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首页> 外文期刊>HortTechnology >Performance of ornamental plants in alternative organic growing media amended with increasing rates of expanded shale.
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Performance of ornamental plants in alternative organic growing media amended with increasing rates of expanded shale.

机译:随着页岩膨胀率的提高,观赏植物在替代有机生长介质中的性能得到了改善。

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摘要

Organic and inorganic amendments are often used to improve chemical and physical properties of soils. The objective of this study was to determine how the inclusion of light-weight expanded shale in various organic matter blends would affect plant performance. Four basic blends of organic growing media were prepared using traditional or alternative organic materials: (1) 75% pine bark (PB)+25% sphagnum peatmoss (PM), (2) 50% PB+50% wastewater biosolids (BS), (3) 100% municipal yard waste compost (compost), and (4) 65% PB+35% cottonseed hulls (CH). Light-weight expanded shale was then blended with each of these mixtures at rates of 0%, 15%, 30%, and 60% (v/v). Vinca (Catharanthus roseus), verbena (Verbena hybrida), and shantung maple (Acer truncatum) were planted into the growing media after they were transferred into greenhouse pots. Vinca growth was monitored for 3 months before harvesting aboveground plant tissue to determine total biomass yield and elemental composition. Verbena growth was monitored for 6 months, during which time aboveground plant tissue was harvested twice to determine total biomass yield. Additionally, aboveground vinca plant tissue was analyzed for nutrients and heavy metal concentrations. In the absence of expanded shale, verbena and shantung maple trees produced more aboveground biomass in the 50-PB/50-BS blends, whereas vinca grew more biomass in the pure compost blends. Inclusion of expanded shale in the various organic matter blends generally had a negative effect on plant growth, with the exception of shantung maple growth in the 65-PB/35-CH blend. Reduced plant growth was probably due to a lower concentration of nutrients in the growing media. Macro- and micronutrient uptake was generally reduced by addition of expanded shale to the organic growing media. Results suggest that organic materials that have been stabilized through prior decomposition, such as compost or PM, are safe and reliable growing media, but expanded shale offers few benefits to a container growing medium except in cases where additional porosity is needed.
机译:有机和无机改性剂通常用于改善土壤的化学和物理性质。这项研究的目的是确定轻质膨胀页岩在各种有机质混合物中的含量如何影响植物的生长性能。使用传统的或替代的有机材料制备了四种基本的有机生长培养基混合物:(1)75%松树皮(PB)+ 25%泥炭藓(PM),(2)50%PB + 50%废水生物固体(BS), (3)100%市政堆肥(堆肥),以及(4)65%PB + 35%棉籽壳(CH)。然后将轻质膨胀页岩与这些混合物中的每一种以0%,15%,30%和60%(v / v)的比例混合。将长春花( Catharanthus roseus ),马鞭草( Verbena hybrida )和山东枫( truncatum )种植到生长的培养基中放入温室花盆。在收获地上植物组织之前监测长春蔓生长3个月,以确定总生物量产量和元素组成。监测马鞭草的生长持续6个月,在此期间两次收获地上植物组织以确定总生物量。此外,分析了地上长春蔓植物组织中的营养成分和重金属浓度。在没有扩展的页岩的情况下,马鞭草和山东枫树在50-PB / 50-BS混合物中产生更多的地上生物量,而长春花在纯堆肥混合物中产生更多的生物量。除65-PB / 35-CH混合物中山东枫的生长外,各种有机物混合物中都含有膨胀页岩通常对植物生长有负面影响。植物生长减慢可能是由于生长培养基中养分浓度降低。通常通过向有机生长介质中添加膨胀的页岩来减少大量和微量营养素的摄入。结果表明,已通过事先分解而稳定的有机材料(例如堆肥或PM)是安全可靠的生长介质,但膨胀的页岩对容器生长介质几乎没有好处,除非需要额外的孔隙度。

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