상존수두상태의 이중토양토주에서 질산태질소 이동에 대한 분쇄우분의 효과

Effects of the Fractionated Raw Cow Manure on Mobility of NO3--N in A Double-Layered Soil Column with Constant Water Head

  • Chung, Doug-Young (Department of Agricultural Chemistry College of Agriculture Chungnam National University) ;
  • Lee, K.S. (Department of Agricultural Chemistry College of Agriculture Chungnam National University) ;
  • Baek, M.J. (Department of Agricultural Chemistry College of Agriculture Chungnam National University)
  • 발행 : 2001.02.28

초록

본 연구는 다층구조 토양의 토양표면에서 수두를 5cm로 유지하면서 미세입자로 분쇄된 건조 생우분(FRCM)의 혼합 비율에 따른 $NO_3{^-}$-N의 이동특성을 조사한 것이다. 토양의 상층부는 월곡통 토양을 그리고 하층부는 청원통 토양을 용적밀도 $1.25g\;cm^{-1}$으로 조절하여 사용하였으며 FRCM은 0%부터 10.4 %까지 6단계로 나누어 상층부에 균일하게 혼합한 후 약 65일간 지속적으로 관개를 실시하면서 토주의 하부에서 용탈돼 나오는 용출수를 조사하였다. 조사 결과 포화 수리전도도는 유기물함량이 0% 에서 10.4%로 증가함에 따라 $1.7{\times}10^{-3}cm/min$에서 $8{\times}10^{-4}cm/min$으로 감소하는 경향을 보여주었으며 안정된 상태의 수리전도도를 얻기까지 약 7일에서 64일정도 소요됨을 알 수 있었다. 그리고 토양내와 유기물로부터 전환된 $NO_3{^-}$-N와 $NH_4{^+}$-N의 용탈 특성은 혼합된 유기물 함량이 10.4%에서 0%로 감소함에 따라 최고 $14.8mmolc\;kg^{-1}$ to $0.58mmolc\;kg^{-1}$의 변이를 보여주고 있으며 용탈된 $NO_3{^-}$-N의 함량은 $NH_4{^+}$-N와 비교시 약 4배 정도임을 알수 있었다. 따라서 $NO_3{^-}$-N의 전환율은 담수상태에서도 활발히 진행됨을 알 수 있었고 토양내에서 질소의 공급은 토양내 수리전도도와 결부하여 조사할 수 있을 것으로 추정한다.

Influence of various rates of fractionated raw cow manure on hydraulic conductivity of the soil was observed. The fractionated raw cow manure(hereafter as FRCM) incorporated into soil. The hydraulic conductivity was measured for the double-layered soil while maintaining the water head by 5 cm over the soil surface. The influence on the mobility of $NO_3{^-}$-N transformed from the FRCM was analyzed. The upper layers (Wolgok series) were made with FRCM ranging from 0% to 10.4 % on weight basis for air-dried soil while the organic matter in the bottom layers (Chungwon series) was removed by combustion. The initial bulk densities for both layers were adjusted to $1.25g\;cm^{-3}$. In this experiment the $K_{sat}$ for the upper layer gradually decreased from $4.71{\times}10^{-3}cm\;min^{-1}$ to $1.2{\times}10^{-3}cm\;min^{-1}$ with increasing the rate of the FRCM from 0 % to 10.4%, while the Ksat of the bottom layer was maintained as $3.7cm\;min^{-1}$. For the double-layered soil columns, the $K_{sat}$ decreased with increasing rate of FRCM at the upper layer from $1.7{\times}10^{-3}cm\;min^{-1}$ to $8{\times}10^{-4}cm\;min^{-1}$ as the rate of organic matter increased from 0 % to 10.4 %, while it took almost 7 days to 64 days to obtain the steady state $K_{sat}$ The elution patterns of $NO_3{^-}$-N and $NH_4{^+}$-N showed that the amounts of both $NO_3{^-}$-N and $NH_4{^+}$-N rapidly approached to the maximum ranging from $14.8mmol_c\;kg^{-1}$ to $0.58mmol_c\;kg^{-1}$ as the rate of FRCM decreased from 10.7 % to 0 % which is equivalent to indigenous amount of $NO_3{^-}$-N and $NH_4{^+}$-N. And the amounts of $NO_3{^-}$-N were approximately three or four time than those of $NH_4{^+}$-N, indicating that the transformation rate of $NO_3{^-}$-N was improved by the higher FRCM rate. Thus, the ability of a soil to supply N can be predicted from its mineralization parameters and leaching potentials influenced by water flow regime in soil.

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