Machine learning-based techno-econo-environmental analysis of CO2-to-olefins process for screening the optimal catalyst and hydrogen color

Q Yang, J Zhou, R Bao, D Rong, D Zhang - Energy, 2024 - Elsevier
CO 2 to light olefins (CTLO) is an attractive strategy for CO 2 fixation to obtain high-value-
added chemical products. Selecting the optimal catalyst and hydrogen source for the …

Carbon dioxide methylation with toluene to para-xylene process: technical, economic and environmental evaluation

R Liu, J Zhang, G Zhang, W Zhang, J Wang - Chemical Engineering and …, 2024 - Elsevier
The production of para-xylene (PX) through carbon dioxide (CO 2) methylation is a rapidly
developing research field, although there are still several uncertainties. This study proposes …

[HTML][HTML] Comprehensive evaluation of various CO2 capture technologies through rigorous simulation: Economic, equipment footprint, and environmental analysis

SF Chang, HH Chiu, HS Jao, J Shang, YJ Lin… - Carbon Capture Science …, 2025 - Elsevier
The comprehensive evaluation of various CO 2 capture technologies from multiple
perspectives remains limited, yet it is crucial for the successful implementation and …

Reverse water gas shift reaction over Ni/MgAl2O4 catalyst: Study about kinetic and type-2 fuzzy model approaches

A Ranjbar, A Irankhah, A Mosayebi… - Journal of the Taiwan …, 2025 - Elsevier
Background Mitigation of CO 2 via catalytic reverse water gas shift reaction has received
great deal of interest in recent years. The formed CO is usedfor methanol and higher …

Exploration of environmentally friendly processes for converting CO2 into propanol through direct hydrogenation

MT Lee, HH Chiu, BY Yu - Journal of Industrial and Engineering Chemistry, 2024 - Elsevier
This study firstly explores six process configurations for the conversion of CO 2 to propanol
via direct hydrogenation. The variations in the proposed configurations lie in the …

接力催化CO2制备高附加值化学品中催化剂的研究进展.

冯晴, 王延苏, 周微, 刘洋, 孙彦民… - Inorganic Chemicals …, 2024 - search.ebscohost.com
全球工业化快速发展导致二氧化碳(CO2) 的过度排放, 继而引发日益严峻的“温室” 效应,
利用CO2 催化转化为高附加值化学品, 可实现碳资源的循环利用和节能减排. 随着CO2 …