首页> 外文期刊>Journal of Science and Technology of Agriculture and Natural Resources >The Effects of Aggregate Size on Soil Phosphorus Availability and its Fractionation in some Calcareous Soils of Chahar Mahal _Va_ Bakhtiari Province
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The Effects of Aggregate Size on Soil Phosphorus Availability and its Fractionation in some Calcareous Soils of Chahar Mahal _Va_ Bakhtiari Province

机译:骨料粒度对Chahar Mahal _Va_ Bakhtiari省部分钙质土壤中磷有效性及其分配的影响

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Understanding the distribution of different P forms in soil aggregate fractions is important in evaluating the risk of P run-off and leaching in the agricultural soils. The objective of the present research was to determine the effect of aggregate size on soil phosphorus availability and fractionation in 10 calcareous soils. Micro aggregate (< 0.25 mm), macro aggregate (> 0.25 mm) and whole soil were separated by dry sieving. Olsen P, total P, organic P, and inorganic P fractions in micro aggregate, macro aggregate, and whole soil were determined. Soil inorganic P fraction was determined by a sequential extraction procedure including: dicalcium phosphate (Ca_(2)-P), octa calcium phosphate (Ca_(8)-P), apatite (Ca_(10)-P), P absorbed by Al oxide (Al-P), P absorbed by Fe oxide (Fe-P) and P incorporated in to Fe oxide (O-P). The results showed that the amounts of (Olsen P), (Ca2-P), (Ca8-P), (Ca10-P), (Organic P), (Al-P), (Fe-P), (O-P) and (Total P) in 70, 60, 40, 40, 60, 70, 60, 50 and 70 percent of soils, respectively, in the micro aggregates were significantly higher than those of the macro ones. Finally, by increasing the P content, particularly the smaller sized aggregates, it was likely that the eroded material would favor greater P loss.
机译:了解土壤团粒中不同磷形态的分布对于评估农业土壤中磷径流和淋溶的风险非常重要。本研究的目的是确定骨料粒径对10种石灰质土壤中磷有效性和分馏的影响。通过干筛分离微骨料(<0.25毫米),大骨料(> 0.25毫米)和整个土壤。确定了微集料,大集料和整个土壤中的Olsen P,总P,有机P和无机P含量。通过顺序提取程序确定土壤无机P含量,包括:磷酸二钙(Ca_(2)-P),磷酸八钙(Ca_(8)-P),磷灰石(Ca_(10)-P),铝吸收的P氧化物(Al-P),被Fe氧化物(Fe-P)吸收的P和掺入Fe氧化物(OP)中的P。结果显示(Olsen P),(Ca2-P),(Ca8-P),(Ca10-P),(有机P),(Al-P),(Fe-P),(OP)的量在微团聚体中,分别有70%,60%,40%,40%,60%,70%,60%,50%和70%的土壤的P和P(总P)显着高于宏观土壤。最后,通过增加磷含量,特别是较小尺寸的骨料,侵蚀的材料可能会增加磷的损失。

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