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Elucidating the effects of laccase-modifying compounds treatments on bast and core fibers in flax pulp

机译:阐明漆酶修饰化合物处理对亚麻纸浆中韧皮和核心纤维的影响

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Laccases in combination with various chemical compounds have been tested with a view to obtain environmental friendly, high-value paper products from unbleached flax pulp, which is currently being assessed as a raw material for biotechnological innovation. With the aim of better understanding the effects of violuric acid (VA) and p-coumaric acid (PCA) on flax pulp, changes in the chemical composition of the two major fiber types it contains were assessed. Following classification, the initial pulp was split into two fractions according to fiber size, namely: bast (long) fibers and core (short) fibers. Fiber size was found to significantly influence the properties of pulp and it response to various laccase treatments. The laccase-PCA treatment substantially increased kappa number (KN) and color in both fiber fractions, which suggests grafting of the phenolic compound onto fibers. On the other hand, the laccase-VA treatment produced long fibers with a low lignin content (KN=1.3) and a high brightness (5% points higher than for the control fraction), which testifies to its bleaching efficiency. Both biotreatments produced long fibers containing highly crystalline cellulose and caused HexA removal from global and short fibers. On the other hand, the laccase treatments caused no morphological changes in the fibers, the integrity of which was largely preserved. As shown here, laccase acts as polymerization agent with PCA and as delignification agent with VA; also, the two enzymes systems act differently on bast and core fibers.
机译:已对漆酶与各种化合物的组合进行了测试,目的是从未漂白的亚麻纸浆中获得环保,高价值的纸产品,目前该亚麻纸浆已被评估为生物技术创新的原材料。为了更好地了解紫尿酸(VA)和对香豆酸(PCA)对亚麻浆的影响,评估了其所含的两种主要纤维类型的化学组成的变化。分类后,根据纤维尺寸将初始纸浆分为两部分,即韧皮(长)纤维和芯(短)纤维。发现纤维尺寸显着影响纸浆的性质及其对各种漆酶处理的响应。漆酶-PCA处理可显着提高两种纤维组分的Kappa值(KN)和颜色,这表明酚类化合物已接枝到纤维上。另一方面,漆酶-VA处理产生的长纤维具有低的木质素含量(KN = 1.3)和高的亮度(比对照部分高5个百分点),这证明了其漂白效率。两种生物处理均产生包含高度结晶纤维素的长纤维,并导致从整体和短纤维中去除HexA。另一方面,漆酶处理未引起纤维的形态变化,其完整性被很大程度上保留。如此处所示,漆酶与PCA一起充当聚合剂,与VA一起充当脱木素剂;同样,两种酶系统对韧皮和核心纤维的作用也不同。

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