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Intercepted solar radiation by maize crops subjected to different tillage systems and water availability levels.

机译:玉米农作物在不同耕作制度和不同水利用水平下的日光辐射截获情况。

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摘要

Abstract ? The objective of this work was to evaluate changes in the photosynthetic photon flux density (PPFD) interception efficiency and PPFD extinction coefficient for maize crop subjected to different soil tillage systems and water availability levels. Crops were subjected to no-tillage and conventional tillage systems combined with full irrigation and non-irrigation treatments. Continuous measurements of transmitted PPFD on the soil surface and incoming PPFD over the canopy were taken throughout the crop cycle. Leaf area index and soil water potential were also measured during the whole period. Considering a mean value over the maize cycle, intercepted PPFD was higher in the conventional tillage than in the no-tillage system. During the initial stages of plants, intercepted PPFD in the conventional tillage was double the PPFD interception in the no-tillage treatment. However, those differences were reduced up to the maximum leaf area index, close to tasseling stage. The lowest interception of PPFD occurred in the conventional tillage during the reproductive period, as leaf senescence progressed. Over the entire crop cycle, the interception of PPFD by the non-irrigated plants was about 20% lower than by the irrigated plants. The no-tillage system reduced the extinction coefficient for PPFD, which may have allowed a higher penetration of solar radiation into the canopy.
机译:摘要?这项工作的目的是评估不同土壤耕作制度和水分利用水平下玉米作物的光合光子通量密度(PPFD)截留效率和PPFD消光系数的变化。对农作物进行免耕和常规耕作,并进行全面灌溉和非灌溉处理。在整个作物周期中,连续测量土壤表面上传播的PPFD和冠层上进入的PPFD。在整个时期还测量了叶面积指数和土壤水势。考虑到整个玉米周期的平均值,传统耕作中截留的PPFD高于免耕系统。在植物的初始阶段,传统耕作中截取的PPFD是免耕处理中PPFD截获的两倍。但是,在接近抽雄阶段之前,这些差异一直减少到最大叶面积指数。随着叶片衰老的进行,在常规耕作期间,PPFD的截留率最低。在整个作物周期中,非灌溉植物对PPFD的截获率比灌溉植物低约20%。免耕系统降低了PPFD的消光系数,这可能使太阳辐射有更高的穿透力。

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