Department of Chemical Engineering, Institute of Chemical Technology, Mumbai 400 019, India.
Ultrason Sonochem. 2014 Jan;21(1):162-8. doi: 10.1016/j.ultsonch.2013.07.006. Epub 2013 Jul 31.
The present work deals with application of hydrodynamic cavitation for intensification of delignification of wheat straw as an essential step in the paper manufacturing process. Wheat straw was first treated with potassium hydroxide (KOH) for 48 h and subsequently alkali treated wheat straw was subjected to hydrodynamic cavitation. Hydrodynamic cavitation reactor used in the work is basically a stator and rotor assembly, where the rotor is provided with indentations and cavitational events are expected to occur on the surface of rotor as well as within the indentations. It has been observed that treatment of alkali treated wheat straw in hydrodynamic cavitation reactor for 10-15 min increases the tensile index of the synthesized paper sheets to about 50-55%, which is sufficient for paper board manufacture. The final mechanical properties of the paper can be effectively managed by controlling the processing parameters as well as the cavitational parameters. It has also been established that hydrodynamic cavitation proves to be an effective method over other standard digestion techniques of delignification in terms of electrical energy requirements as well as the required time for processing. Overall, the work is first of its kind application of hydrodynamic cavitation for enhancing the effectiveness of delignification and presents novel results of significant interest to the paper and pulp industry opening an entirely new area of application of cavitational reactors.
本工作涉及将水力空化应用于麦草的脱木质素强化,这是造纸过程中的一个重要步骤。首先用氢氧化钾(KOH)处理麦草 48 小时,然后对碱处理后的麦草进行水力空化处理。本工作中使用的水力空化反应器基本上是一个定子和转子组件,其中转子上有凹痕,预计空化事件将发生在转子表面和凹痕内。已经观察到,在水力空化反应器中处理碱处理后的麦草 10-15 分钟,可将合成纸页的拉伸指数提高到约 50-55%,足以用于制造纸板。通过控制加工参数和空化参数,可以有效地管理最终的纸张机械性能。此外,从电能需求和处理所需时间两方面来看,与其他标准脱木质素消化技术相比,水力空化被证明是一种有效的方法。总的来说,这是水力空化在提高脱木质素效率方面的首次应用,为造纸和纸浆工业带来了新颖而有意义的结果,为空化反应器的应用开辟了一个全新的领域。