Yuhan Wang, Danqi Xue, Jingjing Zhuo, 等. Optimizing hemicelluloses pre-extraction in eucalyptus kraft pulping: A pathway towards enhancing pulp mill biorefineries[J]. 中国化学工程学报(英文版), 2024,70(6):162-172.
Yuhan Wang, Danqi Xue, Jingjing Zhuo, Zhouyang Xiang. Optimizing hemicelluloses pre-extraction in eucalyptus kraft pulping: A pathway towards enhancing pulp mill biorefineries[J]. Chinese Journal of Chemical Engineering, 2024, 70(6): 162-172.
Yuhan Wang, Danqi Xue, Jingjing Zhuo, 等. Optimizing hemicelluloses pre-extraction in eucalyptus kraft pulping: A pathway towards enhancing pulp mill biorefineries[J]. 中国化学工程学报(英文版), 2024,70(6):162-172.DOI: 10.1016/j.cjche.2024.03.017.
Yuhan Wang, Danqi Xue, Jingjing Zhuo, Zhouyang Xiang. Optimizing hemicelluloses pre-extraction in eucalyptus kraft pulping: A pathway towards enhancing pulp mill biorefineries[J]. Chinese Journal of Chemical Engineering, 2024, 70(6): 162-172.DOI: 10.1016/j.cjche.2024.03.017.
Optimizing hemicelluloses pre-extraction in eucalyptus kraft pulping: A pathway towards enhancing pulp mill biorefineries
A critical pathway towards enhancing pulp mill biorefineries is to integrate the extraction and utilization of hemicelluloses into the pulping processes. Hence
an industrial pre-extraction strategy for hemicelluloses targeting eucalyptus kraft pulping process was developed. Alkaline solution or pulping white liquor was used to pre-extract hemicelluloses before the actual pulping process. The response surface methodology (RSM) technique was applied to investigate the most suitable conditions to maximize the yield of these hemicelluloses while simultaneously minimizing the damage to pulp yields and properties. Temperature (105 to 155 ℃)
alkali concentration (3% to 8%)
sulfidity (20% to 30%) and retention time (19 to 221 min) were combined to evaluate their effects on hemicellulose yields and chemical structures. The optimal pre-extraction conditions identified in this work (5.75% NaOH concentration
25% sulfidity at 135℃ for 60 min) successfully allowed recovering 4.8% of hemicelluloses (based on the wood dry mass) and limited damages to pulp yields and properties. The cellulose content in pulp can even be increased by about 10%. Hemicellulose emulsification properties were also evaluated
which were comparable to synthetic emulsifiers. This study provides an industrial pathway to effectively separate and utilize wood hemicelluloses from the pulping process
which has the potential to improve the economy and material utilization of pulp and paper mills.
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相关作者
Mohammad Dana
Mohammad Amin Sobati
Shahrokh Shahhosseini
Aminreza Ansari
Min Xia
Chunsong Ye
Kewu Pi
Defu Liu
相关机构
School of Chemical Engineering, Iran University of Science and Technology (IUST), Tehran
2 School of Resource and Environmental Engineering, Hubei University of Technology