Offshore wind generators provide path for clear hydrogen manufacturing – TechnoNews

Two totally different configurations had been studied for producing clear hydrogen utilizing offshore wind. Credit score: Alfred Hicks, NREL

Utilizing electrical energy generated by offshore wind generators as one pathway to separate water to provide clear hydrogen might make financial sense, notably alongside the U.S. Atlantic Coast and within the Gulf of Mexico, based on researchers on the Nationwide Renewable Power Laboratory (NREL).

The economics work greatest in areas the place the water isn’t as deep and the wind is powerful, based on their findings within the lately revealed article, “Potential for large-scale deployment of offshore wind-to-hydrogen systems in the United States,” which seems within the Journal of Physics: Convention Collection.

The flexibility to provide hydrogen at a value that approaches the U.S. Division of Power (DOE) aim for low-cost clear hydrogen relies upon considerably on each the know-how used and the situation of manufacturing. Projected coverage incentives may additionally play a task. Hydrogen could be produced utilizing an electrolyzer that splits water—fabricated from two atoms of hydrogen and one in all oxygen—into its element elements.

An electrolyzer powered by a renewable vitality supply produces what is called clear hydrogen. By way of its Hydrogen Shot initiative, DOE is main efforts to scale back the price of clear hydrogen to $1 a kilogram by 2031. Attaining $2 per kilogram may make it cost-competitive in some purposes in contrast with standard carbon-intensive strategies of manufacturing hydrogen.

“Both offshore wind and clean hydrogen production are technologies that are rapidly evolving and when combined have the potential to generate and store a lot of renewable energy and decarbonize sectors that are hard to electrify,” mentioned Kaitlin Brunik, a hybrid programs analysis engineer at NREL and lead creator of the brand new paper.

“Continued investment and research on system- and plant-level design and optimization could spur further technology progress and cost reductions for these systems.”

The paper describes using case research simulations to research the techno-economics of manufacturing hydrogen from offshore wind vitality in 2025, 2030, and 2035.

NREL researchers evaluated two situations counting on electrolysis powered by offshore wind and recognized 4 consultant coastal areas for wind-to-hydrogen hybrid services.

Relying upon how deep the water is on the places studied, the researchers thought-about whether or not the generators could be floating or mounted to the ocean ground. The analysis means that by 2030, a mixture of things together with coverage incentives and fixed-bottom offshore wind with onshore electrolysis might enable the manufacturing of hydrogen for lower than $2 a kilogram.

The evaluation doesn’t present coverage steering however represents coverage utilizing preliminary assumptions made previous to the discharge of proposed laws for the tax credit score.

Within the first situation, an offshore wind plant generated electrical energy that was transmitted by way of high-voltage cables to an onshore web site. There, an electrolyzer produced hydrogen from contemporary water. This represented a standard strategy of pairing offshore wind with onshore electrolysis.

Within the second situation, the hydrogen was cut up from desalinated seawater on the offshore wind plant web site, requiring extra infrastructure within the ocean to accommodate the extra gear. The hydrogen was then transported by way of pipelines to shore for storage. The researchers famous the technical feasibility of this situation is much less established.

“Moving an electrolyzer to an offshore platform for bulk energy production presents a novel challenge,” Brunik mentioned. “To fully harness the electricity generated by offshore wind farms for hydrogen production, substantial electrolyzers are needed, along with ancillary equipment for water treatment, hydrogen storage, and transportation.”

Offshore renewable hydrogen manufacturing stays uncharted territory, requiring progressive configurations to combine all the mandatory gear with a wind farm for gigawatt-scale operations.

Along with the technological design of those programs, the researchers thought-about the place an offshore wind-to-hydrogen system could be greatest located.

They checked out shallower websites within the Gulf of Mexico and New York Bight the place generators may very well be mounted to the ocean ground, had considerable wind sources, and had been in proximity to at the very least one in all DOE’s Regional Clear Hydrogen Hubs that may join hydrogen producers and customers.

Additionally they examined websites with a lot deeper waters off the coast of northern California and within the Gulf of Maine the place the generators must be put in on floating platforms. The hydrogen could be saved on shore in underground pipes, rock caverns, or salt caverns.

The evaluation projected that the levelized price of hydrogen (LCOH), which incorporates the whole thing of the wind system, electrical transmission, and hydrogen system, may very well be lowest within the New York Bight due to greater wind capability.

The Gulf of Mexico had the second-lowest determine. The selection of the place to retailer the hydrogen considerably impacts the price, with a lower of 20% to 30% within the LCOH calculated from utilizing caverns. Projected coverage incentives are additionally a think about additional decreasing prices.

This research confirmed promising indicators of what large-scale deployment of offshore wind-to-hydrogen may appear to be and shall be a continued space of curiosity as new and higher applied sciences proceed to be developed on this space.

Extra info:
Ok Brunik et al, Potential for large-scale deployment of offshore wind-to-hydrogen programs in america, Journal of Physics: Convention Collection (2024). DOI: 10.1088/1742-6596/2767/6/062017

Offered by
Nationwide Renewable Power Laboratory

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Offshore wind generators provide path for clear hydrogen manufacturing (2024, July 12)
retrieved 12 July 2024
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