Additional phosphorus intensity analysis needed to identify phosphorus requirement on acid sandy soils with high Olsen-P contents

被引:4
作者
Pederson, Ingeborg Frosig [1 ]
Munkholm, Lars J. [1 ]
Lemming, Camilla [2 ]
Maenpaa, Maarit [1 ]
Rubaek, Gitte H. [1 ]
机构
[1] Aarhus Univ, Dept Agroecol, Blichers Alle 20, DK-8830 Tjele, Denmark
[2] SEGES Innovat P S, Agro Food Pk 15, DK-8200 Aarhus, Denmark
关键词
Accumulated P; Availability; Legacy P; Soil P tests; AGRICULTURAL SOILS; PHOSPHATE STATUS; TESTS; AVAILABILITY; EXTRACTION; RELEASE; FOOD; CALIBRATION; DYNAMICS; KINETICS;
D O I
10.1016/j.fcr.2023.109004
中图分类号
S3 [农学(农艺学)];
学科分类号
0901 ;
摘要
Meeting the crops requirement for phosphorus (P) is crucial to reach the yield potential. Therefore, it is essential to determine soils & PRIME;ability to supply the crop with P to identify soils in need of P fertilization and to know where P fertilization is redundant. Thirty-two field experiments with increasing rates of mineral P fertilizers (0, 7.5, 15, 30 and 60 kg P ha- 1) to spring barley were carried out from 2020 to 2022 on sandy soils developed on marine or non-marine deposits in Jutland, Denmark. Soil P extraction methods representing both intensity (P extracted with demineralized water, P-water or 0.01 M calcium chloride, P-CaCl2) and quantity tests (P extracted with 0.05 M sodium bicarbonate, Olsen-P) were evaluated by their relationship with relative yields. The examined soils had pH values between 4.6 and 6.7 and total P contents between 305 and 1309 mg P kg1 soil. Yield increased after P fertilization on twelve soils in Northern Jutland (relative yields < 90 %). Yield responsiveness occurred in all three experimental years despite differences in precipitation and temperatures among the years. Olsen-P contents were not related to yield response, and all responsive soils had moderate or high soil P status according to the Olsen-P test (>20 mg P kg � 1 soil). Contents of P-CaCl2 were significantly related to the relative yields (R2 =0.39), and slightly more of the variation in relative yields was explained by the P-CaCl2 to Olsen-P ratio (R2 =0.43). Ten of the twelve response soils were detected with the suggested critical threshold value of 0.02 for the P-CaCl2 to Olsen-P ratio. Soils responsive to P fertilization on older marine (Yoldia) and moraine deposits had higher contents of amorphous aluminium oxides determined by oxalate extraction than the nonresponsive soils (+41 mmol mmol kg � 1), whereas four lowland soils on younger marine (Litorina) deposits responded to P-fertilization despite low contents of oxalate extractable aluminium. We conclude that an additional P intensity test with CaCl2 extraction offered a much better identification of acid sandy soils requiring P fertilization than relying on the Olsen-P test alone.
引用
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页数:11
相关论文
共 56 条
[1]  
[Anonymous], 2004, Standard ISO 6878:2004
[2]   Evaluation of Different Soil Tests for Phosphate Extractability in Major Soils from Angola [J].
Auxtero, E. A. ;
Madeira, M. V. ;
Monteiro, F. G. ;
Horta, M. C. .
COMMUNICATIONS IN SOIL SCIENCE AND PLANT ANALYSIS, 2013, 44 (09) :1412-1434
[3]   Phosphorus in an arable coarse sandy soil profile after 74 years with different lime and P fertilizer applications [J].
Azeez, Musibau Oyeleke ;
Christensen, Julie Therese ;
Ravnskov, Sabine ;
Heckrath, Goswin Johann ;
Labouriau, Rodrigo ;
Christensen, Bent T. ;
Rubaek, Gitte Holton .
GEODERMA, 2020, 376
[4]   USE OF POLYACRYLAMIDE TO REPLACE CARBON IN DETERMINATION OF OLSENS EXTRACTABLE PHOSPHATE IN SOIL [J].
BANDERIS, A ;
BARTER, DH ;
HENDERSON, K .
JOURNAL OF SOIL SCIENCE, 1976, 27 (01) :71-74
[5]   SODIUM-BICARBONATE AS AN EXTRACTANT FOR SOIL PHOSPHATE .1. SEPARATION OF FACTORS AFFECTING AMOUNT OF PHOSPHATE DISPLACED FROM SOIL FROM THOSE AFFECTING SECONDARY ADSORPTION [J].
BARROW, NJ ;
SHAW, TC .
GEODERMA, 1976, 16 (02) :91-107
[6]   Phosphorus desorption and isotope exchange kinetics in agricultural soils [J].
Braun, Sabina ;
McLaren, Timothy I. ;
Frossard, Emmanuel ;
Tuyishime, J. R. Marius ;
Borjesson, Gunnar ;
Gustafsson, Jon Petter .
SOIL USE AND MANAGEMENT, 2022, 38 (01) :515-527
[7]  
Breuning-Madsen H., 1992, Geogr. Tidsskr. J. Geogr., V92, P61, DOI [10.1080/00167223.1992.10649316, DOI 10.1080/00167223.1992.10649316]
[8]  
Elzhov T., 2022, SUPPORT BOUNDS R PAC
[9]   Phosphorus dynamics in Swedish agricultural soils as influenced by fertilization and mineralogical properties: Insights gained from batch experiments and XANES spectroscopy [J].
Eriksson, Ann Kristin ;
Hesterberg, Dean ;
Klysubun, Wantana ;
Gustafsson, Jon Petter .
SCIENCE OF THE TOTAL ENVIRONMENT, 2016, 566 :1410-1419
[10]  
Fardeau JC, 1996, FERT RES, V45, P91, DOI 10.1007/BF00790658