参考文献/References:
[1]张静, 徐鸽, 宗蕴玮. 木质素作为脱硫剂的研究[J]. 常州大学学报(自然科学版), 2001, 13(3): 29-31.
[2]SEYDIBEYOGLU M O, MISRA M, SAHOO S, et al. Characterization of industrial lignins for their utilization in future value added applications[J]. Biomass and Bioenergy, 2011, 35(10): 4230-4237.
[3]KUZNETSOV B N, CHESNOKOV N V, SUDAKOVA I G, et al. Green catalytic processing of native and organosolv lignins[J]. Catalysis Today, 2018, 309: 18-30.
[4]ZHU Y T, LI Z J, CHEN J Z. Applications of lignin-derived catalysts for green synthesis[J]. Green Energy & Environment, 2019(3): 210-244.
[5]DOMINGUEZ R J, TARRES Q, DELGADO A M, et al. Approaching a new generation of fiberboards taking advantage of self lignin as green adhesive[J]. International Journal of Biological Macromolecules, 2018, 108: 927-935.
[6]YAN L. Advances in chemical modification and efficient utilization of lignin[J]. Green Technology, 2016(12): 196-200.
[7]ZHAO L W, GRIGGS B F, CHEN C L, et al. Utilization of softwood kraft lignin as adhesive for the manufacture of reconstituted wood[J]. J Wood Chem Technol, 1994, 14(1): 127-145.
[8]ZHANG B P, MA Z C, LIU Y, et al. Chemical modification of lignin and its adsorption to AuCl-4[J]. CIESC Journal, 2017, 68(5): 1946-1953.
[9]路祺, 孟永斌, 徐蕾, 等. 乙醇法木质素羟甲基化改性研究[J]. 植物研究, 2016, 36(1): 151-155.
[10]张帆, 黄平平, 郭明辉. 木质素酚羟基含量提高方法研究进展[J]. 西南林业大学学报, 2014, 34(6): 98-103.
[11]杜芳黎, 黎演明, 冼学权, 等. 离子液体-水共溶剂作用下木质素转化为酚类物质的研究[J]. 现代化工, 2019, 39(2): 144-148.
[12]胡立红, 周永红, 潘晖, 等. 木质素脱甲基化改性及产物结构表征[J]. 研究简报, 2012, 10(3): 77-84.
[13]ALONSO M V, OLIET M, RODRGUEZ F, et al. Modification of ammonium lignosulfonate by phenolation for use in phenolic resins[J]. Bioresource Technology, 2005, 96(9): 1013-1018.
[14]王钧. 酶解木质素羟甲基化改性及制备酚醛树脂的研究[D]. 南京:中国林业科学研究院, 2017.
[15]ABDOLLAHI M, HABASHI R B, MOHSENPOUR M. Poly(ε-caprolactone)chains grafted from lignin, hydroxymethylated lignin and silica/lignin hybrid macroinitiators: synthesis and characterization of lignin- based thermoplastic copolymers[J]. Industrial Crops and Products, 2019, 130: 547-557.
[16]TRIBOT A, AMER G, ALIO M A. Wood-lignin: supply, extraction processes and use as bio-based material[J]. European Polymer Journal, 2019, 112: 228-240.
[17]徐强, 孙倩倩, 赵新坤, 等. 工业碱木质素羟甲基化改性研究[J]. 林业工程学报, 2017, 2(3): 90-96.
[18]TAKUJI M, ASAKO M. Comparative analysis of lignin chemical structures of sugarcane bagasse pretreated by alkaline, hydrothermal, and dilute sulfuric acid methods[J]. Industrial Crops & Products, 2018(121): 124-131.
[19]温福山, 刘文亮, 楚雨格, 等. 纳米TiO2的水热合成及光催化降解甲基橙综合实验[J]. 实验技术与管理, 2018, 35(11): 167-170.
[20]全洪新, 徐莫临. 水热合成二氧化钛薄膜及光催化反应器的研究[J]. 辽宁化工, 2018, 47(10): 996-998.
[21]祝大伟, 尚鸣, 顾万建, 等. 水热法在材料合成中的应用及其发展趋势[J]. 硅谷, 2014, 7(17): 116-126.
[22]刘晓欢, 张明明, 王基夫, 等. 水热法碱活化生物质乙醇木质素的化学结构变化[J]. 光谱学与光谱分析, 2013, 33(11): 2940-2944.
[23]刘成. 木质素热重红外动力学分析与乙酰化改性研究[D]. 南京: 南京林业大学, 2015.
[24]刘贵生. 木质素官能团分析[M]. 哈尔滨: 东北林业大学出版社, 1996.
[25]MALUTAN T, NICU R, POPA V I. Contribution to the study of hydroxymetylation reaction of alkali lignin[J]. BioResources, 2008, 3(1): 13-20.
[26]LI J, HENRIKSSON G, GELLERSTEDT G. Lignin depolymerization/repolymerization and its critical role for delignification of aspen wood by steam explosion[J]. Bioresource Technology, 2007, 98(16): 3061-3068.
[27]张浩楠, 赵瑾, 徐栋梁, 等. 二维核磁谱对木质素酚与磨木木质素结构的对照解析[J]. 纤维素科学与技术, 2018, 26(4): 9-18.
[28]陶用珍, 管映亭. 木质素的化学结构及其应用[J]. 纤维素科学与技术, 2003, 11(1): 42-55.
[29]杨东杰, 周海峰, 谢绍朐, 等. 漆酶活化碱木质素的磺甲基化反应活性研究[J]. 高分子学报, 2013, 2(2): 232-240.
[30]WANG Z, LIU Y, LI J. Regulating effects of nitrogenous bases on the char structure and flame retardancy of polypropylene/intumescent flame retardant composites[J]. Sustainable Chemistry Eng, 2017, 5(3): 2375-2383.
[31]LIU L, QIAN M B, HUANG G, et al. Fabrication of green lignin-based flame retardants for enhancing the thermal and fire retardancy properties of polypropylene/wood composites[J]. Sustainable Chemistry Eng, 2016, 4(4): 2422-2431.
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