Temperature Effect on Nitrification and Interrelationship between Nitrifiable NO3-N and Tobacco Productivity in Some Tobacco Tillage Soils with Different Soil pH

토양(土壤)pH가 상이(相異)한 몇가지 연초경작지(煙草耕作地) 토양(土壤)에서 질산화작용(窒酸化作用)에 대한 온도효과(溫度效果) 및 NO3-N와 잎담배 생산성(生産性)과의 상호관계(相互關係)

  • Published : 1989.12.23

Abstract

An incubation study was conducted to examine the effect of soil pH and temperature on nitrification potential of 8 different soil series applied with no-N and 200 ugN/g soil as a compound fertilizer at 60 % moisture content of maximum water holding capacity for 8 weeks, whose series were ranged from acid to mild alkali as Gopyeong(Jincheon, pH 4.51), Yesan(Jincheon, pH 4.54), Jigog(Eumseong, pH 4.71), Songsan(Goesan, pH 5.01), Angye(Seongju, pH 5.34), Banho(Seongju, pH 5.73), Weongog(Jincheon, pH 5.93), and Banho(Seongju, pH 7.70), respectively. Interrelationship between the nitrifiable and the net $NO_3-N$(N added plot-no-N plot) accumulated in the soil and tobacco yield in the no fertilizer plot were investigated as well. 1. Nitrification response was various according to soil characteristics at each temperature condition showing that nitrifiable $NO_3-N$ values of the soils were much higher at $25^{\circ}C$ than $15^{\circ}C$. And difference of nitrification potential affected by temperature was markedly distinguishable from 2 weeks after incubation and was showing a tendency to reduce with increasing of soil pH. 2. At each temperature condition, net $NO_3-N$ accumulated at 2 and 4 weeks after incubation was positively correlated with soil pH. 3. Tobacco yield in the no fertilizer plot was more highly correlated with the values of nitrifiable and net $NO_3-N$ accumulated at $15^{\circ}C$ similar to soil temperature in rhizosphere of early stage of tobacco growth than those at optimum temperature($25^{\circ}C$).

토양(土壤)pH가 강산성(强酸性)에시 약(弱)알카리성(性)의 분포(分布)를 갖는 8개연초경작지토양종류(個煙草耕作地土壤種類), 고평통(진천, pH4.51), 예산통(진천, pH4.54), 지곡통(음성, pH4.71), 송산통(괴산, pH5.01), 안계통(성주, pH5.34), 반호통(성주, pH5.73), 원곡통(진천, pH5.93) 및 반호통(성주, pH7.70) 등(等)에 대하여 토양수분함양(土壤水分含量)을 최대용수양(最大容水量)의 60%, 배양온도(培養溫度)를 $15^{\circ}C$$25^{\circ}C$로 하고 질소무첨가(窒素無添加)와 질소첨가(窒素添加)(연초용복합비료(煙草用複合肥料), 10-10-20, 200mgN/g 첨가(添加))로 구분(區分)하여 8주간(週間) 배양(培養)하고 질산화작용(窒酸化作用)에 대(對)한 토양(土壤)pH 및 온도효과(溫度效果)를 조사(調査)하였다. 또한 배양후(培養後) 축적(蓄積)된 $NO_3-N$함양(含量)과 무비구(無肥區)잎담배수양(收量)과의 상호관계(相互關係)를 검토(檢討)한 결과(結果)는 다음과 같다. 1. 배양온도(培養溫度)에 따른 질산화작용(窒酸化作用)은 토양종류(土壤種類)에 따라 다양(多樣)한 양상을 나타냈으며 대부분(大部分) $25^{\circ}C$조건(條件)이 $15^{\circ}C$조건(條件)보다 현저하게 양호(良好)하였고 배양온도간(培養溫度間) 차이(差異)는 배양(培養) 2주후(週後)부터 뚜렷하였으며 토양(土壤)pH가 증가(增加)할수록 적어지는 경향이었다. 2. 배양(培養) 2주(週) 및 4주후(週後)에 축적(蓄積)된 순(純)$NO_3-N$함양(含量)(N첨가구(添加區)-N무첨가구(無添加區))은 각각(各各)의 배양온도조건(培養溫度條件)에서 토양(土壤) pH 증가(增加)에 따라 증가(增加)되는 정(正)의 상관(相關)을 나타냈다. 3. 토양(土壤)의 질소공급능력(窒素供給能力)을 평가(評價)하기 위한 질소유효도(窒素有效度) 지표(指標)로 이용(利用)되고 있는 배양(培養) 2주후(週後) 축적(蓄積)된 $NO_3-N$ 및 순(純)$NO_3-N$함량으로 무비구(無肥區)잎담배수양(收量)과의 상호관계(相互關係)를 검토(檢討)한 결과(結果) 본포이식후(本圃移植後) 초기생육단계(初期生育段階)의 근권토양온도(根圈土壤溫度)와 비슷한 $15^{\circ}C$조건(條件)은 최적온도(最適溫度)인 $25^{\circ}C$조건(條件)보다 더 밀접한 상관(相關)을 나타냈다.

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