首页> 外文期刊>African Journal of Microbiology Research >Freezingthawing cycles effect on the water soluble organic carbon, nitrogen and microbial biomass of alpine grassland soil in Northern Tibet
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Freezingthawing cycles effect on the water soluble organic carbon, nitrogen and microbial biomass of alpine grassland soil in Northern Tibet

机译:冻融循环对藏北高寒草地土壤水溶性有机碳,氮和微生物量的影响

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Soil freezing-thawing cycle may substantially influence soil physical properties, microbial activity, and the rates of carbon and nitrogen cycling in soils. In this study, the soil water soluble organic C, N (WSOC, WSON) as well as microbial biomass C, N (MBC, MBN) of two alpine grassland types, alpine meadow and alpine steppe, were investigated after freezing-thawing cycles in a grassland landscape of Northern Tibet. The results showed that with froze at ?15°C, the WSOC and WSON contents of alpine grassland soils observably increased after 1 freezing-thawing cycle and decreased after 2 and 4 cycles, and with froze at ?25°C, the WSOC and WSON contents showed a gradually increasing trend. The MBC and MBN contents of both alpine meadow and alpine steppe soils generally exhibited a similar “low-high-low” pattern during the process of freezing-thawing cycles. Furthermore, the alpine grassland type had a significant effect on the WSOC and MBC concentrations, and the freeze temperature, freezing-thawing cycle times had significant effects on the WSOC, WSON, MBC, and MBN concentrations.
机译:土壤的冻融循环可能会严重影响土壤的物理性质,微生物活性以及土壤中碳氮循环的速率。在这项研究中,研究了两种土壤类型的高寒草甸和高寒草原在冻融后的土壤水溶性有机碳,氮(WSOC,WSON)以及微生物生物量碳,氮(MBC,MBN)。西藏北部的草原景观。结果表明,在15°C冻结时,高寒草地土壤的WSOC和WSON含量在1次冻融循环后可观察到增加,而在2和4个周期后降低;在25°C冻结时,WSOC和WSON含量呈逐渐增加的趋势。在冻融循环过程中,高寒草甸和高寒草原土壤的MBC和MBN含量通常表现出相似的“低-高-低”模式。此外,高寒草原类型对WSOC和MBC浓度有显着影响,而冻结温度,冻融循环时间对WSOC,WSON,MBC和MBN浓度有显着影响。

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