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首页> 外文期刊>Canadian Journal of Soil Science >Identifying environmental phosphorus risk classes at the scale of Prince Edward Island, Canada
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Identifying environmental phosphorus risk classes at the scale of Prince Edward Island, Canada

机译:识别加拿大王子岛岛等级的环境磷风险班

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摘要

Phosphorus (P) loss from agricultural land poses a major risk to the environment. The main objectives of this study were (i) to adapt a simple P saturation indicator using 141 soils that had contrasting P levels and to deduct critical environmental P values, and (ii) to identify environmental risk classes and their spatial and temporal distribution at the scale of Prince Edward Island, Canada. The P saturation index (PSI) was greatly influenced by the soil acidity, and two critical P saturation indices were identified (i) a PSI (P/Al)(M-III) of 19.2% for very to extremely acidic soils (pH & 5.5), and (ii) a PSI of 14.2% (corresponding to 200 mg PM-III kg(-1)) for slightly to moderately acidic soils (pH & 5.5). Above these critical values, P fertilization should be limited to crop requirements. Six environmental P risk classes from very low to extremely high were identified. Spatial distribution of the identified classes was performed using georeferenced soil data collected between 2003 and 2015. The moderate risk class (P/Al ratio from 7% to 14% for soil pH above 5.5) was the predominant class, covering approximately 70% of the total area. Hot spots in the very high to extremely high range were found in about 10% of the total area, and mitigation strategies are needed to reduce P inputs to control P-related eutrophication risks in surrounding waters.
机译:农业土地的磷(P)损失对环境产生了重大风险。本研究的主要目的是(i)使用具有对比P级别的141个土壤的141个土壤来调整简单的P饱和度指标,并扣除临界环境P值,以及(ii)以识别环境风险等级及其空间和时间分布加拿大爱德华王子岛的比例。 P饱和度指数(PSI)受土壤酸度的大大影响,并鉴定了两个关键的P饱和指数(I)PSI(P / Al)(M-III)为19.2%,非常酸性土壤(pH&amp ; LT; 5.5),(II)PSI为14.2%(对应于200mg PM-III kg(-1)),用于略微酸性土壤(pH& 5.5)。高于这些临界值,P施肥应限制为作物要求。鉴定了六种环境P风险等级从非常低到极高的风险等级。使用2003年至2015年间收集的地理学土壤数据进行了所识别的类别的空间分布。适度的风险阶级(P / Al比率为5.5的土壤pH值的7%至14%)是主要的阶级,占据了大约70%的总面积。在总面积的大约10%的大约10%中发现了非常高的热点,并且需要缓解策略来减少P输入以控制周围水域的P-COND富营养化风险。

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