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Decolorization of Dye RB-19 Solution in a Continuous Ozone Process

机译:连续臭氧工艺中染料RB-19溶液的脱色

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This work studied the decolorization of dye C.I. Reactive Blue 19 (RB-19) solution in a new gas-inducing reactor under continuous process. The decolorization behavior, decolorization kinetic, ozone utilization rate (U_(O_3)), and Chemical Oxygen Demand (COD) are examined under various operation conditions, such as input ADMI color values (ADMI_O), input liquid flow rates (Q_L), input ozone gas concentrations (C_(O_(3,i))), input gas flow rates (Q_g), and agitation speeds (N). Experimental results of decolorization behavior indicate that the American Dye Manufactures Institute (ADMI) removal percentage (R_(ADMI)) decreases with increasing ADMI color value input rate or decreasing ozone input rate. For the study of ozone utilization rate, U_(O_3), increases with increasing ADMI color value input rate or decreasing ozone input rate. The 70% ADMI removal percentage can be regarded as the index of the competition of dye and its unknown intermediates for ozone. In addition, the increase of the agitation speed can improve the ADMI removal percentage as well as the ozone utilization rate. A pseudo-first order kinetic model is adopted to describe the decolorization behavior. At steady state, the overall decolorization rate constant, k_(ADMI_(s.s.), can be expressed as a function of liquid flow rate, input ADMI color value, input ozone gas concentration, gas flow rate, and agitation speed. This correlation can be used to predict the ADMI color value at steady state (ADMI_(s.s.) and the reactor size in the continuous process. The ΔO_3/ΔCOD is dependent on the liquid composition. The higher the dye concentration in the liquid, the higher the ΔO_3/ ΔCOD. The COD removal percentage (R_(COD)) and the ozone utilization rate can be further improved by using the continuous operation with two reactors in series.
机译:这项工作研究了染料C.I.的脱色。连续过程中在新的气体诱导反应器中的活性蓝19(RB-19)溶液。在各种操作条件下,例如输入的ADMI颜色值(ADMI_O),输入的液体流速(Q_L),输入的条件下,检查了脱色行为,脱色动力学,臭氧利用率(U_(O_3))和化学需氧量(COD)。臭氧气体浓度(C_(O_(3,i))),输入气体流速(Q_g)和搅拌速度(N)。脱色行为的实验结果表明,美国染料制造协会(ADMI)去除百分率(R_(ADMI))随ADMI颜色值输入速率或臭氧输入速率的增加而降低。为了研究臭氧利用率,U_(O_3)随着ADMI颜色值输入速率的增加或臭氧输入速率的减小而增加。 ADMI去除率的70%可以视为染料及其未知中间体与臭氧竞争的指标。另外,增加搅拌速度可以提高ADMI去除率以及臭氧利用率。采用伪一级动力学模型描述脱色行为。在稳定状态下,总脱色率常数k_(ADMI_(ss))可表示为液体流速,输入的ADMI颜色值,输入的臭氧气体浓度,气体流速和搅拌速度的函数。用于预测稳态下的ADMI颜色值(ADMI_(ss)和连续过程中的反应器尺寸.ΔO_3/ΔCOD取决于液体成分。液体中的染料浓度越高,ΔO_3/ΔCOD越高通过使用两个串联的反应器的连续操作,可以进一步提高COD去除率(R_(COD))和臭氧利用率。

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