4. Conclusions
Combining POMs with ILs should ease the design of some interesting
materials. Herein, the reusability of PW catalyst was improved by its
pairing with organic IL cation instead of supporting it on the mineral
carriers. POM–ILs combining the advantageous characteristics of solid
acids and mineral acids are designed to replace traditional mineral liquid acids, such as sulfuric acid and hydrochloric acid, in organic reaction.
The [QPS]PW, synthesized by pairing of sulfonated isoquinoline cation
with PW anion, was used as a novel thermoregulated recoverable homogeneous catalyst for biodiesel production. Catalyst/product separation is very simple and the catalyst was recovered upon cooling of the
reaction mixture and reused several times without obvious loss of its
catalytic activity. The present catalyst can be used in single step process
for biodiesel production from feedstock with a high FFA and moisture
content. Certainly, many more catalytically active POM–ILs needs to be
identified. The efforts to explore them are underway in our laboratory
4. ConclusionsCombining POMs with ILs should ease the design of some interestingmaterials. Herein, the reusability of PW catalyst was improved by itspairing with organic IL cation instead of supporting it on the mineralcarriers. POM–ILs combining the advantageous characteristics of solidacids and mineral acids are designed to replace traditional mineral liquid acids, such as sulfuric acid and hydrochloric acid, in organic reaction.The [QPS]PW, synthesized by pairing of sulfonated isoquinoline cationwith PW anion, was used as a novel thermoregulated recoverable homogeneous catalyst for biodiesel production. Catalyst/product separation is very simple and the catalyst was recovered upon cooling of thereaction mixture and reused several times without obvious loss of itscatalytic activity. The present catalyst can be used in single step processfor biodiesel production from feedstock with a high FFA and moisturecontent. Certainly, many more catalytically active POM–ILs needs to beidentified. The efforts to explore them are underway in our laboratory
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4. Conclusions
Combining POMs with ILs should ease the design of some interesting
materials. Herein, the reusability of PW catalyst was improved by its
pairing with organic IL cation instead of supporting it on the mineral
carriers. POM–ILs combining the advantageous characteristics of solid
acids and mineral acids are designed to replace traditional mineral liquid acids, such as sulfuric acid and hydrochloric acid, in organic reaction.
The [QPS]PW, synthesized by pairing of sulfonated isoquinoline cation
with PW anion, was used as a novel thermoregulated recoverable homogeneous catalyst for biodiesel production. Catalyst/product separation is very simple and the catalyst was recovered upon cooling of the
reaction mixture and reused several times without obvious loss of its
catalytic activity. The present catalyst can be used in single step process
for biodiesel production from feedstock with a high FFA and moisture
content. Certainly, many more catalytically active POM–ILs needs to be
identified. The efforts to explore them are underway in our laboratory
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