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NatureWorks llc
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NatureWorks llc
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Basell Polyolefine GmbH
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Image Search Results
Journal: Polymers
Article Title: Poly(Lactic Acid) Composites with Lignin and Nanolignin Synthesized by In Situ Reactive Processing
doi: 10.3390/polym15102386
Figure Lengend Snippet: List of samples prepared and their abbreviations.
Article Snippet:
Techniques: In Situ
Journal: Polymers
Article Title: Poly(Lactic Acid) Composites with Lignin and Nanolignin Synthesized by In Situ Reactive Processing
doi: 10.3390/polym15102386
Figure Lengend Snippet: Torque curves of ( a ) the melt compounding of PLA 2003D and ( b ) the ROP of PLA in the presence of lignin and nanolignin.
Article Snippet:
Techniques:
Journal: Polymers
Article Title: Poly(Lactic Acid) Composites with Lignin and Nanolignin Synthesized by In Situ Reactive Processing
doi: 10.3390/polym15102386
Figure Lengend Snippet: Free lactide content (NMR), intrinsic viscosity, average molecular weight, and polydispersity (GPC) of the studied polymers.
Article Snippet:
Techniques: Viscosity, Molecular Weight
Journal: Polymers
Article Title: Poly(Lactic Acid) Composites with Lignin and Nanolignin Synthesized by In Situ Reactive Processing
doi: 10.3390/polym15102386
Figure Lengend Snippet: SEM images of cryo-fractured cross sections and stereoscope images of thin films of ( a ) PLA 2003D, ( b ) PLA 2003D L, ( c ) PLA 2003D NL, ( d ) PLA ROP, ( e ) PLA ROP L, ( f ) PLA ROP L C, ( g ) PLA ROP NL, and ( h ) PLA ROP NL C.
Article Snippet:
Techniques:
Journal: Polymers
Article Title: Poly(Lactic Acid) Composites with Lignin and Nanolignin Synthesized by In Situ Reactive Processing
doi: 10.3390/polym15102386
Figure Lengend Snippet: DSC characteristics of the PLA lignin and nanolignin composites obtained from heating at a rate of 20 °C/min after quenching.
Article Snippet:
Techniques:
Journal: Polymers
Article Title: Poly(Lactic Acid) Composites with Lignin and Nanolignin Synthesized by In Situ Reactive Processing
doi: 10.3390/polym15102386
Figure Lengend Snippet: Tensile properties of PLA 2003D with kraft lignin and nanolignin. ( a ) Stress at break, σ b , ( b ) Elongation at break, ε b , and ( c ) Elastic modulus, E. One-way ANOVA, post hoc Tukey HSD test * p = 0.01–0.05, ** p = 0.001–0.01.
Article Snippet:
Techniques:
Journal: Polymers
Article Title: Poly(Lactic Acid) Composites with Lignin and Nanolignin Synthesized by In Situ Reactive Processing
doi: 10.3390/polym15102386
Figure Lengend Snippet: Hardness and elastic modulus of ( a , b ) PLA 2003D and ( c , d ) PLA ROP with kraft lignin and nanolignin. One-way ANOVA, post hoc Tukey HSD test * p = 0.01–0.05, ** p = 0.001–0.01, *** p = 0.0001–0.001, **** p < 0.0001.
Article Snippet:
Techniques:
Journal: Polymers
Article Title: PLA Biocomposites: Evaluation of Resistance to Mold
doi: 10.3390/polym14010157
Figure Lengend Snippet: The rate of surface fouling by Aspergillus niger Tiegh fungi on HDPE composites for: ( a ) bark small particles; ( b ) sawdust particles; ( c ) bark large particles; ( d ) sawdust large particles.
