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Carbon dioxide fluxes from biologically-crusted Kalahari Sands after simulated wetting

机译:模拟湿润后生物结成的卡拉哈里沙中的二氧化碳通量

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We report surface CO_2 efflux and subsoil CO_2 concentrations in biologically-crusted soils from the Kalahari. Fluxes were determined in-situ using a closed chamber coupled to a portable gas chromato-graph on dry soils and on soils subject to simulated light and heavy rainfall. Surface efflux was measured in an artificially darkened environment in order to determine by difference, whether photosynthesis was occurring. Dry soil efflux rates were 2.8-14.8 mg C m~2h~(-1) throughout a diurnal cycle. Light rainfall led to an immediate increase in efflux to a peak of 65.6 mg C m~2 h~(-1). Heavy rainfall resulted in a large pulse of CO_2 with efflux rates of 339.2 mg C m~2 h~(-1) over the first hour after wetting. Peak rates remained high over the following 2 days (87.8 and 87.0 mg C m~2 h~(-1)). Given sufficient moisture, fluxes increased with temperature. We believe hydration of the subsoil stimulates microorganisms which repsire available C either from extracellular polysaccharide sheaths (EPS) or released into the soil through lysis of microbial cells. Higher fluxes from the soil kept in the dark suggests photosynthesis occurs in wetted crusts during the daytime but net C uptake is masked by respiration from other microorganisms.
机译:我们报告了喀拉哈里邦生物结皮土壤中的表面CO_2外排和底土CO_2浓度。通量是使用密闭室结合便携式气相色谱仪在干燥的土壤和经过模拟的轻度和强降雨的土壤上原位测定的。在人工变暗的环境中测量表面流出,以通过差异确定是否发生了光合作用。在整个昼夜周期中,干土壤外排速率为2.8-14.8 mg C m〜2h〜(-1)。少量降雨导致流出量立即增加,达到峰值65.6 mg C m〜2 h〜(-1)。大雨导致湿润后第一小时内CO 2的脉冲较大,外排速率为339.2 mg C m〜2 h〜(-1)。在接下来的2天中,峰值速率仍然很高(87.8和87.0 mg C m〜2 h〜(-1))。如果有足够的水分,通量会随着温度的升高而增加。我们认为,地下土壤的水化会刺激微生物,这些微生物会从细胞外多糖鞘(EPS)抑制有效C,或者通过溶解微生物细胞释放到土壤中。在黑暗中,土壤中较高的通量表明白天光合作用发生在湿的硬皮中,但其他微生物的呼吸作用掩盖了净碳的吸收。

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