Techno-Economic Analysis of Low Carbon Hydrogen Production from Offshore Wind Using Battolyser Technology

Author:

Jenkins Brian,Squires David,Barton JohnORCID,Strickland DaniORCID,Wijayantha K. G. U.,Carroll James,Wilson Jonathan,Brenton Matthew,Thomson Murray

Abstract

A battolyser is a combined battery electrolyser in one unit. It is based on flow battery technology and can be adapted to produce hydrogen at a lower efficiency than an electrolyser but without the need for rare and expensive materials. This paper presents a method of determining if a battolyser connected to a wind farm makes economic sense based on stochastic modelling. A range of cost data and operational scenarios are used to establish the impact on the NPV and LCOE of adding a battolyser to a wind farm. The results are compared to adding a battery or an electrolyser to a wind farm. Indications are that it makes economic sense to add a battolyser or battery to a wind farm to use any curtailed wind with calculated LCOE at £56/MWh to £58/MWh and positive NPV over a range of cost scenarios. However, electrolysers, are still too expensive to make economic sense.

Funder

EPSRC

Publisher

MDPI AG

Subject

Energy (miscellaneous),Energy Engineering and Power Technology,Renewable Energy, Sustainability and the Environment,Electrical and Electronic Engineering,Control and Optimization,Engineering (miscellaneous),Building and Construction

Reference57 articles.

1. Net Zero Strategy: Build Back Greener;HM Government, Department for Business, Energy & Industrial Strategy,2021

2. UK Hydrogen Strategy;HM Government, Department for Business, Energy & Industrial Strategy,2021

3. Recharge News. Germany Plans to Double Hydrogen Electrolyser Capacity Target to 10 GW by 2030 https://www.rechargenews.com/energy-transition/germany-plans-to-double-hydrogen-electrolyser-capacity-target-to-10gw-by-2030/2-1-1105818

4. Green Hydrogen Cost Reduction Scaling up Electrolysers to Meet the 1.5 °C Climate Goal 2020 www.irena.org/publications

5. Wind Energy Is the Cheapest Source of Electricity Generation https://windeurope.org/policy/topics/economics

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