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Above 90%, large-scale long-duration storage is required. [73] The economics of long-duration storage is challenging even then, as the costs are high. Alternative flexibility options, such as demand response, network expansions or flexible generation (geothermal or fossil gas with carbon capture and storage) may be lower-cost. [74]
Direct air carbon capture and sequestration (DACCS) is the use of chemical or physical processes to extract CO2 directly from the ambient air and putting the captured CO2 into long-term storage. [123] In contrast to CCS, which captures emissions from a point source, DAC has the potential to remove carbon dioxide that is already in the atmosphere.
In grid models with high VRE share, the excessive cost of storage tends to dominate the costs of the whole grid — for example, in California alone 80% share of VRE would require 9.6 TWh of storage but 100% would require 36.3 TWh. As of 2018 the state only had 150 GWh of storage, primarily in pumped storage and a small fraction in batteries.
Seasonal thermal energy storage (STES), also known as inter-seasonal thermal energy storage, [1] is the storage of heat or cold for periods of up to several months. The thermal energy can be collected whenever it is available and be used whenever needed, such as in the opposing season.
It is evaluated as the difference between the two prices in a pair of forward prices. The idea being that one can lock-in a forward spread, either physically or financially. For developers seeking to study the feasibility of building a storage facility, they would typically look at the long-term price spreads.
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