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In situ measurement of soil respiration using the open-top chamber technique

机译:使用开顶室技术原位测量土壤呼吸

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An open-top chamber technique for measuring soil respiration is tested for evaluating how the open-top chamber alters soil microclimate inside the chamber, and how its alteration influences soil respiration measurements. The temporal variation in soil respiration followed the variation in both air and soil temperatures. The high correlation between soil respiration and soil surface temperature inside the chamber indicates that the open-top chamber technique gives a reasonable estimation for the temporal variation in soil respiration. However, there was a parasol effect of the open-top chamber on soil temperature inside the chamber, suggesting that the open-top chamber technique underestimates the soil respiration when used in an irradiated area ona sunny day. The measurement at an open site showed the effect of wind on a temporal variation in soil respiration. Therefore the open-top chamber may be weak in a strong wind condition, and a reasonable estimation may be restricted to the measurementsconducted under a closed vegetation. Our study indicates that the open-top chamber technique needs some further improvements.
机译:测试了用于测量土壤呼吸的开放式腔室技术,以评估开放式腔室如何改变腔室内的土壤微气候,以及其变化如何影响土壤呼吸测量。土壤呼吸的时间变化随空气和土壤温度的变化而变化。室内的土壤呼吸与土壤表面温度之间的高度相关性表明,开顶室技术可以合理估算土壤呼吸的时间变化。然而,敞顶式室对室内的土壤温度存在阳伞效应,这表明在晴天使用辐照区时,敞顶式室技术低估了土壤呼吸。在露天场所进行的测量表明风对土壤呼吸的时间变化的影响。因此,敞顶室在强风条件下可能较弱,并且合理的估计可能仅限于在封闭植被下进行的测量。我们的研究表明,顶室技术需要进一步改进。

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