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使用直接合成的硫酸锆催化剂进行生物燃料生产的甘油三酯裂化。

Triglyceride cracking for biofuel production using a directly synthesised sulphated zirconia catalyst.

机构信息

School of Chemical Engineering and Advanced Materials, Newcastle University, Newcastle upon Tyne NE1 7RU, UK.

出版信息

Bioresour Technol. 2011 May;102(10):6313-6. doi: 10.1016/j.biortech.2011.02.040. Epub 2011 Feb 13.

Abstract

In this study, sulphated zirconia was directly synthesised and compared to the conventional wet method of preparation. The surface areas and pore sizes were 169 m(2)/g, 0.61 μm (directly synthesized) and 65 m(2)/g, 0.24 μm (conventional method), respectively. Directly synthesized sulphated zirconia was amorphous, whereas conventionally prepared sulphated zirconia is polycrystalline. Their IR spectra were broadly similar, although the area of the 1250 to 950 cm(-1) band was larger for directly synthesised sulphated zirconia. Not only were conversions greater for directly synthesised sulphated zirconia (63% vs. 42% after 4h), but it exhibited significantly greater yield for fatty acid methyl esters. The percentage yield (after 1h) of methyl esters was 43% for the directly synthesised catalyst and 15% for the conventionally synthesised.

摘要

在这项研究中,直接合成了硫酸锆,并将其与传统的湿法制备进行了比较。比表面积和孔径分别为 169 m(2)/g、0.61μm(直接合成)和 65 m(2)/g、0.24μm(常规方法)。直接合成的硫酸锆为无定形,而常规方法制备的硫酸锆为多晶形。它们的红外光谱非常相似,尽管直接合成的硫酸锆在 1250 至 950cm(-1) 波段的面积更大。不仅直接合成的硫酸锆的转化率更高(4 小时后为 63%,而 42%),而且它还表现出显著更高的脂肪酸甲酯产率。直接合成催化剂的甲酯产率(1 小时后)为 43%,而常规合成的为 15%。

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