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有机无机肥配施对旱地塿土碳氮的影响 被引量:4

Effects of Combined Application of Organic Manure and Chemical Fertilizer on Soil Organic Carbon and Nitrogen in Dryland of Lou Soil
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摘要 在陕西关中塿土区,通过田间试验研究旱地小麦-玉米轮作条件下有机无机肥配施对表层土壤有机碳(SOC)、全氮(TN)和土壤微生物量碳(SMBC)、氮(SMBN)以及土壤剖面硝态氮(NO3--N)分布和累积的影响。结果表明,与单施化肥处理(NP)相比,化肥配施有机肥处理(M1)土壤剖面NO3--N累积量差异不显著,化肥配施生物炭处理(M3)显著降低35.2%,而化肥配施秸秆处理(M2)则显著增加32.1%。与NP和CK处理相比,各有机无机肥配施处理(M1、M2和M3)表层SOC和SMBC、SMBN含量均显著提高(P<0.05),土壤TN含量和C/N比增加(P>0.05)。与NP处理相比,M3处理SOC含量增加26%,TN含量增加14%;M2处理SMBC和SMBN含量分别增加32%和23%。与CK处理相比,NP、M1和M2处理表层土壤p H值显著降低,而M3处理则无显著差别。在塿土区旱地小麦-玉米轮作条件下,M3处理既可以降低土壤剖面NO3--N累积量和淋溶风险,又可以提高SOC、TN和SMBC、SMBN含量,是一种值得推广的施肥方式。 A field experiment was carried out to explore effects of combined application of organic manure and chemicalfertilizations on soil organic carbon, soil total nitrogen and soil microbial biomass C and N in the topsoil layer, and distribution and accumulation of NO3- N in the soil profile of farmlands under wheatmaize rotation on Lou soil in theGuanzhong region, Shaanxi Province. Results show that compared with Treatment NP (application of chemical fertilizers alone), Treatment M1 (combined application of chemical fertilizers and farmyard manure) had no significant effects on accumulation of soil NO3- N in the soil profile (0-200 cm), while Treatment M3 (combined application of chemical fertilizers and biochar) lowered the accumulation by 35 2%, and Treatment M2 (combined application of chemical fertilizerswith straw incorporation) increased it by 32 1%. Compared with Treatments NP and CK, Treatments M1, M2 and M3 increased the contents of soil organic carbon (SOC), soil total nitrogen (TN), and soil microbial biomass C (SMBC) & N(SMBN) and C/ N ratio in the topsoil layer. Compared with Treatment NP, Treatment M3 increased SOC by 26% and TNby 14%, while Treatment M2 increased SMBC by 32% and SMBN by 23%. And compared with CK, all the treatmentssignificantly lowered soil pH in the topsoil layer, except for Treatment M3, which did not have much effect. Obviously inthe upland fields of Lou soil under wheatmaize rotation, Treatment M3 can not only decrease NO3- N accumulation andleaching risk, but also increase the contents of SOC, TN, SMBC and SMBN, therefore, it is a fertilization pattern worthextending.
出处 《生态与农村环境学报》 CAS CSCD 北大核心 2016年第2期289-294,共6页 Journal of Ecology and Rural Environment
基金 国家高技术研究发展计划(2013AA1029) 高等学校学科创新引智计划(B12007)
关键词 有机物料 有机碳 全氮 土壤硝态氮 土壤微生物量 organic materials soil organic carbon total nitrogen NO3- N soil microbial biomass
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