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Electrochemical Acidification of Kraft Black Liquor: Effect of Fouling and Chemical Cleaning on Ion Exchange Membrane Integrity

机译:牛皮油黑液的电化学酸化:污垢和化学清洁对离子交换膜完整性的影响

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摘要

In the essence of the green biorefinery concept an interest in further implementations of wood compounds has gained a lot of attention. Therefore, it is crucial to identify and develop efficient and eco-friendly extraction processes. In particular in a lignin biorefinery plant, electrochemical acidification of Kraft black liquor via electrodialysis with bipolar membrane is considered as a sustainable avenue to acidify the Kraft black liquor and subsequently extract lignin. Even though the application of this acidification technique results in less chemical consumption than the acid precipitation method, the colloidal fouling of the ion exchange (bipolar and cation exchange) membranes, adversely affects its performance. This study was performed to determine the influence of the colloidal fouling and chemical cleaning process on the integrity of the membranes. Four commercially available cation exchange membranes and one bipolar membrane were examined. Membrane analyses, such as thickness, contact angle, ion exchange capacity and electrical resistance measurements, as well as scanning electron microscopy with energy dispersive X-ray analysis, were carried out. It was found that changing the type of the cation exchange membrane cannot eliminate the fouling phenomenon and a chemical cleaning cycle is required. Caustic soda and fresh diluted black liquor were tested as the cleaning solutions. The initial properties of the bipolar membrane and two cation-exchange membranes (CMB and Nafion 324) were reestablished after the chemical cleaning step. Furthermore, in terms of sustainability concept, the utilization of in situ and free of charge fresh diluted black liquor, as the cleaning agent, can be an interesting eco-efficient approach.
机译:在绿色生物遗炼概念的本质中,对木材化合物的进一步实施的兴趣取得了很多关注。因此,识别和开发有效和生态友好的提取过程至关重要。特别是在木质素生物植物植物中,通过电渗析用双极膜通过电渗析的电化学酸化被认为是可持续途径,以酸化牛皮甘油,随后提取木质素。尽管这种酸化技术的应用导致比酸沉淀法的化学消耗较少,但离子交换(双极和阳离子交换)膜的胶体污垢也不利地影响其性能。进行该研究以确定胶体污垢和化学清洁过程对膜的完整性的影响。检查四种市售的阳离子交换膜和一种双极膜。进行膜分析,例如厚度,接触角,离子交换容量和电阻测量,以及具有能量分散X射线分析的扫描电子显微镜。发现改变阳离子交换膜的类型不能消除污垢现象,并且需要化学清洁循环。测试苛性钠和新鲜稀释的黑液作为清洁溶液。在化学清洁步骤后,重新建立了双极膜和两个阳离子交换膜(CMB和Nafion 324)的初始性质。此外,在可持续发展概念方面,原位利用和免费的新鲜稀释的黑液,作为清洁剂,可以是一个有趣的生态有效的方法。

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  • 作者单位

    Polytech Montreal Res Unit Energy Efficiency &

    Sustainable Implemen Dept Chem Engn 2900 Blvd Edouard Montpetit Montreal PQ H3T 1J4 Canada;

    Univ Laval Inst Nutr &

    Funct Foods INAF Lab Food Proc &

    Electromembrane Proc LTAPEM Dept Food Sci Pavillon Paul Comtois 2425 Rue Agr Ste Foy PQ G1V 0A6 Canada;

    Univ Laval Inst Nutr &

    Funct Foods INAF Lab Food Proc &

    Electromembrane Proc LTAPEM Dept Food Sci Pavillon Paul Comtois 2425 Rue Agr Ste Foy PQ G1V 0A6 Canada;

    Polytech Montreal Res Unit Energy Efficiency &

    Sustainable Implemen Dept Chem Engn 2900 Blvd Edouard Montpetit Montreal PQ H3T 1J4 Canada;

    Polytech Montreal Res Unit Energy Efficiency &

    Sustainable Implemen Dept Chem Engn 2900 Blvd Edouard Montpetit Montreal PQ H3T 1J4 Canada;

  • 收录信息
  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类 化学工业;
  • 关键词

    Bipolar membrane; Electrodialysis; Membrane fouling; Chemical cleaning; Lignin extraction; Biorefineg;

    机译:双极膜;电渗透;膜污垢;化学清洗;木质素提取;BIOREFINEG;

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