TY - JOUR
T1 - A bibliometric analysis of advances in CO2 reduction technology based on patents
AU - Hu, Mingqiang
AU - Mu, Yaling
AU - Jin, Hui
N1 - Publisher Copyright:
© 2024 Elsevier Ltd
PY - 2025/3/15
Y1 - 2025/3/15
N2 - The conversion of CO2 into useful chemicals or fuels has the potential to reduce its concentration in the atmosphere, thereby mitigating the effects of climate change. On the other hand, CO2 represents a plentiful carbon resource that can be employed for the synthesis of chemicals, fuels, and other materials. In recent years, scholars in related fields have devoted considerable attention to CO2 reduction as an effective resource utilisation technology. Following an investigation into the relevant patents, it was determined that the majority of patents related to this field of study fall under the following categories: photocatalytic CO2 reduction technology, electrochemical CO2 reduction technology, thermochemical CO2 reduction technology, biological CO2 reduction technology, and the technology that combines various methods. The increasing number of patent publications reflects the advancement of CO₂ reduction methods in recent years. This paper analyses and summarises CO₂ reduction technologies through representative examples, and the results indicate that the preparation and research of catalytic materials represents the future mainstream trend of the aforementioned four reduction technology patents.
AB - The conversion of CO2 into useful chemicals or fuels has the potential to reduce its concentration in the atmosphere, thereby mitigating the effects of climate change. On the other hand, CO2 represents a plentiful carbon resource that can be employed for the synthesis of chemicals, fuels, and other materials. In recent years, scholars in related fields have devoted considerable attention to CO2 reduction as an effective resource utilisation technology. Following an investigation into the relevant patents, it was determined that the majority of patents related to this field of study fall under the following categories: photocatalytic CO2 reduction technology, electrochemical CO2 reduction technology, thermochemical CO2 reduction technology, biological CO2 reduction technology, and the technology that combines various methods. The increasing number of patent publications reflects the advancement of CO₂ reduction methods in recent years. This paper analyses and summarises CO₂ reduction technologies through representative examples, and the results indicate that the preparation and research of catalytic materials represents the future mainstream trend of the aforementioned four reduction technology patents.
KW - CO reduction method and device innovations
KW - CO reduction technology
KW - Catalytic materials
KW - Patent search
UR - https://www.scopus.com/pages/publications/85213292900
U2 - 10.1016/j.apenergy.2024.125193
DO - 10.1016/j.apenergy.2024.125193
M3 - 文章
AN - SCOPUS:85213292900
SN - 0306-2619
VL - 382
JO - Applied Energy
JF - Applied Energy
M1 - 125193
ER -