Mechanical and Thermal Properties of Biocomposites from Poly(lactic acid) and DDGS

被引:44
作者
Li, Yonghui [1 ]
Sun, Xiuzhi Susan [1 ]
机构
[1] Kansas State Univ, Dept Grain Sci & Ind, Biomat & Technol Lab, Manhattan, KS 66506 USA
关键词
poly( lactic acid) (PLA); distillers dried grains with solubles (DDGS); biodegradable composites; thermo-mechanical properties; DISTILLERS DRIED GRAINS; MICROMECHANICAL DEFORMATION PROCESSES; FILLED SEMICRYSTALLINE POLYMERS; PHYSICAL-PROPERTIES; PHENOLIC RESIN; SOY PROTEIN; BLENDS; COMPOSITES; MORPHOLOGY; STARCH;
D O I
10.1002/app.33681
中图分类号
O63 [高分子化学(高聚物)];
学科分类号
070305 ; 080501 ; 081704 ;
摘要
Distillers dried grains with solubles (DDGS), an ethanol industry coproduct, is used mainly as a low-value feedstuff. Poly(lactic acid) (PLA) is a leading biodegradable polymer, but its applications are limited by its relatively high cost. In this study, low-cost, high-performance biodegradable composites were prepared through thermal compounding of DDGS and PLA with methylene diphenyl diisocyanate (MDI) as a coupling agent. Mechanical, morphological, and thermal properties of the composites were studied. The coupling mechanism of MDI in the PLA/DDGS system was confirmed via Fourier-transform infrared spectra. The PLA/20% DDGS composite with 1% MDI showed tensile strength (77 MPa) similar to that of pure PLA, but its Young's modulus was 25% higher than that of pure PLA. With MDI, strong interfacial adhesion was established between the PLA matrix and DDGS particles, and the porosity of the composites decreased dramatically. Crystallinity of PLA in the composites was higher than that in pure PLA. Composites with MDI had higher storage moduli at room temperature than pure PLA. This novel application of DDGS for biocomposites has significantly higher economic value than its traditional use as a feedstuff. (c) 2011 Wiley Periodicals, Inc. J Appl Polym Sci 121: 589-597, 2011
引用
收藏
页码:589 / 597
页数:9
相关论文
共 35 条
[1]  
*ASTM, 1992, D63891 ASTM, P161
[2]   Properties of Distillers Grains Composites: A Preliminary Investigation [J].
Cheesbrough, Vanessa ;
Rosentrater, Kurt A. ;
Visser, Jerry .
JOURNAL OF POLYMERS AND THE ENVIRONMENT, 2008, 16 (01) :40-50
[3]   Performance Enhancement of Poly(lactic acid) and Sugar Beet Pulp Composites by Improving Interfacial Adhesion and Penetration [J].
Chen, Feng ;
Liu, LinShu ;
Cooke, Peter H. ;
Hicks, Kevin B. ;
Zhang, Jinwen .
INDUSTRIAL & ENGINEERING CHEMISTRY RESEARCH, 2008, 47 (22) :8667-8675
[4]   Effect of DDGS, moisture content, and screw speed on physical properties of extrudates in single-screw extrusion [J].
Chevanan, Nehru ;
Rosentrater, Kurt A. ;
Muthukumarappan, Kasiviswanathan .
CEREAL CHEMISTRY, 2008, 85 (02) :132-139
[5]  
Dieteroch D., 1985, POLYURETHANE HDB, P7
[6]   Improving the Interface Strength in Flax Fibre Poly(lactic) Acid Composites [J].
Duhovic, Miro ;
Horbach, Sebastian ;
Bhattacharyya, Debes .
JOURNAL OF BIOBASED MATERIALS AND BIOENERGY, 2009, 3 (02) :188-198
[7]   Properties and Morphology of Poly(lactic acid)/Soy Protein Isolate Blends [J].
Fang, Kun ;
Wang, Biaobing ;
Sheng, Kuichuan ;
Sun, Xiuzhi Susan .
JOURNAL OF APPLIED POLYMER SCIENCE, 2009, 114 (02) :754-759
[8]   INVESTIGATION OF STRUCTURE OF SOLUTION GROWN CRYSTALS OF LACTIDE COPOLYMERS BY MEANS OF CHEMICAL-REACTIONS [J].
FISCHER, EW ;
STERZEL, HJ ;
WEGNER, G .
KOLLOID-ZEITSCHRIFT AND ZEITSCHRIFT FUR POLYMERE, 1973, 251 (11) :980-990
[9]   Physical properties of poly(lactic acid) and starch composites with various blending ratios [J].
Ke, TY ;
Sun, XZ .
CEREAL CHEMISTRY, 2000, 77 (06) :761-768
[10]   Micromechanical deformation processes in toughened and particle filled semicrystalline polymers. Part 2: Model representation for micromechanical deformation processes [J].
Kim, GM ;
Michler, GH .
POLYMER, 1998, 39 (23) :5699-5703