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超声辅助的 Sono-皮革技术:皮革加工单元操作的福音——印度中央皮革研究所(CLRI)研究工作综述

Sono-leather technology with ultrasound: a boon for unit operations in leather processing - review of our research work at Central Leather Research Institute (CLRI), India.

作者信息

Sivakumar Venkatasubramanian, Swaminathan Gopalaraman, Rao Paruchuri Gangadhar, Ramasami Thirumalachari

机构信息

Chemical Engineering Division, Central Leather Research Institute, Council of Scientific and Industrial Research, Adyar, Chennai 600 020, India.

出版信息

Ultrason Sonochem. 2009 Jan;16(1):116-9. doi: 10.1016/j.ultsonch.2008.06.002. Epub 2008 Jun 19.

Abstract

Ultrasound is a sound wave with a frequency above the human audible range of 16 Hz to 16 kHz. In recent years, numerous unit operations involving physical as well as chemical processes are reported to have been enhanced by ultrasonic irradiation. There have been benefits such as improvement in process efficiency, process time reduction, performing the processes under milder conditions and avoiding the use of some toxic chemicals to achieve cleaner processing. These could be a better way of augmentation for the processes as an advanced technique. The important point here is that ultrasonic irradiation is physical method activation rather than using chemical entities. Detailed studies have been made in the unit operations related to leather such as diffusion rate enhancement through porous leather matrix, cleaning, degreasing, tanning, dyeing, fatliquoring, oil-water emulsification process and solid-liquid tannin extraction from vegetable tanning materials as well as in precipitation reaction in wastewater treatment. The fundamental mechanism involved in these processes is ultrasonic cavitation in liquid media. In addition to this there also exist some process specific mechanisms for the enhancement of the processes. For instance, possible real-time reversible pore-size changes during ultrasound propagation through skin/leather matrix could be a reason for diffusion rate enhancement in leather processing as reported for the first time. Exhaustive scientific research work has been carried out in this area by our group working in Chemical Engineering Division of CLRI and most of these benefits have been proven with publications in valued peer-reviewed international journals. The overall results indicate that about 2-5-fold increase in the process efficiency due to ultrasound under the given process conditions for various unit operations with additional benefits. Scale-up studies are underway for converting these concepts in to a real viable larger scale operation. In the present paper, summary of our research findings from employing this technique in various unit operations such as cleaning, diffusion, emulsification, particle-size reduction, solid-liquid leaching (tannin and natural dye extraction) as well as precipitation has been presented.

摘要

超声波是一种频率高于人类可听范围(16赫兹至16千赫兹)的声波。近年来,据报道,许多涉及物理和化学过程的单元操作通过超声辐照得到了强化。这些操作带来了诸多益处,如提高了过程效率、缩短了处理时间、能够在更温和的条件下进行操作以及避免使用一些有毒化学物质以实现更清洁的加工。作为一种先进技术,这可能是一种更好的过程强化方式。这里重要的一点是,超声辐照是一种物理方法激活,而非使用化学物质。在与皮革相关的单元操作方面已进行了详细研究,例如通过多孔皮革基质提高扩散速率、清洁、脱脂、鞣制、染色、加脂、油水乳化过程以及从植物鞣料中进行固液单宁提取,还有废水处理中的沉淀反应。这些过程中涉及的基本机制是液体介质中的超声空化。除此之外,还有一些针对特定过程的强化机制。例如,正如首次报道的那样,超声在通过皮肤/皮革基质传播过程中可能出现的实时可逆孔径变化,可能是皮革加工中扩散速率提高的一个原因。我们在CLRI化学工程部门的团队在这一领域开展了详尽的科学研究工作,其中大部分成果已在有价值的同行评审国际期刊上发表并得到了验证。总体结果表明,在给定的工艺条件下,对于各种单元操作,超声可使过程效率提高约2至5倍,并带来其他益处。目前正在进行放大研究,以便将这些概念转化为实际可行的大规模操作。在本文中,我们介绍了在清洁、扩散、乳化、粒度减小、固液浸出(单宁和天然染料提取)以及沉淀等各种单元操作中应用该技术的研究结果总结。

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