical modeling 
653 |a raceway evolution 
653 |a raceway size 
653 |a flow pattern 
653 |a Eulerian multiphase flow 
653 |a blast furnace hearth 
653 |a dead man 
653 |a iron and slag flow 
653 |a lining wear 
653 |a hearth drainage 
653 |a Industry 4.0 
653 |a copper smelter 
653 |a nickel-copper smelter 
653 |a radiometric sensors 
653 |a Peirce-smith converting 
653 |a matte-slag chemistry 
653 |a discrete event simulation 
653 |a adaptive finite differences 
653 |a n/a 
856 4 0 |a www.oapen.org  |u https://mdpi.com/books/pdfview/book/3933  |7 0  |z Get Fullteks 
856 4 0 |a www.oapen.org  |u https://directory.doabooks.org/handle/20.500.12854/76487  |7 0  |z DOAB: description of the publication