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首页> 外文期刊>Journal of Polymers and the Environment >Thermoplastic Blends Based on Poly(Butylene Succinate-co-Adipate) and Different Collagen Hydrolysates from Tanning Industry: Ⅰ-Processing and Thermo-mechanical Properties
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Thermoplastic Blends Based on Poly(Butylene Succinate-co-Adipate) and Different Collagen Hydrolysates from Tanning Industry: Ⅰ-Processing and Thermo-mechanical Properties

机译:基于聚(丁烯琥珀酸酯 - 共己酸酯)和来自鞣制工业的不同胶原水解产物的热塑性共混物:Ⅰ-加工和热机械性能

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摘要

In this study, blends of a biodegradable thermoplastic polyester, poly (butylene succinate-co-adipate) (PBSA) with two different raw hydrolyzed collagens (HCs), derived from the tannery industry, were investigated in terms of processability, rheological, thermal and mechanical properties. HCs, obtained by alkaline (HCa) and enzymatic (HCe) hydrolysis of the solid wastes generated during the shaving of the tanned leather, were used in PBSA/HC blends, up to 20 wt% of HC, produced by melting extrusion and processed by injection molding. All the blends up to 20 wt% HCs resulted suitable for the injection molding obtaining flexible molded specimens with good tensile properties. The different secondary structure of the two HCs influenced the rheology, morphology and mechanical properties of the produced blends. In particular, HCa, due its higher content of oligopeptides and free amino-acids, showed a good compatibility with the polymeric matrix acting as a plasticizer with consequent reduction of melt viscosity with increasing its loading. The molded dog-bones specimens containing 20 wt% HCa showed a value of elongation at break of 810%. While, HCe, due its higher presence of b-sheet structures, behaved as organic filler, showing a poor interfacial interaction with PBSA with consequent decrease of the tensile properties with increasing its loading. The good processability and satisfactory mechanical properties obtained encourage the use of both investigated collagen hydrolysates in the production of thermoplastic blends and relative molded products for applications in agriculture and plant nurseries, such as pots or small containers with fertilizing properties, due the presence of HCs.
机译:在该研究中,在可加工性,流变学,热和源机械性能。通过碱(HCA)获得的HCS和酶(HCE)水解在鞣制皮革中产生的固体废物,用于PBSA / HC共混物,高达20重量%的HC,通过熔化挤出和加工生产注塑成型。所有含量高达20wt%HCS,得到了注射成型,获得具有良好拉伸性能的柔性模塑试样。两种HCS的不同二级结构影响了所生产的共混物的流变,形态和机械性能。特别地,由于其较高含量的寡肽和游离氨基酸的HCA显示出与作为增塑剂的聚合物基质的良好相容性,随后随着熔体粘度的降低,增加其负载。含有20wt%HCA的模塑狗骨标本显示出突破810%的伸长率。虽然HCE,由于其较高的B板结构的存在而表现为有机填料,其显示与PBSA不良的界面相互作用,因此随着拉伸性能的降低而增加。获得的良好可加工性和令人满意的机械性能促进了在农业和植物苗圃中生产热塑性共混物和相对模塑产品的使用,例如具有施肥特性的盆栽或小容器,因此使用HCS的盆栽或小容器的应用。

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