분뇨이용에 대한 관심이 높아지면서 질소고정을 통해 동반하는 작물에 질소를 고정하고 이동하는 두과와 화본과의 혼파가 주목을 받고 있다. 본 연구는 각기 다른 혼파조합이 춘계논토양에서 두과작물의 질소고정과 이의 이동을 규명하고자 실시하였다. 시험처리는 난괴법 3처리, 3반복이었으면 세 개의 다른 혼파처리는 호밀+벳치, 이탈리안라이그래스+크림손클로버 그리고 연맥+완두였다. 충남 서천의 논토양을 포트에 채워 시험을 하였다. 호밀과 헤어리벳치구는 수원의 진흥청
For evaluating the effect of various artificial planting soil properties on the Euonymus fortunei ‘Emelad’n Gold’ growth, a container green wall system experiment was conducted in a wall of greenhouse at Konkuk University, Glocal campus. The experimental artificial planting grounds were prepared with different organic soil conditioner ratios (Control, A4O1, A2O1 and A1O1) and with drought tolerance and an ornamental value Euonymus fortunei ‘Emelad’n Gold’ was planted. The soil and plant characteristics were investigated from April to Jun 2010. The volumetric soil moisture contents were significantly increasing order as the amount of organic soil conditioner level increased in order to A1O1> A2O1> A4O1> Control. At 4 treatment, soil chemical properties were inversely related to organic soil container ratios increase. The differences of root collar caliper, number of branch, and survival rate between the organic soil conditioner ratio were not significantly affected by organic soil conditioner. But, plant height, internode length, leaf length and leaf width were significantly shorter on plants planted A1O1 than plants planted other treatments. Therefore, Euonymus fortunei ‘Emelad’n Gold’ had good growth response regardless of organic soil conditioner ratio and the plant is expected to be a highly valuable shrub for the green wall system if it should be considered in integration with stormwater retention or as a soil conditioner for increasing soil water contents in artificial planting soil.
Winter green manure crops including legume increase grain yield of subsequent crop and substitute N fertilizer requirement with organic-No Hairy vetch grows vigorously and can provide N-rich green manure for corn with its soil incorporation after wintering. But, grain yield of corn as succeeding crop would be reduced if its planting time is delayed until late spring. This experiment was carried out to find the proper incorporation time of hairy vetch green manure and planting time of subsequent corn in cropping system with winter hairy vetch(green manure)-summer corn. Hairy vetch was incorporated into soil at a ten-day interval between April 10 and May 10 and corn was planted at 5 days after each hairy vetch incorporation. Soil nitrate concentration on April 10 and 20 in hairy vetch plot was slightly lower than that at winter fallow. Above-ground dry matter and organic-N of hairy vetch increased linearly with delayed hairy vetch incorporation time from April 10 to May 10. Average dry matter and organic-N produced by hairy vetch were 5.7 ton/ha and 248 kgN/ha, respectively. Corn growth and yield decreased as delayed corn planting time after May in spite of increasing dry matter and N-yield of hairy vetch. Nitrogen concentration of corn grain, stalk and whole plant at harvest were the highest in May 5 planting, but total N-uptake of May 5 planting were not different from that of April 25 planting because of lower grain yield. It was concluded that the proper incorporation time of hairy vetch and corn planting time were April 20 and April 25, respectively, because grain yield was the highest and corn could use hairy vetch-N effectively to produce dry matter.