化学
木质素
腐殖质
蒸汽爆炸
芳构化
分解
解聚
半纤维素
有机化学
纤维素
热分解
制浆造纸工业
催化作用
土壤水分
环境科学
土壤科学
工程类
作者
Wenjie Sui,Shunqin Li,Xiaodan Zhou,Zishan Dou,Rui Liu,Tao Wu,Hongyu Jia,Guanhua Wang,Min Zhang
出处
期刊:Molecules
[Multidisciplinary Digital Publishing Institute]
日期:2021-06-24
卷期号:26 (13): 3841-3841
被引量:41
标识
DOI:10.3390/molecules26133841
摘要
In this work, steam explosion (SE) was exploited as a potential hydrothermal-humification process of vegetable wastes to deconstruct their structure and accelerate their decomposition to prepare humified substances. Results indicated that the SE process led to the removal of hemicellulose, re-condensation of lignin, degradation of the cellulosic amorphous region, and the enhancement of thermal stability of broccoli wastes, which provided transformable substrates and a thermal-acidic reaction environment for humification. After SE treatment, total humic substances (HS), humic acids (HAs), and fulvic acids (FAs) contents of broccoli samples accounted for up to 198.3 g/kg, 42.3 g/kg, and 166.6 g/kg, and their purification were also facilitated. With the increment of SE severity, structural characteristics of HAs presented the loss of aliphatic compounds, carbohydrates, and carboxylic acids and the enrichment of aromatic structures and N-containing groups. Lignin substructures were proved to be the predominant aromatic structures and gluconoxylans were the main carbohydrates associated with lignin in HAs, both of their signals were enhanced by SE. Above results suggested that SE could promote the decomposition of easily biodegradable matters and further polycondensation, aromatization, and nitrogen-fixation reactions during humification, which were conducive to the formation of HAs.
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