...
首页> 外文期刊>Water Science and Technology >Influence of plant tillering and root volume on flow pattern and water purification of vertical down flow wetlands for domestic wastewater treatment
【24h】

Influence of plant tillering and root volume on flow pattern and water purification of vertical down flow wetlands for domestic wastewater treatment

机译:分till和根系体积对垂直向下流湿地处理生活污水的流型和净水的影响

获取原文
获取原文并翻译 | 示例
           

摘要

Four kinds of plants with tap, tuber and fibrous root system were chosen and their root volume was manipulated by tillering control in this study. Plant tillering could be described by Logistic function, means that controlling the initial planting density in the wetland is unnecessary. Therefore, the minimum planting density for each plant could be considered, and this will have cost benefits for planting wetlands. There is a positive correlation between plant tillering and root development, especially on reed and Juncus effusus L, coefficient of association between above-ground plant weight and root weight, as well as plant tillering and root volume of which reached 0.93-1. Those coefficient of association of Cannaceac and Cyperus alternifolius L were in the range 0.43-0.69. In the process that root breakthrough the substrate, root could open up the clogged soil, which increased porosity of substrate by 3-44% than the non-planted one, although root also occupied the space in the substrate. The adjoint transverse pressure of root growth would homogenize the substrate, which randomly increased Peclet number of substrate by 6-90% than the non-planted one. No regularity correlation was found between wastewater purification and above-ground plant biomass or root volume. Root plays more role on porosity improvement than substrate homogenization and water purification in VF for domestic wastewater treatment.
机译:本研究选择了具有根,块茎和纤维根系的四种植物,并通过分control控制来控制其根系体积。可以通过Logistic函数描述植物分ing,这意味着无需控制湿地中的初始种植密度。因此,可以考虑每种植物的最小种植密度,这将为种植湿地带来成本优势。植物分and与根系发育之间存在正相关关系,尤其是在芦苇和杜鹃上,地上植物重量与根重之间的缔合系数以及植物分er与根系体积均达到0.93-1。 Cannaceac和Cyperus alternifolius L的缔合系数在0.43-0.69的范围内。在根部穿透基质的过程中,根部可以打开堵塞的土壤,尽管根部也占据了基质中的空间,但基质的孔隙度比未种植的基质增加了3-44%。根系生长的伴随横向压力将使基质均质化,从而使基质的Peclet数随机增加,比未种植的基质增加6-90%。在废水净化与地上植物生物量或根系体积之间未发现规律性相关性。在用于家庭废水处理的VF中,与基质均质化和水净化相比,根部在孔隙率改善上的作用更大。

著录项

相似文献

  • 外文文献
  • 中文文献
  • 专利
获取原文

客服邮箱:kefu@zhangqiaokeyan.com

京公网安备:11010802029741号 ICP备案号:京ICP备15016152号-6 六维联合信息科技 (北京) 有限公司©版权所有
  • 客服微信

  • 服务号