“…As illustrated in Table S4 (ESI†), the conversion of 4-CP during HDC was improved significantly by increasing the residence time. 4-CP can be almost completely degraded (conversion >99%) at a residence time of 60 s. Compared with the conventional batch reactor requiring a relatively long reaction time (tens of minutes or several hours), 66–68 the flow Pd–Ce/SiO 2 /Ni foam reactor shows a significant advantage of a shorter reaction cycle. It is worth mentioning that the HDC activity in the Pd–Ce/SiO 2 /Ni foam reactor exhibits a low sensitivity to the inlet concentration of 4-CP.…”
Foam reactor shows an attractive prospect for the fast and often diffusion limited process such as hydrodechlorination (HDC). Three Pd-based Ni foam reactors were developed for HDC of chlorophenols (CPs)...
“…As illustrated in Table S4 (ESI†), the conversion of 4-CP during HDC was improved significantly by increasing the residence time. 4-CP can be almost completely degraded (conversion >99%) at a residence time of 60 s. Compared with the conventional batch reactor requiring a relatively long reaction time (tens of minutes or several hours), 66–68 the flow Pd–Ce/SiO 2 /Ni foam reactor shows a significant advantage of a shorter reaction cycle. It is worth mentioning that the HDC activity in the Pd–Ce/SiO 2 /Ni foam reactor exhibits a low sensitivity to the inlet concentration of 4-CP.…”
Foam reactor shows an attractive prospect for the fast and often diffusion limited process such as hydrodechlorination (HDC). Three Pd-based Ni foam reactors were developed for HDC of chlorophenols (CPs)...
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