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contributor authorHui Hong
contributor authorTao Han
contributor authorHongguang Jin
date accessioned2017-05-09T00:40:43Z
date available2017-05-09T00:40:43Z
date copyrightAugust, 2010
date issued2010
identifier issn0199-6231
identifier otherJSEEDO-28431#031002_1.pdf
identifier urihttp://yetl.yabesh.ir/yetl/handle/yetl/144754
description abstractA novel solar-hybrid gas turbine combined cycle was proposed. The cycle integrates methanol-fueled chemical-looping combustion and solar thermal energy at around 200°C, and it was investigated with the aid of the energy-utilization diagram (EUD). Solar thermal energy, at approximately 150°C–300°C, is utilized to drive the reduction in Fe2O3 with methanol in the reduction reactor, and is converted into chemical energy associated with the solid fuel FeO. Then it is released as high-temperature thermal energy during the oxidation of FeO in the oxidation reactor to generate electricity through the combined cycle. As a result, the exergy efficiency of the proposed solar thermal cycle may reach 58.4% at a turbine inlet temperature of 1400°C, and the net solar-to-electric efficiency would be expected to be 22.3%. The promising results obtained here indicate that this solar-hybrid combined cycle not only offers a new approach for highly efficient use of middle-and-low temperature solar thermal energy to generate electricity, but also provides the possibility of simultaneously utilizing renewable energy and alternative fuel for CO2 capture with low energy penalty.
publisherThe American Society of Mechanical Engineers (ASME)
titleA Low Temperature Solar Thermochemical Power Plant With CO2 Recovery Using Methanol-Fueled Chemical Looping Combustion
typeJournal Paper
journal volume132
journal issue3
journal titleJournal of Solar Energy Engineering
identifier doi10.1115/1.4001467
journal fristpage31002
identifier eissn1528-8986
keywordsCombustion
keywordsExergy
keywordsSolar energy
keywordsSolar thermal power
keywordsCycles
keywordsMethanol
keywordsFuels
keywordsTemperature AND Low temperature
treeJournal of Solar Energy Engineering:;2010:;volume( 132 ):;issue: 003
contenttypeFulltext


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