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LOW-COST CO2 CAPTURE BY CHEMICAL LOOPING COMBUSTION
OF WASTE-DERIVED FUELS

 * Home
 * About
 * Research
   * Pilot testing and real conditions (WP1)
   * Oxygen carrier material validation and re-use (WP2)
   * Basic design of a demonstration plant (WP3)
   * Business case development (WP4)
   * Dissemination and Exploitation (WP5)
   * Coordination (WP6)
 * Partners
 * News
 * Related projects

Menu
 * Home
 * About
 * Research
   * Pilot testing and real conditions (WP1)
   * Oxygen carrier material validation and re-use (WP2)
   * Basic design of a demonstration plant (WP3)
   * Business case development (WP4)
   * Dissemination and Exploitation (WP5)
   * Coordination (WP6)
 * Partners
 * News
 * Related projects


LOW-COST CO2 CAPTURE BY CHEMICAL LOOPING COMBUSTION
OF WASTE-DERIVED FUELS

 * Home
 * About
 * Research
   * Pilot testing and real conditions (WP1)
   * Oxygen carrier material validation and re-use (WP2)
   * Basic design of a demonstration plant (WP3)
   * Business case development (WP4)
   * Dissemination and Exploitation (WP5)
   * Coordination (WP6)
 * Partners
 * News
 * Related projects

Menu
 * Home
 * About
 * Research
   * Pilot testing and real conditions (WP1)
   * Oxygen carrier material validation and re-use (WP2)
   * Basic design of a demonstration plant (WP3)
   * Business case development (WP4)
   * Dissemination and Exploitation (WP5)
   * Coordination (WP6)
 * Partners
 * News
 * Related projects


WHAT IS LOUISE?

LOUISE aims to reduce the cost of CO2 capture by demonstrating an innovative
method that generates power and heat from waste and provides a constant stream
of CO2. Read more ›


THE OBJECTIVES

The objective are to demonstrate chemical looping combustion (CLC); to
accelerate the deployment of CLC by providing a base design for a demonstration
plant; to increase the commercial attractiveness of the method by exploiting
synergies with other industries; to provide business cases for waste-to-energy
plants to apply CLC technology. Read more ›




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Copyright © 2022 Louise


This project LOUISE is funded through the ACT program (Accelerating CCS
Technologies, Horizon2020 Project No. 691712). Financial contributions made by
the German Federal Ministry of Economic Affairs and Energy (grant no. 03EE5096),
the Research Council of Norway (grant no. 329886), the Greek General Secretariat
for Research and Technology (grant no. T12EPA5-00023), and the Scientific and
Technological Research Council of Turkey (grant no. 221N265) are gratefully
acknowledged.

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