Cost-effective balance between CO2 vessel and pipeline transport: Part II - Design of multimodal CO2 transport: The case of the West Mediterranean region
GESKE, Joachim; Berghout, Niels; van den Broek, Machteld
2015 • In International Journal of Greenhouse Gas Control, 33, p. 122 - 134
Cost model; Enhanced oil recovery (EOR); Multimodal infrastructure; Pipeline transport; Vessel transport; Cost modeling; Enhanced oil recovery; Multi-modal; Pollution; Energy (all); Management, Monitoring, Policy and Law; Industrial and Manufacturing Engineering; General Energy
Abstract :
[en] As part of large scale application of CO2 capture and storage, million tons CO2 per year have to be transported by pipelines and/or vessels from capture to storage sites. In previous studies, costs of, pipeline systems and point-to-point vessel connections have been estimated. In this research, these cost analysis are supplemented by adding a transport system combining vessel and pipeline transport. The cost savings potential of this multimodal CO2 transport system has been analyzed for the West Mediterranean region (i.e. Spain, Portugal, and Morocco) - where vessel transport can play an important role. In detail: A multimodal extended adaption of a pipeline system optimization model has been defined and was then parameterized adapting a nonlinear vessel and pipeline transport cost model. Next, cost savings due to vessel transport were quantified for the West Mediterranean region. When CO2 emissions are stored in the region itself, cost could be lowered by up to 20% on routes with low transport volumes and in a complementary way by a redirection of flows at the expense of longer transport distances to prevent costly offshore storage. In case of a European CO2 transport infrastructure including North Sea storage, transport of CO2 by vessel could be profitable if CO2 is used for enhanced oil recovery (EOR). However, North Sea neighboring countries can be expected to crowd out Iberian CO2 of the market for EOR storage volumes.
Disciplines :
Special economic topics (health, labor, transportation...)
Author, co-author :
GESKE, Joachim ; University of Luxembourg > Interdisciplinary Centre for Security, Reliability and Trust (SNT) > FINATRAX ; Forschungszentrum Jülich - IEK-STE, Germany
Berghout, Niels; Copernicus Institute, University Utrecht, Netherlands
van den Broek, Machteld; Copernicus Institute, University Utrecht, Netherlands
External co-authors :
yes
Language :
English
Title :
Cost-effective balance between CO2 vessel and pipeline transport: Part II - Design of multimodal CO2 transport: The case of the West Mediterranean region
Agarwal R., Ergun O. Ship scheduling and network design for cargo routing in liner shipping. Transp. Sci. 2008, 42(2):175-196. 10.1287/trsc.1070.0205.
Barrio M., Aspelund A., Weydahl T., Sandvik T.E., Wongraven L.R., Krogstad H., Henningsen R., Mølnvik M., Eide S.I. Ship-based transport of CO2. Greenhouse Gas Control Technologies 2005, vol. 7:1655-1660. Elsevier Science Ltd, Oxford, ISBN: 9780080447049. 10.1016/B978-008044704-9/50193-2.
Berger B., Kaarstad O., Haugen H.A. Creating a large-scale CO2 infrastructure for enhanced oil recovery. International Conference on Greenhouse Gas Control Technologies (GHGT-7) 2004, Elsevier, Vancouver, Canada.
BERR (Department for Business Enterprise & Regulatory Reform) Development of a CO2 Transport and Storage Network in the North Sea 2007, Re+port to the North Sea Basin Task Force, http://www.berr.gov.uk/files/file42476.pdf .
Boavida D., Carneiro J., Martinez R., Broek M.van den, Ramirez A., Rimi A., Tosato G., Gastine M. Planning CCS development in the West Mediterranean. Energy Proc. 2013, 37:3212-3220. ISSN: 1876-6102. 10.1016/j.egypro.2013.06.208.
Broek M.van den, Ramírez A., Groenenberg H., Neele F., Viebahn P., Turkenburg W., Faaij A. Feasibility of storing CO2 in the Utsira formation as part of a long term Dutch CCS strategy: an evaluation based on a GIS/MARKAL toolbox. Int. J. Greenh. Gas Control 2010, 4:351-366. pii:S1750583609000905. 10.1016/j.ijggc.2009.09.002.
Broek M.van den, Brederode E., Ramirez A., Kramers L., van der Kuip M., Wildenborg T., Turkenburg W., Faaij A. Designing a cost-effective CO2 storage infrastructure using GIS based linear optimization energy model. Environ. Model. Softw. 2010, 25:1754-1768. 10.1016/j.envsoft.2010.06.015.
Carneiro J., Martinez R., Suaréz I., Zarhloule Y., Rimi A. Injection rate and cost estimates for CO2 storage in the west Mediterranean region. Environ. Earth Sci. 2014, (in preparation).
CO2 Europipe Towards a Transport Infrastructure for Large-scale CCS in Europe 2011, Reports Online http://www.co2europipe.eu/ .
Coussy P., Roussanaly S., Bureau-Cauchois G., Wildenborg T. Economic CO2 network optimization model, COCATE European project (2010-2013). Energy Proc. 2013, 37:2923-2931.
Dooley J.J., Dahowski R.T., Davidson C.L. CO2-driven Enhanced Oil Recovery as a Stepping Stone to What? 2010, Pacific Northwest National Laboratory operated by Battelle for the United States Department of Energy.
European Technology Platform for Zero Emission Fossil Fuel Power Plants (ZEP) The Costs of CO2 Capture, Transport and Storage - Post-demonstration CCS in the EU 2011, 1-51. European Technology Platform for Zero Emission Fossil Fuel Power Plants.
European Technology Platform for Zero Emission Fossil Fuel Power Plants (ZEP) The Costs of CO2 Transport - Post-demonstration CCS in the EU 2011, 1-53. European Technology Platform for Zero Emission Fossil Fuel Power Plants.
GCCSI Economic Assessment of Carbon Capture and Storage Technologies, 2011 Update 2011, 1-57. Global CCS Institute.
Gozalpour F., Ren S.R., Tohidi B. CO2 EOR and storage in oil reservoirs. Oil Gas Sci. Technol. Rev. IFP 2005, 60(3):537-546.
Holt T., Lindenberg E., Wessel-Berg D. EOR and CO2 disposal - economic and capacity potential in the North Sea. Energy Proc. 2009, 1:4159-4166.
IEA Greenhouse Gas R&D Programme CO2 Storage in Depleted Oilfields: Global Application Criteria for Carbon Dioxide Enhanced Oil Recovery, Report IEA/CON/08/155, Prepared by Advanced Resources International, Inc. and Melzer Consulting 2009.
IPCC, 2005. Special Report Carbon Dioxide Capture and Storage - Technical Summary, Pages 1-50 (Report3) and Pages 179-194 (chapter 4, Transport of CO2).
Kanudia A., Berghout N., Boavida D., van den Broek M., Cabal H., Carneiro J., Fortes P., Gargiulo M., Pedro J., Labriet M., Lechón Y., Martinez R., Mesquita P., Rimi A., Seixas J., Tosato G.C. CCS infrastructure development scenarios for the integrated Iberian Peninsula and Morocco energy system. Energy Proc. 2013, 37(2013):2645-2656. GHGT-11. 10.1016/j.egypro.2013.06.149.
Knoope M.M.J., Ramírez A., Faaij A.P.C. A state-of-the-art review of techno-economic models predicting the costs of CO2 pipeline transport. Int. J. Greenh. Gas Control 2013, 16:241-270. 10.1016/j.ijggc.2013.01.005.
Knoope M.M.J., Guijt W., Ramírez A., Faaij A.P.C. Improved cost models for optimizing CO2 pipeline configuration for point-to-point pipelines and simple networks". Int. J. Greenh. Gas Control 2014, 22:25-46.
Leach A., Mason C.F., van't Veld K. Co-optimization of Enhanced Oil Recovery and Carbon Sequestration, NBER Working Paper Series 15035 2009, National Bureau of Economic Research, http://www.nber.org/papers/w15035 .
