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A commercially available copper based catalyst is used for the steam reforming.
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Iron based catalyst was used.
In the FT unit, the Fe-based catalyst is used in the low temperature FT (LTFT) slurry reactor to convert syngas to hydrocarbons.
In a direct methanol fuel cell, Pt performs a catalytic activity for both the methanol oxidation reaction and oxygen reduction reaction; therefore, a Pt-based catalyst is used as an anode and a cathode.
In this case, iron-based catalyst is used to produce more products (Zhang et al. 2010).
As free fatty acid (FFA) content in PDSO is 2.12%, alkaline based potassium hydroxide (KOH) catalyst is used for yielding methyl ester from PDSO.
PtO2, also known as Adams' catalyst, is used as a hydrogenation catalyst, specifically for vegetable oils.
A gold based catalyst was formulated for use as a three-way catalyst in gasoline and diesel applications.
Zirconium (Zr) based catalysts are commonly used for the chemoselective conversion of carbonyl groups in the biomass conversion chain, such as ZrO2 (Miñambres et al. 2011), zirconium alkoxides (Zhu et al. 2003), Zr-containing zeolites (Wang et al. 2015), and Zr(OH 4 (Tang et al. 2014), etc.
Rh based catalysts were designed using α-Al2O3 modified with different contents of CeO2 or La2O3 oxides as their supports.
Based on energy distribution analysis, when a catalyst was used, sensible heat decreased while the heat of desorption and heat of vaporization had insignificant changes.
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