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首页> 外文期刊>Acta Agriculturae Scandinavica. Section B, Soil and Plant Science >Quantifying soil respiration in response to short-term tillage practices: a case study in southern Turkey
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Quantifying soil respiration in response to short-term tillage practices: a case study in southern Turkey

机译:量化土壤呼吸对短期耕作的响应:以土耳其南部为例

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摘要

The study aimed at quantifying the rates of soil CO2 efflux under the influence of common tillage systems of moldboard plow (PT), chisel plow (CT), rotary tiller (RT), heavy disc harrow (DT), and no-tillage (NT) for 46 days in October and November in a field left fallow after wheat harvest located in southern Turkey. The NT and DT plots produced the lowest soil CO2 effluxes of 0.3 and 0.7 g m(-2) h(-1), respectively, relative to the other plots (P < 0.001). Following the highest rainfall amount of 87 mm on the tenth day after the tillage, soil CO2 efflux rates of all the plots peaked on the 12th day, with less influence on soil CO2 efflux in the NT plot than in the conventional tillage plots. Soil evaporation in NT (64 mmol m(-2) s(-1)) was significantly lower than in the PT (85 mmol m(-2) s(-1)) and RT (89 mmol m(-2) s(-1)) tillage treatments (P < 0.01). The best multiple-regression model selected explained 46% of variation in soil respiration rates as a function of the tillage treatments, soil temperature, and soil evaporation (P < 0.001). The tillage systems of RT, PT, and CT led, on average, to 0.23, 0.22, and 0.18 g m(-2) h(-1) more soil CO2 efflux than the baseline of NT, respectively (P <= 0.001).
机译:该研究旨在量化mold土犁(PT),凿子犁(CT),旋耕机(RT),重型圆盘耙(DT)和免耕(NT)的常见耕作系统对土壤CO2外流速率的影响),在10月和11月在土耳其南部小麦收割后剩下的一块田地中休耕了46天。 NT和DT地块相对于其他地块分别产生的最低土壤CO2流量分别为0.3和0.7 g m(-2)h(-1)(P <0.001)。在耕作后第10天达到最高降雨量87毫米之后,所有样地的土壤CO2外排率在第12天达到峰值,与传统耕作样地相比,NT样地对土壤CO2外流的影响较小。 NT(64 mmol m(-2)s(-1))中的土壤蒸发量显着低于PT(85 mmol m(-2)s(-1))和RT(89 mmol m(-2)s)中的土壤蒸发量(-1))耕作处理(P <0.01)。选择的最佳多元回归模型解释了耕作处理,土壤温度和土壤蒸发量与土壤呼吸速率变化的46%(P <0.001)。 RT,PT和CT的耕作系统平均分别比NT基准多出0.23、0.22和0.18 g m(-2)h(-1)的土壤CO2外流(P <= 0.001)。

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