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Effects of Reaction Operation Policies on Properties of Core–Shell Polymer Supports Used for Preparation of Highly Active Biocatalysts
Macromolecular Reaction Engineering ( IF 1.5 ) Pub Date : 2019-12-12 , DOI: 10.1002/mren.201900054
Martina Costa Cerqueira Pinto , Nathany Lisbôa Souza e Castro , Eliane Pereira Cipolatti , Roberto Fernandez‐Lafuente , Evelin Andrade Manoel , Denise Maria Guimarães Freire , José Carlos Pinto

In the original published article on Table 9 the experimental errors of the biocatalyst's esterification activities weren't divided to ten.

The correct Table 9 should be as follow.

Table 9. Immobilization parameters obtained for the distinct enzyme immobilizations
Supports Ue [U gsupport−1] Utheo [U gsupport−1] η [%] Ra [%] Initial protein concentration [mg gsupport−1] Protein concentration on the support [mg gsupport−1] Ahyd [U gbio−1] Aester [U gbio−1]
Reaction 8_1 Low amount of enzyme 341.6 ± 48.6 340.9 99.8 6.1 19.5 ± 2.0 18.3 20.7 ± 1.3 588 ± 307
Reaction 8_2 Intermediary amount of enzyme 521.8 ± 60.6 519.3 99.5 5.6 26.5 ± 1.4 24.5 28.9 ± 0.8 2677 ± 208
Reaction 8_3 High amount of enzyme 709.6 ± 70.6 706.7 99.6 4.9 43.3 ± 0.0 21.2 34.7 ± 3.8 3565 ± 581
Accurel 867.9 ± 97.6 345.8 39.8 4.2 56.0 ± 1.3 20.1 14.5 ± 9.3 453 ± 73
Novozym 435 7.6 ± 1.8 2385 ± 307


中文翻译:

反应操作策略对用于制备高活性生物催化剂的核壳聚合物载体性能的影响

在表9的原始发表的文章中,生物催化剂的酯化活性的实验误差未分为十。

正确的表9如下。

表9.针对不同酶固定化获得的固定化参数
支持 U e [UG支持-1 ] U theo [UG support -1 ] η[%] R a [%] 初始蛋白质浓度[mg g support -1 ] 载体上的蛋白质浓度[mg g载体-1 ] 水合[C克生物-1 ] [C克生物-1 ]
反应8_1酶含量低 341.6±48.6 340.9 99.8 6.1 19.5±2.0 18.3 20.7±1.3 588±307
反应8_2酶的中间量 521.8±60.6 519.3 99.5 5.6 26.5±1.4 24.5 28.9±0.8 2677±208
反应8_3大量酶 709.6±70.6 706.7 99.6 4.9 43.3±0.0 21.2 34.7±3.8 3565±581
Accurel 867.9±97.6 345.8 39.8 4.2 56.0±1.3 20.1 14.5±9.3 453±73
诺沃辛435 7.6±1.8 2385±307
更新日期:2019-12-12
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