The Effect of Polypropylene Mulching Method on Growth of Quercus glauca Thunb. Seedling and Weed Treatments

C. Sung, Jun-Hyuck Yoon, Eon-ju Jin, Eun-Ji Bae
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Abstract

Recently, cultivation and management technologies have been needed to adapt due to climate change, which is causing abnormal weather conditions. One technique is to increase the utilization of evergreen broad-leaved species with high ornamental value. A total of five treatments were installed (1m×22.5m), including 60g/m 2 and 80g/m 2 using two types mulching material with an overlapping and hole-drilling mulching method and these were compared to un-mulching treatment a total of planted 92m 2 attheWol-aTestSiteForestattheForestforBiomaterialsResearchCenterinJinju-si, Gyeongsangnam-dofor 10monthsusing3-years-oldQuercusglaucaThunb. In comparison with the control site, the 60g/m 2 overlapping method was about 1.9 times higher than the root collar diameter, but there was no statistical significance between the treatments. Healthy seedlings were found to meet these conditions due to high biomass values and below and T/R ratios of 3.0 or lower and H/D ratios of 7.0 or lower. Comparing the values of LWR, SWR, and RWR, which can be evaluated for seedling due to the mulching treatments, as compared to the control, the growth of the ground areas including leaves and stems was enhanced, but the growth of the underground areas containing roots tended to have high control values. Based on this, the SQI value, which can be evaluated for the comprehensive quality of seedlings, was found to be significantly different between the control site and the mulching treatment sites, confirming that the growth and growth improvement effects were achieved with mulching treatments. The chlorophyll content analysis showed that there was a significant difference from the control site, and it was judged that weed generation in the control acted as an environmental stress, causing a decrease in chlorophyll content. It was found that the overlapping 80g/m 2 of polypropylene mulching material generated about 4 times fewer weeds than the control, and the manpower required for
聚丙烯覆盖法对青松生长的影响。幼苗和杂草处理
最近,由于气候变化导致了异常的天气状况,种植和管理技术需要适应。一种技术是增加对具有观赏价值的常绿阔叶树种的利用。在庆尚南道晋州市森林生物材料研究中心(wore - est)种植了3年树龄的栎木,在10个月的时间里,共种植了60g/ m2和80g/ m2两种覆盖材料(1m×22.5m),采用了重叠覆盖和钻孔覆盖两种方式。与对照相比,60g/ m2重叠处理的根颈直径提高了约1.9倍,但处理间差异无统计学意义。健康幼苗的生物量值较高或更低,T/R比为3.0或更低,H/D比为7.0或更低,符合这些条件。通过比较覆盖处理对幼苗的LWR、SWR和RWR的影响,发现与对照相比,地上部分(包括叶和茎)的生长得到了促进,而地下部分(包括根)的生长则趋于较高的控制值。由此可见,可用于评价幼苗综合质量的SQI值在对照点和覆盖处理点之间存在显著差异,说明覆盖处理达到了幼苗生长和生长改善的效果。叶绿素含量分析显示与对照区差异显著,判断为对照区杂草的产生是一种环境胁迫,导致叶绿素含量下降。结果发现,重叠80g/m 2的聚丙烯地膜材料产生的杂草比对照减少了约4倍,而且所需的人力
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