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首页> 外文期刊>Journal of Integrative Agriculture >Long-term phosphorus accumulation and agronomic and environmtal critical phosphorus levels in Haplic Luvisol soil, northern China
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Long-term phosphorus accumulation and agronomic and environmtal critical phosphorus levels in Haplic Luvisol soil, northern China

机译:中国北方轻质露维索尔土壤长期磷素积累及农学和环境临界磷水平

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Sufficient soil phosphorus (P) content is essential for achieving optimal crop yields, but accumulation of P in the soil due to excessive P applications can cause a risk of P loss and contribute to eutrophication of surface waters. Determination of a critical soil P value is fundamental for making appropriate P fertilization recommendations to ensure safety of both environment and crop production. In this study, agronomic and environmental critical P levels were determined by using linear-linear and linear-plateau models, and two segment linear model, for a maize (Zea mays L.)-winter wheat (Triticum aestivum L.) rotation system based on a 22-yr field experiment on a Haplic Luvisol soil in northern China. This study included six treatments: control (unfertilized), no P (NoP), application of mineral P fertilizer (MinP), MinP plus return of maize straw (MinP+StrP), MinP plus low rate of farmyard swine manure (MinP+L.Man) and MinP plus high rate of manure (MinP+H.Man). Based on the two models, the mean agronomic critical levels of soil Olsen-P for optimal maize and wheat yields were 12.3 and 12.8 mg kg(-1), respectively. The environmental critical P value as an indicator for P leaching was 30.6 mg Olsen-P kg(-1), which was 2.4 times higher than the agronomic critical P value (on average 12.5 mg P kg(-1)). It was calculated that soil Olsen-P content would reach the environmental critical P value in 41 years in the MinP treatment, but in only 5-6 years in the two manure treatments. Application of manure could significantly raise soil Olsen-P content and cause an obvious risk of P leaching. In conclusion, the threshold range of soil Olsen-P is from 12.5 to 30.6 mg P kg(-1) to optimize crop yields and meanwhile maintain relatively low risk of P leaching in Haplic Luvisol soil, northern China.
机译:足够的土壤磷(P)含量对于实现最佳农作物产量至关重要,但是由于过量施用磷导致土壤中的磷积累会导致磷流失的风险,并导致地表水富营养化。确定临界土壤P值是提出适当的P施肥建议以确保环境和作物生产安全的基础。在这项研究中,通过使用线性-线性和线性-高原模型以及两段线性模型,基于玉米(Zea mays L。)-冬小麦(Triticum aestivum L.)轮作系统,确定了农业和环境临界磷水平。在中国北方的Haplic Luvisol土壤上进行了为期22年的田间试验。该研究包括六种处理方法:对照(未施肥),无磷(NoP),施用无机磷肥(MinP),MinP加上玉米秸秆还田(MinP + StrP),MinP加上低比例农家猪粪便(MinP + L) .Man)和MinP加上较高的粪便率(MinP + H.Man)。基于这两个模型,土壤Olsen-P对玉米和小麦最适单产的平均农艺临界水平分别为12.3和12.8 mg kg(-1)。作为P浸出指标的环境临界P值为30.6 mg Olsen-P kg(-1),是农艺学临界P值(平均12.5 mg P kg(-1))的2.4倍。据计算,在MinP处理中,土壤Olsen-P含量将在41年内达到环境临界P值,但在两种肥料处理中仅需5-6年即可达到环境临界P值。施肥可显着提高土壤中Olsen-P含量,并有明显的P浸出风险。总之,在中国北方的Haplic Luvisol土壤中,土壤Olsen-P的阈值范围为12.5至30.6 mg P kg(-1),以优化作物产量,同时保持较低的P浸出风险。

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