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A path for lignin valorization via additive manufacturing of high-performance sustainable composites with enhanced 3D printability

机译:通过增材制造具有增强的3D可打印性的高性能可持续复合材料来实现木质素增值的途径

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摘要

We report the manufacture of printable, sustainable polymer systems to address global challenges associated with high-volume utilization of lignin, an industrial waste from biomass feedstock. By analyzing a common three-dimensional printing process—fused-deposition modeling—and correlating the printing-process features to properties of materials such as acrylonitrile-butadiene-styrene (ABS) and nylon, we devised a first-of-its-kind, high-performance class of printable renewable composites containing 40 to 60 weight % (wt %) lignin. An ABS analog made by integrating lignin into nitrile-butadiene rubber needs the presence of a styrenic polymer to avoid filament buckling during printing. However, lignin-modified nylon composites containing 40 to 60 wt % sinapyl alcohol–rich, melt-stable lignin exhibit enhanced stiffness and tensile strength at room temperature, while—unexpectedly—demonstrating a reduced viscosity in the melt. Further, incorporation of 4 to 16 wt % discontinuous carbon fibers enhances mechanical stiffness and printing speed, as the thermal conductivity of the carbon fibers facilitates heat transfer and thinning of the melt. We found that the presence of lignin and carbon fibers retards nylon crystallization, leading to low-melting imperfect crystals that allow good printability at lower temperatures without lignin degradation.
机译:我们报告了可印刷的,可持续的聚合物系统的制造,以应对与木质素(来自生物质原料的工业废物)的大量利用相关的全球挑战。通过分析常见的三维印刷工艺(熔融沉积建模),并将印刷工艺的特征与诸如丙烯腈-丁二烯-苯乙烯(ABS)和尼龙的材料的特性相关联,我们设计了首创的,高性能类可印刷的可再生复合材料,其中包含40至60重量%(wt%)的木质素。通过将木质素整合到丁腈橡胶中而制成的ABS类似物需要存在苯乙烯类聚合物,以避免印刷过程中丝弯曲。但是,含有40%至60 wt%富含芥子醇的熔融稳定的木质素的木质素改性尼龙复合材料在室温下表现出增强的刚度和拉伸强度,而-出乎意料的-却显示出熔融物中粘度的降低。此外,由于碳纤维的导热性促进了热传递和熔体的稀薄化,因此掺入4至16wt%的不连续碳纤维增强了机械刚度和印刷速度。我们发现木质素和碳纤维的存在会阻碍尼龙的结晶,从而导致低熔点的不完美晶体,从而在较低温度下实现良好的可印刷性而不会降解木质素。

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