4.7 Article

Steam explosion pretreatment improves acetic acid organosolv delignification of oil palm mesocarp fibers and sugarcane bagasse

期刊

出版社

ELSEVIER
DOI: 10.1016/j.ijbiomac.2021.01.174

关键词

Lignocellulosic fiber; Severity; Two-step treatment; Physical and chemical treatment; Lignin characterisation

资金

  1. Ceara State Foundation for the Support of Scientific and Technological Development (FUNCAP) [BMD-0008-00622.01.12/16]
  2. Brazilian Agricultural Research Corporation (EMBRAPA) [05/2016 - Macroprograma 3]
  3. Brazilian National Council for Scientific and Technological Development (CNPq) [443675/2014-7, 308807/2017-0, 409765/2018-0, 407291/2018-0]

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Steam explosion pretreatment combined with acetosolv can significantly increase lignin yield from oil palm mesocarp fibers and sugarcane bagasse.
Steam explosion can be used to pretreat lignocellulosic materials to decrease energy and chemical consumption during pulping to obtain environmentally friendly lignin and to improve lignin yield without changing its structure. The objective of this study was to evaluate the extraction of lignin from oil palm mesocarp fibers and sugarcane bagasse using steam explosion pretreatment followed by acetosolv. The biomasses were pretreated at 168 degrees C for a reaction time of 10 min. Steam explosion combined with acetosolv at lower severities was also carried out. Steam explosion followed by acetosolv increased the lignin yield by approximately 15% and 17% in oil palm mesocarp fibers and sugarcane bagasse, respectively. In addition, steam explosion decreased the reaction time of acetosolv four-fold while maintaining the lignin yield from sugarcane bagasse. Similar results were not obtained for oil palm mesocarp. High-purity and high-quality lignins were obtained using steam explosion pretreatment with structural characteristics similar to raw ones. Sugarcane bagasse lignin seems to be a better option for application in material science due its higher lignin yield and higher thermal stability. Our findings demonstrate that steam explosion is efficient for improving lignin yield and/or decreasing pulping severity. (C) 2021 Elsevier B.V. All rights reserved.

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