Container height and douglas fir bark texture affect substrate physical properties

被引:45
作者
Owen, James S., Jr. [1 ]
Altland, James E. [2 ]
机构
[1] Oregon State Univ, N Willamette Res & Extens Ctr, Aurora, OR 97002 USA
[2] USDA ARS, Applicat Technol Res Unit, Wooster, OH 44691 USA
关键词
media; container capacity; air space; total porosity; water-holding capacity; moisture gradient; water management;
D O I
10.21273/HORTSCI.43.2.505
中图分类号
S6 [园艺];
学科分类号
0902 ;
摘要
A study was conducted to quantify the effect of substrate texture on water-holding capacity of douglas fir [Pseudotsuga menziesii (Mirb.) Franco] bark (DFB) in containers of varying height. Medium (less than 2.2 cm) and fine (less than 0.9 cm) DFB were packed into 7.6 cm W. aluminum cores 3.8, 7.6, and 15.2 cm tall to determine container capacity (CC) and air space (AS) at varying container heights. Increasing container height resulted in a linear decrease in CC and a linear increase in AS. Fine texture DFB bulk density (D-b) increased 18% with increasing container height, whereas Db of medium texture DFB was unaffected. Water-holding capacity decreased 20% and 42% in medium and fine textured DFB, respectively, with increasing container height from 3.8 to 15.2 cm. A second study was conducted to investigate water distribution in a 15.2-cm tall container for a given substrate texture. Polyvinyl chloride cores (15.2 cm tall x 7.6 cm W.) were packed with the same substrates, drained to CC, frozen, and sawed into 2.5-cm sections to determine water-holding capacity at each height. A finer substrate texture increased the amount of water throughout the container profile, but percent of total water for each strata remained similar. Container height and plant size (i.e., transplant or salable), in relation to substrate texture, should be considerations when producing containerized crops. In addition, bark texture alters water-holding capacity and water distribution within the container, ultimately affecting water management practices.
引用
收藏
页码:505 / 508
页数:4
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