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Position: Home > Articles > Transformation of Straw ~(15)N in the Submerged Soil Jiangsu Journal of Agricultural Sciences 2001,17 (4) 236-240

淹水土壤中秸秆氮素的转化

作  者:
王志明;朱培立;黄东迈;刘海琴;姜泠若
单  位:
江苏省农业科学院土壤肥料研究所
关键词:
淹水土壤;秸秆15N;转化
摘  要:
采用15N示踪技术和密闭培养法研究水稻和玉米秸秆15N在淹水土壤中的转化过程。结果表明 :土壤中秸秆15N的各转化过程相互制约 ,每个过程中15N含量都处于动态变化之中。秸秆种类和土壤类型对土壤矿质15N含量的影响随时间延长逐渐变小 ,培养 112d后土壤中矿质15N含量仅占加入秸秆15N的 0 96 %~ 1 6 8%。秸秆15N有 2 0 3%~ 4 2 5 %被微生物固持 ,0 2 3%~ 14 16 %被粘土矿物固定。粘土矿物类型影响土壤对秸秆15N的固定 ,变性土中固定态15NH+ 4含量明显高于红壤。秸秆15N的固定使其以气态形式损失的量减少 ,这在农业生产中将有助于保持土壤肥力。整个培养过程中秸秆15N的损失率为 2 9 70 %~ 46 30 %。 112d后秸秆15N实际矿化了 47 72 %~5 1 74% ,仍有 5 0 %左右的秸秆15N残留于土壤。
译  名:
Transformation of Straw ~(15)N in the Submerged Soil
作  者:
WANG Zhiming, ZHU Peili, HUANG Dongmai, LIU Haiqin, JIANG Lingruo (Institute of Soil and Fertilizer,Jiangsu Academy of Agricultural Sciences,Nanjing 210014,China)
关键词:
submerged soil;straw 15 N;transformation
摘  要:
N labelled rice straw and maize straw were used to study the transformation of 15 N in submerged soil by using 15 N tracer technique and sealed incubation method.Each transformation process of straw 15 N in submerged soil conditioned each other,and content of straw 15 N in each process was in a dynamic state.Effects of plant varieties and soil types on soil mineralized 15 N decreased gradually with the extension of incubation time.After 112 days incubation,soil mineralized 15 N only accounted for 0 96%~1 31% of straw 15 N added to soils About 2 03%~4 25% of straw 15 N was immobilized by microbial and 0 23%~14 16% of which was fixed by clay minerals.Types of clay minerals could affect content of fixed 15 N in soils.In this study vertisol fixed much more straw 15 N than ultisol did.Obviously,the immobilization of straw 15 N decreased its loss in the form of gas,which could be beneficial to maintain soil fertility in agricultural practice.During the whole incubation,loss rate of straw 15 N ranged from 29 70% to 46 30%.After 112 days incubation straw 15 N actually mineralized 47 72%~51 74%,namely half of which still remained in the soil.

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