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秸秆、有机肥及氮肥配合使用对水稻土微生物和有机质含量的影响 被引量:69

Changes of microbe and organic matter content in paddy soil applied with straw,manure and nitrogen fertilizer
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摘要 通过大田试验,研究了秸秆还田、施用有机肥和氮肥对水稻土微生物和土壤有机质含量的影响。试验结果表明:(1)在秸秆还田的情况下,增施氮肥(0-330kg/hm2范围内)可促进秸秆的的腐解;(2)秸秆还田、施用有机肥和氮肥中的单一措施均能不同程度地增加水稻土壤细菌、真菌、放线菌的数量;(3)综合运用秸秆还田、施用有机肥和氮肥措施能协同增加土壤微生物数量,提高土壤生物量态氮和有机质含量,以秸秆还田量为6000kg/hm2、施用有机肥量为4500kg/hm2、施用氮肥量为240kg/hm2效果较佳。 Changes of microbe and organic matter content in paddy soil applied with straw,manure and nitrogen fertilizer were analyzed.Experimental plots in the rotations had 10 treatments,i.e.with or without straw,manure,nitrogen fertilizer and a control.The amount of straw was zero or 6000 kg/hm2,that of manure was zero,1500 kg/hm2,3000 kg/hm2,4500 kg/hm2,or 6000 kg/hm2,that of nitrogen fertilizer was zero,240 kg/hm2,270 kg/hm2,280 kg/hm2,285 kg/hm2,300 kg/hm2,or 330 kg/hm2.The results showed that with the range of nitrogen fertilizer application of 0-330 kg/hm2,increasing nitrogen fertilizer could promote the decomposition of straw at the situation of straw amending into soil.Each measure of straw,manure and nitrogen fertilizer could increase the bacteria,the fungus,ray fungi quantity in soil in some degree.The synthesis applying with straw,manure and nitrogen fertilizer could coordinate increase microbe quantity in soil,enhance the soil biomass nitrogen and organic matter content,and when the quantity of straw was 6000 kg/hm2,the quantity of manure was 4500 kg/hm2,the quantity of nitrogen fertilizer was 240 kg/hm2,the effects were better.It indicated that a good amount of manure and nitrogen fertilizer could increase soil microbial numbers and organic matter content in straw amended agro-ecosystem,which was very important in improving soil fertilization.
出处 《生态学报》 CAS CSCD 北大核心 2010年第13期3584-3590,共7页 Acta Ecologica Sinica
基金 国家科技支撑计划重大资助项目(2006BAD02A03) 江苏省高校科研成果产业化推进资助项目(JHZD08-42) 淮安市农业科技支撑计划资助项目(SN0773) 淮安市产学研合作促进计划资助项目(HAC0823)
关键词 秸秆 有机肥 氮肥 腐解率 微生物 生物量态氮 有机质含量 straw manure nitrogen fertilizer decomposition speed microbe microbial biomass nitrogen organic matter content
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