Pollution is damaging the environment rapidly and continuously due to the usage of automobiles, industries, and power plants in this modern era. The extensive use of fossil fuels is primarily responsible for creating this alarming situation for the entire planet. As a result, carbon footprints are increasing day by day, resulting in climate change, which is a threat to mankind. There is no single cure for all means of climate change. Researchers have experimented with various innovative technologies in a continuous process. This paper uses three techniques that are integrated to achieve a sustainable, environmentally friendly carbon capture system. The development of a solar-assisted architecture system generates heat energy that extracts carbon dioxide from greenhouse gases (GHG) even at night. This ensures a sustainable system that depends on renewable energy sources, resulting in low carbon emissions in the process. This approach is more efficient and cost-effective for the process industries; offering an alternative to bridging the research gap in utilizing clean solar energy to convert high-waste into high-value products in a cyclic process that can be commercialized for an economic boost to society and the nation, ultimately ensuring an eco-friendly, cost-efficient, and sustainable future.

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Solar-Assisted Carbon Capture Architecture and Technology (SACCAT)

  • Himmat Bhatia

摘要

Pollution is damaging the environment rapidly and continuously due to the usage of automobiles, industries, and power plants in this modern era. The extensive use of fossil fuels is primarily responsible for creating this alarming situation for the entire planet. As a result, carbon footprints are increasing day by day, resulting in climate change, which is a threat to mankind. There is no single cure for all means of climate change. Researchers have experimented with various innovative technologies in a continuous process. This paper uses three techniques that are integrated to achieve a sustainable, environmentally friendly carbon capture system. The development of a solar-assisted architecture system generates heat energy that extracts carbon dioxide from greenhouse gases (GHG) even at night. This ensures a sustainable system that depends on renewable energy sources, resulting in low carbon emissions in the process. This approach is more efficient and cost-effective for the process industries; offering an alternative to bridging the research gap in utilizing clean solar energy to convert high-waste into high-value products in a cyclic process that can be commercialized for an economic boost to society and the nation, ultimately ensuring an eco-friendly, cost-efficient, and sustainable future.