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Aesthetic Quality and Strength of Bioplastic Biocontainers at Different Substrate Volumetric Water Contents

机译:不同底物体积水含量的生物塑料生物切割器的美学质量和强度

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摘要

Various types of emerging bioplastic containers present a range of physical and chemical properties and can perform differently from one another in production environments. Container performance may be affected by substrate moisture content. We quantified the effects of bioplastic container type and substrate volumetric water content (VWC) on the aesthetic and mechanical strength properties of bioplastic containers and on plant growth. Seedlings of 'Divine Cherry Red' new guinea impatiens (Impatiens hawkeri W. Bull) and 'Pinot Premium Deep Red' zonal geranium (Pelargonium xhortorum L.H. Bailey) were transplanted into five types of 11.4-cm-diameter containers, four types made from bioplastics and one type made from petroleum-based plastic and used as a control. Plants were watered to container capacity at transplant, allowed to dry down to VWC thresholds of 0.20 or 0.40 m(3).m(-3), and subsequently maintained at desired set points by using a precision irrigation system controlled by soil moisture sensors. Total volume of water applied per plant to new guinea impatiens was affected by VWC and not container type, whereas irrigation volume was affected by both for geranium. Growth index and shoot dry mass (SDM) of new guinea impatiens and geranium were affected by VWC. Container type affected growth index and SDM of geranium only. Water use efficiency (WUE) of both species was similar regardless of container type and VWC. Aesthetic quality varied based on VWC for only one container type, which was made from a blend that included soy-based bioplastic. Containers manufactured with polyhydroxyalkanoates (PHA) and dried distiller's grains and solubles (DDGS) or polylactic acid (PLA), soy polymer with adipic anhydride (SP.A), and a proprietary bio-based filler (BR) derived from modified DDGS were stronger when maintained at a lower VWC, 0.20 m(3).m(-3). Our findings indicate that restricting irrigation to the minimum needed to achieve the desired crop growth is a viable strategy for sustaining aesthetic quality and strength of bioplastic containers manufactured with plant protein-based fillers such as SP. A and BR. Other bioplastic containers, such as thosemade of PLA-lignin biocomposite, show durability equal to that of petroleum-based plastic containers and maintain pristine appearance regardless of substrate VWC during production.
机译:各种类型的新出现的生物塑料容器呈现了一系列物理和化学性质,并且可以在生产环境中彼此不同地执行。容器性能可能受基质水分含量的影响。我们量化了生物塑料容器型和底物体积含水量(VWC)对生物塑料容器的美学和机械强度性能以及植物生长的影响。 'Divine Cherry Red'新的豚鼠(Impatiens Hawkeri W. Bull)和'Pinot Premium Deep Red'Zonal Geranium(Pelargonium Xhortorum LH Bailey)移植到5种类型的11.4厘米直径的容器中,四种类型由生物塑料制成和一种由石油基塑料制成的一种类型,用作对照。将植物浇水到移植处的容量,使其干燥至VWC阈值0.20或0.40m(3).m(3).m(3),然后通过使用由土壤湿度传感器控制的精密灌溉系统保持所需的设定点。每植物施用于新的豚鼠施加的水总量受VWC而不是容器类型的影响,而灌溉体积受到天竺葵的影响。新豚鼠和天竺葵的生长指数和芽干肿块(SDM)受VWC的影响。容器型受影响的生长指数和SDM仅限天竺葵。无论容器类型和VWC如何,两种物种的用水效率(WUE)都是相似的。审美质量仅基于VWC而变化,仅为一个容器类型,该容器类型由包含基于大豆的生物塑料的混合物制成。用多羟基烷烃(PHA)和干馏蒸馏瓶(DDGS)或聚乳酸(PLA),具有己二酸酐(SP.A)的大豆聚合物和衍生自改良DDG的专有生物基填料(BR)制备的容器和衍生自修饰的DDGS的专有生物基填料(BR)较强保持在较低的VWC,0.20米(3).m(-3)时。我们的研究结果表明,限制达到所需作物生长所需的最低要求的灌溉是一种可行的策略,用于维持与植物蛋白质基填料如SP制造的生物塑料容器的美学质量和强度。 a和br。其他生物塑料容器,例如PLA-lignin Biococite的抑制剂,显示耐久性等于石油基塑料容器的耐用性,并保持原始外观,无论在生产过程中底物VW。

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