首页> 外文期刊>Brazilian Journal of Soil Science >PHOSPHORUS EXTRACTED BY ION EXCHANGE RESINS AND MEHLICH-1 FROM OXISOLS (LATOSOLS) TREATED WITH DIFFERENT PHOSPHORUS RATES AND SOURCES FOR VARIED SOIL-SOURCE CONTACT PERIODS
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PHOSPHORUS EXTRACTED BY ION EXCHANGE RESINS AND MEHLICH-1 FROM OXISOLS (LATOSOLS) TREATED WITH DIFFERENT PHOSPHORUS RATES AND SOURCES FOR VARIED SOIL-SOURCE CONTACT PERIODS

机译:离子交换树脂和MEHLICH-1提取的磷对磷肥和土壤源接触时间的影响

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Despite the large number of studies addressing the quantification of phosphorus (P) availability by different extraction methods, many questions remain unanswered. The aim of this paper was to compare the effectiveness of the extractors Mehlich-1, Anionic Resin (AR) and Mixed Resin (MR), to determine the availability of P under different experimental conditions. The laboratory study was arranged in randomized blocks in a [(3 x 3 x 2) + 3] x 4 factorial design, with four replications, testing the response of three soils with different texture: a very clayey Red Latosol (LV), a sandy clay loam Red Yellow Latosol (LVA), and a sandy loam Yellow Latosol (LA), to three sources (triple superphosphate, reactive phosphate rock from Gafsa-Tunisia; and naturalphosphate from Araxá-Minas Gerais) at two P rates (75 and 150 mg dm~(-3)), plus three control treatments (each soil without P application) after four contact periods (15,30,60, and 120 days) of the P sources with soil. The soil acidity of LV and LVA was adjusted by raising base saturation to 60 % with the application of CaCO_3 and MgCO_3 at a 4:1 molar ratio (LA required no correction). These samples were maintained at field moisture capacity for 30 days. After the contact periods, the samples were collected to quantify the available P concentrations by the three extractants. In general, all three indicated that the available P-content in soils was reduced after longer contact periods with the P sources. Of the three sources, this reduction was mostpronounced for triple superphosphate, intermediate for reactive phosphate, while Araxá phosphate was least sensitive to the effect of time. It was observed that AR extracted lower P levels from all three soils when the sources were phosphate rocks, while MR extracted values close to Mehlich-1 in LV (clay) and LVA (medium texture) for reactive phosphate. For Araxá phosphate, much higher P values were determined by Mehlich-1 than by the resins, because of the acidity of the extractor. For triple superphosphate, both resins extracted higher P levels than Mehlich-1, due to the consumption of this extractor, particularly when used for LV and LVA.
机译:尽管有大量研究针对通过不同提取方法量化磷(P)的有效性,但许多问题仍未得到解答。本文的目的是比较提取器Mehlich-1,阴离子树脂(AR)和混合树脂(MR)的有效性,以确定在不同实验条件下P的有效性。实验室研究以[(3 x 3 x 2)+ 3] x 4因子设计随机分组,进行四次重复测试,测试三种质地不同的土壤的响应:非常黏稠的红色Latosol(LV),砂壤土红壤黄土(LVA)和砂壤土黄壤(LA),以两种P率(75和50)分别来自三种来源(三重过磷酸钙,来自加夫萨-突尼斯的活性磷酸盐岩;以及来自Araxá-MinasGerais的天然磷酸盐)。 150 mg dm〜(-3)),在磷源与土壤接触四个时间段(15、30、60和120天)后,再进行三种对照处理(每种土壤均不施磷)。 LV和LVA的土壤酸度可通过以4:1的摩尔比(LA无需校正)施用CaCO_3和MgCO_3将碱饱和度提高至60%来调节。将这些样品保持在田间湿气容量下30天。在接触期之后,收集样品以定量三种萃取剂可利用的P浓度。总的来说,这三者均表明,与磷源长时间接触后,土壤中的有效磷含量降低。在这三个来源中,这种减少最明显的是三重过磷酸钙,中间是反应性磷酸盐,而Araxá磷酸盐对时间的影响最不敏感。观察到,当来源为磷酸盐岩时,AR从所有三种土壤中提取出较低的P含量,而MR提取的LV(粘土)和LVA(中等质地)中的活性磷值接近Mehlich-1。对于磷酸Araxá,由于萃取剂的酸性,Mehlich-1测定的P值比树脂测定的高得多。对于三重过磷酸钙,由于该萃取剂的消耗,两种树脂萃取的P含量均高于Mehlich-1,尤其是当用于LV和LVA时。

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