This new CSP has the potential to realize but there are some challenges with it

At the end of this 3-post series story, we want to explain the other two remained technical challenges of Heliogen’s CSP.

The third and fourth challenges are related to the claim of Heligen’s CEO and founder, Bill Gross, “If we go to a cement company and say we’ll give you green heat, no CO2, but we’ll also save you money, then it becomes a no-brainer,” told CNN. Those are storing and transferring heat to another place other than where it generated. It is obvious that the third Heliogen’s prototype challenge is storing heat at the 1000 degrees Celcius temperature. Molten salts can store heat only from 150 degrees to 600 degrees Celcius.

The Last challenge is how they could transfer this high-temperature heat. Contrary to the fact, if we supposed that they could achieve the high temperature by ignoring chemical and metallurgical challenges, they would not store and transfer the heat to industrial units. Since one of the inevitable consequences of transferring heat is heat dissipation. Heat dissipation occurs when an object that is hotter than other objects is placed in an environment where the heat of the hotter object is transferred to the colder objects and the surrounding environment. Heat dissipation can occur through a variety of means. It means Heligen’s CSP loses 1000 degrees Celcius heat while they are transferring to the consumer place such as cement company.

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Source:@Solar_Edition

Photo:@heliogen & @Solar_Edition

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