[HTML][HTML] Review of supercritical CO2 technologies and systems for power generation

MT White, G Bianchi, L Chai, SA Tassou… - Applied Thermal …, 2021 - Elsevier
Thermal-power cycles operating with supercritical carbon dioxide (sCO 2) could have a
significant role in future power generation systems with applications including fossil fuel …

A review of industrial waste heat recovery system for power generation with Organic Rankine Cycle: Recent challenges and future outlook

R Loni, G Najafi, E Bellos, F Rajaee, Z Said… - Journal of cleaner …, 2021 - Elsevier
Waste heat recovery is an effective way to reuse waste energy in order to produce useful
energy products. This technique aids in the reduction of CO 2 emissions and to create …

Opportunities and strategies for multigrade waste heat utilization in various industries: A recent review

Z Su, M Zhang, P Xu, Z Zhao, Z Wang, H Huang… - Energy Conversion and …, 2021 - Elsevier
Serious energy crises and ecological pollution have had negative impacts on all countries
worldwide. These challenges are largely attributed to the production and operation of …

Analyzing and optimizing the power generation performance of thermoelectric generators based on an industrial environment

Z Miao, X Meng, L Liu - Journal of Power Sources, 2022 - Elsevier
The industrial production process consumes electricity and generates a lot of waste heat.
Recycling waste heat for power generation can effectively improve energy efficiency. This …

A review of waste heat recovery technologies for maritime applications

DV Singh, E Pedersen - Energy conversion and management, 2016 - Elsevier
A waste heat recovery system produces power by utilizing the heat energy lost to the
surroundings from thermal processes, at no additional fuel input. For marine vessels, about …

Reducing greenhouse gasses emissions by fostering the deployment of alternative raw materials and energy sources in the cleaner cement manufacturing process

H Mikulčić, JJ Klemeš, M Vujanović, K Urbaniec… - Journal of cleaner …, 2016 - Elsevier
The cement production industry worldwide is one of the largest CO 2 emitting industrial
sectors. It accounts for a considerable amount of total global greenhouse gas (GHG) …

Organic Rankine cycle power systems: from the concept to current technology, applications, and an outlook to the future

P Colonna, E Casati, C Trapp… - … for Gas Turbines …, 2015 - asmedigitalcollection.asme.org
The cumulative global capacity of organic Rankine cycle (ORC) power systems for the
conversion of renewable and waste thermal energy is undergoing a rapid growth and is …

[HTML][HTML] Mitigation options for decarbonization of the non-metallic minerals industry and their impacts on costs, energy consumption and GHG emissions in the EU …

K Korczak, M Kochański, T Skoczkowski - Journal of Cleaner Production, 2022 - Elsevier
The non-metallic minerals industry is the third-largest industrial energy consumer, and it
constitutes around 7% of global CO 2 emissions due to the high energy intensity of …

Energetic and financial investigation of a stand-alone solar-thermal Organic Rankine Cycle power plant

C Tzivanidis, E Bellos, KA Antonopoulos - Energy conversion and …, 2016 - Elsevier
The use of solar thermal energy for electricity production is a clean and sustainable way to
cover the increasing energy needs of our society. The most mature technology for capturing …

Exergy efficiency analysis of ORC (Organic Rankine Cycle) and ORC-based combined cycles driven by low-temperature waste heat

W Sun, X Yue, Y Wang - Energy Conversion and Management, 2017 - Elsevier
There is large amount of waste heat resources in industrial processes. However, most low-
temperature waste heat is directly discharged into the environment. With the advantages of …