Laboratory of Biocatalysis, Federal University of São João del Rei, PO Box 56, 35701-970, Sete Lagoas, MG, Brazil.
Int J Biol Macromol. 2012 Apr 1;50(3):503-11. doi: 10.1016/j.ijbiomac.2012.01.020. Epub 2012 Jan 20.
Five microbial lipase preparations from several sources were immobilized by hydrophobic adsorption on small or large poly-hydroxybutyrate (PHB) beads and the effect of the support particle size on the biocatalyst activity was assessed in the hydrolysis of olive oil, esterification of butyric acid with butanol and transesterification of babassu oil (Orbignya sp.) with ethanol. The catalytic activity of the immobilized lipases in both olive oil hydrolysis and biodiesel synthesis was influenced by the particle size of PHB and lipase source. In the esterification reaction such influence was not observed. Geobacillus thermocatenulatus lipase (BTL2) was considered to be inadequate to catalyze biodiesel synthesis, but displayed high esterification activity. Butyl butyrate synthesis catalyzed by BTL2 immobilized on small PHB beads gave the highest yield (≈90 mmol L(-1)). In biodiesel synthesis, the catalytic activity of the immobilized lipases was significantly increased in comparison to the free lipases. Full conversion of babassu oil into ethyl esters was achieved at 72 h in the presence of Pseudozyma antarctica type B (CALB), Thermomyces lanuginosus lipase (Lipex(®) 100 L) immobilized on either small or large PHB beads and Pseudomonas fluorescens (PFL) immobilized on large PHB beads. The latter preparation presented the highest productivity (40.9 mg of ethyl esters mg(-1) immobilized protein h(-1)).
五种来自不同来源的微生物脂肪酶制剂通过疏水吸附固定在小或大的聚羟基丁酸酯(PHB)珠上,并评估了载体颗粒大小对橄榄油水解、丁酸与丁醇酯化以及巴巴苏油(Orbignya sp.)与乙醇转酯化反应中生物催化剂活性的影响。固定化脂肪酶在橄榄油水解和生物柴油合成中的催化活性受 PHB 和脂肪酶来源的颗粒大小的影响。在酯化反应中,没有观察到这种影响。地衣芽孢杆菌脂肪酶(BTL2)被认为不足以催化生物柴油合成,但显示出高酯化活性。BTL2 固定在小 PHB 珠上催化丁酸丁酯合成,产率最高(≈90 mmol L(-1))。在生物柴油合成中,与游离脂肪酶相比,固定化脂肪酶的催化活性显著提高。在南极假丝酵母 B 型(CALB)、Thermomyces lanuginosus 脂肪酶(Lipex(®) 100 L)固定在小或大的 PHB 珠上,以及荧光假单胞菌(PFL)固定在大 PHB 珠上的存在下,巴巴苏油完全转化为乙酯,在 72 h 内实现。后一种制剂的生产能力最高(40.9 mg 乙酯 mg(-1)固定化蛋白 h(-1))。