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Simulation of bleaching of soda pulp from Hesperaloe funifera by polynomial and neural fuzzy models

机译:用多项式和神经模糊模型模拟紫苏碱漂白。

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Influence of variables [soda, (0.5 to 3.0%), hydrogen peroxide (1.0 to 10.0%) and time (1 to 5 h)] in the bleaching of soda pulp ofHesperaloe funifera, on the properties of bleached pulps, was studied. Polynomial and neural fuzzy models had reproduced the results of Kappa number, brightness and viscosity of the pulps with errors less than 10 and 15%, respectively. By simulating the bleaching process of pulpH. funifera, with the polynomial and neural fuzzy models, the optimal values of operating variables can be found, so that the properties of bleached pulps differ little from their best values and instead will save chemical reagents, energy and plant size, operating with lower values of operating variables. Thus, by application of polynomial models, it was found that operating with a soda concentration of 0.5%, a hydrogen peroxide concentration of 5.5% and for a processing time of 3 h, it was possible to get a pulp with a brightness of 65.9% and a viscosity of 587 ml/g.
机译:研究了菊苣苏打纸浆漂白过程中的变量[苏打水(0.5-3.0%),过氧化氢(1.0-10.0%)和时间(1-5h)]对漂白纸浆性能的影响。多项式和神经模糊模型再现了纸浆的卡伯值,亮度和粘度的结果,误差分别小于10%和15%。通过模拟纸浆H的漂白过程。真菌,通过多项式和神经模糊模型,可以找到操作变量的最佳值,从而使漂白纸浆的特性与其最佳值相差不大,而可以节省化学试剂,能源和工厂规模,并且以较低的操作值运行。操作变量。因此,通过应用多项式模型,发现在苏打浓度为0.5%,过氧化氢浓度为5.5%,处理时间为3 h的情况下,可以得到白度为65.9%的纸浆。粘度为587ml / g。

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