퇴비 및 규산질비료의 장기연용에 따른 토양 물리적특성 변화

Change of Physical Properties on Long-Term Fertilization of Compost and Silicate in Paddy Soils

  • Park, Chang-Young (National Yeongnam Agricultural Experiment Station, RDA) ;
  • Choi, Jyung (College of Agriculture, Kyongbuk National University) ;
  • Park, Ki-Do (National Yeongnam Agricultural Experiment Station, RDA) ;
  • Jeon, Weon-Tai (College of Agriculture, Kyongbuk National University) ;
  • Kwon, Hye-Young (National Yeongnam Agricultural Experiment Station, RDA) ;
  • Kang, Ui-Gum (National Yeongnam Agricultural Experiment Station, RDA)
  • 발행 : 2000.06.30

초록

논토양에서 퇴비 및 규산 등 동일비료 장기연용시 토양물리성변화를 구명하여 벼의 안전재배를 위한 논토양 관리기술의 기초자료로 활용코자 하성평탄지의 하성충적충을 모재(母材)로 한 미사식양질계(微砂埴壤質系)인 보통답 "평택통(平澤統)"에서 벼단작재배로 31년간('67~'97) 무비(無肥), NPK, 퇴비단용(堆肥單用), NPK+퇴비(堆肥), 17년간(年間)('81~'97) Npk+규산구(珪酸區)를 각각 처리하여 얻은 결과를 요약하면 다음과 같다. 내수성입단(耐水性粒團) 및 입단화도(粒團化度)는 NPK+퇴비구>NPK+규산구>퇴비단용구>NPK구>무비구 순으로 높았고 토심별로는 표토보다 심토에서 높았으며, 0.5mm이상 대입단율은 퇴비 및 규산연용구에서, 0.5mm이하 소입단비율은 무비 및 NPK구에서 높았다. 한편 입단화도(粒團化度)는 토양경도(土壤硬度), 용적밀도(容積密度)와 부(負)의 상관(相關)을, 수중심정용적(水中沈定容積)과는 정(正)의 상관(相關)을 보였다. 수중심정용적(水中沈定容積)은 NPK+퇴비구에서 가장 높았고 무비구에서 가장 낮았으며, 심토보다는 표토에서, 풍건토(風乾土)보다 미풍건토(未風乾土)에서 각각 높았다. 토양공극율 및 보수력은 퇴비연용구에서 가장 높았고 무비구에서 가장 낮았으며, 규산연용구와 대조구간에는 비슷하였다. 작열감량(灼熱減量)은 NPK+퇴비구>퇴비단용구>NPK+규산구>NPK구>무비구 순(順)으로 높았으며, 포장쇄토율(圃場碎土率)은 NPK+퇴비구, 퇴비단용구, NPK+규산구 순으로 높았다.

This study was carried out to investigate the change of soil physical properties in long-term fertilized paddy soils with a Fine silty family of Typic Halpaqueps (Pyeongtaeg series). Treatments fertilized consisted of no fertilizer, compost, NPK, NPK+compost for thirty one years and of NPK+silicate for seventeen years. Water stable aggregate and degree of aggregate stability, which were higher in surface-soil than sub-soil, were high in order of NPK + compost > NPK + silicate > compost > NPK > no fertilizer plot. The ratio of aggregate larger than 0.5mm was high at compost and silicate plots but that smaller than 0.5mm was high at no fertilizer and NPK plots. And this aggregate stability showed negative correlation with soil hardness and bulk density ; positive correlation with sedimentation volume of soils in water. Sedimentation volume of soils in water was a little higher in surface-soil than sub-soil and in wet soil than dry soil, respectively. Pore space ratio and water retention capacity of soils were the most increased by the application of compost and not affected by silicate as in cases of liquid limit and plastic limit. Ignition loss of soils was high in order of NPK + compost > compost > NPK + silicate > NPK > no fertilizer plot. And field shattering ratio of soil mass smaller than 25.4mm was relatively high in NPK + compost, compost, and silicate plots.

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