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Application of statistical modeling for the production of highly pure rhamnolipids using magnetic biocatalysts: Evaluating its efficiency as a bioremediation agent

机译:统计建模应用磁性生物催化剂的高纯脊髓屈肌的应用:评估其效率作为生物修复剂

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摘要

In the present study, highly pure rhamnolipids (RLs) was produced using biocatalysts immobilized on aminofunctionalized chitosan coated magnetic nanoparticles. Upon immobilizing naringinase and Candida antarctica lipase B (CaLB) under the optimized conditions, an enhanced operational stability with biocatalytic loads of 935 ? 2.4 U/g (naringinase) and 825 ? 4.1 U/g (CaLB) were achieved. Subsequently, the immobilized biocatalysts were utilized sequentially in a two-step RLs synthesis process. The key parameters involved in RLs production were optimized using artificial neural network (ANN) coupled genetic algorithm (GA) and were compared with composite central design (CCD). On validating the efficiency of both models, mean square errors of 1.58% (CCD) and 1.04% (ANN) were obtained. Optimization of parameters by ANN-GA resulted in 1.2-fold increase in experimental RLs yield (80.53%), which was 1.05-fold higher when compared to CCD model. Further, to establish the efficiency of RLs as a bioremediation agent, it was utilized as washing agent. It was observed that at a soil to RLs volume of 1:05, RLs concentration of 0.4 mg/mL, a 95.35 ? 1.33% removal of Total Petroleum Hydrocarbons (TPHs) was obtained at 35 ? and 160 rpm in 75 min. Thus, this strategy provides an efficient biocatalytic toolbox for RLs synthesis, which can be effectively used as a bioremediation agent.
机译:在本研究中,使用固定在氨基官能化的壳聚糖涂覆的磁性纳米粒子上固定的生物催化剂制备高纯耳啉吡啶虫(RLS)。在优化条件下固定柚皮酶和念珠菌抗原脂肪酶B(CALB)后,具有935的生物催化负荷增强的操作稳定性? 2.4 u / g(naringinase)和825? 4.1实现了U / G(CALB)。随后,在两步RLS合成过程中依次使用固定的生物催化剂。使用人工神经网络(ANN)耦合遗传算法(GA)进行了优化了RLS生产的关键参数,并与复合中心设计(CCD)进行了优化。在验证两种型号的效率时,获得了1.58%(CCD)和1.04%(ANN)的平均方误差。 Ann-Ga的参数优化导致实验RLS产率(80.53%)增加1.2倍,与CCD模型相比,该实验RLS产量(80.53%)增加1.05倍。此外,为了建立RLS作为生物修复剂的效率,它用作洗涤剂。观察到,在1:05的RLS体积的土壤中,RLS浓度为0.4mg / ml,a 95.35?在35℃下获得1.33%的除去总石油烃(TPH)?和75分钟的160 rpm。因此,该策略为R1S合成提供了一种有效的生物催化工具箱,其可以有效地用作生物化剂。

著录项

  • 来源
    《Journal of Hazardous Materials》 |2021年第15期|125323.1-125323.12|共12页
  • 作者单位

    SRM Inst Sci & Technol SRM IST Sch Bioengn Integrated Bioproc Lab Kattankulathur 603203 Tamil Nadu India;

    SRM Inst Sci & Technol SRM IST Sch Bioengn Integrated Bioproc Lab Kattankulathur 603203 Tamil Nadu India;

    Univ Lisbon Fac Farm Res Inst Med iMed ULisboa Av Prof Gama Pinto P-1649003 Lisbon Portugal;

    Khalifa Univ Coll Engn Dept Chem Engn Abu Dhabi 127788 U Arab Emirates;

    SRM Valliammai Engn Coll Dept Chem Chennai 603203 Tamil Nadu India;

    SRM Inst Sci & Technol SRM IST Sch Bioengn Integrated Bioproc Lab Kattankulathur 603203 Tamil Nadu India;

  • 收录信息 美国《科学引文索引》(SCI);美国《工程索引》(EI);美国《生物学医学文摘》(MEDLINE);美国《化学文摘》(CA);
  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类
  • 关键词

    Rhamnolipids; Biocatalysts; Immobilization; Modeling; Soil washing;

    机译:rhamnolipids;生物催化剂;固定化;建模;土壤洗涤;
  • 入库时间 2022-08-19 02:22:33

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