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Technology Collaboration Programme by IEA

Your Search: ' \"High temperature solid looping\" '

6 Publications Found

Technical Review

9th HTSLCN Meeting Report

  • 21 September 2023
  • Capture
  • Event Proceedings

The 9th High Temperature Solid Looping Cycles Network (HTSLCN) Meeting took place from 14th to 15th March 2023 at Palazzo Farnese in Piacenza, Italy, hosted by the CLEANKER consortium. 82 attendees enjoyed a two-day programme with a total of 28 presentations, the official closure of the CLEANKER project with a visit to the pilot plant, a relaxing dinner and a guided tour in the museum of Palazzo Farnese about the millennial history of the city of Piacenza and its territory, from the preRoman age to the XX century.

Technical Report

IEAGHG High Temperature Solid Looping Cycles Network – Combined meeting report

  • 16 October 2020
  • Capture
  • Event Proceedings

The 6th HTSLCN Meeting took place from 1st to 2nd September 2015 at the Department of Energy, Politecnico di Milano, in Italy. 72 attendees from 19 countries enjoyed a two-day programme with 45 presentations, site visits to research facilities at Politecnico di Milano and a stunning dinner at Lake Como. Two keynotes covered the progress made in calcium and chemical looping technologies respectively in the last decade. The technical sessions provided the latest advances in calcium and chemical looping pilot plant testing, solid carrier fundamentals, system modelling, process and heat integration, and sorption enhanced reforming technologies. Other topics were utilisation of biomass as a fuel, techno-economics of a large-scale packed bed reactor for chemical looping and the application of calcium looping in cement plants. The meeting formally closed with a discussion forum that summarised the main conclusions from the earlier presentations and the most burning issues for the future. The 7th HTSLCN Meeting will take place from 4th to 5th September 2017 at Swerea MEFOS in Luleå, Sweden.

Technical Report

5th HTSLCN Meeting Cambridge

  • 1 July 2014
  • Capture
  • Event Proceedings

The IEAGHG High Temperature Solid Looping Cycles Network (HTSLCN) emerged from the preceding International Workshop on In-situ CO₂ Removal (ISCR) and aims at bringing together researchers and developers of CO₂ capture technologies that operate at high temperatures in cyclic processes using either circulating or fixed beds of solids. The 5th HTSLCN Meeting was held from 2nd to 3rd September 2013 at Queens’ College, University of Cambridge, UK. It was jointly organised by IEAGHG, University of Cambridge and Cranfield University and received support from the UKCCS Research Centre and Johnson Matthey. A number of 60 delegates attended the meeting, which offered 36 presentations organised in three sessions. The first session covered demonstrations and pilot scale trials. The second session was split in two parallel streams that discussed the fundamentals in calcium looping (CaL) and chemical looping combustion (CLC) respectively. The third session presented new process concepts and system modelling and evaluation. A subsequent panel discussion and a site visit to the facilities at Cranfield University rounded off the technical programme.

Technical Report

4th IEAGHG Network Meeting & Technical Workshop on High Temperature Solid Looping Cycles

  • 1 March 2013
  • Capture
  • Event Proceedings

The IEAGHG High Temperature Solid Looping Cycles Network emerged from the preceding International Workshop on In-situ CO<sub>2</sub> Removal (ISCR) and aims at bringing together researchers and developers of CO<sub>2 </sub>capture technologies that operate at high temperatures in cylindrical processes using either circulating or fixed beds of solids.   Within the last few years drawbacks of the conventional amine-based CO<sub>2 </sub>capture systems have spurred interest in solid looping processes. Since then the technology has advanced considerably and several pilot plants have been build and brought into operation, e.g the 1.7MW pilot plant at La Pereda in Spain and the 1MW pilot plant at TU Darmstadt in Germany. Progress has been made in particular in carrier/sorbent development as well as in process design and integration. In Calcium Looping, for instance, the use of spent sorbent to produce cement has been demonstrated.

Technical Report

3rd High Temperature Solid Looping Network Meeting

  • 1 December 2011
  • Capture
  • Event Proceedings

The third meeting of the IEAGHG high temperature solid looping network was held from 29<sup>th</sup> August to 1<sup>st</sup> September at the Technical University of Vienna. It was held in parallel with a meeting of the IEA Fluidised Bed Combustion implementing agreement and the International Conference on Polygeneration. This gave the 108 delegates who attended the network meeting the opportunity to meet with those engaged in these other related areas. For this meeting a considerable effort was made to attract members of the Chemical Looping Combustion (CLC) research community which has been less represented at past meetings where calcium oxide looping (CaL) cycles for CO<sub>2</sub> capture have tended to dominate. This should be a useful change as both processes use similar dual fluidised bed hardware and there is also emergence of hybrid schemes employing both types of reaction. Also several of the larger test facilities are now set up to test both CLC and CaL processes using the same equipment.

Technical Review

2nd High Temperature Solid Looping network meeting

  • 1 November 2010
  • Capture
  • Event Proceedings

The second meeting on the high temperature solid looping network was held at the Netherlands energy research centre at Petten from 15-17th September 2010. Approximately 70 delegates attended the meeting of which about 25% were representing industry. 24 papers were presented and discussed during the event and in addition 7 posters were also on display. ECN is actively engaged in research in this area and delegates were able to see first hand the large pilot plant constructed under the EU framework 6 and CCP 2 CACHET project to demonstrate an integrated sorbent enhanced reforming and water gas shift process using multiple fixed beds. Also included in the site tour were ECN’s fluid bed biomass gasification pilot plants, the latest of which is a large 0.8 MW unit large enough to operate without external heat jacketing to compensate for heat losse

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