2006
DOI: 10.1080/00103620600830179
|View full text |Cite
|
Sign up to set email alerts
|

Effect of Five Phosphate Rocks on Red Clover ( Trifolium pratense L .) Yield in Pot Trial

Help me understand this report

Search citation statements

Order By: Relevance

Paper Sections

Select...
1
1
1
1

Citation Types

0
4
0
3

Year Published

2006
2006
2009
2009

Publication Types

Select...
7

Relationship

3
4

Authors

Journals

citations
Cited by 8 publications
(7 citation statements)
references
References 13 publications
0
4
0
3
Order By: Relevance
“…Increasing doses of two sedimentary phosphate rocks with high Cd content (Senegal and Morocco), particle size < 160 μm, were added and mixed into the airdried soil samples at the beginning of the experiment. The detailed description of the pot experiment and phosphate rocks' properties is published by OSZTOICS et al (2006). Phosphorus doses applied on the non-cropped, control soils and used for the soil solution studies are shown in Table 2.…”
Section: Methodsmentioning
confidence: 99%
“…Increasing doses of two sedimentary phosphate rocks with high Cd content (Senegal and Morocco), particle size < 160 μm, were added and mixed into the airdried soil samples at the beginning of the experiment. The detailed description of the pot experiment and phosphate rocks' properties is published by OSZTOICS et al (2006). Phosphorus doses applied on the non-cropped, control soils and used for the soil solution studies are shown in Table 2.…”
Section: Methodsmentioning
confidence: 99%
“…Superphosphate and SSP + lime (SSP + CaCO 3 ) treatments were used as reference P sources. Please refer to Osztoics et al (2006) for more detailed explanation of the methods of analysis.…”
Section: Soil and Phosphate Rock Materialsmentioning
confidence: 99%
“…A P-azonosság elve alapján 0 (NK kontroll), 100, 400 és 1600 mg (összes) P 2 O 5 kg -1 P-t adtunk három ismétlésben. A tenyészedénykísérlet elrendezését, a nyersfoszfátok tulajdonságait, oldhatóságát, a P-trágyák hatását a termésre és a P felvételre korábbi közleményeinkben (OSZTOICS et al, 2005(OSZTOICS et al, , 2006aCSATHÓ et al, 2006) (KCl) 3,83 4,53 a) agyag +iszap (<0,02mm), % 5,0 59,8 b) agyag (<0,002mm), % 2,2 26,6 c) összes P, mg•kg -1 300 480 AL-P 2 O 5 , mg•kg -1 (EGNER et al, 1960) 53,6 17,3 LE-P, mg•kg -1 (LAKANEN & ERVIÖ, 1971) 60,7 14,9 Bray 1, mg•kg -1 (BRAY & KURTZ, 1945) 48,2 5,7 Olsen-P, mg•kg -1 (OLSEN et al, 1954) 16,2 6,3 d) vízoldható-P, mg•kg -1 (SARKADI, 1982) 8,5 3,1 FeO-P, mg•kg -1 (KUO, 1996) 12,3 6,6 e) T-érték, cmol c (BUZÁS, 1988) 11 17 i) Kicserélhető savanyúság (y 2 ) (BUZÁS, 1988) 3,7 0 j) humusz, % (BUZÁS, 1988) 0,6 3,4 k) Oxalát oldható Al 436 933 k) Oxalát oldható Fe (MCKEAGUE & DAY, 1966) 534 3734…”
Section: Anyag éS Módszerunclassified