Article Snippet: In this study 36 variants of WPC composite panels were produced based on two types of polymer matrices: polylactic acid—PLA (Ingeo TM Biopolymer 2003D, NatureWorks LLC, Minnetonka, MN, USA) and
Techniques:
Journal: Polymers
Article Title: PLA Biocomposites: Evaluation of Resistance to Mold
doi: 10.3390/polym14010157
Figure Lengend Snippet: Example of mold growth ( Aspergillus niger Tiegh) after 7 days of exposure of composite samples with large particle bark filler of 60%, based on a matrix: ( a ) HDPE; ( b ) PLA.
Article Snippet: In this study 36 variants of WPC composite panels were produced based on two types of polymer matrices: polylactic acid—PLA (Ingeo TM Biopolymer 2003D, NatureWorks LLC, Minnetonka, MN, USA) and
Techniques:
Journal: Polymers
Article Title: PLA Biocomposites: Evaluation of Resistance to Mold
doi: 10.3390/polym14010157
Figure Lengend Snippet: Example of mold growth ( Aspergillus niger Tiegh) after 7 days of exposure of composite samples with small particle bark filler of 60%, based on a matrix: ( a ) HDPE; ( b ) PLA.
Article Snippet: In this study 36 variants of WPC composite panels were produced based on two types of polymer matrices: polylactic acid—PLA (Ingeo TM Biopolymer 2003D, NatureWorks LLC, Minnetonka, MN, USA) and
Techniques:
Journal: Polymers
Article Title: PLA Biocomposites: Evaluation of Resistance to Mold
doi: 10.3390/polym14010157
Figure Lengend Snippet: Example of mold growth ( Aspergillus niger Tiegh) after 7 days of exposure of composite samples with large particle sawdust filler of 60%, based on a matrix: ( a ) HDPE; ( b ) PLA.
Article Snippet: In this study 36 variants of WPC composite panels were produced based on two types of polymer matrices: polylactic acid—PLA (Ingeo TM Biopolymer 2003D, NatureWorks LLC, Minnetonka, MN, USA) and
Techniques:
Journal: Polymers
Article Title: PLA Biocomposites: Evaluation of Resistance to Mold
doi: 10.3390/polym14010157
Figure Lengend Snippet: Example of mold growth ( Aspergillus niger Tiegh) after 7 days of exposure of composite samples with small particle sawdust filler of 60%, based on a matrix: ( a ) HDPE; ( b ) PLA.
Article Snippet: In this study 36 variants of WPC composite panels were produced based on two types of polymer matrices: polylactic acid—PLA (Ingeo TM Biopolymer 2003D, NatureWorks LLC, Minnetonka, MN, USA) and
Techniques:
Journal: Polymers
Article Title: PLA Biocomposites: Evaluation of Resistance to Mold
doi: 10.3390/polym14010157
Figure Lengend Snippet: Porosity of the tested PLA and HDPE composites.
Article Snippet: In this study 36 variants of WPC composite panels were produced based on two types of polymer matrices: polylactic acid—PLA (Ingeo TM Biopolymer 2003D, NatureWorks LLC, Minnetonka, MN, USA) and
Techniques:
Journal: Polymers
Article Title: PLA Biocomposites: Evaluation of Resistance to Mold
doi: 10.3390/polym14010157
Figure Lengend Snippet: The rate of surface fouling by fungi Aspergillus niger Tiegh of HDPE composites with MAHPE addition; ( a ) bark small particles; ( b ) sawdust large particles.
Article Snippet: In this study 36 variants of WPC composite panels were produced based on two types of polymer matrices: polylactic acid—PLA (Ingeo TM Biopolymer 2003D, NatureWorks LLC, Minnetonka, MN, USA) and
Techniques:
Journal: Polymers
Article Title: PLA Biocomposites: Evaluation of Resistance to Mold
doi: 10.3390/polym14010157
Figure Lengend Snippet: The porosity of the tested PLA and HDPE composites containing additives.
Article Snippet: In this study 36 variants of WPC composite panels were produced based on two types of polymer matrices: polylactic acid—PLA (Ingeo TM Biopolymer 2003D, NatureWorks LLC, Minnetonka, MN, USA) and
Techniques: