Document of bibliographic reference 392362

BibliographicReference record

Type
Bibliographic resource
Type of document
Journal article
BibLvlCode
AS
Title
GeoH2 model: Geospatial cost optimization of green hydrogen production including storage and transportation
Abstract
This paper presents GeoH2, a geospatial model that optimizes the cost of green hydrogen production, storage, transport, and conversion. This model calculates the cost of producing green hydrogen in a specified location to meet demand in another location by: Optimizing hydrogen conversion and transport from production site to demand site. Optimizing green hydrogen production and storage based on spatially-specific wind and solar generation temporal availability. This method allows users to map production costs throughout a region to identify the lowest-cost location of green hydrogen production to meet demand using a specified end-state for transportation and storage (i.e., pressurized hydrogen, ammonia, or liquefied hydrogen). These modeled costs can be compared to current or projected prices for energy and chemical feedstock in the region to assess the cost-competitiveness of green hydrogen. The model is designed to run at a country or regional scale. A case study application is provided for the context of Namibia.
Bibliographic citation
Halloran, C.; Leonard, A.; Salmon, N.; Müller, L.; Hirmer, S. (2024). GeoH2 model: Geospatial cost optimization of green hydrogen production including storage and transportation. MethodsX 12: 102660. https://dx.doi.org/10.1016/j.mex.2024.102660
Topic
Marine
Is peer reviewed
true
Access rights
open access
Is accessible for free
true

Authors

author
Name
Claire Halloran
author
Name
Alycia Leonard
author
Name
Nicholas Salmon
author
Name
Leander Müller
author
Name
Stephanie Hirmer

Links

referenced creativework
type
DOI
accessURL
https://dx.doi.org/10.1016/j.mex.2024.102660

thesaurus terms

term
Ammonia (term code: 71410 - defined in term set: CSA Technology Research Database Master Thesaurus)

Document metadata

date created
2024-05-21
date modified
2024-05-21