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首页> 外文期刊>International Journal of Innovative Research in Science, Engineering and Technology >Modified Industrial Chlor Alkali Process for Reduction in Power Consumption
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Modified Industrial Chlor Alkali Process for Reduction in Power Consumption

机译:改进的工业氯碱工艺可降低功耗

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Chlor-alkali process, being the second most widely used process, has a very high value of power consumption all over the world. In these experiments, we tried to relate this value of power consumption to some of the Donnan potential and process conditions, and tried to capture the impact of varying these parameters, like temperature difference across the electrolytes, concentration of the electrolytes and tried to reduce this value of power consumption. Finally, we also applied di-electrophoresis over the electrodes, so as to enhance the surface area for ion transfer, resulting in decreased resistance. A total of 4 sets of experiments, with multiple runs, were performed to capture this behavior and it was found that the outcome was optimum when the temperature of NaCl side was 5 K more than the other chamber, with the value of Donnan potential being reduced significantly. Also, the Donnan potential was minimum when NaCl concentration was 4 M. Di-electrophoresis produced optimum results for frequencies 50 Hz and 100 Hz. After all these, a combined experiment, with optimized process conditions and di-electrophoresis, was performed and the obtained result proved that the final Donnan potential value was actually around 12% less than that for a normal chlor-alkali process at lab scale, hence implying significant reduction in power consumption. This significant reduction in power consumption can have some serious economic impact on this process being carried out at large-scale.
机译:氯碱法是第二广泛使用的方法,在世界范围内具有很高的能耗价值。在这些实验中,我们试图将功耗的值与Donnan的电势和工艺条件相关联,并试图捕捉变化这些参数的影响,例如电解质之间的温差,电解质的浓度,并试图降低这种影响。功耗值。最后,我们还在电极上施加了介电泳,以增加离子转移的表面积,从而降低了电阻。总共进行了4组实验,并进行了多次运行,以捕获该行为,结果发现,当NaCl侧的温度比另一个腔室高5 K时,结果是最佳的,而Donnan电势的值降低了显着。同样,当NaCl浓度为4 M时,唐南电位最小。对于50 Hz和100 Hz的频率,双电泳产生的最佳结果。在所有这些之后,进行了具有优化的工艺条件和双电泳的组合实验,获得的结果证明,最终的Donnan电位值实际上比实验室规模的正常氯碱工艺小约12%,因此意味着大大降低了功耗。功耗的显着降低可能对该大规模进行的过程产生严重的经济影响。

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