首页> 外文期刊>ACS Sustainable Chemistry & Engineering >Chicken Feather Derived Novel Support Material for Immobilization of Laccase and Its Application in Oxidation of Veratryl Alcohol
【24h】

Chicken Feather Derived Novel Support Material for Immobilization of Laccase and Its Application in Oxidation of Veratryl Alcohol

机译:鸡羽衍生的新型支撑材料,用于固定漆酶的固定化及其在氧化试剂醇的氧化中的应用

获取原文
获取原文并翻译 | 示例
获取外文期刊封面目录资料

摘要

Application of a biocatalyst at an industrial scale primarily depends on its intrinsic properties, the nature of the support materials, and the scalability of the catalyst. Support materials play an important role in the biocatalytic performance with their mechanical and thermal properties, accessibility, nontoxicity, and ease of derivatization for immobilizion of enzyme. Chicken feather, a readily available poultry waste material, was processed and modified for enzyme immobilization. Free Trametes maxima laccase (TML) was immobilized on the amino-functionalized chicken feather particles (TML@ACFP), and an immobilization yield of 74.24% was achieved. Immobilization improved the pH optimum from 3.0 (TML) to 4.1 (TML@ACFP) and temperature optimum by 5 degrees C. The kinetics and thermodynamics of thermal inactivation of free TML and immobilized TML@ACFP were studied over the temperature range from 55 to 65 degrees C. The apparent half-life (t(1/2)) and decimal reduction time (D-value) for TML was found to be 154.9 and 514.8 min and 256.8 and 853.3 min for TML@ACFP, respectively, at 55 degrees C. The activation energy for deactivation (E-d) was found to be 117.48 and 137.85 kJ/mol for TML and TML@ACFP, respectively. Gibbs free energy (Delta G) and change in enthalpy (Delta H) were increased from 106.58 and 114.75 kJ/mol for TML to 107.96 and 135.12 kJ/mol for TML@ACFP, respectively, demonstrating its higher stability. The biocatalytic transformation was performed with TML@ACFP for the oxidation of lignin model compound veratryl alcohol. So far, this is the first strategy that uses chicken feather waste derived novel support material for immobilization of enzyme and its application in the biotransformation.
机译:生物催化剂在工业规模中的应用主要取决于其内在性质,支撑材料的性质以及催化剂的可扩展性。支持材料在生物催化性能下发挥着重要作用,其机械和热性能,可用性,无毒性和易于衍生化以防止酶。鸡羽是可获得的家禽废料,被加工和改性酶固定化。免费Trametes Maxima Lacase(TML)在氨基官能化的鸡羽粒子上固定(TML @ ACFP),并达到了74.24%的固定产量。固定化从3.0(TML)至4.1(TML @ ACFP)和温度最佳地改善了pH值,最佳5摄氏度。在55至65的温度范围内研究了游离TML和固定的TML @ ACFP的热失血的动力学和热力学。 TML的表观半衰期(T(1/2))和小数减少时间(D值)被发现为154.9和514.8分钟,分别为55度,分别为TML @ ACFP的256.8和853.3分钟C.发现激活能量(ED)的激活能量分别为TML和TML @ ACFP的117.48和137.85 kJ / mol。 Gibbs自由能(Delta G)和焓(Delta H)的变化分别从106.58和114.75 kJ / mol增加到107.96和135.12 kJ / mol的TML @ ACFP,证明其稳定性更高。用TML @ ACFP进行生物催化转化,用于木质素模型复合维拉醇醇的氧化。到目前为止,这是第一种使用鸡羽废废衍生的新型支持材料来固定酶及其在生物转化中的应用。

著录项

相似文献

  • 外文文献
  • 中文文献
  • 专利
获取原文

客服邮箱:kefu@zhangqiaokeyan.com

京公网安备:11010802029741号 ICP备案号:京ICP备15016152号-6 六维联合信息科技 (北京) 有限公司©版权所有
  • 客服微信

  • 服务号