Production of Porous Biochar from Cow Dung Using Microwave Process

Author:

Tsai Wen-Tien1ORCID,Kuo Li-An2,Tsai Chi-Hung3,Huang Hsiang-Lan1,Yang Ru-Yuan4ORCID,Tsai Jen-Hsiung2

Affiliation:

1. Graduate Institute of Bioresources, National Pingtung University of Science and Technology, Pingtung 912, Taiwan

2. Department of Environmental Science and Engineering, National Pingtung University of Science and Technology, Pingtung 912, Taiwan

3. Department of Resources Engineering, National Cheng Kung University, Tainan 701, Taiwan

4. Department of Materials Engineering, National Pingtung University of Science and Technology, Pingtung 912, Taiwan

Abstract

To valorize livestock manure, the present study investigated the production of biochar from cow dung (CD) by microwave pyrolysis. The pore properties and chemical characteristics of CD and CD-based biochar products were found to correlate with the process parameters like microwave power (300–1000 W) and residence time (5–20 min). The findings indicated that CD is an excellent biomass based on the richness of lignocellulosic constituents from the results of proximate analysis and thermogravimetric analysis (TGA). Higher calorific values were obtained at mild microwave conditions, giving the maximal enhancement factor 139% in comparison with the calorific value of CD (18.97 MJ/kg). Also, it can be concluded that the biochar product obtained at 800 W for a holding time of 5 min had the maximal BET surface area of 127 m2/g and total pore volume of 0.104 cm3/g, which were microporous and mesoporous in the nitrogen adsorption–desorption adsorption analysis. On the other hand, the CD-based biochar contained oxygen-containing functional groups and inorganic minerals based on the spectroscopic analyses by Fourier-transform infrared spectroscopy (FTIR) and energy-dispersive X-ray spectroscopy (EDS), thus featuring to be prone to hydrophilicity in aqueous solutions.

Funder

Ministry of Science and Technology, Taiwan

Sun Carbon Technology Co., Ltd.

Publisher

MDPI AG

Subject

General Materials Science

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