[HTML][HTML] Response surface optimization of hydrogen-rich syngas production by the catalytic valorization of greenhouse gases (CH4 and CO2) over Sr-promoted Ni …

SMW ul Hasnain, AS Farooqi, O Singh… - Energy Conversion and …, 2023 - Elsevier
Dry reforming of methane (DRM) which utilizes CO 2 and CH 4, is a more efficient and
environmentally friendly syngas production method. However, since the technique is …

[HTML][HTML] Using greenhouse gases in the synthesis gas production processes: Thermodynamic conditions

J Szczygieł, K Chojnacka, D Skrzypczak… - Journal of …, 2023 - Elsevier
The work concerns the thermodynamic analysis of CH 4 reforming with various oxidants (CO
2, H 2 O, O 2) in the technological variants DRM (Dry Reforming of Methane) and TRM (Tri …

Design, techno-economic evaluation, and optimisation of renewable methanol plant model: Finland case study

S Emebu, CM Martinez, O Omoregbe… - Chemical Engineering …, 2023 - Elsevier
The current global energy crisis, emphasises the need to simultaneously reduce fossil
energy consumption, accelerate renewable energy development, and mitigate global …

Comparative Performance Analysis of Catalysts for Syngas Production from Biogas: A Simulation Study Using DWSIM

A Adha, A Rahmadi - Periodica Polytechnica Chemical …, 2024 - pp.omikk.bme.hu
This study explored how CH 4/CO 2 feed ratio, temperature, and pressure affect the
conversion of carbon dioxide and methane and the H 2/CO ratio of syngas using simulations …

Experimental and simulation assessment to mitigate the emission of sulfide toxic gases and removing main impurities from Zn+ Pb+ Cu recovery plants

M Saidi, H Kadkhodayan - Chemical Product and Process Modeling, 2023 - degruyter.com
An integrated novel approach employing the Taguchi method and Aspen Plus software has
been applied to evaluate a new configuration for the industrial process of Zn+ Pb+ Cu …