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A strategy for environmentally-friendly removal of impurities from cotton based on biocatalytic reaction in supercritical carbon dioxide

机译:基于超临界二氧化碳中生物催化反应的棉花杂质环保型杂质策略

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A novel and environmentally-friendly strategy for integrated bio-treatment (namely the biodesizing and bioscouring) of grey cotton in one-step to degrade and/or remove impurities was constructed on the basis of catalytic reactions from mixed enzymes, by employing reverse microemulsion in supercritical carbon dioxide fluid (SCF-CO2) media as an alternative to heavily polluting wet-chemical processes. Moreover, a subsequent supercritical washing procedure was also involved. Then the proposed strategy was further explored and characterized by the observation of the formation of reverse microemulsion, impurity removal efficiency and wickability of the treated substrate, the results of static water contact angle measurements, scanning electron microscopy (SEM) and X-ray photoelectron spectroscopy (XPS) analysis. The results demonstrate that an efficient degradation and/or removal of various impurities could be achieved by the proposed strategy from grey cotton with enhanced properties. A successful formation of microemulsion for transfer of enzymes into supercritical carbon dioxide was observed with the presence of an emulsifying agent of sodium bis (2-ethylhexyl) sulfosuccinate (AOT)and the auxiliary of ethanol. The efficiency of impurity removal could also be improved at an appropriate system temperature and composite enzyme dosage, as well as by a subsequent washing in SCF-CO2 media. Furthermore, the results of the static water contact angle measurement, XPS spectra and SEM analysis further confirmed the feasibility, validation and reliability of the constructed strategy. Additionally, an integrated removal mechanism was also proposed for impurity degradation and/or removal from grey cotton, with mixed enzymes transferred by reverse microemulsion in supercritical carbon dioxide media.
机译:在混合酶催化反应的基础上,构建了一种新的、环境友好的灰棉综合生物处理(即生物退浆和生物整理)策略,一步降解和/或去除杂质,通过在超临界二氧化碳流体(SCF-CO2)介质中使用反相微乳液作为高污染湿化学工艺的替代品。此外,还涉及随后的超临界清洗程序。然后,通过观察反相微乳液的形成、处理后基质的杂质去除效率和芯吸性、静态水接触角测量结果、扫描电子显微镜(SEM)和X射线光电子能谱(XPS)分析,对所提出的策略进行了进一步探索和表征。结果表明,所提出的策略可以有效地降解和/或去除灰棉中的各种杂质,并提高其性能。在双(2-乙基己基)磺基琥珀酸钠(AOT)乳化剂和乙醇助剂的存在下,成功地形成了将酶转化为超临界二氧化碳的微乳液。在合适的系统温度和复合酶用量下,以及在SCF-CO2介质中进行后续清洗,也可以提高杂质去除效率。此外,静态水接触角测量、XPS光谱和SEM分析的结果进一步证实了所构建策略的可行性、有效性和可靠性。此外,还提出了一种在超临界二氧化碳介质中通过反相微乳液转移混合酶的综合去除机理,用于降解和/或去除灰棉中的杂质。

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