Design principles an autothermal reactor with enhanced mass transfer for hydrogen production
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Design principles an autothermal reactor with enhanced mass transfer for hydrogen production
Junjie Chen
Department of Energy and Power Engineering, School of Mechanical and Power Engineering, Henan Polytechnic University, 2000 Century Avenue, Jiaozuo, Henan, 454000, P.R. China
Contributor: Junjie Chen, ORCID: 0000-0001-5055-4309, E-mail address: komcjj@gmail.com
Chemical engineers are employed in the design and development of both processes and plant items. In each case, data and predictions often have to be obtained or confirmed with pilot experiments. Plant operation and control is increasingly the sphere of the chemical engineer rather than the chemist. Chemical engineering provides an ideal background for the economic evaluation of new projects and, in the plant construction sector, for marketing. The fundamental principles of chemical engineering underlie the operation of processes extending well beyond the boundaries of the chemical industry, and chemical engineers are employed in a range of operations outside traditional areas. Plastics, polymers, and synthetic fibres involve chemical-reaction engineering problems in their manufacture, with fluid flow and heat transfer considerations dominating their fabrication. The dyeing of a fibre is a mass-transfer problem. Pulp manufacture involve considerations of fluid flow and heat transfer. The nuclear industry makes similar demands on the chemical engineer, particularly for fuel manufacture and reprocessing. Chemical engineers are involved in many sectors of the metals processing industry, which extends from steel manufacture to separation of rare metals.
Streamwise distance (millimeters), Reforming channel centerline temperature (degrees kelvin)
0 373.004
0.00025 373.059
0.0005 373.261
0.00075 373.771
0.001 374.741
0.00125 376.228
0.0015 378.219
0.00175 380.651
0.002 383.434
0.00225 386.47
0.0025 389.674
0.00275 393.013
0.003 396.47
0.00325 400.02
0.0035 403.634
0.00375 407.275
0.004 410.898
0.00425 414.453
0.0045 417.9
0.00475 421.231
0.005 424.454
0.00525 427.574
0.0055 430.596
0.00575 433.522
0.006 436.342
0.00625 439.041
0.0065 441.606
0.00675 444.041
0.007 446.359
0.00725 448.572
0.0075 450.693
0.00775 452.727
0.008 454.676
0.00825 456.532
0.0085 458.289
0.00875 459.952
0.009 461.531
0.00925 463.036
0.0095 464.477
0.00975 465.858
0.01 467.18
0.01025 468.441
0.0105 469.635
0.01075 470.767
0.011 471.843
0.01125 472.873
0.0115 473.859
0.01175 474.805
0.012 475.713
0.01225 476.579
0.0125 477.403
0.01275 478.186
0.013 478.933
0.01325 479.649
0.0135 480.337
0.01375 480.998
0.014 481.634
0.01425 482.243
0.0145 482.823
0.01475 483.376
0.015 483.906
0.01525 484.415
0.0155 484.905
0.01575 485.379
0.016 485.835
0.01625 486.273
0.0165 486.692
0.01675 487.093
0.017 487.477
0.01725 487.848
0.0175 488.206
0.01775 488.553
0.018 488.889
0.01825 489.212
0.0185 489.522
0.01875 489.82
0.019 490.106
0.01925 490.383
0.0195 490.651
0.01975 490.913
0.02 491.168
0.02025 491.413
0.0205 491.648
0.02075 491.875
0.021 492.093
0.02125 492.306
0.0215 492.513
0.02175 492.716
0.022 492.915
0.02225 493.106
0.0225 493.291
0.02275 493.469
0.023 493.642
0.02325 493.811
0.0235 493.977
0.02375 494.141
0.024 494.301
0.02425 494.456
0.0245 494.607
0.02475 494.753
0.025 494.895
0.02525 495.036
0.0255 495.174
0.02575 495.311
0.026 495.446
0.02625 495.578
0.0265 495.706
0.02675 495.831
0.027 495.953
0.02725 496.074
0.0275 496.195
0.02775 496.315
0.028 496.433
0.02825 496.549
0.0285 496.661
0.02875 496.772
0.029 496.881
0.02925 496.99
0.0295 497.092
0.02975 497.232
0.03 497.324
Contributor: Junjie Chen, ORCID: 0000-0001-5055-4309, E-mail address: komcjj@gmail.com, Department of Energy and Power Engineering, School of Mechanical and Power Engineering, Henan Polytechnic University, 2000 Century Avenue, Jiaozuo, Henan, 454000, P.R. China
创建时间:
2024-07-15



