1351 - 1351 |
Sustainable solutions and technical Implementation on a large Scale are needed quickly to achieve the Climate Goals Deerberg G, Oles M, Schlogl R |
1365 - 1368 |
The Project Carbon2Chem (R) Deerberg G, Oles M, Schlogl R |
1369 - 1373 |
Carbon2Chem (R) - Technical Center in Duisburg Wich T, Luke W, Buker K, von Morstein O, Kleinschmidt R, Oles M, Achatz R |
1374 - 1383 |
Resources of a New Carbon Economy Marzi T, Knappertsbusch V, Greve A, Deerberg G, Doetsch C, Weidner E |
1384 - 1391 |
Steel Gases as Ancient and Modern Challenging Resource; Historical Review, Description of the Present, and a Daring Vision Frey A, Goeke V, Voss C |
1392 - 1408 |
Methodology for the Evaluation of CO2-Based Syntheses by Coupling Steel Industry with Chemical Industry Stiessel S, Berger A, Sanchis EMF, Ziegmann M |
1409 - 1418 |
Methanol Synthesis - Industrial Challenges within a Changing Raw Material Landscape Nestler F, Kruger M, Full J, Hadrich MJ, White RJ, Schaadt A |
1419 - 1429 |
Methanol Synthesis from Steel Mill Exhaust Gases: Challenges for the Industrial Cu/ZnO/Al2O3 Catalyst Schittkowski J, Ruland H, Laudenschleger D, Girod K, Kahler K, Kaluza S, Muhler M, Schlogl R |
1430 - 1436 |
Dynamic Water Electrolysis in Cross-Sectoral Processes Seibel C, Kuhlmann JW |
1437 - 1442 |
Proton Exchange Membrane Water Electrolysis Modeling for System Simulation and Degradation Analysis Gossling S, Stypka S, Bahr M, Oberschachtsiek B, Heinzel A |
1443 - 1445 |
Testing Field for PEM, Alkaline and Solid Oxide Electrolysis Technology Stypka S, Oberschachtsiek B, Radev I, Heinzel A |
1446 - 1452 |
Techniques to Remove Traces of Oxygen byCatalytic Conversion from Gas Mixtures Wiesmann T, Hamel C, Kaluza S |
1453 - 1464 |
Plasma Catalytical Reactors for Atmospheric Gas Conversions Nitsche T, Unger C, Weidner E |
1465 - 1475 |
Recent Developments in the Conversion ofSynthesis Gas to Short-Chain Alcohols overCu-Co-Based Catalysts Schmidt S, Gobel C, Nebel J, Wiesmann T, Hamel C, Reinsdorf A, Wolf D, Gehrmann S, Tenhumberg N, Muhler M, Kaluza S |
1476 - 1488 |
Homogeneously Catalyzed Synthesis of (Higher) Alcohols (C1-C4) from the Combination ofCO(2)/CO/H-2 Schmitz M, Erken C, Ohligschlager A, Schnoor JK, Westhues NF, Klankermayer J, Leitner W, Liauw MA |
1489 - 1496 |
Design of a Production Process for Poly(oxymethylene) Dimethyl Ethers from Dimethyl Ether and Trioxane Breitkreuz CF, Schmitz N, Strofer E, Burger J, Hasse H |
1497 - 1503 |
Carbon2Polymer-Conceptual Design of a CO2-Based Process for the Production of Isocyanates Kaiser T, Rathgeb A, Gertig C, Bardow A, Leonhard K, Jupke A |
1504 - 1512 |
Carbon2Polymer-Chemical Utilization of CO2 in the Production of Isocyanates Leitner W, Francio G, Scott M, Westhues C, Langanke J, Lansing M, Hussong C, Erdkamp E |
1513 - 1519 |
Reactor Design and Kinetic Study on Adsorption/Desorption of CO and Cl-2 for Industrial Phosgene Synthesis Bahr A, Moon GH, Diedenhoven J, Kiecherer J, Barth E, Tuysuz H |
1520 - 1528 |
Recent Progress in the Production, Application and Evaluation of Oxymethylene Ethers Hackbarth K, Haltenort P, Arnold U, Sauer J |
1529 - 1535 |
Chemical Conversion of Steel Mill Gases to Urea: An Analysis of Plant Capacity Yildirim O, Nolker K, Buker K, Kleinschmidt R |
1536 - 1540 |
Simulation and Data Analytics in the Conceptual Design of Industrial Networks in Stochastic Environments Wagner H, Wei SR |
1541 - 1558 |
Modeling the Catalytic Conversion of Steel Mill Gases Using the Example of Methanol Synthesis Schluter S, Hennig T |
1559 - 1567 |
Application of Waveform Relaxation in Distributed Process Co-Simulation Wack T, Schluter S, Hennig T, Wagner H, Diekmann A, Zheng QH, Grundler J |
1568 - 1575 |
A Review of Mathematical Programming in Integrated Iron- and Steelmaking van Beek M |
1576 - 1586 |
Handling of Multi-Functionality in Life Cycle Assessments for Steel Mill Gas Based Chemical Production Thonemann N, Maga D, Petermann C |
1587 - 1593 |
Integration of Results from the Energy System Development Plan into Life Cycle Assessment Thonemann N, Maga D, Petermann C |