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      有机无机氮配施对植烟土壤氮形态和烟叶质量的影响

      Effects of Combined Application of Organic and Inorganic Nitrogen on Soil Nitrogen Forms and Tobacco Leaf Quality in Changle

      • 摘要: 为探讨有机氮与无机氮配施对山东昌乐烟区土壤氮形态和烟叶质量的影响。采用随机区组设计,设置有机氮与无机氮6种配施比例处理,系统分析了不同配比对土壤氮形态、烤烟农艺性状、物质积累、养分吸收、光合特性及烤后烟叶物理性状、化学成分、感官质量的影响。结果表明:60%有机氮+40%无机氮处理显著提高了平顶期和采收结束时土壤硝态氮含量,100%有机氮则显著提高了土壤铵态氮含量;株高、叶片干物质以及氮钾含量和积累量随有机氮施用比例的增加呈先升高后降低的趋势,60%有机氮+40%无机氮处理显著高于100%无机氮处理;配施有机氮显著提高了叶片净光合速率,提升幅度为30.86%~48.85%;60%有机氮+40%无机氮处理烤后烟叶叶长、叶宽、叶面积和单叶质量显著高于100%无机氮处理;施用有机氮显著提高了烤后烟叶钾含量(除80%有机氮+20%无机氮处理),60%有机氮+40%无机氮处理显著提升0.35百分点,且在感官评吸中香气量足、余味舒适、杂气轻,综合得分最高。综上,有机氮与无机氮合理配施可有效提升昌乐烟区土壤硝态氮含量,促进烟株养分吸收,提高烤后烟叶质量和感官质量,其中60%有机氮+40%无机氮配比效果最佳。

         

        Abstract: This study aims to investigate the effects of combined application of organic fertilizer and inorganic nitrogen on soil nitrogen forms and tobacco leaf quality in the tobacco-growing region of Changle, Shandong Province. A randomized complete block design (RCBD) was employed, incorporating six different ratios of organic to inorganic nitrogen, to evaluate their effects on soil nitrogen dynamics, agronomic traits of flue-cured tobacco, dry matter accumulation, nutrient uptake, photosynthetic performance, and the physical, chemical and sensory qualities of cured tobacco leaves. Results indicate that 60% organic and 40% inorganic nitrogen significantly increased soil nitrate levels at both the topping and harvest stages, whereas the 100% organic nitrogen treatment notably enhanced soil ammonium nitrogen levels. Plant height, leaf dry matter, and the accumulation of nitrogen and potassium initially increased and then decreased with rising proportions of organic nitrogen. The 60% organic + 40% inorganic nitrogen treatment outperformed the 100% inorganic nitrogen treatment across these parameters. Combined organic-inorganic nitrogen application significantly improved leaf net photosynthetic rate by 30.86% to 48.85%. Tobacco leaves under the 60% organic + 40% inorganic nitrogen regime exhibited significantly greater leaf length, width, area, and single-leaf weight compared to those receiving 100% inorganic nitrogen. Organic nitrogen application significantly increased potassium concentration in cured leaves (except under 80% organic + 20% inorganic nitrogen), with the 60% + 40% ratio enhancing potassium content by 0.35 percentage points. In sensory evaluation, this treatment yielded the highest overall score, characterized by rich aroma, a pleasant aftertaste, and minimal off-flavors. In conclusion, the rational integration of organic and inorganic nitrogen fertilizers effectively enhances soil nitrate availability, promotes nutrient assimilation, and improves both the chemical composition and sensory quality of cured tobacco leaves in Changle. The optimal fertilization strategy is determined to be 60% organic and 40% inorganic nitrogen.

         

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