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Pools and distributions of soil phosphorus in China

机译:pools and distributions of soil phosphorus in China

摘要

We have investigated the pools and distributions of soil phosphorus ( P) in the top 50 cm of soil in China by using a combination of total and available P information from more than 2400 soil profiles and a map of soil types at a resolution of 1: 1,000,000. Our estimates indicate that the average total P density and available P density in China are about 8.3 X 10(2) g/ m(3) and 5.4 g/m(3), respectively. The total national soil P pool in the surface half meter is 3.5 Pg ( 10(15) g). The available P density ranges from 0.7 g/m(3) in the Lithosols to 16.7 g/ m(3) in the Irrigated Silting Soils. The total P density ranges from 1.2 X 10(2) g/m(3) in the Lithosols to 19 X 10(2) g/m(3) in the Frigid Desert Soils. The ratio of available P to total P density ranges from 0.6 X 10(-3) in Aeolian Soils to 21.6 X 10(-3) in Coastal Solonchaks. The available P content and its vertical distribution show a complex pattern among soil orders of different development stages, possibly indicating the important role of biota's control over soil available P content. There are large variations of P content in different climatic regions. The tropical and subtropical region has the lowest available P density ( 4.8 g/m(3)) and the second lowest total P density ( 8.2 X 10(2) g/m(3)) among all climatic regions. The large variation in the soil P content suggests that further study is needed to investigate climatic and land- use controls over the soil P content.
机译:通过结合来自2400多个土壤剖面的总磷和有效磷信息以及分辨率为1的土壤类型图,我们调查了中国前50 cm的土壤中磷(P)的库和分布: 1,000,000。我们的估计表明,中国的平均总P密度和有效P密度分别约为8.3 X 10(2)g / m(3)和5.4 g / m(3)。地面半米中的全国土壤P池总量为3.5 Pg(10(15)g)。可用的磷密度范围从石质溶胶中的0.7 g / m(3)到灌溉淤积土壤中的16.7 g / m(3)。总磷密度的范围从石质溶胶中的1.2 X 10(2)g / m(3)到寒漠土壤中的19 X 10(2)g / m(3)。有效磷与总磷密度的比值在风积土壤中为0.6 X 10(-3),在沿海索伦察克人中为21.6 X 10(-3)。有效磷含量及其垂直分布在不同发育阶段的土壤顺序之间表现出复杂的格局,这可能表明生物群控制土壤有效磷含量的重要作用。不同气候区域的磷含量差异很大。在所有气候区域中,热带和亚热带地区的可用磷密度最低(4.8 g / m(3)),总磷密度第二低(8.2 X 10(2)g / m(3))。土壤磷含量的巨大差异表明,需要进一步研究以研究气候和土地利用对土壤磷含量的控制。

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