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一种将废棉催化转化为有用化学品的模型方法。

A Model Procedure for Catalytic Conversion of Waste Cotton into Useful Chemicals.

作者信息

Binczarski Michal J, Malinowska Justyna, Stanishevsky Andrei, Severino Courtney J, Yager Riley, Cieslak Malgorzata, Witonska Izabela A

机构信息

Institute of General and Ecological Chemistry, Lodz University of Technology, 116 Zeromskiego Street, 90-924 Lodz, Poland.

Department of Physics, University of Alabama at Birmingham, 1300 University Blvd., Birmingham, AL 35294, USA.

出版信息

Materials (Basel). 2021 Apr 15;14(8):1981. doi: 10.3390/ma14081981.

Abstract

Cotton is grown in about 90 countries and accounts for 24% of the fibers used in the global production of textiles. In 2018/2019, 25.8 Mt of cotton were produced around the world. Since this natural product consists mainly of cellulose, it can be used as a raw material in the so-called "sugar economy". This paper discusses a model procedure for thermally assisted acidic hydrolysis of cotton into glucose and subsequent oxidation of the glucose into calcium gluconate over Pd-Au/SiO catalyst. In the first step, HSO was used as a catalyst for hydrolysis. The cotton hydrolysates were neutralized using CaCO and applied as a substrate in the second step, where glucose was oxidized over Pd-Au/SiO prepared by ultrasound assisted co-impregnation. With the appropriate Au/Pd molar ratio, small crystallites of palladium and gold were created which were active and selective towards the formation of gluconate ions. This approach to the transformation of glucose represents as a viable alternative to biological processes using fungal and bacterial species, which are sensitive to the presence of inhibitors such as furfurals and levulinic acid in hydrolysates.

摘要

棉花在约90个国家种植,占全球纺织品生产所用纤维的24%。2018/2019年度,全球棉花产量为2580万吨。由于这种天然产物主要由纤维素组成,它可作为所谓“糖经济”的一种原料。本文讨论了一种热辅助酸性水解棉花生成葡萄糖,随后在Pd-Au/SiO催化剂上将葡萄糖氧化为葡萄糖酸钙的模型方法。第一步,使用HSO作为水解催化剂。用CaCO中和棉花水解产物,并在第二步将其用作底物,在第二步中,葡萄糖在通过超声辅助共浸渍制备的Pd-Au/SiO上被氧化。在适当的Au/Pd摩尔比下,生成了钯和金的小晶体,它们对葡萄糖酸根离子的形成具有活性和选择性。这种葡萄糖转化方法是使用真菌和细菌物种的生物过程的可行替代方案,这些生物过程对水解产物中糠醛和乙酰丙酸等抑制剂的存在敏感。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/e9c0/8071283/0535022b49e6/materials-14-01981-g001.jpg

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