New Predictive Models for COD from All Stages in Full ECF Bleaching Sequences

Sandeep Jain, G. Mortha, C. Calais
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引用次数: 5

Abstract

This paper proposes new mathematical models for the prediction of chemical oxygen demand (COD) from different stages in full ECF bleaching sequences and discusses several important issues related to model development and interpretation. The effects of different process conditions, like pH, chemical charge, initial Kappa number, carryover, temperature etc., on the formation of COD from the different chlorine dioxide stages (Do, D1, D2) and extraction stages (E, EO, EP, EOP) were studied and corresponding models were developed for softwood and hardwood pulps. The models, based on results obtained from the extensive studies of the kinetics, stoichiometry, and effluent properties of the chlorine dioxide stages and extraction stages in the ECF bleaching of pulp, were tested for accuracy on a vast range of data both from literature and laboratory experiments. The kinetics, stoichiometry and effluent properties have not previously been considered together for optimization and would be of considerable use in bleach plant optimization as well as in process control of different stages. This study will also help in understanding the need for modifications of the conventional conditions in both the chlorine dioxide and the extraction stages to obtain the best mix between a low formation of COD and high bleaching efficiency.
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全ECF漂白序列各阶段COD的新预测模型
本文提出了预测全ECF漂白序列中不同阶段化学需氧量(COD)的数学模型,并讨论了与模型开发和解释有关的几个重要问题。研究了不同工艺条件(pH、化学荷量、初始Kappa数、结转量、温度等)对不同二氧化氯阶段(Do、D1、D2)和提取阶段(E、EO、EP、EOP) COD形成的影响,并建立了针叶和硬木纸浆的相应模型。这些模型基于对ECF纸浆漂白过程中二氧化氯阶段和萃取阶段的动力学、化学计量学和流出物特性的广泛研究得出的结果,并在文献和实验室实验的大量数据上进行了准确性测试。动力学、化学计量学和流出物性能以前没有一起考虑过优化,这将在漂白剂厂优化以及不同阶段的过程控制中有相当大的用处。该研究还将有助于了解在二氧化氯和萃取阶段修改常规条件的必要性,以获得低COD形成和高漂白效率之间的最佳组合。
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