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Highly efficient bleaching method for lignin cellulose, cellulose and synthetic polymer fiber material

机译:木质素纤维素,纤维素和合成聚合物纤维材料的高效漂白方法

摘要

A process is disclosed which leads to a substantial improvement in the efficiency of bleaching lignocellulosic and like materials with hydrogen peroxide. This has been achieved by reducing the rate and extent of non-productive decomposition of peroxide. The bleaching of lignocellulosic materials at increased temperatures and pressures accelerates the rate of pulp bleaching and the rate of peroxide decomposition. Conventional bleaching technology limits these non-productive reactions by including silicates or chelating agents in the bleaching solution. Here it is shown that a substantial part of the peroxide decomposition that occurs upon exposure to process equipment is decreased substantially by using an appropriate metallurgy. A bleaching vessel having at least a contact surface, i.e., a surface in contact with the processed pulp, constructed from zirconium, niobium, hafnium, tantalum or alloys thereof is described which limits peroxide decomposition. The use of zirconium, niobium, hafnium, tatalum or alloy thereof eliminates the requirement for silicate and other sequestering agents in the bleaching solution. This novel bleaching technology is used to improve the efficiency of alkaline peroxide with both conventional as well as with new high temperature lignocellulosic bleaching processes or processes which generate peroxide species under alkaline conditions.
机译:公开了一种方法,该方法导致用过氧化氢漂白木质纤维素和类似材料的效率大大提高。这是通过降低过氧化物非生产性分解的速率和程度来实现的。在升高的温度和压力下对木质纤维素材料的漂白加速了纸浆的漂白速率和过氧化物的分解速率。常规的漂白技术通过在漂白溶液中包含硅酸盐或螯合剂来限制这些非生产性反应。在此显示,通过使用适当的冶金学,在暴露于工艺设备时发生的过氧化物分解的大部分被显着降低。描述了一种漂白容器,其至少具有接触表面,即与处理过的纸浆接触的表面,其由锆,铌,ha,钽或其合金构成,其限制了过氧化物的分解。锆,铌,ha,钽或它们的合金的使用消除了在漂白溶液中对硅酸盐和其他螯合剂的需求。这项新颖的漂白技术可通过常规以及新型高温木质纤维素漂白工艺或在碱性条件下产生过氧化物的工艺来提高碱性过氧化物的效率。

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