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Secondly, relatively more strong acid sites are affected by phosphatation than weak acid sites.
(ii) Relatively more strong acid sites are removed by phosphatation than weak acid sites.
Steam-treated and washed P/H-ZSM-5 had 114% more strong acid sites than steam-treated H-ZSM-5.
Relatively more strong acid sites are retained during hydrothermal treatment and the amount of tetrahedrally coordinated framework aluminium (TFAl) species that are expelled from the framework is either relatively or absolutely less than in unmodified samples.
As we have seen in Section 4.2, phosphated zeolites are expected to perform better in catalysis after steam treatment than their non-phosphated counterparts, because they contain more strong acid sites.
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The observations demonstrated that more and stronger acid sites are prone to MA formation.
The use of weak acid treatment is an effective, safe and more preferable may than strong acid.
H category carbons have a lesser density of oxygen-containing functional group, more hydrophobic and showing strong acid adsorption capacity (Mohan et al. 2011b).
Strong acid titrants give more precise results due to a more distinct endpoint.
What's more, the coke mainly formed on strong acid sites, deduced from the substantial decline of strong acid sites.
The results indicate that treatment with the strong acid HCl was more effective in removing surface oxidation than treatment with the weak acid, acetic acid.
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