|本期目录/Table of Contents|

[1]宋祥,陈介南,张林,等.木质素化学改性制备缓释肥料的研究综述[J].江苏农业科学,2019,47(02):19-24.
 Song Xiang,et al.Preparation of slow release fertilizers by chemical modification of lignin: a review[J].Jiangsu Agricultural Sciences,2019,47(02):19-24.
点击复制

木质素化学改性制备缓释肥料的研究综述(PDF)
分享到:

《江苏农业科学》[ISSN:1002-1302/CN:32-1214/S]

卷:
第47卷
期数:
2019年第02期
页码:
19-24
栏目:
专论与综述
出版日期:
2019-01-20

文章信息/Info

Title:
Preparation of slow release fertilizers by chemical modification of lignin: a review
作者:
宋祥1234 陈介南1234 张林1234 詹鹏1234
1.中南林业科技大学,湖南长沙 410004; 2.国家林业局生物乙醇研究中心,湖南长沙 410004;
3.湖南省木本生物质转化工程技术研究中心,湖南长沙 410004; 4.中南林业科技大学生物资源环境研究所,湖南长沙 410004
Author(s):
Song Xianget al
关键词:
木质素化学改性缓释肥料资源化利用
Keywords:
-
分类号:
TQ449+.1
DOI:
-
文献标志码:
A
摘要:
木质素是自然界中最丰富的可再生芳香族资源,也是造纸制浆、木质纤维乙醇等农林精炼过程中的剩余物;其资源潜力巨大,如何有效地利用和开发木质素资源是行业亟须解决的问题。综述木质素的理化性质及化学改性的最新进展,重点介绍木质素包膜法、氧化氨化法、接枝共聚法、交联聚合法制备缓释肥料及应用评价,以期为木质素资源化利用提供参考。
Abstract:
-

参考文献/References:

