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首页> 外文期刊>Ecological informatics: an international journal on ecoinformatics and computational ecology >Spatial and seasonal distributions of soil phosphorus in a short-term flooding wetland of the Yellow River Estuary, China
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Spatial and seasonal distributions of soil phosphorus in a short-term flooding wetland of the Yellow River Estuary, China

机译:黄河口短期洪水湿地土壤磷素的时空分布

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Soil cores were collected at a depth of 60 cm along a sampling belt perpendicular to the Yellow River of the Yellow River Estuary and were collected in both summer and fall of 2007 and the spring of 2008 to investigate spatial and seasonal dynamics of soil phosphorus in a short-term flooding wetland. Our results showed that total phosphorus (TP) levels were lowest in spring, followed by those in summer and the maximum level was in fall along the sampling belt. Lower TP levels were observed at Site 3 in summer and fall, whereas the lowest TP levels appeared at Site 1 in spring. All available phosphorus (AP) levels were higher in fall than that in spring except for Site 4. However, in summer, AP contents showed a "decreasing before increasing" tendency along the sampling belt TP contents in profile soils exhibited a decreasing tendency from summer to next spring, whereas AP levels increased slightly from summer to fall and decreased from fall to the next spring. TP contents increased and then decreased along soil profiles in summer and spring, whereas they showed a "decreasing before increasing" tendency in fall. The mean AP levels and AP: TP ratios generally decreased along soil profiles in three sampling seasons. TP stocks ranged from 419.40 mg m(-2) to 578.45 mg m(-2) and generally exhibited an increasing tendency from Site 1 to Site 5. Approximately 50% of TP stocks accumulated in the top 20 cm soils. Higher TP stocks in the top 60 cm soils were observed in summer and fall at each of five sampling sites than in spring (p < 0.05). Correlation analysis showed that Soil TP levels were significantly correlated with soil bulk density (BD) and salinity, and AP contents were significantly correlated with soil depth and pH values. TP stocks were significantly impacted by TP, BD and pH values. (C) 2015 Elsevier B.V. All rights reserved.
机译:在垂直于黄河口黄河的一条采样带上,在60 cm的深度处采集土壤核心,并于2007年夏季和秋季以及2008年春季进行采集,以调查土壤磷的空间和季节动态。短期洪水湿地。我们的结果表明,总磷(TP)的水平在春季最低,其次在夏季,最高水平在沿采样带的秋季。在夏季和秋季在站点3观察到较低的TP水平,而在春季在站点1观察到最低的TP水平。除站点4外,秋季所有可用磷(AP)含量均高于春季。但是,夏季,沿采样带AP含量呈“先增加后减少”趋势,剖面土壤中TP含量较夏季呈下降趋势。到明年春季,而AP水平从夏季到秋季略有增加,而从秋季到次年春季则有所下降。夏季和春季,TP含量沿土壤剖面先升高后降低,而秋季则呈现“先降后升”的趋势。在三个采样季节中,平均AP水平和AP:TP比通常随土壤剖面而降低。 TP种群的范围从419.40 mg m(-2)到578.45 mg m(-2),通常显示从站点1到站点5的增加趋势。大约50%的TP种群积累在前20 cm的土壤中。在五个取样点中,夏季和秋季的60 cm顶部土壤中的TP含量均高于春季(p <0.05)。相关分析表明,土壤总磷水平与土壤容重(BD)和盐度显着相关,AP含量与土壤深度和pH值显着相关。 TP,BD和pH值显着影响TP库存。 (C)2015 Elsevier B.V.保留所有权利。

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