Application of Lignin and Its Derivatives as Slow/Controlled Release Materials in Agricultural Fields |
Click here to download the full text |
Citation of this paper: |
Hits: 2678 |
Download times: 2593 |
Author Name | Affiliation | YingJuan Fu1 | 1. Key Laboratory of Pulp & Paper Science and Technology (Ministry of Education), Qilu University of Technology, Ji’nan, Shandong Province, 250353, China | MengHua Qin2 | 2. Organic Chemistry Laboratory, Taishan University, Tai’an, Shandong Province, 271021, China | ZhaoJiang Wang1 | 1. Key Laboratory of Pulp & Paper Science and Technology (Ministry of Education), Qilu University of Technology, Ji’nan, Shandong Province, 250353, China | ZongQuan Li1 | 1. Key Laboratory of Pulp & Paper Science and Technology (Ministry of Education), Qilu University of Technology, Ji’nan, Shandong Province, 250353, China |
|
Fund Project:The authors acknowledge financial support from the Independent Innovation and?Achievements Transformation Project of Shandong Province (2014CGZH0302). |
|
Abstract:Lignin is the main by-product of pulp and papermaking and is not effectively utilized. Conversion of industrial lignins into value-added materials is beneficial for the effective utilization of resources as well as for environmental protection. Because of their adsorptivity, slow-release property, biocompatibility, and biodegradability, lignin and its derivatives find potential applications as eco-friendly slow/controlled release materials in agricultural fields. This report reviews the recent research advances in lignin-based slow/controlled release fertilizers and pesticides. |
keywords:lignin slow/controlled release fertilizer pesticide |
HTML View Full Text View/Add Comment Download reader |
|
|
|
Similar articles(20): | [1] | YingJuan Fu,MengHua Qin,ZhaoJiang Wang and ZongQuan Li.Application of Lignin and Its Derivatives as Slow/Controlled Release Materials in Agricultural Fields[J].Paper and Biomaterials,2018,3(1):53-62. | [2] | Fan Zhai,Zhen Wang and Yu Liu.Preparation of Lignin Based Anion Exchanger for Nitrate and Phosphate Removal[J].Paper and Biomaterials,2016(1):22-30. | [3] | SHAO Zhen-yu,XIE Yi-min,WANG Song,YANG Hai-tao.Research on Pyrolysis of Lignin Model Compound at Different Temperatures Traced by GC/MS[J].Heilongjiang Pulp & Paper,2008,36(3). | [4] | Zhou Qiang.The Methylolation of Alkali Lignin through Heterogeneous Catalysis[J].Transactions of China Pulp and Paper,2000,15(1):120-122. | [5] | Wang DehanZhu ZhaohuaLiao Zhongwen.The Effect of Ammoxidized Lignin Fertilizer on Corn Biomass and Soil Urease Activity[J].Paper Science & Technology,1999(3). | [6] | Microwave-assisted organic acid extraction of lignin from bamboo: Structure and antioxidant activity investigation[J].Food chemistry | [7] | JIN Xiao-juan,PU Jun-wen,CHEN Yuan-chun,WU Qing-li.The effect of hydrogen peroxide on the Lignin of triploid clones of Populus tomentosa Carr[J].Wood Processing Machinery,2006,17(4):24-27. | [8] | WU Hong,FENG Kun,ZHU Ding-he,YANG Huan,WEN Peng and ZONG Min-hua.Progress of Electrospun Protein and Polysaccharide Nanofiber Application in Food Industry[J].Modern Food Science & Technology,2016,32(7):295-303. | [9] | ZHANG Zhen;MA Meihu;HUANG Xi.A Review on the Application of Electrospinning Technology in Poultry Egg Proteins[J].Food Science,2015,36(7):200-205. | [10] | G. Uçar,D. Meier,O. Faix,G. Wegener.Analytical pyrolysis and FTIR spectroscopy of fossil Sequoiadendron giganteum (Lindl.) wood and MWLs isolated hereof[J].Holz als Roh- und Werkstoff,2005,63(1):57-63. | [11] | Mo,Haitao,Zhang,Xiaoyong,Zhang,Jian'an, Zhao,Hua,Li,Zuohu.Study on Technological Conditions of SSF to Prepare the Bio-fertilizer with Lignin as Carrier[J].Food and Fermentation Industries,2003,29(5):53-56. | [12] | ZHANG Hong-jie,HU Hui-ren,WEI De-jin,XU Zhi-guo.Application of Fluorescent Whitening Agents against Light-induced Colour Reversion of Aspen BCTMP[J].Transactions of China Pulp and Paper,2008,23(4). | [13] | LI Zhong-zheng,REN Cheng-xia,WANG Hai-yan.Effect of Different Oxidants on Structure Transformation of Alkali Lignin[J].Transactions of China Pulp and Paper,2006,21(3):1-5. | [14] | GONG Weihua,MA Yue,Lü Xia,YE Fayin,ZHAO Guohua.Structural Features and Antioxidant Activities of Lignin Extracted from Sunflower Seed Shell[J].Food Science,2017,38(7):23-28. | [15] | Kuijie Gong,Lirong Chen,Xiaoyue Li,Kaichang Liu.Lignin accumulation and biosynthetic enzyme activities in relation to postharvest firmness of fresh waxy corn[J].Journal of Food Processing and Preservation,2018,42(1). | [16] | CHEN Guo,qiang,ZHANG Guang,ZHAO Kai,TIAN Ge,CHEN Jin,chun,WU Qiong.Microbial Synthesis, Properties and Applications of Polyhydroxyalkanoates[J].Journal of Food Science and Biotechnology,2002,21(2):197-208. | [17] | NILADRIRoy,NABANITASaha,TAKESHIKitano,PETRSaha,王晓芳[编译].Biodegradation of PVP-CMC Hydrogel Film:A Useful Food Packaging Material[J].China Printing and Packaging Study,2013(4):128-132. | [18] | ZHU Mengni,TIAN Weizhen,WANG Xing,ZHOU Jinghui and LI Yao.Chemical Structure and Antioxidant Activity of Different Sources of Lignin[J].Transactions of China Pulp and Paper,2019,34(4):14-20. | [19] | Burey P,Bhandari B R,Howes T,Gidley M J.Hydrocolloid gel particles: formation, characterization, and application[J].Critical reviews in food science and nutrition,2008,48(5):361-377. | [20] | Yu Jian,Chen Lilian X L.The greenhouse gas emissions and fossil energy requirement of bioplastics from cradle to gate of a biomass refinery[J].Environmental science & technology,2008,42(18):6961-6966. |
|
|
|