Two-step preparation of Keggin-PW<sub>12</sub>@UIO-66 composite showing high-activity and long-life conversion of soybean oil into biodiesel

Yuxin Zhang, Xinluo Song, Shicong Li, Bangyao Zhao, Liangliang Tong, Yuanrui Wang, Yafeng Li

RSC Advances · 2021 · 13 citations · 33 references

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Abstract

A polyoxometalate acid can be encapsulated into a metal-organic framework to construct a novel kind of solid-acid catalyst. In this work, the two-step method -high-temperature preparation of Zr<sub>6</sub>O<sub>4</sub>(OH)<sub>4</sub>(CH<sub>3</sub>COO)<sub>12</sub> and low-temperature self-assembly-has been adopted to synthesize the PW<sub>12</sub>@UIO-66 composite (PW<sub>12</sub> = H<sub>3</sub>PW<sub>12</sub>O<sub>40</sub>; UIO-66 = Zr<sub>6</sub>O<sub>4</sub>(OH)<sub>4</sub>(OOC-C<sub>6</sub>H<sub>4</sub>-COO)<sub>12</sub>). The as-synthesized PW<sub>12</sub>@UIO-66 composite exhibits highly crystalline, good octahedron morphology, large specific surface area (1960 m<sup>2</sup> g<sup>-1</sup>) and high thermal stability (>500 °C), which clearly demonstrates the potential as a solid-acid catalyst. Additionally, the PW<sub>12</sub>@UIO-66 composite may be accomplished with 85% utilization of H<sub>3</sub>PW<sub>12</sub>O<sub>40</sub> and 95% yield through this synthetic procedure. The performances of the PW<sub>12</sub>@UIO-66 composite are investigated by catalyzing the simultaneous transesterification and esterification of soybean oil into biodiesel. Under the optimal conditions, the conversion of the soybean oil into biodiesel would exceed 90% over the as-synthesized PW<sub>12</sub>@UIO-66 composite. As the crucial indexes for industrial prospects, the recycling and life experiments were surveyed. After 10 times recycling and 4 weeks, the structure and performance of the PW<sub>12</sub>@UIO-66 composite remained unchanged and in the meantime the PW<sub>12</sub>@UIO-66 composite still maintained a high activity to convert soybean oil into biodiesel.

References

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