• 不同温度水分土壤微生物量碳有显著性影响

    Different temperature and moisture non-markedly affected soil easy oxygenation organic c.

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  • 不同种植年限苜蓿地土壤微生物量存在差异

    There were obvious difference on soil microorganism carbon and nitrogen among different alfalfa grounds.

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  • 土壤微生物量碳、氮、磷与植被类型植被恢复年限关系密切

    Soil Cmic, Nmic and Pmic are significantly related with vegetation type and rehabilitation age.

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  • 设施土壤速效养分增加土壤微生物量碳、磷明显影响

    Compared with available nitrogen, increased available phosphorus just had the opposite effects to soil microbial biomass.

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  • 方差分析表明各处理土壤微生物之间差异达显著水平

    The ANOVA results indicate that the soil microbial biomass carbon concentration among treatments differs significantly.

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  • 结果表明:长期不同施肥处理对土壤微生物量产生显著影响

    The results indicated that soil biomass carbon and nitrogen were remarkably influenced by fertilization.

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  • 施用肥料能提高土壤微生物的含NPK处理N处理差异不大

    Besides, applying fertilizer improved soil microbial biomass c, however, divergence between NPK and Ntreatment is not marked.

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  • 采用大田试验法研究了玉米生育期内土壤微生物活性动态变化特征。

    The dynamic changes of soil microbial biomass Carbon (c) and soil enzyme activities during growth of corn were studied in field experiment.

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  • 摘要研究施用酵素菌肥栽参土壤人参根际微生物细菌真菌放线菌变化

    An experiment was conducted to study the variations in microbial biomass carbon (MBC) and numbers of bacteria, fungi and actinomyces of ginseng rhizosphere soil applied ferment bacteria fertilizer.

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  • 土壤微生物量基础呼吸作用、土壤代谢表征土壤质重要指标并且与土壤本身的理化性质有关。

    Soil basal respiration, soil biomass carbon, metabolic quotient are important indexes of soil microbiological, they relate to physical-chemical character of soil.

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  • 结果表明常绿阔叶林土壤微生物和易氧化态高于马尾松杉木林土壤,杉木林土壤水溶性相对较低。

    It can be found that broad-leaved evergreen forest contained more microbial biomass (MBC) and the ease of oxidation of carbon (EOC) compared with Chinese Fir and Masson Pine stands.

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  • 通过对不同肥力水平黑土、棕壤、黄棕壤、红壤土壤微生物量碳比较,研究探讨土壤微生物量土壤肥力关系

    To find out the relationship between soil microbial biomass C and N and soil fertility, soil microbial biomass C and N were compared in several types of soil with different fertilization levels.

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  • 随着年限延长,土壤微生物量逐渐降低的趋势,免耕10以上土壤微生物量碳最低微生物量免耕78年时最低。

    The microbial biomass C and N were lowest in no-tillage 10 and 7~8 years, respectively, and then decreased along with the the no-tillage years increasing.

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  • 土壤活性有机土壤移动快、稳定性差、氧化化,植物土壤微生物活性较高的部分,常可用水溶性有机微生物量碳和易氧化进行表征。

    Soil labile organic carbon (LOC) refers to the fractions of organic carbons that are easy to move and to be oxidized and mineralized, and they are quite available to plant and soil microorganisms.

    youdao

  • 茶树土壤微生物生物随树龄增长而增加,但茶树根层土壤可培养微生物无显著相关

    Soil microbial biomass carbon in the tea plant root layer increased significantly with the age of tea plants.

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  • 施用铜制剂还显著影响了土壤生物学指标,表现为土壤基础呼吸代谢升高微生物生物降低

    Moreover, the biological indexes of soil were affected, basal respiration and metabolic quotients were increased, microbial carbon was declined.

    youdao

  • 土壤有效土壤微生物生物土壤脲酶显著相关

    Correlation analysis indicated that there were significantly negative correlations between soil biomass carbon and urease activity with available lead content in the soil.

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  • 因而,人工林土壤有机积累水平与土壤有机稳定性表层土壤微生物有关

    It suggested that soil TOC accumulation in plantations was closely related to stability of organic matter and quantity of soil microbes.

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  • 研究结果表明整个培养过程仅加莠去津土壤微生物生物的含显著降低对照相比,分别平均降低了13.5%,10.1%,20.0%。

    Results showed that soil microbial biomass C, N, P significantly decreased after addition of atrazine. As composed with control, microbial biomass C, N and P decreased averagely 13.5%, 10.1%, 20.0%.

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  • 研究了红砂土加入稻草秸秆和猪粪后土壤微生物生物水溶性有机、溶解性酚等活性有机质组分动态变化。

    Water-soluble organic carbon(WSOC) was as an important component in the transport and supply of carbon(C) to microorganisms and played a major role the cycle of soil organic matter.

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  • 各处理土壤微生物生物量碳、氮培养时期不同而异。因此,生产中利用秸秆考虑不同施肥处理秸秆养分差异

    Therefore, in agricultural practices, the differences in the nutrient contents of straw due to different fertilization should be considered when the straw was to be added into soil.

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  • 结果表明各个土层中,两种林分下土壤含水pH值有机以及微生物生物磷均显著差异

    Results showed that there were no significant differences in soil total organic carbon, soil moisture content, pH and soil microbial biomass phosphorus in each soil layer between the two plantations.

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  • 了解土壤无机土壤微生物磷及磷比的影响。

    Interference of soil soluble inorganic P in measurement of soil microbial biomass P;

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  • 了解土壤无机土壤微生物磷及磷比的影响。

    Interference of soil soluble inorganic P in measurement of soil microbial biomass P;

    youdao

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