土壤中碳、氮淋失降低土壤肥力,污染水体环境.为探究不同施肥种类对稻田红壤碳氮淋失影响,本试验依托中国科学院千烟洲生态站(114°53'E,26°48'N)1998年建立的红壤稻田长期定位控制试验,选用负压法采集土壤溶液,研究秸秆还田(ST)、有机肥(OM)、化肥(NPK)对土壤碳、氮淋失状况及时间动态的影响.结果表明:1稻田土壤中氮素淋失以铵态氮(NH+4-N)为主,施用NPK使土壤中NH+4-N(1.2 mg·L^-1±0.1 mg·L^-1)淋失最严重,施用OM使土壤中可溶解性有机碳(DOC)(27.3 mg·L^-1±1.6 mg·L^-1)淋失最严重,且土壤中DOC和NH+4-N均在水稻营养生长期淋失最严重(P〈0.05);2施用OM与NPK可以增加稻田红壤中NH+4-N、DOC、总有机碳(SOC)和总氮(TN)含量,且施用NPK增加TN效果最显著,施用OM增加SOC最显著;3土壤渗漏液中DOC含量与稻田红壤中SOC含量呈显著正相关(P〈0.01),土壤渗漏液中NH+4-N含量与稻田红壤中TN含量呈显著正相关(P〈0.01).
Enhanced fertilization could decrease nitrogen utilization rate and increase carbon and nitrogen leaching,leading to water pollution in agricultural ecosystem. A long-term field experiment had been established on a reddish paddy soil of Qianyanzhou Ecological Experimental Station(114°53'E,26°48'N) in Jiangxi Province in 1998. Soil solution samples were collected by clay tube and vacuum pump. Four fertilizer species treatments were selected: control with no fertilizer(CK),straw return(ST),nitrogen,phosphorus and potassium mineral fertilizers(NPK) and pig manure(OM),aiming to evaluate the effects of different species of fertilizer on carbon and nitrogen leaching in a double rice cropping system. The results showed that: 1 ammonium nitrogen(NH+4-N)was the major type of N in soil leachate in reddish paddy soil. The application of NPK could significantly increase the ammonium nitrogen concentration(1. 2 mg·L^-1± 0. 1 mg·L^-1) compared with the CK,ST and OM treatments,and the application of OM could significantly increase the dissolved organic carbon(DOC) concentration(27. 3 mg·L^-1± 1. 6 mg·L^-1) in soil leachate. The carbon and nitrogen leaching were more notable in the vegetative growth stage than the reproductive growth stage of rice(P 0. 05); 2 the long-term application of NPK and OM increased the NH+4-N,DOC,soil organic carbon(SOC) and total nitrogen(TN) contents. The NPK was best beneficial to improve TN contents and OM to improve SOC contents. 3 The DOC contents in soil leachate and SOC in paddy soil had a positive correlation(P 0. 01),while NH+4-N contents in soil leachate and TN contents in paddy soil had a positive correlation(P 0. 01).