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1. Modeling and optimization of anaerobic digestion technology: Current status and future outlook NSTL国家科技图书文献中心

Kegl T. |  Kovac Kralj A.... -  《Progress in energy and combustion science》 - 2025,106(Jan.) - 1.1~1.55 - 共55页

摘要:© 2024 The AuthorsAnaerobic digestion (AD) is |  an important technology that can be engaged to |  produce renewable energy and valuable products from |  organic waste while reducing the net greenhouse gas |  emissions. Due to the AD process complexity, further
关键词: Anaerobic digestion |  Biogas plant |  Mathematical models |  Optimization algorithms |  Products utilization |  Renewable energy

2. Review and assessment of the ammonium perchlorate chemistry in AP/HTPB composite propellant gas-phase chemical kinetics mechanisms NSTL国家科技图书文献中心

Gregoire C.M. |  Mathieu O.... -  《Progress in energy and combustion science》 - 2025,106(Jan.) - 1.1~1.42 - 共42页

摘要:© 2024 Elsevier LtdPhysical and chemical |  processes of ammonium perchlorate and hydroxyl-terminated |  polybutadiene (AP/HTPB) composite propellant combustion have |  been studied for several decades, and more than 50 |  years of model development can be reported
关键词: Ammonium perchlorate |  Chemical kinetics modeling |  Composite propellant |  Ignition delay times |  Laminar flame speeds

3. A comprehensive review of liquid fuel droplet evaporation and combustion behavior with carbon-based nanoparticles NSTL国家科技图书文献中心

Parveg A.S.M.S. |  Ratner A. -  《Progress in energy and combustion science》 - 2025,106(Jan.) - 1.1~1.57 - 共57页

摘要:© 2024 The AuthorsNanofuels (NFs) are an |  innovative fuel category where nano-scale metal or carbon | -based particles are suspended within liquid fuel (LF | ) to enhance performance, combustion efficiency, and |  emission characteristics of internal combustion devices
关键词: Carbon nanoparticles |  Combustion characteristic |  Droplet combustion |  Liquid fuel |  Nanofuel

4. Flame stabilization and emission characteristics of ammonia combustion in lab-scale gas turbine combustors: Recent progress and prospects NSTL国家科技图书文献中心

Zhang M. |  Wei X.... -  《Progress in energy and combustion science》 - 2025,106(Jan.) - 1.1~1.53 - 共53页 - 被引量:1

摘要:© 2024 Elsevier LtdGlobal climate change |  forces all countries to push the process of de | -carbonization. Ammonia, which is carbon free and a potential |  hydrogen carrier, is proposed as a prospective fuel for |  the power devices to realize the green economy. It
关键词: Ammonia |  Flame stabilization |  Gas turbines |  NOx emission |  Swirl flames

5. Turbulent combustion modeling for internal combustion engine CFD: A review NSTL国家科技图书文献中心

Posch S. |  Gossnitzer C.... -  《Progress in energy and combustion science》 - 2025,106(Jan.) - 1.1~1.48 - 共48页

摘要:© 2024 The AuthorsThe modeling of combustion |  or, to be exact, turbulent combustion using |  numerical simulation has become state-of-the-art in the |  process of developing internal combustion engines (ICE | ). Since the combustion regimes that occur fundamentally
关键词: 3D CFD |  Emissions |  Internal combustion engine |  Turbulent combustion

6. Progress in multiscale research on calcium-looping for thermochemical energy storage: From materials to systems NSTL国家科技图书文献中心

Tian X. |  Guo S.... -  《Progress in energy and combustion science》 - 2025,106(Jan.) - 1.1~1.35 - 共35页 - 被引量:1

摘要:© 2024 Elsevier LtdThermochemical energy |  storage (TCES) based on calcium-looping (CaL) has great |  potential to mitigate the intermittency and instability |  problems of solar energy harvesting, especially for high | -temperature solar thermal utilization. The CaCO3/CaO TCES
关键词: Calcium-looping |  Material properties |  Multiscale developments |  Reactor characteristics |  System optimization |  Thermochemical energy storage

7. Advances in process intensification of direct air CO2 capture with chemical conversion NSTL国家科技图书文献中心

Garcia-Bordeje E. |  Gonzalez-Olmos R. -  《Progress in energy and combustion science》 - 2024,100(Jan.) - 1.1~1.20 - 共20页 - 被引量:7

摘要:? 2023 The AuthorsCapturing CO2 from air (DAC | ) is becoming an attractive technological route to |  face the climate crisis. This paper reviews the |  existing research efforts to integrate DAC with |  conversion technologies to transform the captured CO2 into
关键词: Catalytic conversion |  Direct air CO2 capture and conversion |  Process intensification |  Renewable energy

8. Nano-enhanced phase change materials: Fundamentals and applications NSTL国家科技图书文献中心

Said Z. |  Pandey A.K.... -  《Progress in energy and combustion science》 - 2024,104(Sep.) - 1.1~1.59 - 共59页 - 被引量:23

摘要:? 2024 The AuthorsPhase Change Materials (PCMs | ) enable thermal energy storage in the form of latent |  heat during phase transition. PCMs significantly |  improve the efficiency of solar power systems by storing |  excess energy, which can be used during peak demand
关键词: Interfacial chemistry of nanoparticles |  Latent heat |  Nano-enhanced phase change materials |  Nanomaterials |  Thermal conductivity |  Thermal energy storage

9. MILD combustion of low calorific value gases NSTL国家科技图书文献中心

Zhou S. |  Yan B.... -  《Progress in energy and combustion science》 - 2024,104(Sep.) - 1.1~1.44 - 共44页 - 被引量:3

摘要:? 2024 Elsevier LtdThe utilization of low |  calorific value gases (LCVG) in combustion devices |  presents particular challenges in terms of ignition and |  sustained combustion stability due to the presence of non | -combustible components. Moderate or intense low-oxygen
关键词: Composition effect |  Flameless combustion |  Low calorific value gases |  MILD combustion |  Pollutant emissions

10. Particle-based high-temperature thermochemical energy storage reactors NSTL国家科技图书文献中心

Zhao J. |  Korba D.... -  《Progress in energy and combustion science》 - 2024,102(May) - 1.1~1.39 - 共39页

摘要:? 2024 Elsevier LtdSolar and other renewable |  energy driven gas-solid thermochemical energy storage |  (TCES) technology is a promising solution for the next |  generation energy storage systems due to its high operating |  temperature, efficient energy conversion, ultra-long storage
关键词: Chemical reactors |  Particle technology |  Reduction-oxidation (redox) reactions |  Renewable energy |  Thermochemical cycles
检索条件出处:Progress in energy and combustion science
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