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2
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Master of Science, Department of Energy and Environment, Chalmers University of Technology
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2 Capture Technology, Master of Science, Department of Energy and Environment, Chalmers University of Technology, 2011.
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Aronsson, J.1
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3
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2 capture from aluminium production
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Mathisen, A.1
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Müller, G.I.6
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4
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2 capture for aluminum primary production for different electrolytic cell ventilation rates, Chemical Engineering Journal, 2013, 230, 338- 350.
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Lassagne, O.1
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Heat requirement for regeneration of aqueous ammonia in post-combustion carbon dioxide capture
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Jilvero, H., Normann, F., Andersson, K., Johnsson, F., Heat requirement for regeneration of aqueous ammonia in post-combustion carbon dioxide capture, International Journal of Greenhouse Gas Control, 2012, 11, 181-187.
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Jilvero, H.1
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6
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Results from trialling aqueous NH3 based post-combustion capture in a pilot plant at Munmorah power station: Absorption
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Yu, H., Morgan, S., Allport, A., Cottrell, A., Do, T., McGregor, J., Wardhaugh, L., Feron, P., Results from trialling aqueous NH3 based post-combustion capture in a pilot plant at Munmorah power station: Absorption, Chemical Engineering Research and Design, 2011, 89, 1204-1215.
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Techno-economic evaluation of an ammonia-based post-combustion process integrated with a state-of-the-art coal-fired power plant
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Jilvero, H., Eldrup, N.-H., Normann, F., Andersson, K., Johnsson, F., Skagestad, R., Techno-economic evaluation of an ammonia-based post-combustion process integrated with a state-of-the-art coal-fired power plant, Submitted to the International Journal of Greenhouse Gas Control, 2014.
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Jilvero, H.1
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Normann, F.3
Andersson, K.4
Johnsson, F.5
Skagestad, R.6
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2 absorption in ammonia - implications on absorber design
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2 absorption in ammonia - implications on absorber design, Industrial & Engineering Chemistry Research, 2014, 53, 6750-6758.
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