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中国塑料 ›› 2020, Vol. 34 ›› Issue (11): 102-108.DOI: 10.19491/j.issn.1001-9278.2020.11.017
• 综述 • 上一篇
张鑫1, 周文1, 秦文博1, 刘晶龙1, 郭斌1,2,3(), 黄亚男2,3
收稿日期:
2020-03-23
出版日期:
2020-11-26
发布日期:
2020-11-20
基金资助:
ZHANG Xin1, ZHOU Wen1, QIN Wenbo1, LIU Jinglong1, GUO Bin1,2,3(), HUANG Yanan2,3
Received:
2020-03-23
Online:
2020-11-26
Published:
2020-11-20
Contact:
GUO Bin
E-mail:gbm@njfu.com.cn
摘要:
以典型的3大类林产化学品(松香、栲胶、紫胶)为主线,系统介绍了当今林产化学品在塑料及复合材料中的研究现状和进展。在复合材料中,松香可用于制备树脂基体或改性剂来使用;栲胶可直接加入,也可提取其中的单宁后再用;紫胶则可作为表面改性剂,也可用作基体树脂。最后,对该领域的研究趋势进行了展望,以期对同行有所借鉴。
中图分类号:
张鑫, 周文, 秦文博, 刘晶龙, 郭斌, 黄亚男. 林产化学品在塑料及复合材料中的研究现状及进展[J]. 中国塑料, 2020, 34(11): 102-108.
ZHANG Xin, ZHOU Wen, QIN Wenbo, LIU Jinglong, GUO Bin, HUANG Yanan. Research Progress in Applications of Forestry Chemicals in Plastics and Composites[J]. China Plastics, 2020, 34(11): 102-108.
品种 | 外观 | 单宁含量/% | 非单宁含量/% | 不溶物含量/% | 水分含量/% | 灰分含量/% | pH值 |
---|---|---|---|---|---|---|---|
黑荆树 | 粉状或块状淡橙黄色或棕色 | 70~78 | 8 | 0 | 0 | 2.5 | 5 |
?木 | 块状或粉状 | 68~76 78~84 | 8 | 8 0.1 | 20 10 | 4 4~5 | 5.5 5.8 |
杨梅 | 粉状淡黄色 | 66~76 | 26~28 | 4~6 | 12 | 9 | 5 |
落叶松 | 粉状棕红色 | 53~59 | 18 | 4~6 | 12 | 8 | 5 |
橡碗 | 粉状淡棕色 | 60~73 | 22 | 0.5 | 10 | 5 | 3.8 |
品种 | 外观 | 单宁含量/% | 非单宁含量/% | 不溶物含量/% | 水分含量/% | 灰分含量/% | pH值 |
---|---|---|---|---|---|---|---|
黑荆树 | 粉状或块状淡橙黄色或棕色 | 70~78 | 8 | 0 | 0 | 2.5 | 5 |
?木 | 块状或粉状 | 68~76 78~84 | 8 | 8 0.1 | 20 10 | 4 4~5 | 5.5 5.8 |
杨梅 | 粉状淡黄色 | 66~76 | 26~28 | 4~6 | 12 | 9 | 5 |
落叶松 | 粉状棕红色 | 53~59 | 18 | 4~6 | 12 | 8 | 5 |
橡碗 | 粉状淡棕色 | 60~73 | 22 | 0.5 | 10 | 5 | 3.8 |
1 | 商士斌,宋湛谦.我国林产化学品“十一五”发展思路[J].精细与专用化学品,2006, 14(8):1⁃5. |
SHANG S B,SONG Z Q.Development Ideas for China's Forestry Chemicals during the Period of Eleventh Five⁃Year Plan[J]. Fine and Specialty Chemicals,2006, 14(8):1⁃5. | |
2 | 黄活阳,哈成勇,马一静,等.甲醛改性松香环氧树脂/纳米SiO2复合材料的制备与表征[J].化学建材,2009,25(3):28⁃30. |
HUANG H Y,HA C Y,MA Y J,et al.Preparation and Characterization of Formaldehyde Modified Rosin Epoxy Resin (FMRE)/SiO2 Nanocomposites[J]. Chemical Materials for Construction, 2009,25(3):28⁃30. | |
3 | 万国芸,王振国,苏剑雄.松香制备丙烯酸松香聚酯玻璃钢[J].塑料工业,1987(1):30⁃32. |
WAN G Y,WANG Z G,SU J X.The Preparation of Acrylic Modified Rosin Polyester Glass Fibre Reinforced Plastics from Rosin[J].Plastics Industry,1987(1):30⁃32. | |
4 | 张猛,周永红,谢友利,等.一种制备阻燃型松香基聚酯多元醇的方法及产物应用:中国,CN102352026A[P].2011⁃08⁃22. |
5 | 广东蕉岭县松香厂.工程塑料—松香聚酯的试制[J].农业科技通讯,1974(1):32⁃33. |
Guangdong Jiaoling Rosin Factory.Trial Production of Engineering Plastics⁃Rosin Polyester[J].Bulletin of Agricultural Science and Technology,1974(1):32⁃33. | |
6 | 张立生,熊 竹,张传芝,一种松香基形状记忆聚氨酯的制备方法:中国,CN103113551A[P].2013⁃01⁃22. |
