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Dive into the research topics where Weerawut Chaiwat is active.

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Featured researches published by Weerawut Chaiwat.


Bioresource Technology | 2012

Esterification of bio-oil from mallee (Eucalyptus loxophleba ssp. gratiae) leaves with a solid acid catalyst: conversion of the cyclic ether and terpenoids into hydrocarbons.

Xun Hu; Richard Gunawan; Daniel Mourant; Yi Wang; Caroline Lievens; Weerawut Chaiwat; Liping Wu; Chun-Zhu Li

Bio-oil from pyrolysis of mallee (Eucalyptus loxophleba ssp. gratiae) leaves differs from that obtained with wood by its content of cyclic ethers, terpenoids and N-containing organic compounds. Upgrading of the leaf bio-oil in methanol with a solid acid catalyst was investigated and it was found that the N-containing organics in the bio-oil lead to deactivation of the catalyst in the initial stage of exposure and have to be removed via employing high catalyst loading to allow the occurrence of other acid-catalysed reactions. Eucalyptol, the main cyclic ether in the bio-oil, could be converted into the aromatic hydrocarbon, p-cymene, through a series of intermediates including α-terpineol, terpinolene, and α-terpinene. Various steps such as ring-opening, dehydration, isomerisation, and aromatization were involved in the conversion of eucalyptol. The terpenoids in bio-oil could also be converted into aromatic hydrocarbons that can serve as starting materials for the synthesis of fine chemicals, via the similar processes.


Fuel | 2013

Upgrading of bio-oil into advanced biofuels and chemicals. Part I. Transformation of GC-detectable light species during the hydrotreatment of bio-oil using Pd/C catalyst

Richard Gunawan; Xiang Li; Caroline Lievens; Mortaza Gholizadeh; Weerawut Chaiwat; Xun Hu; Daniel Mourant; John Bromly; Chun-Zhu Li


Fuel | 2012

Acid-catalysed reactions between methanol and the bio-oil from the fast pyrolysis of mallee bark

Xun Hu; Richard Gunawan; Daniel Mourant; Caroline Lievens; Xiang Li; Shu Zhang; Weerawut Chaiwat; Chun-Zhu Li


Fuel | 2014

Upgrading of bio-oil into advanced biofuels and chemicals. Part III. Changes in aromatic structure and coke forming propensity during the catalytic hydrotreatment of a fast pyrolysis bio-oil with Pd/C catalyst

Xiang Li; Richard Gunawan; Yi Wang; Weerawut Chaiwat; Xun Hu; Mortaza Gholizadeh; Daniel Mourant; John Bromly; Chun-Zhu Li


Fuel | 2012

Hydrolysis and glycosidation of sugars during the esterification of fast pyrolysis bio-oil

Richard Gunawan; Xiang Li; Alfons V. Larcher; Xun Hu; Daniel Mourant; Weerawut Chaiwat; Hongwei Wu; Chun-Zhu Li


Fuel | 2013

Upgrading of bio-oil into advanced biofuels and chemicals. Part II. Importance of holdup of heavy species during the hydrotreatment of bio-oil in a continuous packed-bed catalytic reactor

Weerawut Chaiwat; Richard Gunawan; Mortaza Gholizadeh; Xiang Li; Caroline Lievens; Xun Hu; Yi Wang; Daniel Mourant; Angelina Rossiter; John Bromly; Chun-Zhu Li


Fuel Processing Technology | 2013

Acid-catalysed treatment of the mallee leaf bio-oil with methanol: Effects of molecular structure of carboxylic acids and esters on their conversion

Xun Hu; Daniel Mourant; Yi Wang; Liping Wu; Weerawut Chaiwat; Richard Gunawan; Mortaza Gholizadeh; Caroline Lievens; Manuel Garcia-Perez; Chun-Zhu Li


Fuel Processing Technology | 2016

Importance of hydrogen and bio-oil inlet temperature during the hydrotreatment of bio-oil

Mortaza Gholizadeh; Richard Gunawan; Xun Hu; Sri Kadarwati; Roel Johannes Maria Westerhof; Weerawut Chaiwat; Mahmudul Hasan; Chun-Zhu Li


Archive | 2017

método de hidrotratamento, e sistema de hidrotratamento

Chun Zhu Li; Mortaza Gholizadeh; Richard Gunawan; Weerawut Chaiwat


Archive | 2015

A method of hydrotreatment and a hydrotreatment system

Chun-zhu Li; Richard Gunawan; Mortaza Gholizadeh; Weerawut Chaiwat

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