当前位置: 首页 > 文章 > 连作对华北落叶松人工林土壤磷形态的影响 东北林业大学学报 2019 (1) 47-51
Position: Home > Articles > Phosphorus Fractions in Soil after Successive Crops of Larix principis-rupprechtii Journal of Northeast Forestry University 2019 (1) 47-51

连作对华北落叶松人工林土壤磷形态的影响

作  者:
刘旭军;韩海荣;程小琴;田慧霞;高林琴
单  位:
山西桑干河省级自然保护区管理局;森林资源生态系统过程北京市重点实验室(北京林业大学)
关键词:
连作;华北落叶松;人工林;土壤磷形态
摘  要:
以山西太岳山一、二代华北落叶松(Larix principis-rupprechtii)人工林为对象,研究连作对华北落叶松人工林表层土壤磷形态的影响。结果表明:连作对土壤全磷质量分数无显著影响;连作显著降低了树脂提取态磷(Resin-Pi)、碳酸氢钠提取态无机磷(Na HCO_3-Pi)、有机磷(Na HCO_3-Po)和氢氧化钠提取态有机磷(Na OH-Po)的质量分数;稳定态磷和闭蓄态磷(Residual-P)对连作的响应不敏感。土壤有机碳、土壤水分、土壤微生物磷和酸性磷酸酶活性与土壤磷显著相关(P<0.05)。土壤有机碳、土壤水分、土壤微生物以及酸性磷酸酶活性的降低是导致土壤磷有效性下降的原因。
译  名:
Phosphorus Fractions in Soil after Successive Crops of Larix principis-rupprechtii
作  者:
Liu Xujun;Han Hairong;ChengXiaoqin;Tian Huixia;Gao Linqin;Beijing Key Laboratory of Forest Resources and Ecosystem Processes,Beijing Forestry University;Sanggan River Provincial Nature Reserve Management Bureau in Shanxi Procince;
单  位:
Liu Xujun%Han Hairong%ChengXiaoqin%Tian Huixia%Gao Linqin%Beijing Key Laboratory of Forest Resources and Ecosystem Processes,Beijing Forestry University%Sanggan River Provincial Nature Reserve Management Bureau in Shanxi Procince
关键词:
Successive crops;;Larix principis-rupprechtii;;Soil phosphorus fractions
摘  要:
We studied the responses of surface soil P fractions to successive crops in a Larix principis-rupprechtii plantation. The result showed that soil total P content did not differ between the L. principis-rupprechtii crop rotations in surface soil layers.Successive L. principis-rupprechtii cultivation significantly reduced the contents of Resin-Pi,NaH CO3-Po,NaO H-Pi and NaO H-Po,but non-available P and Residual-P content were not sensitive to successive L. principis-rupprechtii cultivation.By correlation analysis,the soil organic carbon,soil moisture content,microbial biomass phosphorus and acid phosphatase activities were significantly correlated with soil phosphorus fractions( P< 0.05). The decline of soil organic carbon,soil moisture content,soil microbial biomass and acid phosphatase activity after successive L. principis-rupprechtii cultivation may be the reason for the decrease of soil phosphorus availability.

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