7 | INGA⁃LAFEBRE J D, PULIDO⁃GONZÁLEZ H, GONZÁLEZ⁃NÚÑEZ H,et al.The Multirole of Modified Natural Gums for Multicomponent Polymers: As Coupling Agents for Polymers Reinforced with Cellulosic Fibers or Compatibilizers for Biodegradable Polymer Blends[J].Química Nova,2019,42:296⁃304. |
8 | YANG M S, CHEN X Y, LIN H X, et al.A Simple Fabrication of Superhydrophobic Wood Surface by Natural Rosin Based Compound Via Impregnation at Room Temperature[J].European Journal of Wood and Wood Products,2018,76(5):1 417⁃1 425. |
9 | NEGI R S, BISHT R S , SINGH R K,et al. Physico⁃Mechanical and Antibacterial Properties of Pine Gum/Epoxy Composites with/without Silver Nanoparticles[J].Macromolecular Materials and Engineering,2019,304:1800744. |
10 | LI Q Y, W H Q, Yin P, et al. The Mechanical Properties of Damping Rubber Reinforced by Wrap Knitted Spacer Fabric[J].Polymer Composites,2017,39:4 434⁃4 441. |
11 | 张倩云,刘 盼,韩晶杰.松香树脂对天然橡胶/聚酯纤维复合材料界面黏结性能的影响[J].合成橡胶工业,2019,42(6):470⁃473. |
ZHANG Q Y,LIU P,HAN J J.Effects of Rosin Resin on Interfacial Adhesion Properties of Natural Rubber/Polyester Fiber Composites[J]. China Synthetic Rubber Industry, 2019,42(6):470⁃473. | |
12 | 夏江奇,张作才,李裕琪,等.松香基分散剂对聚丙烯木塑材料性能的影响[J].现代塑料加工应用. 2018,30(6):13⁃16 |
XIA J Q,ZHANG Z C,LI Y Q,et al.Effect of Rosin⁃Based Dispersant on Properties of PP/MCF Wood⁃Plastic Composites[J]. Modern Plastics Processing and Applications, 2018,30(6):13⁃16. | |
13 | 邱亚健,张初阳.基于非织造工艺的新型绿色黄麻中密度纤维板试制[J].山东纺织科技2015,56(2):47⁃51. |
QIU Y J, ZHANG C Y. A New Green Jute Middle Density Fiberboard Based on Nonwoven Process[J]. Shandong Textile Science & Technology, 2015, 56(2):47⁃51. | |
14 | 文书静,胡进波,于朝阳,等. 马占相思栲胶⁃糠醇热固性树脂制备及其主要性能研究[J].中南林业科技大学学 报.2019,39(8):124⁃130. |
WEN S J, HU J B, YU Z Y, et al.Preparation and Primary Properties of Acacia Mangium Tannin⁃furanic Thermosetting Resin[J].Journal of Central South University of Forestry & Technology, 2019,39(8):124⁃130. | |
15 | 张 斌.木粉/落叶松拷胶复合模压成板工艺[J].东北林业大学学报,2006,34(3):39⁃40. |
ZHANG B.Manufacture Technology of Molded Products Made from Wood Flour and Larch Tannin Extract[J]. Journal of Northeast Forestry University,2006,34(3):39⁃40. | |
16 | 朱殿奎,李 晴,沈志明,等.外墙外保温用拷胶改性酚醛树脂泡沫的研究[J].新型建筑材料,2009(7):75⁃78. |
ZHU D K,LI Q,SHEN Z M, et al.Study of Plant Tannin Extract Modified Phenolic Foam for Exterior Wall External Insulation[J]. Research Institute of Building Science, 2009(7):75⁃78. | |
17 | SUNIJA A J, ILANGO S S, VINOD KUMAR K P,et al. Thespesia Populnea Reinforced Cashew Nut Husk Tannin⁃Based Polyurethane Composites[J].Journal of Natural Fibers,2015,12(5):481⁃93. |
