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采用水合技术提高 CaO 的酯交换活性。

Improving transesterification acitvity of CaO with hydration technique.

机构信息

National Metal and Materials Technology Center (MTEC), 114 Thailand Science Park, Phahonyothin Road, Klong 1, Klong Luang, Pathumthani 12120, Thailand.

出版信息

Bioresour Technol. 2010 May;101(10):3784-6. doi: 10.1016/j.biortech.2009.12.114. Epub 2010 Jan 20.

Abstract

An efficient technique for increasing the transesterification activity of CaO obtained from calcination of CaCO(3) was proposed in order to make them highly suitable for use as heterogeneous catalysts for biodiesel production. CaO was refluxed in water followed by the synthesis of the oxide from hydroxide species. The characterization results indicate that this procedure substantially increases both the specific surface area and the amount of basic site. Hydration and subsequent calcination also generates a new calcium oxide with less crystalline. Transesterification of palm olein was used to determine the activity of catalysts to show that the decomposed-hydrated CaO exhibits higher catalytic activity than CaO generated from calcination of CaCO(3). The methyl ester content was enhanced 18.4 wt.%.

摘要

为了提高 CaCO3 煅烧得到的 CaO 的酯交换活性,使其更适合用作生物柴油生产的多相催化剂,提出了一种有效的技术。将 CaO 在水中回流,然后从氢氧化物物种合成氧化物。表征结果表明,该方法显著提高了比表面积和碱性位数量。水合和随后的煅烧还生成了结晶度较低的新氧化钙。用棕榈油进行酯交换反应来确定催化剂的活性,结果表明,分解-水合 CaO 比 CaCO3 煅烧生成的 CaO 具有更高的催化活性。甲酯含量提高了 18.4wt%。

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