2020ACS Sustainable Chemistry & EngineeringRequires access

Highly Efficient and Superfast Cellulose Dissolution by Green Chloride Salts and Its Dissolution Mechanism

Yuxiang Chen, Hou–Yong Yu, Yingzhan Li

Open publisher page 110 citations

Abstract

Cellulose dissolution is a worldwide issue in the production industry. Especially, the development of highly efficient and green cellulose solvents has been considered as a key factor to restrict the broad application of different cellulose industries. In this study, different chloride salts, such as LiCl, ZnCl 2, CaCl 2, and FeCl 3, with different water amounts were used as green solvents to investigate the driving force of cellulose dissolution. The superfast and highly efficient cellulose dissolution in ZnCl 2 ·3H 2 O and FeCl 3 ·6H 2 O was successfully achieved within 5–20 min, which was confirmed by the results of polarized light microscopy. Moreover, the effect of pH and water amounts of the chloride salts on the cellulose structural change and dissolution ability was investigated for a better understanding of the role of chloride salts during the cellulose dissolution process. Especially, the dissolution mechanism of cellulose in ZnCl 2 ·3H 2 O and FeCl 3 ·6H 2 O has been provided compared to other non-derivatizing cellulose solvents.

About this research paper

What this paper is about

Cellulose dissolution is a worldwide issue in the production industry. Especially, the development of highly efficient and green cellulose solvents has been considered as a key factor to restrict the broad application of different cellulose industries. In this study, different chloride salts, such as LiCl, ZnCl 2, CaCl 2, and FeCl 3, with different water amounts were used as green solvents to investigate the driving force of cellulose dissolution. The superfast and highly efficient cellulose dissolution in ZnCl 2 ·3H 2 O and FeCl 3 ·6H 2 O was successfully achieved within 5–20 min, which was confirmed by the results of polarized light microscopy. Moreover, the effect of pH and water amounts of the chloride salts on the cellulose structural change and dissolution ability was investigated for a better understanding of the role of chloride salts during the cellulose dissolution process. Especially, the dissolution mechanism of cellulose in ZnCl 2 ·3H 2 O and FeCl 3 ·6H 2 O has been provided compared to other non-derivatizing cellulose solvents.

Why it matters

OpenAlex reports 110 citations for this work. Citation counts describe recorded attention and do not establish research quality.

Key contribution

A contribution statement is not available in the OpenAlex record.

Method / approach

Method details are not available in the OpenAlex metadata.

Main findings

Findings are not separately available in the OpenAlex metadata.

Limitations

Limitations are not available in the OpenAlex metadata.

Applications

Application details are not available in the OpenAlex metadata.

Available abstract

Cellulose dissolution is a worldwide issue in the production industry. Especially, the development of highly efficient and green cellulose solvents has been considered as a key factor to restrict the broad application of different cellulose industries. In this study, different chloride salts, such as LiCl, ZnCl 2, CaCl 2, and FeCl 3, with different water amounts were used as green solvents to investigate the driving force of cellulose dissolution. The superfast and highly efficient cellulose dissolution in ZnCl 2 ·3H 2 O and FeCl 3 ·6H 2 O was successfully achieved within 5–20 min, which was confirmed by the results of polarized light microscopy. Moreover, the effect of pH and water amounts of the chloride salts on the cellulose structural change and dissolution ability was investigated for a better understanding of the role of chloride salts during the cellulose dissolution process. Especially, the dissolution mechanism of cellulose in ZnCl 2 ·3H 2 O and FeCl 3 ·6H 2 O has been provided compared to other non-derivatizing cellulose solvents.

Key concepts: Dissolution, Cellulose, Chloride, Chemistry, Inorganic chemistry, Chemical engineering, Organic chemistry, Engineering

Related papers

Back to paper searchBrowse research topicsOriginal source
Highly Efficient and Superfast Cellulose Dissolution by Green Chloride Salts and Its Dissolution Mechanism — Research Paper | ScholarLens