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Soy-composite Biocontainers Allow for Reduced Fertilizer Inputs during Container-crop Production

机译:大豆复合生物容器可减少容器作物生产期间的肥料投入

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Bioplastics and bioplastic composites are a group of emerging sustainable materials that exhibit favorable characteristics for use in horticulture-production containers. Biocontainers made from composite materials of soy [Glycine max (L.) Merr.] bioplastic and poly(lactic) acid (PLA) have been shown to release nitrogen (N) at a rate suitable for supporting plant growth. We hypothesized that fertilizer applications can be reduced while maintaining adequate nutrition levels for plant production when using soy-based containers. To test this hypothesis and quantify potential reduction of fertilizer, we grew marigold 'Honeycomb' (Tagetes patula L.) in five prototypes of soy-composite biocontainers [soy bioplastic compounded with PLA or polyhydroxyalkanoates (PHA)] and a petroleum-plastic (polypropylene) control container with five fertilizer treatments supplying 1) 60N-4P-49K; 2) 75N-5P-61K; 3) 105N-7P-85K; 4) 150N-10P-122K; or 5) 300N-20P-244K mg. At harvest, plants grown in all soy-PLA composite biocontainers and protein + PLA biocontainers had higher concentrations and contents of N and P compared with plants grown in petroleum-plastic containers across all fertilizer treatments. Shoot K concentrations were highest for plants grown in all soy PLA and soy PHA biocontainers compared with plants grown in petroleum-plastic containers across all fertilizer treatments, whereas shoot K concentrations in plants grown in protein + PLA biocontainers were equal to or lower than plants in petroleum-plastic containers. Total plant dry weight was greater for plants grown in biocontainers made of 50% soy -50% PLA and protein + PLA than for plants grown in control containers across all fertilizer treatments except at the highest rate of fertilizer in which plants received 300N-20P-244K mg. Our results support the hypothesis that fertilizer inputs can be reduced when using soy-composite biocontainers. Biocontainers made with equal parts soy bioplastic and PLA showed strong potential for achieving adequate plant growth with reduced fertilizer input. Our results demonstrate that fertilizer can be reduced by as much as 80% when growing marigold in containers made of 50% soy -50% PLA for 6 weeks.
机译:生物塑料和生物塑料复合材料是一组新兴的可持续材料,它们在园艺生产容器中显示出良好的特性。由大豆[Glycine max(L.)Merr。]生物塑料和聚乳酸(PLA)的复合材料制成的生物容器已显示释放氮(N)的速率适合于支持植物生长。我们假设使用大豆容器时,可以减少肥料的使用,同时保持足够的营养水平以供植物生产。为了验证这一假设并量化潜在的肥料减少量,我们在五个大豆复合生物容器[与PLA或聚羟基链烷酸酯(PHA)混合的大豆生物塑料]和石油塑料(聚丙烯)的五个原型中种植了万寿菊“蜂窝”(Tagetes patula L.)。 )提供五种肥料的控制容器,供应1)60N-4P-49K; 2)75N-5P-61K; 3)105N-7P-85K; 4)150N-10P-122K;或5)300N-20P-244K毫克。在收获时,与在所有肥料处理中在石油塑料容器中生长的植物相比,在所有大豆-PLA复合生物容器和蛋白质+ PLA生物容器中生长的植物的N和P含量更高。在所有肥料处理下,所有大豆PLA和大豆PHA生物容器中生长的植物的芽K浓度均高于在石油塑料容器中生长的植物,而蛋白质+ PLA生物容器中生长的植物的茎K浓度等于或低于植物中的植物。石油塑料容器。在所有肥料处理中,由50%大豆-50%PLA和蛋白质+ PLA制成的生物容器中种植的植物的总植物干重都比对照容器中种植的植物大,除非肥料的最高肥料施用量为300N-20P- 244K毫克我们的研究结果支持以下假设:使用大豆复合生物容器可以减少肥料投入。用相等数量的大豆生物塑料和PLA制成的生物容器显示出在减少肥料投入的情况下实现适当植物生长的强大潜力。我们的结果表明,在由50%大豆-50%PLA制成的容器中生长万寿菊6周后,肥料可减少多达80%。

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