Dias Joana M, Alvim-Ferraz Maria C M, Almeida Manuel F
LEPAE, Departamento de Engenharia Química, Faculdade de Engenharia, Universidade do Porto, R. Dr. Roberto Frias, 4200-465 Porto, Portugal.
Bioresour Technol. 2009 Dec;100(24):6355-61. doi: 10.1016/j.biortech.2009.07.025. Epub 2009 Aug 6.
The objective of the present work was: (i) to enable biodiesel production from acid waste lard; (ii) to study the esterification reaction as possible pre-treatment at different temperatures, catalyst amount and reaction times; (iii) to evaluate biodiesel quality according to EN 14214 after basic transesterification of the pre-treated fat; and (iv) to predict the impact of using such waste as raw material in mixture with soybean oil. Temperature and catalyst amount were the most important reaction conditions which mostly affected biodiesel quality, namely viscosity and purity. The selected pre-treatment conditions were 65 degrees C, 2.0 wt% H(2)SO(4) and 5 h, which allowed obtaining a product with a viscosity of 4.81 mm(2) s(-1) and a purity of 99.6 wt%. The proposed pre-treatment was effective to enable acid wastes as single raw materials for biodiesel production with acceptable quality; however, low yields were obtained (65 wt%). Alkali transesterification of a mixture of waste lard and soybean oil resulted in a product with a purity of 99.8 wt% and a yield of 77.8 wt%, showing that blending might be an interesting alternative to recycle such wastes. Also, because in addition to using conventional and relatively economical processes, some biodiesel properties depending on the raw material composition (such as the iodine value) might even be improved.
(i)利用酸性废猪油生产生物柴油;(ii)研究在不同温度、催化剂用量和反应时间下作为可能预处理的酯化反应;(iii)根据EN 14214标准评估预处理脂肪经碱性酯交换反应后的生物柴油质量;(iv)预测将此类废料与大豆油混合作为原料使用的影响。温度和催化剂用量是对生物柴油质量(即粘度和纯度)影响最大的反应条件。选定的预处理条件为65℃、2.0 wt%的H₂SO₄和5小时,由此可获得粘度为4.81 mm² s⁻¹、纯度为99.6 wt%的产物。所提出的预处理有效地使酸性废料能够作为单一原料用于生产质量可接受的生物柴油;然而,产率较低(65 wt%)。废猪油和大豆油混合物的碱催化酯交换反应得到了纯度为99.8 wt%、产率为77.8 wt%的产物,这表明混合可能是回收此类废料的一个有趣的替代方案。此外,由于除了使用常规且相对经济的工艺外,一些取决于原料组成的生物柴油特性(如碘值)甚至可能得到改善。