18 | BRIDSON J H, KAUR J, ZHANG Z H,et al. Polymeric Flavonoids Processed with Co⁃Polymers as UV and Thermal Stabilisers for Polyethylene Films[J].Polymer Degradation and Stability,2015,122:12 218⁃12 224. |
19 | NICOLLIN A,KUENY R,TONIAZZO L,et al.High Density Biocomposite from Natural Fibers and Tannin Resin[J].Journal of Adhesion Science and Technology, 2012,26(10/11):1 537⁃1 545. |
20 | HOONG Y B,PARIDAH M T,LOH Y F,et al. A New Source of Natural Adhesive: Acacia Mangium Bark Extracts Co⁃Polymerized with Phenol⁃Formaldehyde (Pf) for Bonding Mempisang (Annonaceae SPP.) Veneers[J]. International Journal of Adhesion and Adhesives,2011,31(3):164⁃167. |
21 | PIZZI A,KUENY R,LECOANET F,et al. High Resin Content Natural Matrix⁃Natural Fibre Biocomposites[J]. Industrial Crops and Products,2009,30(2):235⁃240. |
22 | AMMAYAPPANA L,SEKHAR D,GURUPRASAD R,et al.Effect of Lac Treatment on Mechanical Properties of Jute Fabric/Polyester Resin Based Biocomposite[J].Indian Journal of Fibre & Textile Research, September2016,41:312⁃317. |
23 | YANG Y Y, LIU Z P,YU D G,et al.Colon⁃Specific Pulsatile Drug Release Provided by Electrospun Shellac Nanocoating on Hydrophilic Amorphous Composites[J]. International Journal of J Nanomedicine,2018,13:2 395⁃2 404. |
24 | SINGH S, SINGH V, GUPTA A K,et al.Investigations of Structural, Chemical and Physical Properties of Natural Lac and Its Reinforced Composites[J].Indian Journal of Pure & Applied Physics, 2018,56:69⁃75. |
25 | 龙 门,马 磊,宋 野,等.纳米Fe3+/Ti02改性聚乙烯醇基紫胶复合膜对鸡蛋的保鲜效果[J].农业工程学报,2014,30(20):313⁃324. |
LONG M, MA L, SONG Y,et al. Preserved Effect of Nano⁃Fe3+/TiO2 Modified PVA⁃Based Composite Preservation Coating for Eggs[J]. Transactions of the Chinese Society of Agricultural Engineering,2014,30(20):313⁃324. | |
26 | LUANGTANA⁃ANAN M,SORADECH S,SAENGSOD S,et al.Enhancement of Moisture Protective Properties and Stability of Pectin through Formation of a Composite Film: Effects of Shellac and Plasticizer[J]. J Food Sci, 2017,82(12): 2 915⁃2 925. |
27 | 冀浩博,李 凯,李 坤,等.紫胶树脂⁃羟丙基甲基纤维素复合膜的特性研究[J].西南林业大学学报,2017,37(6):195⁃202. |
JI H B,LI K,LI K, et al.Charecters of Complex Film Made by Shellac and Hydroxy Propyl Methyl Cellulose[J]. Journal of Southwest Forestry University,2017,37(6):195⁃202. | |
28 | BARIK A,PATNAIK T,PARHI P,et al.Synthesis and Characterization of New Shellac–Hydroxypropylmethylcellulose Composite for Pharmaceutical Applications[J]. Polymer Bulletin,2017,74(9):3 467⁃3 485. |
29 | KHAIRUDDIN, PURNAWAN C,ANINGTYAS S,et al.Preparation and Properties of Paper Coating Based Bilayer of Starch and Shellac Composites[J]. Journal of Physics: Conference Series,2019, 1153(1):012092. |
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