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Effect of conservation tillage on soil respiration rate and water content under wheat/maize system in North China Plain

机译:华北平原小麦/玉米系统保护性耕作对土壤呼吸速率和水分的影响

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Conservation tillage management can improve soil moisture and reduce or increase soil CO2 emission. Soil CO2 flux rate, soil moisture, and the relationship between soil respiration and temperature on North China Plain throughout a 3-year period was determined. Tillage systems were rotary tillage without crop residues (CT), rotary tillage with crop residues incorporated into the soil in winter, and no-tillage with crop residues used as mulch in summer (TW), and rotary tillage with crop residues incorporated into the soil in summer and no-tillage with crop residues used as mulch in winter (TS). Soil respiration was measured with a LI-8100 and the gravimetric method was used to identify soil water content. Soil temperature at 5 cm depth also was measured directly by Li- 8100 through a temperature sensing probe during the CO2 measurement time. The crops were winter wheat (Triticum aestivum L) and summer maize (Zea mays L). During the wheat and maize growing period, TS reduced CO2 emission when compared with CT and TW. For the first two years of this study, CT and TW had higher soil water content when compared with TS. Thus, this study suggests that conservation tillage can be useful for North China plain farmers; however, TW emitted CO2 at the highest rate level, therefore further research is needed on long term effects of those three tillage practices on respiration rate and soil moisture in that area.
机译:保护性耕作管理可以改善土壤湿度,减少或增加土壤CO2排放。确定了华北平原3年间的土壤CO2通量率,土壤湿度以及土壤呼吸与温度之间的关系。耕作制度为:无农残的轮耕(CT),冬天将农残掺入土壤的轮耕,夏天(TW)的农作物覆盖作农残的免耕和将农残掺入土壤的轮耕夏季不播种,冬季不使用农作物秸秆覆盖。用LI-8100测量土壤呼吸,并使用重量分析法鉴定土壤水分。 Li-8100还在CO2测量时间内通过温度传感探头直接测量了5 cm深度的土壤温度。农作物是冬小麦(Triticum aestivum L)和夏玉米(Zea mays L)。与CT和TW相比,在小麦和玉米生育期,TS减少了CO2排放。在本研究的前两年中,与TS相比,CT和TW的土壤含水量更高。因此,这项研究表明保护性耕作对华北平原农民可能有用。但是,TW排放的CO2最高,因此需要进一步研究这三种耕作方式对该地区的呼吸速率和土壤水分的长期影响。

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