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TMP properties and refiner conditions in a CD82 chip refiner at different operation points. Part Ⅱ: Comparison of the five tests

机译:CD82芯片磨浆机在不同操作点的TMP特性和磨浆条件。第二部分:五项测试的比较

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This paper is part two of a study on a CD 82 TMP chip refiner where relations between changes in the process conditions and changes in the properties of the produced pulp are investigated. Focus is on the ratio between tensile index and specific energy consumption when results from five tests are compared. Pulp properties were measured for composite pulp samples taken from the refiner blow line. Residence times and pulp consistencies were estimated by use of the extended entropy model. Clearly, an increase in specific energy does not necessarily implicate an increase in strength properties of the pulp produced. It is of high importance to have access to information about the refining zone conditions when searching for an optimal operation point in terms of the ratio between tensile index and specific energy. In these tests, this ratio had a maximum at about 55% measured blow line consistency. Unfavourable operating conditions were identified at high pulp consistencies, especially after the FZ, where pulp consistencies well above 70% were observed. The estimated residence time for each refining zone responded differently when applying changes in production rate, plate gaps and dilution water flow rates. In conclusion, the results associated with estimated pulp consistencies where easier to interpret compared with results for residence times, implying that additional tests are required for the latter variable. In addition to tensile index, pulp properties like freeness, Somerville shives and light scattering coefficient were included in the analysis.
机译:本文是对CD 82 TMP芯片磨浆机的研究的第二部分,该磨浆机研究了工艺条件的变化与所生产纸浆性能的变化之间的关系。比较五个测试的结果时,重点是拉伸指数与比能耗之间的比率。测量了来自磨浆机吹炼线的复合纸浆样品的纸浆性能。停留时间和纸浆稠度通过使用扩展熵模型进行估算。显然,比能的增加不一定意味着所生产的纸浆的强度特性的增加。当根据拉伸指数和比能之比搜索最佳操作点时,获得有关精炼区条件的信息非常重要。在这些测试中,该比率在测得的吹塑线稠度中最大约为55%。在高纸浆稠度下发现了不利的操作条件,尤其是在FZ之后,观察到的纸浆稠度远高于70%。当采用生产率,塔板间隙和稀释水流速的变化时,每个精炼区的估计停留时间有不同的响应。总之,与纸浆浓度估计值相关的结果与停留时间的结果相比更易于解释,这意味着后一个变量需要额外的测试。除拉伸指数外,分析还包括纸浆特性,如游离度,萨默维尔碎屑和光散射系数。

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