Metz B., Davidson O., Coninck H.D., Loos M., Meyer L. Carbon Dioxide Capture and Storage: IPCC Special Report 2005, Cambridge University Press, Cambridge, Technical Summary: pp. 1-50 (Report 3) and pp. 179-194 (chapter 4, Transport of CO2).
Middleton R.S., Bielicki J.M. A scalable infrastructure model for carbon capture and storage: SimCCS. Energy Policy 2009, 37:1052-1060. 10.1016/j.enpol.2008.09.049.
Svensson R., Odenberger M., Johnsson F., Strömberg L. Transportation systems for CO2 - application to carbon sequestration. Energy Convers. Manage. 2004, 45:2343-2353. 10.1016/j.enconman.2003.11.022.
Mallon W., Buit L., van Wingerden J., Lemmens H., Eldrup N.H. Costs of CO2 transportation infrastructures. Energy Proc. 2013, 37:2969-2980.
Morbee J., Serpa J., Tzimas E. Optimised deployment of a European CO2 transport network. Int. J. Greenh. Gas Control 2012, 7:48-61. ISSN: 1750-5836, pii:S1750583611002210. 10.1016/j.ijggc.2011.11.011.
Morbee J. International transport of captured CO2: who can gain and how much?. Environ. Resour. Econ. 2014, 57(3):299-322. 10.1007/s10640-013-9670-y.
National Energy Technology Laboratory Carbon Dioxide Enhanced Oil Recovery Untapped Domestic Energy Supply and Long Term Carbon Storage Solution 2010, http://www.netl.doe.gov/technologies/oil-gas/publications/EP/small_CO2_eor_primer.pdf .
Ozaki M., Ohsumi T., Kajiyama R. Ship-based offshore CCS featuring CO2 shuttle ships equipped with injection facilities. Energy Proc. 2013, 37:3184-3190. ISSN:1876-6102, pii:S1876610213004487. 10.1016/j.egypro.2013.06.205.
Odenberger M., Svensson R. Transportation Systems for CO2 - Application to Carbon Sequestration 2003, Department of Energy Conversion, Chalmers University of Technology, Göteborg, Sweden.
Roussanaly S., Jakobsen J.P., Hognes E.H., Brunsvold A.L. Benchmarking of CO2 transport technologies: Part I-Onshore pipeline and shipping between two onshore areas. Int. J. Greenh. Gas Control 2013, 19:584-594. ISSN: 1750-5836, pii:S1750583613002478. 10.1016/j.ijggc.2013.05.031.
Roussanaly S., Bureau-Cauchois G., Husebye J. Costs benchmark of CO2 transport technologies for a group of various size industries. Int. J. Greenh. Gas Control 2013, 12C:341-350.
Roussanaly S., Brunsvold A.L., Hognes E.H. Benchmarking of CO2 transport technologies: Part II - Offshore pipeline and shipping to an offshore site. Int. J. Greenh. Gas Control 2014, 28:283-299. 10.1016/j.ijggc.2014.06.019.
Sanders M., Fuss S., Engelen P.J. Mobilizing private funds for carbon capture and storage: An exploratory field study in the Netherlands. Int. J. Greenh. Gas Control 2013, 19(November):595-605. 10.1016/j.ijggc.2013.09.015.
University of Edinburgh Opportunities for CO2 Storage Around Scotland - An Integrated Strategic Research Study 2009, http://www.scotland.gov.uk/Publications/2009/04/28114540/16 .
van 't Veld K., Phillips O.R. The economics of enhanced oil recovery: estimating incremental oil supply and CO2 demand in the powder river basin. Energy J. 2010, 31(3.).
Yoo B.Y., Choi D.K., Kim H.J., Moon Y.S., Na H.S., Lee S.G. Development of CO2 terminal and CO2 carrier for future commercialized CCS market. Int. J. Greenh. Gas Control 2013, 12:323-332. ISSN: 1750-5836. 10.1016/j.ijggc.2012.11.008.