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猪粪堆肥与化肥配施对水稻产量和氮效率的影响 被引量:56
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作者 孟琳 王强 +3 位作者 黄启为 杨兴明 徐阳春 沈其荣 《生态与农村环境学报》 CAS CSSCI CSCD 北大核心 2008年第1期68-71,76,共5页
采用大田试验方法研究猪粪堆肥与化肥配施对水稻产量和氮效率的影响。结果表明:在本试验条件下,猪粪堆肥与化肥配施能显著提高水稻籽粒产量,增加水稻每穗实粒数。尤其是1500kg·hm^-2猪粪堆肥+化肥配施处理,稻谷产量达8595kg&#... 采用大田试验方法研究猪粪堆肥与化肥配施对水稻产量和氮效率的影响。结果表明:在本试验条件下,猪粪堆肥与化肥配施能显著提高水稻籽粒产量,增加水稻每穗实粒数。尤其是1500kg·hm^-2猪粪堆肥+化肥配施处理,稻谷产量达8595kg·hm^-2,比未施氮处理和化肥处理分别增产57.8%和13.6%,差异达显著水平。猪粪堆肥与化肥配施处理水稻氮素养分效率均高于化肥处理。猪粪堆肥与化肥配施的氮肥回收率为35.3%~38.6%,而化肥处理仅为27.6%。 展开更多
关键词 猪粪堆肥 化学 水稻产量 氮素养分效率
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Effect of Biochar Addition on Maize Growth and Nitrogen Use Efficiency in Acidic Red Soils 被引量:22
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作者 ZHU Qiao-Hong PENG Xin-Hua +2 位作者 HUANG Tai-Qing XIE Zu-Bin N.M.HOLDEN 《Pedosphere》 SCIE CAS CSCD 2014年第6期699-708,共10页
Biochar added to soil can improve crop growth through both direct and indirect effects, particularly in acidic, highly weathered soils in subtropical and tropical regions. However, the mechanisms of biochar improving ... Biochar added to soil can improve crop growth through both direct and indirect effects, particularly in acidic, highly weathered soils in subtropical and tropical regions. However, the mechanisms of biochar improving crop growth are not well understood. The objectives of this study were i) to determine the crop responses to biochar addition and ii) to understand the effect of biochar addition on N use efficiency. Seven acidic red soils varying in texture, p H, and soil nutrient were taken from southern China and subjected to four treatments: zero biochar and fertilizer as a control(CK), 10 g kg-1biochar(BC), NPK fertilizers(NPK), and 10 g kg-1biochar plus NPK fertilizers(BC+NPK).15N-labeled fertilizer was used as a tracer to assess N use efficiency. After a 46-d pot experiment,biochar addition increased soil p H and available P, and decreased soil exchangable Al3+, but did not impact soil availabe N and cation exchange capacity(P > 0.05). The N use efficiency and N retained in the soil were not significantly affected by biochar application except for the soil with the lowest available P(3.81 mg kg-1) and highest exchanageable Al3+(4.54 cmol kg-1). Greater maize biomass was observed in all soils amended with biochar compared to soils without biochar(BC vs. CK, BC+NPK vs. NPK). This agronomic effect was negatively related to the concentration of soil exchangeable Al3+(P < 0.1). The results of this study implied that the liming effect of biochar improved plant growth through alleviating Al toxicity and P deficiency, especially in poor acidic red soils. 展开更多
关键词 agronomic effect AI toxicity liming effect ^15N labeling P deficiency
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