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在钛酸钠纳米管上实现葡萄糖在水介质中快速异构化为果糖。

Expeditious isomerization of glucose to fructose in aqueous media over sodium titanate nanotubes.

作者信息

Kumar Sandeep, Nepak Devadutta, Kansal Sushil Kumar, Elumalai Sasikumar

机构信息

Chemical Engineering Division, Center of Innovative and Applied Bioprocessing (CIAB) Mohali Punjab 140306 India

Dr S. S. Bhatnagar University Institute of Chemical Engineering & Technology, Panjab University Chandigarh 160014 India.

出版信息

RSC Adv. 2018 Aug 24;8(53):30106-30114. doi: 10.1039/c8ra04353a.

Abstract

Isomerization reaction of glucose to fructose over sodium titanate nanotubes (Na-TNTs) as a Lewis base catalyst was studied. Analytical instruments recorded the specific structural, textural and basic properties of the as-synthesized Na-TNTs. Furthermore, studying the catalytic isomerization performance of the Na-TNTs confirmed their high catalytic efficiency and suitability in aqueous media. The catalyst prompted rapid glucose isomerization within 2 min by achieving nearly half of the maximum yield, whereas with a prolonged reaction up to 15 min the maximum glucose conversion could be reached with 31.26% fructose yield and 65.26% selectivity under relatively lower operating conditions (100 °C and 10% wt catalyst dose). However, the recyclability performance of the catalyst was not impressive due to the accelerated leaching of cations and surface retention of carbonaceous content, resulting in ∼16% reduced yield after 4 runs. A simple regeneration technique using NaOH led to the initial catalytic activity being totally regained. Overall, a titania-based catalyst (preferably nanotube structured sodium titanate) was shown as a potential catalyst for large-scale demonstration of glucose isomerization to achieve high fructose productivity.

摘要

研究了葡萄糖在钛酸钠纳米管(Na-TNTs)作为路易斯碱催化剂作用下异构化为果糖的反应。分析仪器记录了合成后的Na-TNTs的特定结构、织构和碱性性质。此外,对Na-TNTs催化异构化性能的研究证实了它们在水介质中的高催化效率和适用性。该催化剂在2分钟内促使葡萄糖快速异构化,达到了最大产率的近一半,而在相对较低的操作条件(100°C和10%重量的催化剂用量)下,延长反应至15分钟时,可实现最大葡萄糖转化率,果糖产率为31.26%,选择性为65.26%。然而,由于阳离子的加速浸出和含碳物质在表面的保留,催化剂的可回收性能并不理想,4次运行后产率降低了约16%。使用NaOH的简单再生技术使初始催化活性完全恢复。总体而言,基于二氧化钛的催化剂(最好是纳米管结构的钛酸钠)被证明是用于大规模葡萄糖异构化示范以实现高果糖生产率的潜在催化剂。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/82e5/9085425/b73b70c4b45d/c8ra04353a-f1.jpg

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