首页> 外文期刊>Bioresource Technology: Biomass, Bioenergy, Biowastes, Conversion Technologies, Biotransformations, Production Technologies >Construction of luffa sponge-based magnetic carbon nanocarriers for laccase immobilization and its application in the removal of bisphenol A
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Construction of luffa sponge-based magnetic carbon nanocarriers for laccase immobilization and its application in the removal of bisphenol A

机译:基于漆酶固定化的Luffa海绵磁碳纳米载体的构建及其在去除双酚A中的应用

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摘要

The raw material of resin, Bisphenol A (BPA), is an endocrine-disrupting compound that can be continuously released into the environment and directly harms health. In this study, luffa sponge was used as the raw material to prepare magnetic carbon chemicals for laccase immobilization and BPA degradation. The MLC-1 was synthesized by one-step carbonization-magnetization method, which showed good magnetic properties and a strong load capacity for laccase. Compared with free laccase, Laccase@MLC-1 showed stronger thermal stability, better acid-tolerate performance and reusability. Moreover, Laccase@MLC-1 showed higher BPA degradation efficiency than free laccase. 100 mg/L of BPA can be completely removed by Laccase@MLC-1 in 4 h, while only 62.70% of BPA was removed by the same amount of free laccase. By improving reuse strategies, a complete BPA degradation ratio was obtained in each reoperation process. All results proved that Laccase@MLC-1 might be a suitable biocatalyst candidate for BPA removal.
机译:树脂,双酚A(BPA)的原料是内分泌破坏化合物,可以连续释放到环境中并直接危害健康。在这项研究中,Luffa海绵用作原料,为漆酶固定化和BPA降解制备磁性碳化学物质。通过一步碳化 - 磁化法合成MLC-1,其显示出良好的磁性和漆酶的强负载能力。与自由漆酶相比,漆酶@ MLC-1显示出更强的热稳定性,更好的酸性性能和可重用性。此外,LACCASE @ MLC-1显示比自由漆酶更高的BPA劣化效率。通过漆酶@ MLC-1在4小时内完全除去100mg / L的BPA,而仅通过相同量的自由漆酶除去62.70%的BPA。通过改善再利用策略,在每种再运产中获得完整的BPA降解比。所有结果证明,漆酶@ MLC-1可能是BPA去除的合适生物催化剂候选者。

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