Even in the 21st Century, the manufacture of leather retains an air of the dark arts, still somewhat shrouded in the mysteries of a millennia old, craft based industry. Despite the best efforts of a few scientists over the last century or so, much of the understanding of the principles of tanning is still based on received wisdom and experience. Leather is made from (usually) the hides and skins of animals - large animals such as cattle have hides, small animals such as sheep have skins. The skin of any animal is largely composed of the protein collagen, so it is the chemistry of this fibrous protein and the properties it confers to the skin with which the tanner is most concerned. In addition, other components of the skin impact on processing, impact on the chemistry of the material and impact on the properties of the product, leather. Therefore, it is useful to understand the relationships between skin structure at the molecular and macro levels, the changes imposed by modifying the chemistry of the material and the eventual properties of the leather. This book aims to contribute to changing the thinking in the industry, to continue building a body of scientific understanding, aimed at enhancing the sustainability of an industry which produces a unique group of materials, derived from a natural source. The Science of Leather is the only current text on tanning science, and addresses the scientific principles which underpin the processes involved in making leather. It is concerned with the chemical modification of collagen, prior to tanning and the tanning reactions in particular. The subject is covered in the following order: collagen chemistry, collagen structure, skin structure, processing to prepare for tanning, the tanning processes and processing after tanning. The aim of the book is to provide leather scientists and technologists with an understanding of how the reactions work, the nature of their outcomes and how the processes can be controlled and changed. The objective is to synthesise a scientific view of leather making and to arrive at an understanding of the nature of tanning - how the wide range of chemistries employed in the art can change the properties of collagen, making leather with different properties, especially conferring different degrees of stabilisation as measured by the hydrothermal stability. Environmental issues are not treated as a separate theme - the impact of leather making on the environment is a thread running through the text, with the assumption that better understanding of the science of leather making will lead to improved processing. The book also reflects on the ways leather technology may develop in the future based on the foundation of