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Soil carbon fractions influenced by temperature sensitivity and land use management

机译:土壤碳馏分受温度敏感性和土地利用管理影响

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Globally about 23 % of the dry lands are affected by soil degradation due to lack of soil organic carbon (SOC). Increasing temperature and artificial stress of various management practices including tillage accelerate soil aggregate breakdown and increase the loss of soil organic carbon to the atmosphere. This study was conducted for comparing SOC fraction in different land use and soil management types in arid soils of Rajasthan and to study the effects of temperature fluctuation on soil organic carbon fraction dynamics. In the experiment two temperature regimes were maintained; ambient and elevated (ambient + 40 A degrees C). All the soil organic carbon fractions were analyzed and it was revealed that soil organic carbon fractions were more under trees (0.33 %) compared to grass (0.23 %) land use system. The mean soil microbial biomass carbon (SMBC) and dehydrogenase activity under trees were 13.9 A mu g C/g soil, 3.2 pkat/g and under grasses were 10.8 A mu g C/g soil, 2.0 pkat/g respectively. The SOC content under temperature fluctuated samples were about 18 % higher than the control samples. Overall increasing temperature to about 45 A degrees C reduced the SMBC to an extent of 19 % compared to room temperature and the dehydrogenase activity was about 9 % lower than room temperature.
机译:由于缺乏土壤有机碳(SOC),全球约23%的干土壤受土壤降解的影响。增加温度和人工压力的各种管理实践,包括耕作加速土壤聚集体细分,增加土壤有机碳损失到大气中。该研究进行了比较拉贾斯坦干旱土壤中不同土地利用和土壤管理类型的SOC部分,研究温度波动对土壤有机碳级分动力学的影响。在实验中,维持两个温度制度;环境和升高(环境+ 40℃)。分析了所有土壤有机碳级分,揭示了与草(0.23%)土地使用系统相比,土壤有机碳级分的树木(0.33%)更多。树木下的平均土壤微生物碳(SMBC)和脱氢酶活性为13.9AU g C / G土壤,3.2pkat / g和草地为10.8μmgc/ g土壤,分别为2.0pkat / g。温度波动样品下的SoC含量比对照样品高约18%。与室温相比,总体增加至约45℃的温度为约45℃的程度为19%,脱氢酶活性约为9%,低于室温。

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