Poultry litter ash as a potential phosphorus source for agricultural crops

被引:69
作者
Codling, EE
Chaney, RL
Sherwell, J
机构
[1] USDA ARS, Anim Manure & Byprod Lab, BARC W, Beltsville, MD 20705 USA
[2] Maryland Dept Nat Resources, Annapolis, MD 21401 USA
关键词
D O I
10.2134/jeq2002.0954
中图分类号
X [环境科学、安全科学];
学科分类号
08 ; 0830 ;
摘要
Maryland will impose restrictions on poultry litter application to soils with excessive P by the year 2005. Alternative uses for poultry titter are being considered, including burning as a fuel to generate electricity. The resulting ash contains high levels of total P, but the availability for crop uptake has not been reported. Our objective was to compare the effectiveness of poultry litter ash (PLA) and potassium phosphate (KP) as a P source for wheat (Triticum aestivum L.) in acidic soils, without and with limestone application. Two acidic soils (pit 4.25 and 4.48) were studied, unlimed or limed to pH 6.5 before cropping. The PLA and KP were applied at 0, 39, and 78 kg P ha(-1), after which wheat was grown. Limestone significantly increased wheat yield, but the P sources without limestone did not. The two P sources were not significantly different as P fertilizer. At the 78 kg P ha(-1) rate, wheat shoot-P concentrations were 1.10 and 1.12 g kg(-1) for the PLA treatment compared with 0.90 and 0.89 g kg(-1) for KP in the nonlimed and limed soils, respectively. Trace element concentrations in wheat shoots from the PLA treatment were less than or equal to KP and the control. The low levels of water-soluble P and metals in the soils and the low metal concentrations in wheat suggest that PLA is an effective P fertilizer. Further studies are needed to determine the optimum application rate of PLA as a P fertilizer.
引用
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页码:954 / 961
页数:8
相关论文
共 35 条
[1]   A potential phosphate crisis [J].
Abelson, PH .
SCIENCE, 1999, 283 (5410) :2015-2015
[2]   BIOAVAILABILITY OF PHOSPHORUS IN POULTRY LITTER BIOMASS ASH RESIDUES FOR TURKEYS [J].
AKPE, MP ;
WAIBEL, PE ;
MOREY, RV .
POULTRY SCIENCE, 1984, 63 (10) :2100-2102
[3]  
[Anonymous], 1984, 1270 USGS
[4]   Effect of phosphate rock, coal combustion by-product, lime, and cellulose on ryegrass in an acidic soil [J].
Baligar, V ;
He, ZL ;
Martens, DC ;
Ritchey, KD ;
Kemper, WD .
PLANT AND SOIL, 1997, 195 (01) :129-136
[5]  
Bernstein L., 1964, USDA B, V283
[6]  
BOCK BR, 1999, FERTILIZER NUTR VALU
[7]   ALUMINUM TOLERANCE OF SEGREGATING WHEAT POPULATIONS IN ACIDIC SOIL AND NUTRIENT SOLUTIONS [J].
BONA, L ;
CARVER, BF ;
WRIGHT, RJ ;
BALIGAR, VC .
COMMUNICATIONS IN SOIL SCIENCE AND PLANT ANALYSIS, 1994, 25 (3-4) :327-339
[8]   Zinc and copper toxicity in peanut, soybean, rice, and corn in soil mixtures [J].
Borkert, CM ;
Cox, FR ;
Tucker, MR .
COMMUNICATIONS IN SOIL SCIENCE AND PLANT ANALYSIS, 1998, 29 (19-20) :2991-3005
[9]   ACID SOIL TOLERANCE IN WHEAT [J].
CARVER, BF ;
OWNBY, JD .
ADVANCES IN AGRONOMY, VOL 54, 1995, 54 :117-173
[10]   DISSOLUTION OF NORTH-CAROLINA PHOSPHATE ROCK IN ACID COLOMBIAN SOILS AS RELATED TO SOIL PROPERTIES [J].
CHIEN, SH ;
LEON, LA ;
TEJEDA, HR .
SOIL SCIENCE SOCIETY OF AMERICA JOURNAL, 1980, 44 (06) :1267-1271