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测土配方的土壤养分含量施肥法解析 被引量:3
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作者 高弼模 李彦 +2 位作者 于淑芳 张英鹏 董晓霞 《安徽农学通报》 2007年第22期71-71,87,共2页
本文介绍了一种测土配方施肥的新方法——土壤养分含量法。该方法遵循测土配方施肥的理论原则,依据土壤养分测试结果指导施肥,通过田间试验,研究建立了一套系统的土壤养分含量分级指标体系,并通过实例解析了如何应用该方法进行测土配方... 本文介绍了一种测土配方施肥的新方法——土壤养分含量法。该方法遵循测土配方施肥的理论原则,依据土壤养分测试结果指导施肥,通过田间试验,研究建立了一套系统的土壤养分含量分级指标体系,并通过实例解析了如何应用该方法进行测土配方施肥。该方法克服了传统测土配方施肥的复杂性,便于推广应用。 展开更多
关键词 土壤养分浓度 测土配方
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The variation of nutrient concentration in the rhizosphere of larch and ash in mixed and monoculture stands 被引量:3
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作者 张彦东 《Journal of Forestry Research》 SCIE CAS CSCD 2002年第4期269-272,336-337,共4页
Soil samples were taken from rhizosphere zone and off-rhizosphere zone of ash (Fraxinus mandshurica Rupr.) and larch (Larix olgensis Henry) in mixed and monoculture stands, and the nutrient concentration of N, P, and ... Soil samples were taken from rhizosphere zone and off-rhizosphere zone of ash (Fraxinus mandshurica Rupr.) and larch (Larix olgensis Henry) in mixed and monoculture stands, and the nutrient concentration of N, P, and K was analyzed to study the effect of nutrients variation on yield improvement in the mixed stand. The result showed that: 1) The stand level total soil N concentration and available N in the mixed stand was similar to that in the monoculture stand of ash, but higher than that in monoculture stand of larch. The total N and available N concentration in rhizosphere soil of ash in the mixed stand was similar to that in the monoculture stand of ash, but the available N concentration in rhizosphere of larch in mixed stand was much higher than in its monoculture. 2) The stand level total P, total K concentration in the mixed stand was similar to that in monocul-ture stands of both species, but available P and K was more concentrated in the mixed stand than in the monoculture stands of ash. The rhizosphere available P and K of ash in the mixed stand was 44.1% and 13.5% (for the 9-yr-old stands) and 79.6% and 25.6% (for the 21-yr-old stands) higher than that in its monoculture. The improvement of soil P and K availability in the mixed stand is concluded. 展开更多
关键词 ASH LARCH Mixed plantation stand RHIZOSPHERE Soil nutrition
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Effects of Exogenous Organic Acids on Dehydrogenase Activity in Dark Brown Forest Soils under Nutrient Deficiency 被引量:1
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作者 宋金凤 马瑞 +2 位作者 黄文斌 杨迪 刘永 《Agricultural Science & Technology》 CAS 2014年第3期395-399,469,共6页
Objective] This study aimed to investigate the effects of exogenous or-ganic acids on dehydrogenase activity in dark brown forest soils under nutrient defi-ciency. [Method] Different proportions of A1 and B horizon da... Objective] This study aimed to investigate the effects of exogenous or-ganic acids on dehydrogenase activity in dark brown forest soils under nutrient defi-ciency. [Method] Different proportions of A1 and B horizon dark brown forest soils (A1∶B=1∶2) were utilized to establish soil conditions with nutrient deficiency for cultivation of Larix olgensis seedlings. The effects of oxalic acid, citric acid and succinic acid on dehydrogenase activity in dark brown forest soils under nutrient deficiency were studied systematical y by adding different concentrations of organic acid solutions. [Result] Under nutrient deficiency, dehydrogenase activity in dark brown forest soils was reduced significantly, and the reduction increased with the extension of stress duration. Most organic acid treatments improved dehydrogenase activity in nutrient-deficient dark brown forest soils, and the effects varied with different treatment du-ration and types and concentrations of organic acids. Furthermore, 10.0, 5.0 and 10.0 mmol/L organic acid treatments exhibited the most significant effects on day 10, 20 and 30, respectively. The increment of dehydrogenase activity in different durations showed a downward trend of 30 d〉20 d〉10 d; the improvement effects of three organic acids on dehydrogenase activity showed a downward trend of succinic acid〉 citric acid〉oxalic acid. [Conclusion] Exogenous organic acids improved signifi-cantly dehydrogenase activity in dark brown forest soils under nutrient deficiency and also improved the microbial activity and soil fertility to a certain extent. 展开更多
关键词 Larix olgensis Nutrient deficiency Organic acid Dark brown forestsoils Dehydrogenase activity
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