Catalytic Conversion of 2-Phenethyl Phenyl Ether and 2-Phenoxy-1-Phenyl Ethanol Over ZSM-5, Y and Beta Zeolites
Journal article, 2024

Catalytic conversion of 2-phenoxy-1-phenyl ethanol (PPE-OH) and 2-phenethyl phenyl ether (PPE) was conducted in an autoclave reactor using Faujasite zeolite (HY), Beta zeolite (HBEA), and Zeolite Socony Mobil-5 (HZSM-5) with medium and large pore channels. All catalysts were thoroughly analyzed using various techniques like FT-IR, N2 physisorption, XRD, SEM-EDX, NH3-TPD, ICP spectroscopy, and thermogravimetric analysis (TGA). The results showed that HBEA and HY catalysts, with their larger pore channels and sizes, exhibited excellent activity in breaking the ether bond of PPE-OH. HBEA and HY zeolites exhibited almost full conversion of PPE-OH at 240 °C and 1 h, and HZSM-5 zeolite obtained only 47% conversion of PPE-OH at the same condition. The cleavage of the ether bond of β-O-4 linkage was performed over HBEA and HY zeolites better than HZSM-5 zeolite. Moreover, high-strong acid sites of HBEA zeolite favored breaking PPE at 240 °C and 1 h, and PPE did not convert over HY and HZSM-5 zeolites at the same condition. These findings highlight the crucial role of pore size and channels and the acidity of catalysts for converting large molecules like lignin. This study provides valuable insights into using zeolite catalysts for breaking down the β-O-4 linkage in lignin.

HY zeolite

Beta zeolite

Lignin model compound

ZSM-5 zeolite

Acid catalyst

Author

Tan Minh Le

International University - Vietnam National University HCM City

Vietnam National University

Xuan Tien Pham

International University - Vietnam National University HCM City

Vietnam National University

Hoang Phuoc Ho

Chalmers, Chemistry and Chemical Engineering, Chemical Technology

Thong Le Minh Pham

Duy Tan University

Xuan Thang Cao

Trường Đại học Công nghiệp thành phố Hồ Chí Minh

Thanh Ngoc Nguyen

Dại học Nguyen Tat Thanh

Ha Ngoc Giang

Trường Đại học Công nghiệp thành phố Hồ Chí Minh

Thanh Khoa Phung

Vietnam National University

International University - Vietnam National University HCM City

ChemistrySelect

2365-6549 (eISSN)

Vol. 9 44 e202403967

Subject Categories

Chemical Process Engineering

DOI

10.1002/slct.202403967

More information

Latest update

12/16/2024