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[地膜覆盖对菜地垄沟甲烷和氧化亚氮排放的影响]

[Effect of Plastic Film Mulching on Methane and Nitrous Oxide Emissions from the Ridges and Furrows of a Vegetable Field].

作者信息

Xiong Wei-Xia, Jiang Chang-Sheng, Zhao Zhong-Jing, Zeng Wei, Hu Man-Li, Tu Ting-Ting, Chen Jun-Jiang, Hao Qing-Ju

机构信息

State Cultivation Base of Eco-agriculture for Southwest Mountainous Land, College of Resources and Environment, Southwest University, Chongqing 400716, China.

Key Laboratory of the Three Gorges Reservoir Region's Eco-Environment, Ministry of Education, Chongqing 400715, China.

出版信息

Huan Jing Ke Xue. 2021 Mar 8;42(3):1559-1568. doi: 10.13227/j.hjkx.202007225.

Abstract

Investigate the effects of plastic film mulching on CH and NO emissions from a vegetable field, a one-year field observation was conducted using a static opaque chamber in a pepper-radish cropping system at the Key Field Station for Monitoring of Eco-Environment of Purple Soil of the Ministry of Agriculture of China at Southwest University, Chongqing. Two treatments (conventional and film mulching) were used to study the influence of film mulching on CH and NO emissions. The results showed that mulching significantly increased the annual average soil pH (<0.01), annual surface and subsurface (5 cm) temperature (<0.05), and soil moisture content during the radish-growing season (<0.05). The mulching also significantly reduced CH emissions in the field ridges (<0.05); the average CH flux from ridges during the pepper-growing season was 0.110 mg·(m·h) and 0.028 mg·(m·h), and 0.011 mg·(m·h) and -0.019 mg·(m·h) during the radish-growing season, under the conventional and film mulching treatments, respectively. However, across the entire experiment, CH flux from field furrows was not significantly different between the two mulching treatments (>0.05), with mean flux values during the pepper-growing season of 0.058 mg·(m·h) and 0.057 mg·(m·h), and 0.083 mg·(m·h) and 0.092 mg·(m·h) during the radish-growing season, for conventional and plastic film mulching, respectively. Except for the conventional treatment during the pepper-growing season, CH emissions from ridges were significantly higher than from furrows, but for other treatments, including conventional and film mulching treatments during radish-growing season and film mulching treatment during the pepper-growing season, the CH emissions from furrows were all significantly higher than those from ridges. This was related to the stable anoxic environment created in furrows under high rainfall conditions in Southwest China. The NO emission flux from the ridges during the pepper-growing season was 65.41 μg·(m·h) and 68.39 μg·(m·h) under the conventional and film mulching treatments, respectively, and the NO emission flux during the radish-growing season was 78.43 μg·(m·h) and 66.19 μg·(m·h), respectively. The NO flux between conventional treatment and film mulching treatment in ridges or furrows were not significantly different (>0.05), while the NO emissions from the ridges were significantly higher than that from the furrows. CH emission flux was significantly positively correlated with surface and subsurface temperature, while NO emission flux was only significantly positively correlated with alkaline nitrogen and ammonium nitrogen content.

摘要

为研究地膜覆盖对菜地CH和NO排放的影响,在中国农业农村部西南大学紫色土生态环境监测重点野外科学观测研究站的辣椒-萝卜种植系统中,使用静态不透明箱进行了为期一年的田间观测。采用两种处理方式(常规处理和地膜覆盖)来研究地膜覆盖对CH和NO排放的影响。结果表明,地膜覆盖显著提高了年平均土壤pH值(<0.01)、年地表和地下(5厘米)温度(<0.05)以及萝卜生长季节的土壤含水量(<0.05)。地膜覆盖还显著降低了田埂的CH排放(<0.05);在常规处理和地膜覆盖处理下,辣椒生长季节田埂的平均CH通量分别为0.110毫克·(平方米·小时)和0.028毫克·(平方米·小时),萝卜生长季节分别为0.011毫克·(平方米·小时)和-0.019毫克·(平方米·小时)。然而,在整个实验过程中,两种地膜覆盖处理下田间沟渠的CH通量差异不显著(>0.05),常规处理和地膜覆盖处理下辣椒生长季节的平均通量值分别为0.058毫克·(平方米·小时)和0.057毫克·(平方米·小时),萝卜生长季节分别为0.083毫克·(平方米·小时)和0.092毫克·(平方米·小时)。除了辣椒生长季节的常规处理外,田埂的CH排放显著高于沟渠,但对于其他处理,包括萝卜生长季节的常规处理和地膜覆盖处理以及辣椒生长季节的地膜覆盖处理,沟渠的CH排放均显著高于田埂。这与中国西南地区高降雨条件下沟渠中形成的稳定缺氧环境有关。在常规处理和地膜覆盖处理下,辣椒生长季节田埂的NO排放通量分别为65.41微克·(平方米·小时)和68.39微克·(平方米·小时),萝卜生长季节的NO排放通量分别为78.43微克·(平方米·小时)和66.19微克·(平方米·小时)。常规处理和地膜覆盖处理在田埂或沟渠中的NO通量差异不显著(>0.05),而田埂的NO排放显著高于沟渠。CH排放通量与地表和地下温度显著正相关,而NO排放通量仅与碱解氮和铵态氮含量显著正相关。

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