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Adsorption of acetic acid and methanol on H-Beta zeolite: An experimental and theoretical study

机译:H-β沸石对乙酸和甲醇的吸附:实验与理论研究

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摘要

The adsorption of acetic acid and methanol on H-Beta zeolite as a model of reaction of first step of the esterification reaction has been investigated with TGA-IR coupled, ATR-FTIR spectroscopy together with Density Functional Theory (DFT) calculations at M06-2X/6-31G(D) level. From the theoretical viewpoint, different models of adsorption of acetic acid and methanol on the surface of H-Beta zeolite are studied. TGA-IR experiments show that both reactants are molecularly adsorbed on H-Beta, beyond 200 C for methanol and 250 degrees C for acetic acid other species are also formed due to the surface reactivity being strongly adsorbed on the catalyst. Results from ATR-EFIR spectroscopy and theoretical calculations reveal that the predominant adsorption mode of acetic acid involves the ads_AA(C=0) complex where the acetic acid is molecularly adsorbed by the carbonyl group on the Bronsted acid site of catalyst, and the OH group is oriented to the Al-O-Si bridge. The mechanism of adsorption of both acetic acid and methanol is also discussed at molecular level. The complexes where the acetic acid is adsorbed by the carbonyl group are clearly the most stable one. (C) 2017 Elsevier Inc. All rights reserved.
机译:用TGA-IR耦合,ATR-FTIR光谱与M06-2X的密度泛函理论(DFT)计算,研究了乙酸和甲醇的乙酸和甲醇作为酯化反应的第一步的反应模型。 / 6-31g(d)水平。从理论观点来看,研究了不同模型的H-Beta沸石表面上的乙酸和甲醇的吸附。 TGA-IR实验表明,两种反应物在H-β上吸附,超过200℃,对于甲醇而言,对于乙酸的乙酸250℃也形成了由于表面反应性强烈地吸附在催化剂上的表面反应性。 ATR-EFIR光谱和理论计算结果表明,乙酸的主要吸附模式涉及ADS_AA(C = 0)络合物,其中乙酸在催化剂的刚性酸部位上的羰基和OH基团上的羰基吸附定向到Al-O-Si桥梁。在分子水平上还讨论了乙酸和甲醇的吸附机制。乙酸被羰基吸附的络合物显然是最稳定的络合物。 (c)2017年Elsevier Inc.保留所有权利。

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