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Highly Active and Recyclable Metal Oxide Catalysts for the Prins Condensation of Biorenewable Feedstocks

机译:用于生物期货原料的纯化物凝结的高活性和可回收的金属氧化物催化剂

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摘要

Metal oxides such as Nb2O5, Cr2O3, and especially a Zn-II-Cr-III mixed oxide are demonstrated to be highly active and recyclable heterogeneous catalysts for Prins condensation, which provides a clean, high-yielding route for the synthesis of nopol through the condensation of biorenewable beta-pinene with paraformaldehyde. Zn-Cr mixed oxide with an optimum Zn/Cr atomic ratio of 1: 6 gave 100% nopol selectivity at 97% beta-pinene conversion, with the catalyst easily recovered and recycled. The acid properties of Nb2O5 and Zn-Cr mixed oxide were characterized by the diffuse reflectance IR Fourier transform spectroscopy of adsorbed pyridine and ammonia adsorption microcalorimetry. An appropriate combination of acid-base properties of Zn-Cr mixed oxide is believed to be responsible for its efficiency.
机译:如Nb2O5,Cr2O3,特别是Zn-II-Cr-III混合氧化物的金属氧化物被证明是用于润滑剂的高活性和可回收的非均相催化剂,其为NOPOL提供了一种清洁,高产途径,通过 生物治疗β-甲烯与多聚甲醛的凝胶。 Zn-Cr的最佳Zn / Cr原子比为1:6的混合氧化物在97%的β-凸烯转化率下得到100%Nopol选择性,催化剂容易回收并再循环。 通过吸附的吡啶和氨吸附微量离核的漫反射率IR傅里叶变换光谱,表征了Nb2O5和Zn-Cr混合氧化物的酸性。 据信Zn-Cr混合氧化物的酸碱性质的适当组合被认为是其效率的原因。

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