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A Model for Chlorine Dioxide Delignification of Chemical Pulp

机译:化学纸浆二氧化氯脱木质素模型

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摘要

A phenomenon based model for chlorine dioxide delignification of chemical pulp is introduced. The pulp suspension environment is modeled using the concept of two liquid phases, one inside and the other external to the fiber wall. Physico-chemical processes taking place during delignification are implemented with thermodynamic, mass transfer and reaction kinetic models. A broad library of chemical reactions is introduced. Inclusion of each reaction is justified. The model response is tested against experimental laboratory delignification results (o-delignified birch pulp). The experimental data consists of kappa number, hexenuronic acid, inorganic oxy-chlorine compound, and organochlorine (AOX, OX) measurements at several time points during five delignification experiments. The model predictions are mainly in good agreement with the experimental results. The predictions regarding hypochlorous acid driven processes (HexA removal, organochlorine formation, chlorite and chlorate concentration) are somewhat incoherent, indicating that knowledge regarding the intermediately formed hypochlorous acid is presently insufficient.
机译:介绍了一种基于现象的化学浆二氧化氯脱木质素模型。使用两种液相的概念对纸浆悬浮环境进行建模,两种液相在纤维壁的内部,另一种在纤维壁的外部。通过热力学,传质和反应动力学模型实现脱木素过程中发生的物理化学过程。引入了广泛的化学反应库。包括每个反应是合理的。针对实验实验室的脱木素效果(o-脱木素桦木浆)测试了模型响应。实验数据包括五个脱木素实验中几个时间点的卡伯值,己烯醛酸,无机氧氯化合物和有机氯(AOX,OX)的测量值。模型预测结果与实验结果基本吻合。关于次氯酸驱动过程(HexA去除,有机氯形成,亚氯酸盐和氯酸盐浓度)的预测有些不连贯,表明目前对中间形成的次氯酸的了解还不够。

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