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Occlusive effect of soil aggregates on increased soil DTPA-extractable zinc under low soil pH causedby long-term fertilization

机译:长期施肥导致土壤pH值低时土壤团聚体对土壤中DTPA可提取锌增加的阻塞作用

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To investigate the effect of low soil pH caused by fertilization on soil available zinc in calcareous soil, this study was conducted based on a long-term experiment consisting of: (a) no fertilization (CT); (b) mineral fertilizer application coupled with 7500 kg/ha of wheat straw (WS-NPK); (c) mineral fertilizer application coupled with 3750 kg/ha of wheat straw (1/2WS-NPK); (d) mineral fertilizer application alone (NPK). Long-term fertilization results in a significant increase in soil DTPA-extractable zinc. However, the increased soil DTPA-extractable zinc is unavailable to crops and mainly confined to 0.25 mm and 0.25 mm to 1 mm aggregates. Compared to CT, soil DTPA-extractable zinc under fertilization is more than 9.67% and 122.36% higher in 0.25 mm and 0.25 mm to 1 mm aggregates, respectively. Furthermore, plant-available zinc in the 0–15 cm soil layer and wheat grain zinc are both significantly positive related to soil DTPA-extractable zinc in 2 mm aggregates. Therefore, plant-available zinc in the 0–15 cm layer is closely associated with DTPA-extractable zinc in 2 mm aggregates, and the low soil pH caused by long-term fertilization could not enhance plant-available zinc in the surface soil layer nor elevate wheat grain zinc concentration because of the occlusive effect of soil aggregates.
机译:为了研究由施肥引起的低土壤pH对石灰性土壤中土壤有效锌的影响,这项研究是基于一项长期实验而进行的,该实验包括:(a)不施肥(CT); (b)施用矿物肥料和7500千克/公顷的小麦秸秆(WS-NPK); (c)施用矿物肥料和3750千克/公顷的小麦秸秆(1 / 2WS-NPK); (d)单独施用矿物肥料(NPK)。长期施肥会导致土壤中DTPA提取的锌大量增加。然而,增加的土壤可通过DTPA提取的锌无法用于农作物,并且主要限于0.25 mm>和0.25 mm至1 mm的聚集体。与CT相比,在0.25 mm>和0.25 mm至1 mm的骨料中,施肥下土壤DTPA可提取的锌分别高出9.67%和122.36%以上。此外,0-15厘米土壤层中的植物有效锌和小麦籽粒锌均与大于2毫米团聚体的土壤DTPA可提取锌显着正相关。因此,0-15 cm层中的植物有效锌与> 2 mm团聚体中的DTPA可萃取锌紧密相关,并且长期施肥引起的低土壤pH值不能提高表土层中的植物有效锌。由于土壤团聚体的闭塞作用,也不会提高小麦籽粒中的锌浓度。

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