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기록

HIGH-EFFICIENCY CARBON DIOXIDE (CO2) CAPTURE CERAMIC FILTRATION SYSTEM AND APPLICATION METHOD THEREOF

발명심사 중
10청구항 · 2 독립항
§ Ⅰ

개요

발명자

HSU-LING PENG; TSUNG-WEI LIN

IPC 분류

B1D 53/62B1D 53/4B1D 53/82B1J 20/4B1J 20/20B1J 20/30

CPC 분류

B1D53/62B1D53/407B1D53/82B1J20/41B1J20/20B1J20/3007B1J20/3021B1J20/3078B1D2251/404B1D2251/602B1D2253/102B1D2253/34B1D2257/504B1D2258/1B1D2258/2

The present invention relates to a high-efficiency carbon dioxide (CO) capture ceramic filtration system and its application method. The system includes a carbon capture exhaust pipe configured to store a COcapture material. The key materials of the COcapture material are dolomite powder, coral powder, shell powder combined with pottery clay, clay, coffee grounds, and activated carbon with the porous structure and plasticity. It constitutes a low-cost, high-efficiency filter material rich in calcium oxide for carbon dioxide capture, which can be effectively activated at low temperatures. Through the moisture generated during combustion, calcium oxide is converted into calcium hydroxide while capturing the carbon dioxide produced during the combustion. The overall application does not require additional construction of other complex filtration devices to achieve high-efficiency carbon dioxide capture rates. It can contribute to reducing carbon emissions and has extensive potential for achieving sustainable development of environmental protection.

원문 (중국어)

The present invention relates to a high-efficiency carbon dioxide (CO) capture ceramic filtration system and its application method. The system includes a carbon capture exhaust pipe configured to store a COcapture material. The key materials of the COcapture material are dolomite powder, coral powder, shell powder combined with pottery clay, clay, coffee grounds, and activated carbon with the porous structure and plasticity. It constitutes a low-cost, high-efficiency filter material rich in calcium oxide for carbon dioxide capture, which can be effectively activated at low temperatures. Through the moisture generated during combustion, calcium oxide is converted into calcium hydroxide while capturing the carbon dioxide produced during the combustion. The overall application does not require additional construction of other complex filtration devices to achieve high-efficiency carbon dioxide capture rates. It can contribute to reducing carbon emissions and has extensive potential for achieving sustainable development of environmental protection.