New Zealand s underground energy storage system

Researchers at the University of Canterbury are breaking new ground in underground hydrogen storage technology. Their innovative models explore how hydrogen can be safely injected, stored, and extracted from natural underground reservoirs in Taranaki. CCUS in New Zealand . CCUS is in its very early stages of development in New Zealand. Current uses of CCUS in New Zealand include production of industrial CO 2 for use in industrial processes and products, and reinjection of CO 2 in geothermal electricity generation.. Carbon capture and storage (CCS), where CO 2 is injected into suitable geologic formations …

Is underground hydrogen storage possible in New Zealand?

Project Level: PhD PhD scholarship in Materials Chemistry focused on the feasibility of underground hydrogen storage in New Zealand Aotearoa NZ Government funded a 5-year 11+M $NZ Research programme “Pūhiko Nukutū: a green hydrogen geostorage battery in Taranaki” in 2022.

Does Taranaki have a potential for Underground hydrogen storage?

Globally, underground storage of pure (>98%) hydrogen has only been achieved in caverns excavated from salt deposits, which are not present in New Zealand. Instead, this report focuses on the potential for UHS in subsurface porous rock formations of Taranaki.

How much hydrogen should be stored in New Zealand?

At current energy demand, this corresponds to 72 PJ (~600,000 tonnes) of hydrogen annually in New Zealand, of which 7 to 18 PJ may need to be held in storage. Storage allows production to take advantage of intermittent renewable surplus at low cost, to accommodate peaks in energy demand, and to provide a strategic reserve.

Is a green hydrogen geostorage battery in Taranaki possible?

NZ Government funded a 5-year 11+M $NZ Research programme “Pūhiko Nukutū: a green hydrogen geostorage battery in Taranaki” in 2022. As part of this programme, we have an opening for several motivated students to undertake PhDs as part of a larger team aimed at assessing the feasibility of underground hydrogen storage (UHS) in New Zealand Aotearoa.

What is underground hydrogen storage (UHS)?

It could also be met through subsurface storage in a small number (e.g., <10) of porous reservoirs. The large storage volumes of porous reservoirs, which are here referred to as Underground Hydrogen Storage (UHS), will permit larger-scale hydrogen production and provide sufficient capacity for managing out-of-phase supply and demand cycles.

Where is Ahuroa gas storage located?

The Ahuroa underground gas storage (AGS) facility is located in Taranaki, New Zealand. Opened in May 2011, it is the first such facility to be developed in the country. It has an extraction capacity of 45 terajoules a day (TJ/d). The project was developed by Contact Energy (Contact) and Origin Energy (Origin) with an investment of $170m.

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Carbon capture, utilisation and storage | Ministry of Business ...

CCUS in New Zealand . CCUS is in its very early stages of development in New Zealand. Current uses of CCUS in New Zealand include production of industrial CO 2 for use in industrial processes and products, and reinjection of CO 2 in geothermal electricity generation.. Carbon capture and storage (CCS), where CO 2 is injected into suitable geologic formations …

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With New Zealand''s CO2 price at an all-time high of NZ$80 per tonne, and overseas companies announcing billion-dollar funds to purchase offsets, now is time for cross-industry collaboration to make New Zealand a world leader in decarbonisation. Bioenergy with carbon capture and storage

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Green hydrogen geo-storage in New Zealand across a …

Underground hydrogen (H 2 ) storage (UHS) and carbon dioxide (CO 2 ) geo-storage (CGS) have been identified as two effective methods of providing sufficient global energy needs and creating a low ...

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New energy storage to see large-scale development by 2025

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UC research looks to underground future for …

While storing natural gas underground is standard, it''s also less complex because it''s in its natural environment. Using the same process for hydrogen is a comparative unknown but it may end up being critical to …

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Sage reports successful results of underground energy storage …

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An overview of underground energy storage in porous …

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Ahuroa Underground Gas Storage Facility

The Ahuroa underground gas storage (AGS) facility is located in Taranaki, New Zealand. Opened in May 2011, it is the first such facility to be developed in the country. It has an extraction capacity of 45 terajoules a day (TJ/d). The project was developed by Contact Energy (Contact) and Origin Energy (Origin) with an investment of $170m.

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An overview of thermal energy storage systems

A study of Wairakei geothermal system in New Zealand by O''Sullivan et al. [4] ... Underground, Seasonal: Water, Pit storage: 19,000: District heating network [13] Kungalv, Sweden: Industry waste heat ... They are suitable for use as fillers in single tank thermocline thermal energy storage systems where they are arranged in a packed bed ...

