Published 2004 | Version v1
Miscellaneous

Hydrogen from nuclear plus wind using real-time electricity prices

  • 1. Atomic Energy of Canada Limited, Chalk River, Ontario (Canada)
  • 2. Fairfield Group, Shelburne, Ontario (Canada)
  • 3. Port Albert Wind Farms, Kincardine, Ontario (Canada)

Description

During the early years of hydrogen's use as a vehicle fuel, penetration of the market will be small. This favours distributed production by electrolysis, which avoids the scale-dependent costs of distribution from centralized plants. For electrolysis actually to be the preferred option, capital equipment for electrolysis must be reasonably cheap but the dominant cost component is the electricity price. By about 2006, advanced designs of nuclear reactors should be available to produce electricity at around 30 US$/MW.h at the plant gate. The best approach to producing low-cost electrolytic hydrogen is shown to be use of such reactors to supply electricity to the grid at times of peak price and demand and to make hydrogen at other times In this paper, this model has been used to calculate the production costs for electrolytic hydrogen at the location where the electricity is generated, using the actual prices of electricity paid by the Alberta Power Pool in 2002 and 2003 and by the Ontario Grid for 2003. The analysis shows clearly that by optimizing the co-production of hydrogen and electricity (referred to as the H2/e process) the cost for hydrogen produced can comfortably meet the US Department of Energy's target of 2000 US$/tonne. Because of its lower availability factor, wind-produced electricity cannot meet this cost target. However, if wind power availability can reach 35%, an intermittent supplementary current of wind-generated electricity may economically be fed to an electrolytic plant primarily supplied by nuclear power. Additional current raises the voltage for electrolysis but there would be only small additional capital costs. The two non-CO2-emitting sources, nuclear and wind could become complementary, providing an affordable way of storing wind-generated electricity when the supply exceeds demand in electricity markets The analyses presented in this paper looks at the case of bulk production of H2/e in a 'wholesale' energy market and does not consider the distribution of hydrogen and how much hydrogen would cost 'at the pump'. To address this issue, future analyses will look at applying the same cost optimization to a distributed hydrogen production system operating over an electricity network in a competitive market. (author)

Part of:
Towards a greener world : hydrogen and fuel cells 2004 conference and trade show. Conference proceedings

Additional details

Publishing Information

Publisher
Canadian Hydrogen Association
Imprint Place
Toronto, Ontario (Canada)
Imprint Title
Towards a greener world : hydrogen and fuel cells 2004 conference and trade show. Conference proceedings
Imprint Pagination
39.4 Megabytes
Journal Page Range
[17 p.]

Conference

Title
hydrogen and fuel cells 2004 conference and trade show
Acronym
Towards a greener world
Dates
25-28 Sep 2004
Place
Toronto, Ontario (Canada)

INIS

Country of Publication
Canada
Country of Input or Organization
Canada
INIS RN
37066878
Subject category
S29: ENERGY PLANNING, POLICY AND ECONOMY;
Resource subtype / Literary indicator
Conference, Non-conventional Literature
Descriptors DEI
ELECTROLYSIS; ENERGY POLICY; HYDROGEN PRODUCTION; HYDROGEN-BASED ECONOMY; NUCLEAR POWER; OFF-PEAK POWER; PEAK LOAD; POWER DEMAND
Descriptors DEC
DEMAND; ELECTRIC POWER; GOVERNMENT POLICIES; LYSIS; POWER

Optional Information

Notes
4 refs., 4 tabs., 5 figs.