首页> 外文期刊>Journal of the Indian Society of Soil Science >Carbon and Nitrogen Mineralization in Soil Amended with Value-added Manures and Fertilizers under Varying Temperature and Soil Moisture Regimes
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Carbon and Nitrogen Mineralization in Soil Amended with Value-added Manures and Fertilizers under Varying Temperature and Soil Moisture Regimes

机译:在温度和湿度不同的条件下,对增值肥料和肥料改良的土壤中的碳和氮矿化

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The main aim of this study was to quantify the C and N mineralization rates in soil from organic and inorganic fertilizers as affected by temperature and moisture regimes. Laboratory incubation experiment was carried out with eight treatments consisting of combinations of value-added organic manures namely, vermicompost, NADEP compost, FYM and inorganic fertilizers. Soil (40 g) was mixed thoroughly with required quantities of organic manures and chemical fertilizers and placed in 500 mL hermeticallysealed flasks and incubated at two temperatures viz., 20 and 35 °C and two soil moisture regimes viz., 0.33 bar (field capacity) and 1.0 bar for 7, 15, 30, 60 and 90 days. Destructive samplings were done and C mineralization and mineral N were determined at each interval. Data emanated were fitted to first-order exponential equation to predict the potential mineralizable C (Cq) and N (Nq) as well as mineralization constants (k^ and k^). Results indicated that highest values of C mineralization and mineral N were associated with treatment containing value-added organic manures in combination with fertilizers. Across the incubation periods and treatments, around 15.4% increase in C mineralization was observed due to increase in temperature from 20 to 35°C while 73.3% increase was observed as the soil moisture regime shifted from 1.0 bar to field capacity. Similarly, around 5.7% increase in mineral N was recorded due to increase in temperature from 20 to 35 °C while 10.2% increase was observed as thesoil moisture regime shifted from 1.0 bar to field capacity. Data on C and N mineralization were well fitted to exponential equation as evidenced from their correlation coefficients (R~2) values. Potential mineralizable C and N as well as mineralizationconstants were significantly influenced by the application of organic manures in combination with fertilizers.
机译:这项研究的主要目的是量化受温度和湿度影响的有机和无机肥料在土壤中的碳和氮矿化率。实验室孵化实验采用八种处理方法,包括增值有机肥,ver肥,NADEP堆肥,FYM和无机肥料的组合。将土壤(40 g)与所需量的有机肥料和化肥充分混合,然后放入500 mL密封烧瓶中,并在20和35°C的两个温度和0.33 bar的两个土壤湿度条件下进行培养(田间处理能力) )和1.0巴,持续7、15、30、60和90天。进行破坏性取样,并在每个时间间隔确定C矿化和N矿物质。将散发的数据拟合到一阶指数方程,以预测潜在的可矿化C(Cq)和N(Nq)以及矿化常数(k ^和k ^)。结果表明,C矿化和N矿物的最高价值与含增值有机肥结合肥料的处理有关。在整个潜伏期和处理过程中,由于温度从20升高到35°C,C矿化量增加了约15.4%,而随着土壤水分从1.0 bar转移到田间持水量,观察到C矿化增加了73.3%。同样,由于温度从20升高到35°C,记录到的矿物质N含量增加了约5.7%,而当土壤水分从1.0 bar转移到田间持水量时,则观察到了10.2%的增加。从其相关系数(R〜2)值可以看出,C和N矿化的数据非常适合指数方程。潜在的可矿化碳,氮以及矿化常数受有机肥与肥料结合使用的影响很大。

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