[1]Jongerius A L,Bruijnincx P C A,Weckhuysen B M. Liquid-phase reforming and hydrodeoxygenation as a two-step route to aromatics from lignin[J]. Green Chemistry,2013,15(11):3049-3056.
[2]Doherty W O S,Mousavioun P,Fellows C M. Value-adding to cellulosic ethanol:lignin polymers[J]. Industrial Crops & Products,2011,33(2):259-276.
[3]Laurichesse S,Avérous L. Chemical modification of lignins:towards biobased polymers[J]. Progress in Polymer Science,2014,39(7):1266-1290.
[4]Tomaszewska M,Jarosiewicz A,Karakulski K. Physical and chemical characteristics of polymer coatings in CRF formulation[J]. Desalination,2002,146(1/2/3):319-323.
[5]蒋挺大. 木质素[M]. 2版.北京:化学工业出版社,2008:1-2.
[6]Serio M A,Charpenay S,Bassilakis R,et al. Measurement and modeling of lignin pyrolysis[J]. Biomass & Bioenergy,1994,7(1/2/3/4/5/6):107-124.
[7]Eriksson H,Harvey S. Black liquor gasification-consequences for both industry and society[J]. Energy,2004,29(4):581-612.
[8]Ahmaruzzaman M. Industrial wastes as low-cost potential adsorbents for the treatment of wastewater laden with heavy metals[J]. Advances in Colloid & Interface Science,2011,166(1/2):36-59.
[9]Guo X Y,Zhang S Z,Shan X Q. Adsorption of metal ions on lignin[J]. Journal of Hazardous Materials,2008,151(1):134-142.
[10]Kinniburgh D G,Milne C J,Benedetti M F,et al. Metal ion binding by humic acid:application of the NICA-Donnan model[J]. Environmental Science & Technology, 1996,30(1996):1687-1698.
[11]Bouanda J,Dupont L,Dumonceau J,et al. Use of a NICA-Donnan approach for analysis of proton binding to a lignocellulosic substrate extracted from wheat bran[J]. Analytical & Bioanalytical Chemistry,2002,373(3):174-182.
[12]Cheng S N,Yuan Z S,Anderson M,et al. Synthesis of biobased phenolic resins/adhesives with methylolated wood-derived bio-oil[J]. Journal of Applied Polymer Science,2012,126(S1):E431-E441.
[13]Zhang L N,Huang J. Effects of nitrolignin on mechanical properties of polyurethane-nitrolignin films[J]. Journal of Applied Polymer Science,2001,80(8):1213-1219.
[14]Liu Y,Li K. Preparation and characterization of demethylated lignin-polyethylenimine adhesives[J]. The Journal of Adhesion,2006,82(6):593-605.
[15]Effendi A,Gerhauser H,Bridgwater T.Production of renewable phenolic resins by thermochemical conversion of biomass:a review[J]. Renewable & Sustainable Energy Reviews,2008,12(8):2092-2116.
[16]Tan T T M. Cardanol-lignin-based polyurethanes[J]. Polymer International,1996(41):13-16.
[17]Gandini A,Belgacem M N,Guo Z X,et al. Lignins as macromonomers for polyesters and polyurethanes[M]// Hu T Q. Chemical modification,properties,and usage of lignin. Boston:Springer,2002:57-80.
[18]Nahmany M,Melman A. Chemoselectivity in reactions of esterification[J]. Organic & Biomolecular Chemistry,2004,2(11):1563-1572.
[19]Glasser W G,Barnett C A,Rials T G,et al. Engineering plastics from lignin II. characterization of hydroxyalkyl lignin derivatives[J]. Journal of Applied Polymer Science,1984,29(5):1815-1830.
[20]Li Y,Ragauskas A J. Ethanol organosolv lignin-based rigid polyurethane foam reinforced with cellulose nanowhiskers[J]. Rsc Advances,2012,2(8):3347-3351.
[21]Tersac G. Chemistry and technology of polyols for polyurethanes. Milhail Ionescu. rapra technology,Shrewsbury,UK[J]. Polymer International,2007,56(6):820-830.
[22]Kelley S S,Glasser W G,Ward T C. Engineering plastics from lignin. XV. polyurethane films from chain-extended hydroxypropyl lignin[J]. Journal of Applied Polymer Science,1988,36(4):759-772.
[23]Cinelli P,Anguillesi I,Lazzeri A. Green synthesis of flexible polyurethane foams from liquefied lignin[J]. European Polymer Journal,2013,49(6):1174-1184.
[24]马涛,詹怀宇,王德汉,等. 木质素锌肥的研制及生物试验[J]. 广东造纸,1999(3):11-15.
[25]庞煜霞,杨东杰,邱学青,等. 磺化麦草碱木质素的结构特征及其作为混凝土减水剂的性能[J]. 林产化学与工业,2008(2):67-72.
[26]Meister J J,Meng J C. Graft 1-phenylethylene copolymers of lignin. 1. Synthesis and proof of copolymerization[J]. Macromolecules,1991(24):6843-6848.