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Geothermal Heat Pumps in New Zealand

Surface water systems 36 7. Geothermal energy storage 38 7.1. Aquifer thermal energy storage 38 7.2. Borehole thermal energy storage 39 ... In meeting New Zealand''s long-term energy demand we must find ways to respond ... structure (open loop) located underground or underwater, which is generally located outside of the building footprint. Its ...

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Geological energy storage in Aotearoa New Zealand a …

The underground energy storage technologies for renewable energy integration addressed in this article are: Compressed Air Energy Storage (CAES); Underground Pumped Hydro Storage (UPHS ...

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New Zealand Battery Project – progressing to the next …

put pressure on the electricity system and result in higher-than-average use of thermal plant. New Zealand needs approximately 3 to 5 TWh of energy storage or equivalent supply-side or demand-side flexibility to achieve reliable and affordable supply in a dry year. For comparison, New Zealand has recently been consuming about 40 TWh per year.

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Underground Hydrogen Storage in the Taranaki region, New Zealand

Globally, underground storage of pure (>98%) hydrogen has only been achieved in caverns excavated from salt deposits, which are not present in New Zealand. Instead, this report …

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Prospectivity analysis for underground hydrogen storage, …

Seasonal underground hydrogen storage (UHS) in porous media provides an as yet untested method for storing surplus renewable energy and balancing our energy demands. …

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Underground Hydrogen Storage in the Taranaki region, New Zealand

Hydrogen is projected to account for at least 10% of the global energy system in 20 years. At current energy demand, this corresponds to 72 PJ (~600,000 tonnes) of hydrogen annually in New Zealand, of which 7 to 18 PJ may need to be held in storage. Storage allows production to take advantage of intermittent renewable surplus at low cost, to ...

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Hydrogen | Ministry of Business, Innovation & Employment

New Zealand''s hydrogen regulatory pathway [PDF 3.6MB] ... Next-generation electrocatalytic systems for energy production and storage'' ... a project led by the University of Canterbury to assess the potential for underground geological hydrogen storage.

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Pūhiko Nukutū | Green hydrogen geostorage in …

Green hydrogen (H2), generated from excess renewable energy and stored in vast underground reservoirs will play an important role in enabling the scale of this transformation. Geostorage creates vast Pūhiko Nukutū (Earth batteries) …

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Prospectivity analysis for underground hydrogen storage, …

Prospectivity analysis for underground hydrogen storage, Taranaki basin, Aotearoa New Zealand: A multi-criteria decision-making approach ... underground storage of CO 2, ... Enabling secure subsurface storage in future energy systems: geological Society, vol. 528, Special Publications, London (2023), 10.1144/SP528-2022-40. Google Scholar [5]

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Underground Thermal Energy Storage (UTES)

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Innovative technologies in the development of …

mineral extraction (lithium). They include increased electric power system efficiency, novel and optimised drilling technologies, underground thermal energy storage, new exploration methods, closed loops, smart systems, and 3D models. Advanced plants and technologies include ultra-deep geothermal systems, enhanced geothermal

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New Zealand''s energy sector experienced the first year of the new coalition Government''s policy workplan in 2024. ... The Government took steps to overhaul New Zealand''s resource management system, including to support …

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Supercritical Geothermal in New Zealand

It has the potential to meet a significant component of New Zealand''s renewable energy demand beyond 2037. The New Zealand Government has an ambitious target for net-zero emissions by 2050, including achieving 100 percent renewable electricity generation (under normal hydrological conditions) by 2030. New Zealand''s conventional geothermal ...

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New Zealand''s ''first grid-scale battery storage project'' in ...

Infratec general manager Nick Bibby said that the storage system is "the first of its scale to be built in New Zealand". As reported by Energy-Storage.news, the two companies completed their assessment of the project in late 2021, selecting a site in Huntly, a town in the Waikato District.. They then announced the appointment of key contractors in March of last …

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Underground hydrogen storage in salt caverns: Recent …

Researchers [43, 53, 58, 65, 70] have extensively studied the thermo-mechanical behavior of rock salt, particularly in the context of energy storage systems involving salt caverns. Additionally, investigations have explored the thermodynamic behavior of fluids within these storage systems.

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Energy storage: Geothermal systems better than batteries?

Enhanced geothermal systems can tap into heat energy deep underground the Earth''s surface. New research says they could also be better than existing technologies like batteries for storing excess renewable energy from wind and solar power. Production of renewable energy is growing, but finding the best ways to store it will be critical to ...

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Providing the missing link to a green hydrogen future

storage technology in advance of the predicted growth in the hydrogen market post 2025 Dr Keith Lovegrove – Technical Director Hydrogen Storage Ardent Underground and Managing Director ITP Thermal has over 30 years experience in energy research and teaching. Has pioneered work on the application of thermochemical energy storage using

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