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滴灌條件下覆膜熱效益及其對馬鈴薯生長的影響
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國家自然科學基金青年基金項目(51809225),、江蘇省自然科學基金青年基金項目(BK20180929)和中國博士后科學基金面上項目(2019M651977)


Effects of Film Mulching on Thermal Conditions and Potato Growth under Drip Irrigation
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    摘要:

    2015年4—8月在甘肅地區(qū)和2017年3—7月在山東地區(qū),在滴灌條件下對不同薄膜覆蓋(透明薄膜,,CF,;不覆膜,NF,;黑色薄膜,;BF)的覆膜熱效應(yīng)及其對馬鈴薯生長的影響進行了試驗,。通過對馬鈴薯全生育期冠層凈輻射,、土壤熱通量和土壤溫度進行自動監(jiān)測,對馬鈴薯塊莖分級,、產(chǎn)量,、水分利用效率進行測量和計算。結(jié)果表明:BF處理的凈輻射大于NF和CF處理,,2015年BF處理在芽條生長期和苗期的凈輻射最大值均比NF處理高12%,,2017年則分別高22%和15%;2015年CF處理10cm深度處的土壤熱通量最大值比BF處理和NF處理分別高66%和129%,,2017年則為57%和91%,;CF處理的土壤溫度高于BF和NF處理,但在塊莖形成期和塊莖增長期CF處理的土壤溫度稍低于BF和NF處理,,2017年山東地區(qū)各處理土壤溫度間的差異小于2015年甘肅地區(qū),;甘肅地區(qū)CF處理的耗水明顯少于BF處理,并且該地區(qū)覆膜的熱效應(yīng)及其對提高馬鈴薯產(chǎn)量和水分利用效率的影響優(yōu)于山東地區(qū),,建議甘肅地區(qū)采用透明薄膜覆蓋馬鈴薯種植方式,。

    Abstract:

    Film mulching can change radiation transfer, increase soil temperature, reduce soil evaporation and so on. Potato has good nutritional value and produce more dietary energy than rice, maize and wheat. Potato has shallow roots and is sensitive to hydrothermal conditions. Field hydrothermal environment can be regulated through the combination of film mulching and drip irrigation. Drip irrigation with film mulching can increase potato yield and water use efficiency and improve potato quality. Optical properties of film are important factors affecting field thermal conditions and potato growth. The effects of film mulching on field thermal conditions and potato growth are also different in different regions with different climatic conditions. The experiments were conducted in Gansu Province from April to August 2015 and Shandong Province from March to July 2017, respectively. Effects of different film mulching (clear film, CF; no film, NF; black film, BF) on heat conditions and potato growth under drip irrigation were studied. Canopy net radiation, soil heat flux and soil temperature were monitored automatically during the whole growth period. Potato yield, tuber grade, water consumption and water use efficiency were measured. The results suggested that net radiation of BF treatment was greater than that of NF and CF treatments, while net radiation of CF treatment might be higher or lower than that of NF treatment. The maximum net radiation of BF treatment was 12% greater than that of NF treatment during sprout development stage and seedling stage in 2015 and 22% and 15% greater than that of NF treatment in 2017, respectively. The differences of soil heat flux and soil temperature between treatments were great during sprout development stage and seedling stage, decreased during tuber initiation stage and tuber bulking stage, and increased during maturity stage. The maximum soil heat flux at 10cm soil depth of CF treatment was 66% and 129% greater than that of BF and NF treatments in 2015, respectively, and it was 57% and 91% greater than that of BF and NF treatments in 2017, respectively. The soil temperature of CF treatment was greater than that of BF and NF treatments, while it might be lower than that of BF and NF treatments during tuber initiation stage and tuber bulking stage. In 2015, the daily maximum soil temperatures at 10~50cm soil depths of CF treatment were 29% greater than that of BF treatment, and 31% and 29% higher than that of NF treatment during sprout development stage and seedling stage, respectively. In 2017, the daily maximum temperatures at 10~50cm soil depths of CF treatment were 22% and 4% greater than that of BF treatment, and 21% and 9% greater than that of NF treatment during sprout development stage and seedling stage, respectively. The difference of soil temperature among different treatments in Shandong Province in 2017 was smaller than that in Gansu Province in 2015. Film mulching significantly improved potato yield and water use efficiency in Gansu Province and the evapotranspiration of CF treatment was significantly lower than that of BF treatment. However, film mulching did not significantly improve potato yield and water use efficiency in Shandong Province in 2017. The evapotranspiration of CF treatment was lower than that of BF treatment in Gansu Province. The effects of film mulching on thermal conditions and potato yield and water use efficiency were more remarkable in Gansu Province than that in Shandong Province. Clear film mulching was favorable for potato cultivation in Gansu Province. 

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張友良,王鳳新,聶唯,馮紹元.滴灌條件下覆膜熱效益及其對馬鈴薯生長的影響[J].農(nóng)業(yè)機械學報,2020,51(12):252-261. ZHANG Youliang, WANG Fengxin, NIE Wei, FENG Shaoyuan. Effects of Film Mulching on Thermal Conditions and Potato Growth under Drip Irrigation[J]. Transactions of the Chinese Society for Agricultural Machinery,2020,51(12):252-261.

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  • 收稿日期:2020-08-26
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  • 在線發(fā)布日期: 2020-12-10
  • 出版日期: 2020-12-10
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