[27]Meister J J,Patil D R,Channell H. Properties and applications of lignin-acrylamide graft copolymer[J]. Journal of Applied Polymer Science,1984,29(11):3457-3477.
[28]Nascimento E A,Morais S A L,Veloso D P,et al. Oxidative ammonolysis of the eucalyptus grandis kraft lignin[J]. Journal of the Brazilian Chemical Society,1994,5(1):5-14.
[29]Tian J,Fu S,Lucia L A. Ionic liquid-based molecular oxygen oxidation of eucalyptus kraft lignin to obtain a suite of monomeric aromatic by-products[J]. Journal of Wood Chemistry and Technology,2015,35(4):280-290.
[30]Matsushita Y,Yasuda S. Reactivity of a condensed-type lignin model compound in the Mannich reaction and preparation of cationic surfactant from sulfuric acid lignin[J]. Journal of Wood Science,2003,49(2):166-171.
[31]Yue X P,Chen F,Zhou X S. Improved interfacial bonding of PVC/wood-flour composites by lignin amine modification[J]. Bioresources,2011,6(2):2022-2034.
[32]Naz M Y,Sulaiman S A. Slow release coating remedy for nitrogen loss from conventional urea:a review[J]. Journal of Controlled Release,2016(225):109-120.
[33]Azeem B,Kushaari K,Man Z B,et al. Review on materials & methods to produce controlled release coated urea fertilizer[J]. Journal of Controlled Release,2014(1811):11-21.
[34]Mohd Ibrahima K R,Babadib F E,Yunus R. Comparative performance of different urea coating materials for slow release[J]. Particuology,2014(17):165-172.
[35]Behin J,Sadeghi N. Utilization of waste lignin to prepare controlled-slow release urea[J]. International Journal of Recycling of Organic Waste in Agriculture,2016,5(4):1-11.
[36]Sadeghi N,Shayesteh K,Lotfiman S,et al. Effect of modified lignin sulfonate on controlled-release urea in soil[J]. Journal of Polymers and The Environment,2017,25(3):1-8.
[37]Mulder W J,Gosselink R J A,Vingerhoeds M H,et al. Lignin based controlled release coatings[J]. Industrial Crops and Products,2011,34(1):915-920.
[38]Srivastava A,Bhandari K S. Oxidative ammonolysis of commercial lignin-a new concept to produce N-modified lignin[J]. Indian Forester,2000,126(6):643-646.
[39]姜伟童,苏玲,于淼,等. 甲醛交联碱木质素-聚乙烯醇-尿素薄膜氮元素缓释性能研究[J]. 林产化学与工业,2015,35(3):28-32.
[40]马艳丽,王儒儒,方桂珍,等. 聚丙烯酸接枝碱木质素基铁肥的制备及其缓释性能[J]. 农业工程学报,2012,28(18):208-214.
[41]Wen P,Han Y J,Wu Z,et al. Rapid synthesis of a corncob-based semi-interpenetrating polymer network slow-release nitrogen fertilizer by microwave irradiation to control water and nutrient losses[J]. Arabian Journal of Chemistry,2017,10(7):922-934
[42]De la Rosa J M,Liebner F,Pour G,et al. Partitioning of N in growing plants,microbial biomass and soil organic matter after amendment of N-ammonoxidized lignins[J]. Soil Biology & Biochemistry,2013(60):125-133.
[43]Wang Y,Jian L,Chen X Y. Biodegraded and polyurethane drape-formed urea fertilizer[J]. Journal of Wuhan University of Technology(Materials Science),2005,20(2):12-14.
[44]Matyjaszewski K. Atom transfer radical polymerization (ATRP):current status and future perspectives[J]. Macromolecules,2012,45(10):4015-4039.
[45]Wang J F,Yao K J,Korich A L,et al. Combining renewable gum rosin and lignin:towards hydrophobic polymer composites by controlled polymerization[J]. Journal of Polymer Science Part A Polymer Chemistry,2011,49(17):3728-3738.
[46]Ramirez F,Varela G,Delgado E,et al. Reactions,characterization and uptake of ammoxidized kraft lignin labeled with 15N[J]. Bioresource Technology,2007,98(7):1494-1500.
[47]王德汉,彭俊杰,廖宗文. 木质素改性产物对钾肥的缓释作用与作物吸钾量的影响[J]. 植物营养与肥料学报,2003,9(3):308-311.
[48]Yang L X,Yang Y,Chen Z,et al. Influence of super absorbent polymer on soil water retention,seed germination and plant survivals for rocky slopes eco-engineering[J]. Ecological Engineering,2014,62(3):27-32.
[49]Hussain Z,Ramli N K,Mansor N,et al. Lignin modified urea fertilizers biodegradation and nitrogen release under reduced soil condition[J]. Applied Mechanics & Materials,2015(699):981-987.
[50]Boerjan W,Ralph J,Baucher M. Lignin biosynthesis[J]. Annual Review of Plant Biology,2003,54(1):519.

