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加压热水萃取作为天然产物的绿色技术——相对于水蒸馏和固液萃取的关键技术

Pressurized Hot Water Extraction as Green Technology for Natural Products as Key Technology with Regard to Hydrodistillation and Solid-Liquid Extraction.

作者信息

Knierim Larissa, Uhl Alexander, Schmidt Axel, Flemming Marcel, Höß Theresa, Treutwein Jonas, Strube Jochen

机构信息

Institute for Separation and Process Technology, Clausthal University of Technology, D-38678 Clausthal-Zellerfeld, Germany.

SKH GmbH, Koenigbacher Strasse 17, D-94496 Ortenburg, Germany.

出版信息

ACS Omega. 2024 Jul 10;9(29):31998-32010. doi: 10.1021/acsomega.4c03771. eCollection 2024 Jul 23.

Abstract

Hydrodistillation and solid-liquid extraction with organic solvents or supercritical CO are standard technologies for natural product manufacturing. Within this technology, portfolio pressurized hot water technology is ranked as a green, sustainable, resilient, kosher and halal manufacturing process. Essential for sustainability is energy integration for heating and cooling the auxiliary water as well as product concentration without evaporation but with the aid of low energy consuming ultra- and nanofiltration membrane technology. The incorporation of modern unit operations, such as pressurized hot water extraction, along with inline measurement devices for Process Analytical Technology approaches, showcases a shift in traditional extraction processes. Traditional equipment and processes still dominate the manufacturing of plant extracts, yet leveraging innovative chemical process engineering methods offers promising avenues for the economic and ecological advancement of botanicals. Techniques such as modeling and process intensification with green technology hold potential in this regard. Digitalization and Industry 4.0 methodologies, including machine learning and artificial intelligence, play pivotal roles in sustaining natural product extraction manufacturing and can profoundly impact the future of human health.

摘要

水蒸馏以及用有机溶剂或超临界二氧化碳进行固液萃取是天然产物制造的标准技术。在这项技术中,组合式加压热水技术被列为一种绿色、可持续、有弹性、符合犹太教规和伊斯兰教规的制造工艺。可持续性的关键在于对辅助水进行加热和冷却以及产品浓缩时的能量整合,无需蒸发,而是借助低能耗的超滤和纳滤膜技术。现代单元操作的纳入,如加压热水萃取,以及过程分析技术方法中的在线测量装置,展示了传统萃取过程的转变。传统设备和工艺在植物提取物制造中仍占主导地位,但利用创新的化学过程工程方法为植物提取物的经济和生态发展提供了有前景的途径。诸如绿色技术建模和过程强化等技术在这方面具有潜力。数字化和工业4.0方法,包括机器学习和人工智能,在维持天然产物提取制造方面发挥着关键作用,并会对人类健康的未来产生深远影响。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/8e91/11270720/5f80371df099/ao4c03771_0001.jpg

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