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Towards complete impregnation of wood chips with aqueous solutions. Part I. A retrospective and critical evaluation of the penetration process

机译:试图用水溶液完全浸渍木片。第一部分:对渗透过程的回顾性和批判性评估

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This paper evaluates the process of liquid penetration into wood chips from the retrospective viewpoint of industrial development and research and provides a summary of currently available knowledge in this area. During the past few decades, researchers have been dealing mainly with pulping chemistry and the back-end of pulping processes, while less attention has been paid to the front-end of cooking. As a result, the latest developments in chemical pulping have been driven by pulping chemistry, and the importance of front-end phenomena has been ignored. In spite of the existence of several concepts and theories, several aspects still remain unclear and more research is needed to achieve a complete understanding of the process of liquid penetration into wood chips. Special emphasis is given to the need for model of liquid penetration and for new reliable and accurate methods that provide direct continuous data on the process. The paper also discusses the effect of different factors on the penetration process as well as techniques used to improve the penetration efficiency. More effort has to be directed to research concerning techniques designed to promote liquid penetration, including chip presteaming. Industrial applications of chip presteaming allow some scope for improvement, especially in batch cooking systems. To achieve the ultimate target of effective heating and fast gas removal from the chips, special attention has to be paid to optimisation of steaming parameters such as retention time and the pressure-temperature relationship. Against this background, developing a model of chip presteaming is particularly important.
机译:本文从工业发展和研究的回顾性角度评估了液体渗透到木片中的过程,并总结了该领域的现有知识。在过去的几十年中,研究人员主要研究制浆化学和制浆过程的后端,而对烹饪的前端的关注则较少。结果,制浆化学推动了化学制浆的最新发展,而前端现象的重要性已被忽略。尽管存在几种概念和理论,但仍尚不清楚几个方面,需要做更多的研究以完全理解液体渗透到木片中的过程。特别需要提供液体渗透模型以及提供可直接获得有关过程连续数据的可靠且准确的新方法的模型。本文还讨论了不同因素对渗透过程的影响以及用于提高渗透效率的技术。必须作出更多的努力来进行有关旨在促进液体渗透的技术的研究,包括切屑预蒸。芯片预蒸的工业应用允许一些改进的余地,尤其是在分批蒸煮系统中。为了达到有效加热和从切屑中快速去除气体的最终目标,必须特别注意优化蒸煮参数,例如保留时间和压力-温度关系。在这种背景下,开发芯片预蒸煮模型尤为重要。

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