understanding the scientific principles which can be exploited. It also includes a subject index, references and a glossary. The book provides the reader with insights into the role science plays in leather technology and provides fundamental understanding, which should be the basis for scientific and technological research and development for the benefit of the global leather industry. The book is aimed at students, leather scientists and technologists, in both academia and industry, in leather production and in chemical supply houses.
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《Tanning Chemistry》这个书名,立刻点燃了我对皮革制品背后工业流程的浓厚兴趣。我平时就喜欢研究一些手工艺品的制作,而皮革制品一直是我特别着迷的领域。我好奇这本书是否会从最基础的动物皮料处理开始讲起,比如如何进行清洗、浸泡,以及在这个过程中涉及到的化学物质和它们的作用。然后,它会不会详细介绍鞣制这个核心环节,分析不同鞣剂(比如矿物鞣剂、植物鞣剂、合成鞣剂)的作用机理,以及它们各自的优缺点?我特别希望能够了解到,皮革的柔软度、强度、耐用性等关键特性,是如何通过化学反应实现的。这本书会不会还会探讨一些皮革加工中的关键化学参数,例如pH值的控制、溶液的浓度、反应的时间等等,以及这些参数对最终产品质量的影响?我甚至猜想,它会不会涉及到一些更精深的化学知识,比如高分子化学在皮革结构中的应用,或者皮革表面处理的化学原理,比如防水、防污、耐磨等。总之,我期待它能像一个精心策划的展览,将皮革鞣制的化学奥秘一一展现。
评分这本书的名字是《Tanning Chemistry》,光是这个名字就瞬间勾起了我对皮革加工过程的好奇心。我一直觉得皮革制品,无论是时尚的包包、舒适的鞋履,还是耐用的沙发,它们背后都蕴藏着一套复杂的工艺。而“Tanning Chemistry”这个名字,似乎暗示着这本书将深入探讨这种工艺的科学原理,尤其是在化学层面。我设想,它可能会讲解从动物皮料到柔软皮革的转变过程中,各种化学试剂的作用,比如鞣剂如何与胶原蛋白结合,如何稳定皮革的结构,防止其腐败。我很好奇,不同的鞣制方法,比如植物鞣革和铬鞣革,在化学机理上会有什么显著的区别,又会带来哪些不同的特性?这本书会不会还涉及到一些更精细的化学反应,比如脱脂、浸灰、脱毛、鞣制、复鞣、染色、加脂等等,每一个步骤背后的化学变化是如何发生的?我会不会在这本书里找到关于稳定皮革颜色、增加皮革韧性、提升皮革防水性能的化学配方?总而言之,我期待它能为我揭开皮革制作神秘面纱,让我对每一件触手可及的皮革制品,产生更深的理解和欣赏。
评分对于《Tanning Chemistry》这本书,我最大的期待是它能提供一个系统性的、深入浅出的视角来理解皮革的“变身”过程。我不指望它能成为一本教科书,但如果它能以一种引人入胜的方式,将皮革鞣制过程中那些看似枯燥的化学原理,通过生动的例子或清晰的图示呈现出来,那就太棒了。比如,它是否会解释为什么某些植物提取物能够有效地鞣制皮革,它们的化学成分是怎样的,又是如何与动物皮料中的蛋白质发生反应?或者,在现代工业中广泛使用的铬鞣法,其背后的化学反应机理是什么?它是否会涉及到关于重金属在鞣制过程中的环境影响,以及是否有更环保的替代方案?我很想知道,鞣制过程中温度、pH值、时间等因素的变化,对最终皮革的品质会产生怎样的化学影响。这本书会不会还涉及到一些更高级的话题,比如皮革的后处理,如染色和加脂,这些过程中的化学变化又是什么?我希望它能给我一种“原来如此”的感觉,让我不再仅仅满足于看到一件漂亮的皮具,而是能够理解其内在的科学逻辑。
评分《Tanning Chemistry》这个名字,让我想象到一本能够深入揭示皮革世界背后科学奥秘的书籍。我一直对各种材料的加工过程充满好奇,而皮革,这种既古老又现代的材料,其制作过程中的化学变化更是让我感到神秘。我希望这本书能从最根本的化学原理出发,解释皮革是如何从一种容易腐败的动物皮,变成我们今天所熟悉的耐用、柔软、美观的皮革。它会不会讲解鞣剂是如何与胶原蛋白结合,形成稳定的皮革结构?书中是否会涉及不同鞣制方法(例如铬鞣、植物鞣、合成鞣)在化学上的差异,以及这些差异如何影响皮革的最终性能?我尤其感兴趣的是,书中是否会深入探讨染色和加脂等后期处理过程中的化学反应,以及这些化学过程如何赋予皮革丰富的色彩和良好的触感?这本书是否还会触及一些更前沿的皮革化学研究,比如如何开发更环保的鞣制技术,或者如何利用化学手段来提升皮革的功能性?我期待它能够给我一个全面、系统、且充满科学严谨性的答案。
评分《Tanning Chemistry》这个书名,让我立刻联想到了一场深入探索皮革制作背后化学原理的旅程。我对皮革制品情有独钟,一直觉得它们不仅是时尚的载体,更是一种工艺与科学的结晶。我希望这本书能够细致地剖析皮革鞣制过程中涉及到的各种化学反应。比如说,它会不会解释,为什么不同的化学药剂能够让动物的皮变得如此柔软且耐用?我好奇书中是否会详细介绍植物单宁、铬盐等主要鞣剂的工作原理,以及它们是如何与皮革中的胶原纤维相互作用的。此外,我一直对皮革的颜色和质感非常关注,所以我也很期待书中能够阐述染色剂和加脂剂在鞣制过程中的化学作用,以及它们如何赋予皮革丰富多彩的外观和细腻的触感。这本书会不会还涉及一些更深层次的化学知识,比如皮革的分子结构、化学稳定性的影响因素,或者皮革在不同环境下的化学降解机制?我希望通过阅读这本书,能够让我对皮革的制作过程有一个更深刻、更全面的理解,从一个普通消费者的视角,走向一个能够欣赏其背后科学智慧的行家。
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