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Thermal, mechanical and morphological properties of poly (hydroxybutyrate) and polypropylene blends after processing

机译:加工后的聚(羟基丁酸酯)和聚丙烯共混物的热,机械和形态学性质

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摘要

The ever increasing accumulation of plastic waste in the environment has motivated research on polymers that degrade rapidly after being discarded as possible substitutes for conventional inert plastics. Biodegradable polymers can be an alternative, since they have non-toxic residual products and low environmental permanence. Poly (hydroxybutyrate) is a biodegradable polymer with a strong potential for industrial purposes, but its thermal instability and fragility limit its applications. Thus, an alternative to improve the processability and properties of poly (hydroxybutyrate) is to mix it with another polymer, not necessarily a biodegradable one. In this work, different mixtures of poly(hydroxybutyrate) or PHB and polypropylene or PP were extruded and injected. After processing, the blends were studied and their miscibility, mechanical properties and degradability in different soils were analyzed. The main results indicated that the PHB/PP blends had better mechanical properties than pure PHB, as well as improved immiscibility and higher degradation in alkaline soil. The poly-hydroxybutyrate/polypropylene blends showed a tendency for lower crystallinity and stiffness of the polymer matrix, proportional to the amount of polypropylene in the blends, rendering them less stiff and fragile. The degradation tests showed that both pure PHB and blends with 90% PHB and 10% PP were degraded, with loss of their mechanical properties and weight.
机译:塑料废物在环境中的积累不断增加,促使人们对聚合物进行研究,这些聚合物在作为常规惰性塑料的可能替代品被丢弃后会迅速降解。可生物降解的聚合物可以替代,因为它们具有无毒的残留产品和低的环境持久性。聚(羟基丁酸酯)是可生物降解的聚合物,具有工业用途的强大潜力,但其热不稳定性和脆性限制了其应用。因此,提高聚(羟基丁酸酯)的可加工性和性能的替代方法是将其与另一种聚合物混合,该聚合物不一定是可生物降解的。在这项工作中,将聚(羟基丁酸酯)或PHB与聚丙烯或PP的不同混合物挤出并注入。加工后,对混合物进行了研究,并分析了它们在不同土壤中的混溶性,力学性能和降解性。主要结果表明,PHB / PP共混物比纯PHB具有更好的机械性能,并且在碱性土壤中具有更好的不混溶性和更高的降解性。聚羟基丁酸酯/聚丙烯共混物显示出较低的结晶度和聚合物基体刚度的趋势,该趋势与共混物中聚丙烯的量成比例,使它们的刚性和脆性降低。降解测试表明,纯PHB以及含90%PHB和10%PP的共混物均被降解,同时丧失了机械性能和重量。

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