首页> 外文期刊>Geoderma: An International Journal of Soil Science >Towards more simple and coherent chemical criteria in a classification of anthropogenic soils: A comparison of phosphorus tests for diagnostic horizons and properties
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Towards more simple and coherent chemical criteria in a classification of anthropogenic soils: A comparison of phosphorus tests for diagnostic horizons and properties

机译:在人为土壤分类中朝着更简单和相干的化学标准:磷试验对诊断视野和性质的比较

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The content of plant-available phosphorus (P) is a valuable chemical measure of human impact on soils, commonly employed as a diagnostic criterion in many national classifications and also as an international soil classification system (WRB). However, three different analytical procedures are presently used in the WRB for defining anthric properties, and plaggic, hortic, and pretic horizons. This results in an incomparability of P requirements and generates additional costs of laboratory analyses. A set of 200 samples from Poland, representing a wide range of soils differing in texture (1-30% of clay, smectite/illite-dominated mineralogy), pH(water) (3.6-8.6) and organic carbon content (0.2-17%), and 25 samples from Brasil (kaolinite-dominated mineralogy) were analyzed using 5 phosphorus tests (three test employed by WRB: 1% citric acid, Olsen, Mehlich-1, and additionally Mehlich-3 and Egner/Ca- lactate). The results of all the tests were highly correlated to each other which enabled the calculation of reliable corresponding P values and the replacement of the three P tests, presently accepted in the WRB, with one only test. Among the already used tests, the Olsen method may be suggested as a standard with the following P-OLS values: 26, 33, 43.6 (original) and 108 mg P-OLS kg(-1) for pretic, plaggic, and hortic horizons, and anthric properties, respectively. However, the suitability of the Olsen test is questioned in the case of acidic soils. Therefore, the Mehlich-3 test, considered the most universal P test, is recommended instead of all three procedures presently employed by the WRB, with P thresholds as follows: 62, 76, 120, and 430 mg P-M3 kg(-1) for pretic, plaggic, and hortic horizons, and anthric properties, respectively. The similar P thresholds for pretic and plaggic horizons may be further combined, but the unification of P requirements for the anthric properties and hortic horizon or the general simplification of all four thresholds to only one P threshold are not recommended due to the different concepts and additional requirements involved in the definitions of these diagnostic horizons/properties in the WRB classification.
机译:植物可用磷(P)的含量是对土壤的人体影响的有价值的化学措施,通常是在许多国家分类中作为诊断标准,也是国际土壤分类系统(WRB)。然而,目前在WRB中使用三种不同的分析程序,用于定义花青质,以及血压,管道和预接口。这导致P要求的不相同,并产生额外的实验室分析成本。来自波兰的一组200个样本,代表了各种含量的土壤(1-30%的粘土,蒙脱石/ illite-矿物学),pH(水)(3.6-8.6)和有机碳含量(0.2-17使用5种磷试验分析来自巴西(高岭石型矿物学)的25个样品(由WRB:1%柠檬酸,Olsen,Mehlich-1,另外Mehlich-3和Egner / Ca-乳酸) 。所有测试的结果与彼此高度相关,这使得能够计算可靠的相应P值并在WRB中目前接受的三个P测试的替换,只有一个测试。在已经使用的试验中,可以提出OLSEN方法作为具有以下P-OLS值的标准:26,33,43.6(原始)和108mg P-OLS kg(-1),用于预处理,血管和管道视野分别和朝鲜属性。然而,在酸性土壤的情况下,OLSEN测试的适用性受到质疑。因此,建议使用Mehlich-3测试,而是推荐用于最通用的P测试,而不是目前WRB目前使用的所有三个程序,P阈值如下:62,76,120和430mg P-M3 kg(-1 )对于受试者,血浆和管道视野,以及朝鲜属性。受试者和血管视野的类似P阈值可以进一步组合,但由于不同的概念和附加,不建议使用对朝鲜属性和HORTIC HORIGON的P要求的统一或所有四个阈值的一般简化,或者不建议所有四个阈值。 WRB分类中这些诊断视野/属性的定义所涉及的要求。

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