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微处理技术领域专利行为的近期变化及其在气液反应和葡萄糖氧化方面的潜在用途。

Recent changes in patenting behavior in microprocess technology and its possible use for gas-liquid reactions and the oxidation of glucose.

机构信息

Technical University Eindhoven, Eindhoven, The Netherlands.

出版信息

ChemSusChem. 2012 Feb 13;5(2):232-45. doi: 10.1002/cssc.201100389. Epub 2012 Jan 25.

Abstract

The miniaturization of continuous processes has been of increasing interest in the past decade, and microreaction technology and flow chemistry have moved from academic and industrial research to commercial applications. With industry taking up such innovations, this trend is also reflected in the patenting behavior of companies active in this area. This review is a continuation of the review paper on microreactor patents published by Hessel et al. and indicates major changes in patenting trends since 2006. Moreover, a different patent database search algorithm is presented, which complements the algorithm explained in the previous review. In addition, the preservation of intellectual property is analyzed for multiphase reactions and particularly solid-catalyzed gas-liquid reactions in microreactors, which play an important role in the chemical and pharmaceutical industries and are reactions that benefit largely from microprocessing. Among other results, we show that the number of patents has increased in this field, with solid-catalyst design and deposition, control of the flow pattern, and ensured stable flow as the main challenges.

摘要

过去十年中,连续过程的微型化一直受到越来越多的关注,微反应技术和流动化学已经从学术和工业研究发展到商业应用。随着工业界采用这些创新,这种趋势也反映在该领域活跃的公司的专利行为中。本综述是对 Hessel 等人发表的微反应器专利综述论文的延续,表明自 2006 年以来专利趋势的重大变化。此外,还提出了一种不同的专利数据库搜索算法,该算法补充了上一篇综述中解释的算法。此外,还分析了多相反应,特别是微反应器中固载化气-液反应的知识产权保护,这些反应在化学和制药行业中起着重要作用,并且从微加工中受益匪浅。其他结果表明,该领域的专利数量有所增加,主要挑战包括固催化剂设计和沉积、流型控制以及确保稳定流动。

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