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Functionalized Biochar with Superacidity and Hydrophobicity as a Highly Efficient Catalyst in the Synthesis of Renewable High-Density Fuels

机译:功能化的生物炭,具有高效性和疏水性作为一种高效的催化剂,可再生高密度燃料合成

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摘要

Developing sulfonic-acid-supported catalysts with superacidity and hydrophobicity is of great importance for many acid-catalyzed reactions where H2O is generated. Herein, a novel hydrophobic superacidic biochar is first reported via a diazo grafting method using halogen-substituted amino-benzenesulfonic acids and 4-tert-butylaniline as sulfonating and hydrophobic reagents, respectively. The resultant biochar has a high Brunauer-Emmett-Teller (BET) surface area (400-700 m(2).g(-1)), acid concentration (up to 1.5 mmol.g(-1)), and H2O contact angle (above 134 degrees). The synergistic effect of superacidity and hydrophobicity greatly improves the catalytic alkylation reactions of 4-ethylphenol-phenylmethanol and 2-methylfuran-cyclic ketones for the synthesis of renewable high-density fuels. The hydrophobic superacidic biochar shows higher catalytic conversion and selectivity than those of its counterparts without hydrophobicity or superacidity. Meanwhile, it is also far superior to commercial Amberlyst-15 and the traditional sulfonated Finally, the catalyst is stable without obvious activity reduction after cycling.
机译:具有耐饱和度和疏水性的磺酸支负载的催化剂对于产生H2O的许多酸催化反应具有重要意义。在此,首先通过使用卤素取代的氨基 - 苯磺酸和4-叔丁基苯胺作为磺化和疏水试剂的重氮移植方法报道新的疏水性超酸生物炭。得到的Biochar具有高Brunauer-Emmett-Teller(Bet)表面积(400-700m(2).g(-1)),酸浓度(高达1.5mmol.g(-1))和H2O接触角度(高于134度)。耐饱和度和疏水性的协同效应大大改善了4-乙基苯酚 - 苯基甲醇和2-甲基杂环酮的催化烷基化反应,用于合成可再生高密度燃料。疏水性超酸生物炭表明催化转化和选择性较高,而不是其对应物而没有疏水性或脂肪率的选择性。同时,它也远远优于商业疫苗 - 15,最终传统的磺化,催化剂在循环后无明显减少活性。

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