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生物聚合物的机械化学降解。

Mechanochemical Degradation of Biopolymers.

机构信息

Department of Drug Science and Technology, University of Turin, 10125 Turin, Italy.

出版信息

Molecules. 2023 Dec 10;28(24):8031. doi: 10.3390/molecules28248031.

Abstract

Mechanochemical treatment of various organic molecules is an emerging technology of green processes in biofuel, fine chemicals, or food production. Many biopolymers are involved in isolating, derivating, or modifying molecules of natural origin. Mechanochemistry provides a powerful tool to achieve these goals, but the unintentional modification of biopolymers by mechanochemical manipulation is not always obvious or even detectable. Although modeling molecular changes caused by mechanical stresses in cavitation and grinding processes is feasible in small model compounds, simulation of extrusion processes primarily relies on phenomenological approaches that allow only tool- and material-specific conclusions. The development of analytical and computational techniques allows for the inline and real-time control of parameters in various mechanochemical processes. Using artificial intelligence to analyze process parameters and product characteristics can significantly improve production optimization. We aim to review the processes and consequences of possible chemical, physicochemical, and structural changes.

摘要

机械化学处理各种有机分子是生物燃料、精细化学品或食品生产中绿色工艺的新兴技术。许多生物聚合物参与了天然产物的分离、衍生或修饰。机械化学为实现这些目标提供了有力的工具,但机械化学处理对生物聚合物的非故意修饰并不总是明显的,甚至是不可检测的。尽管在小模型化合物中对空化和研磨过程中机械应力引起的分子变化进行建模是可行的,但挤出过程的模拟主要依赖于唯象方法,这些方法只能得出针对特定工具和材料的结论。分析和计算技术的发展允许在各种机械化学过程中对参数进行在线和实时控制。使用人工智能来分析工艺参数和产品特性,可以显著提高生产优化。我们的目标是回顾可能的化学、物理化学和结构变化的过程和后果。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/7c3e/10745761/b71d93e6a817/molecules-28-08031-g001.jpg

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