相似文献/References:

[1]张宏喜,周婷婷,李楠,等.利用乙醇自催化法提取棉秆中的木质素[J].江苏农业科学,2013,41(06):243.
 Zhang Hongxi,et al.Extraction of lignin from cotton stalks by pulping autocatalytic method of ethanol[J].Jiangsu Agricultural Sciences,2013,41(02):243.
[2]张发展,李正文,杜健,等.木质纤维素乙醇发酵废渣中木质素磺化反应的研究[J].江苏农业科学,2013,41(11):324.
 Zhang Fazhan,et al.Study on sulfonation of lignin waste from lignocellulosic ethanol process[J].Jiangsu Agricultural Sciences,2013,41(02):324.
[3]赵俭波,陈新萍.利用碱法和有机溶剂法提取甘草渣木质素[J].江苏农业科学,2014,42(02):223.
 Zhao Jianbo,et al.Extraction of lignin from licorice residues by alkali and organic solvent[J].Jiangsu Agricultural Sciences,2014,42(02):223.
[4]鲁秀国,段建菊,罗军,等.非粮生物质吸附重金属离子的研究进展[J].江苏农业科学,2016,44(06):11.
 Lu Xiuguo,et al.Research progress of adsorption of heavy metal ions by non-food biomass[J].Jiangsu Agricultural Sciences,2016,44(02):11.
[5]庞庭才,熊拯,胡上英,等.银叶树果壳木质素提取及抗氧化性[J].江苏农业科学,2016,44(06):385.
 Pang Tingcai,et al.Extraction and antioxidation activity of lignin from Heritiera littoralis shell[J].Jiangsu Agricultural Sciences,2016,44(02):385.
[6]黄宏霞,胡平,陈小敏.木屑活性炭吸附去除水中重金属离子的研究[J].江苏农业科学,2014,42(03):306.
 Huang Hongxia,et al.Study on removal of heavy metal ions in water by adsorption of sawdust activated carbon[J].Jiangsu Agricultural Sciences,2014,42(02):306.
[7]刘金雷,刘天佳,于莹,等.木质素降解酶系在毕赤酵母中的表达及降解木质素的活性[J].江苏农业科学,2015,43(11):58.
 Liu Jinlei,et al.Expression of lignin degradation enzyme in Pichia pastoris and its acitvity of lignin degradation[J].Jiangsu Agricultural Sciences,2015,43(02):58.
[8]王凤学,王春明,钟超,等.固体碱预处理小麦秸秆对厌氧消化的影响[J].江苏农业科学,2015,43(05):328.
 Wang Fengxue,et al.Effect of solid alkaline pre-treatment on anaerobic digestion of wheat straw[J].Jiangsu Agricultural Sciences,2015,43(02):328.
[9]袁志慧,尤朝阳,王磊,等.中温NaOH预处理对玉米秸秆发酵产沼气的影响[J].江苏农业科学,2016,44(06):506.
 Yuan Zhihui,et al.Effect of medium temperature NaOH pretreatment on biogas production of corn stalk by fermentation[J].Jiangsu Agricultural Sciences,2016,44(02):506.
[10]何伟,耿莉莉,曾永明,等.甲酸法分离棉秆木质素的条件优化[J].江苏农业科学,2016,44(08):383.
 He wei,et al.Optimization of separation condition of lignin from cotton stalk by formic acid[J].Jiangsu Agricultural Sciences,2016,44(02):383.

备注/Memo

备注/Memo:
收稿日期:2017-09-20
基金项目:国家国际科技合作专项(编号:2015DFA01120);中央财政林业科技推广项目(编号:2015XT001);湖南省自然科学基金(编号:2015JJ5007);湖南省重点研发计划(编号:2016NK2149)。
作者简介:宋祥(1992—),男,江西吉安人,硕士研究生,主要从事林木生物质资源转化与利用研究。
通信作者:陈介南,博士,教授,博士生导师,主要从事生物质能源与材料研究。E-mail:chenjnx@163.com。
更新日期/Last Update: 2019-01-20