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Use of Alternative Containers for Long- and Short-term Greenhouse Crop Production

机译:使用替代容器进行长期和短期温室作物生产

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摘要

While research on the use of alternative containers for greenhouse production is growing, most studies have focused-on a limited number of types of alternative containers and primarily on short-term greenhouse crops. With the recent release of several new bioplastic alternatives, comparisons to established alternative containers and production of longer rotation ornamental crops should be investigated. Our work, therefore, investigates the performance of ten commercially available alternative containers and their effects on both a short-term 'Sunpatiens Compacta' impatiens (Impatiens x hybrida) and a long-term greenhouse crop 'Elegans Ice' lavender (Lavendula angustifolia) at four different locations. Results indicated that plant growth in terms of dry weight differed by container at most locations. Combined analysis of all locations showed that only straw and a bioplastic sleeve outperformed plastic pots in terms of shoot dry weight and then only after 12 weeks of production. Leachate pH, but not electrical conductivity (EC), varied by container in both the short- and long-term crop with alternative containers made from composted cow manure and peat showing consistently higher and lower pH readings, respectively. Postharvest container strength varied significantly by container, with the plastic control maintaining the highest puncture resistance after both 6 and 12 weeks, in some instances matched by the puncture strength of coconut fiber pots. Some alternative containers, in particular, wood, manure, and peat showed algal growth after 6 and 12 weeks of greenhouse production. We conclude that while some alternative containers were linked to increased growth, most showed growth equal to the plastic control, and could therefore make appropriate alternatives to plastic pots. However, changes in pH, low puncture strengths after production, higher denesting times, and algal growth on manure, wood, and peat may make these pots less desirable alternatives than other pots under investigation. However, other factors not studied here, such as compostability, biodegradability in the landscape, water use, consumer preference, aesthetics, compatibility with mechanized operations, and cost may also need to be taken into account when deciding on an appropriate container for greenhouse production.
机译:在使用替代容器进行温室生产的研究不断增长的同时,大多数研究集中在数量有限的替代容器类型上,并且主要集中在短期温室作物上。随着最近发布的几种新的生物塑料替代品,应该研究与已建立的替代性容器的比较和更长轮作的观赏作物的生产。因此,我们的工作研究了10个市售替代容器的性能,以及它们对短期使用的“ Sunpatiens Compacta”凤仙花(Impatiens x hybrida)和长期使用的温室作物“ Elegans Ice”熏衣草(Lavendula angustifolia)的影响。四个不同的位置。结果表明,在大多数地方,以干重计的植物生长因容器而异。对所有位置的综合分析表明,就茎干重量而言,仅秸秆和生物塑料套管的性能优于塑料花盆,而仅在生产12周后才超过塑料花盆。在短期和长期作物中,渗滤液的pH值但不随电导率(EC)的变化而变化,由堆肥牛粪和泥炭制成的替代容器分别显示出较高和较低的pH值。收获后容器的强度因容器而异,塑料控制在6周和12周后仍保持最高的抗穿刺性,在某些情况下与椰子纤维罐的抗穿刺强度相匹配。在温室生产6周和12周后,一些替代性容器,特别是木材,肥料和泥炭显示藻类生长。我们得出的结论是,尽管一些替代性容器与增长的增长相关,但大多数容器显示出与塑料容器相同的增长,因此可以作为塑料罐的合适替代品。但是,pH值的变化,生产后的刺穿强度低,打孔时间延长以及粪便,木材和泥炭上的藻类生长可能使这些花盆比其他正在调查的花盆更不受欢迎。但是,在决定用于温室生产的合适容器时,还需要考虑其他未在此进行研究的因素,例如堆肥性,景观中的生物可降解性,用水,消费者的偏爱,美观,与机械化操作的兼容性以及成本。

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