Effects of operating parameters on co-gasification of coconut petioles and refuse-derived fuel

Author:

Chommontha Natvaree12,Phongphiphat Awassada12ORCID,Wangyao Komsilp12ORCID,Patumsawad Suthum32,Towprayoon Sirintornthep12

Affiliation:

1. The Joint Graduate School of Energy and Environment, King Mongkut’s University of Technology Thonburi, Bangkok, Thailand

2. Center of Excellence on Energy Technology and Environment (CEE), PERDO, Ministry of Higher Education, Science, Research and Innovation, Bangkok, Thailand

3. Faculty of Engineering, Mongkut’s University of Technology North Bangkok, Bangkok, Thailand

Abstract

Coconut agro-industry in the western region of Thailand generates a large amount of residues. This study investigated the energy production potential of discarded coconut petioles, with a focus on co-gasification with refuse-derived fuel (RDF). Gasification tests involving petioles, RDFs and their mixtures (25%, 50%, 75% or 100% by weight) were conducted in a laboratory-scale fixed bed reactor. Fuel samples of 5 g were gasified at 700°C–900°C for 60 minutes, using simulated air (79% N2 to 21% O2, by volume) as a gasifying agent. Gasification of petioles generated producer gas with lower heating values, estimated at 0.43–0.75 MJ Nm−3, while RDF produced 0.92–1.39 MJ Nm−3. Adding greater quantities of RDF to the fuel mixture resulted in an increase in the heating value of the producer gas and cold gas efficiency. The operating temperatures and gasifying-agent flow rates affected the efficiency of process differently, depending on the fuel composition. However, the maximum cold gas efficiency from both fuels was detected in tests conducted at 800°C. In co-gasification and pure refuse-derived-fuel tests, higher temperatures and gasifying-agent flow rates led to outputs with higher energy yields. Our findings suggested that co-gasification of petiole is a viable alternative waste-treatment technology for this region.

Funder

The Joint Graduate School of Energy and Environment King Mongkut’s University of Technology Thonburi

The Center of Excellence on Energy Technology and Environment PERDO, Ministry of Higher Education, Science, Research, and Innovation

The Encon Fund, The Energy Policy and Planning Office, Ministry of Energy

King Mongkut’s University of Technology Thonburi

Publisher

SAGE Publications

Subject

Pollution,Environmental Engineering

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