3 - 3 |
Titelbild Chem. Ing. Tech. 1-2/2018 Machhammer O |
17 - 35 |
Current Developments in Production and Utilization of Biogas and Biomethane in Germany Daniel-Gromke J, Rensberg N, Denysenko V, Stinner W, Schmalfuss T, Scheftelowitz M, Nelles M, Liebetrau J |
36 - 46 |
Status of Flexibilization Concepts for Biogas Plants to Cover Residual Load Rises Peters L, Uhlenhut F, Biernacki P, Steinigeweg S |
47 - 55 |
Unexplored Areas of Direct Solvolytic Liquefaction of Lignocellulosic Biomass Bahlo RL, Hursthouse AS, Sievers A, Willner T |
56 - 67 |
Bioenergy from Microalgae - Vision or Reality? Hoyer J, Cotta F, Diete A, Grossmann J |
68 - 84 |
Bioenergy Carriers - From Smoothly Treated Biomass towards Solid and Gaseous Biofuels Thran D, Billig E, Brosowski A, Klemm M, Seitz SB, Witt J |
85 - 98 |
The bioliq (R) Entrained-Flow Gasifier - a Module for the German Energiewende Eberhard M, Santo U, Boning D, Schmid H, Michelfelder B, Zimmerlin B, Gunther A, Weigand P, Muller-Hagedorn M, Stapf D, Kolb T |
99 - 112 |
Alternative Liquid Fuels from Renewable Resources Niethammer B, Wodarz S, Betz M, Haltenort P, Oestreich D, Hackbarth K, Arnold U, Otto T, Sauer J |
113 - 126 |
The Impact of E-Mobility in a Future Energy System Dominated by Renewable Electricity Bunger U, Michalski J |
127 - 140 |
Power-to-Liquids as Renewable Fuel Option for Aviation: A Review Schmidt P, Batteiger V, Roth A, Weindorf W, Raksha T |
141 - 153 |
Demand, Supply, and Price Trends for Mineral Raw Materials Relevant to the Renewable Energy Transition Buchholz P, Brandenburg T |
154 - 168 |
Rhenish Lignite - Energy Carrier and Versatile Raw Material Through the Ages Overhoff U, Moser P, Elsen R, Vinzelberg G, Eyll-Vetter M, Neuroth M |
169 - 178 |
Carbon2Chem (R) - A Cross-Industry Approach to Reduce Greenhouse Gas Emissions Oles M, Luke W, Kleinschmidt R, Buker K, Weddige HJ, Schmole P, Achatz R |
179 - 192 |
Production of Alternative Liquid Fuels in the Future Energy System Dietrich RU, Albrecht F, Pregger T |
193 - 200 |
Energy Storage for the Energy Transition: Salt Hydrate Based Low-Temperature Latent Heat Storage Rathgeber C, Helm M, Hiebler S |
201 - 211 |
Target Costing for Electricity Storage Machhammer O, Zehner P |
212 - 225 |
Production of Electricity and Liquid Fuels with Low Carbon Footprint Machhammer O, Maass HJ, Bode A |
226 - 233 |
Evaluating the Economically Suitability of Soft Brown Coal by Geology and Organic Petrology Gerschel H, Volkmann N, Rascher J |
234 - 240 |
Direct Contact Latent Heat Storage for Efficiency Enhancement of Heat Pumps Kunkel S, Kubel-Heising F, Dornhofer P, Medina I, Weis J, Stabler R, Repke JU, Radle M |
241 - 248 |
A Concept for the Circular Carbon Economy Sector Coupling of the Energy, Waste, and Chemical Industry Meyer B, Keller F, Wolfersdorf C, Lee RP |
249 - 255 |
Effect of Triticale Milling Coarseness on Biogas Production Moeller L, Zehnsdorf A, Muller RA |
256 - 266 |
Techno-economic Optimization of the Production Network for the Synthesis of Formic Acid from Renewables Schack D, Sundmacher K |
267 - 271 |
Acid-Filling Level Determinations as Criterion in Checks of Absorbant Glass Mat Lead-Acid Starter Batteries Borger A, Burow D |
272 - 276 |
On the Field Relevance of Negative Lug Corrosion by Micro-Hybrid Operation Mode in the Vehicle Borger A, Keil SN |