首页> 外文会议>Biomolecular catalysis : Nanoscale science and technology >Chapter 20 Soybean Oil Biofuel Cell: Utilizing Lipoxygenase Immobilized by Modified Nafion~? to Catalyze the Oxidation of Fatty Acids for Biofuel Cells
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Chapter 20 Soybean Oil Biofuel Cell: Utilizing Lipoxygenase Immobilized by Modified Nafion~? to Catalyze the Oxidation of Fatty Acids for Biofuel Cells

机译:第20章豆油生物燃料电池:利用修饰的Nafion固定化的脂氧合酶〜?催化用于生物燃料电池的脂肪酸氧化

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The goal of this research was to build a biofuel cell that produces power from lipoxygenase enzymes catalyzing the oxidation of the main components of soybean oil. In this research, Nafion~? was modified by ammonium salts to immobilize the lipoxygenase enzyme and allow facile transport of the fuel through the membrane to the enzyme. Modified Nafion~? retains the original properties of Nafion and improves the surface conditions of the electrode for an enzyme. Bioanodes are fabricated by coating carbon supports with lipoxygenase immobilized within the modified Nafion~?. Lipoxygenase catalyzes the oxidation of the fatty acid components of soybean oil. Ultimately, the goal will be to optimize the soybean oil bioanode to optimize power output and produce a stable bioanode for the fuel cell.
机译:这项研究的目的是建立一种生物燃料电池,该生物燃料电池可通过脂氧化酶来催化大豆油主要成分的氧化。在这项研究中,Nafion〜?通过铵盐修饰的硫代磷酸酯可固定脂氧合酶,并允许燃料通过膜轻松运输至酶。改良的Nafion〜?保留了Nafion的原始特性并改善了酶电极的表面状况。生物阳极是通过用固定在修饰的Nafion中的脂氧合酶涂覆碳载体来制备的。脂氧合酶催化大豆油中脂肪酸成分的氧化。最终,目标是优化大豆油生物阳极,以优化功率输出并为燃料电池生产稳定的生物阳极。

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