HUMAN URINE - CHEMICAL-COMPOSITION AND FERTILIZER USE EFFICIENCY

被引:245
作者
KIRCHMANN, H
PETTERSSON, S
机构
[1] Department of Soil Sciences, Swedish University of Agricultural Sciences, Uppsala, S-75007
来源
FERTILIZER RESEARCH | 1995年 / 40卷 / 02期
关键词
HEAVY METALS; IONIC COMPOSITION; N-15- AND P-32 TRACER; PLANT NUTRIENTS; POT EXPERIMENT;
D O I
10.1007/BF00750100
中图分类号
S15 [土壤学];
学科分类号
0903 ; 090301 ;
摘要
Stored human urine had pH values of 8.9 and was composed of eight main ionic species (> 0.1 meg L(-1)), the cations Na, K, NH4, Ca and the anions, Cl, SO4, PO4 and HCO3. Nitrogen was mainly (> 90%) present as ammoniacal N, with ammonium bicarbonate being the dominant compound. Urea and urate decomposed during storage. Heavy metal concentrations in urine samples were low compared with other organic fertilizers, but copper, mercury, nickel and zinc were 10-500 times higher in urine than in precipitation and surface waters. In a pot experiment with N-15 labelled human urine, higher gaseous losses and lower crop uptake (barley) of urine N than of labelled ammonium nitrate were found. Phosphorus present in urine was utilized at a higher rate than soluble phosphate, showing that urine P is at least as available to crops as soluble P fertilizers.
引用
收藏
页码:149 / 154
页数:6
相关论文
共 15 条
[1]  
Andersson A., Heavy metals in Swedish soils: On their retention, distribution and amounts, Swedish J Agric Res, 7, pp. 7-20, (1977)
[2]  
Cai G.X., Zhu Z.L., Trevitt A.C.F., Freney J.R., Simpson J.R., Nitrogen loss from ammonium bicarbonate and urea fertilizers applied to flooded rice, Fert Res, 10, pp. 203-215, (1986)
[3]  
Fried M., Quantitative evaluation of processed and natural phosphates, Agric Food Chem, 2, pp. 241-244, (1954)
[4]  
Guyton A., Textbook of Medical Physiology, (1986)
[5]  
Hallman L., Klinische Chemie und Mikroskopie, 9. Auflage, (1960)
[6]  
Kemppainen E., Nutrient content and fertilizer values of livestock manure with special reference to cow manure, Ann Agric Fenn, 28, pp. 163-284, (1989)
[7]  
Kirchmann H., Witter E., Växtnäringsmängder i husdjursgödsel och tätortsavfall - potentiell recirkulation, Global Resurshushållning, pp. 103-109, (1991)
[8]  
Kirchmann H., Widen P., Separately collected organic household wastes. Chemical composition and composting characteristics, Swedish J Agric Res, 24, pp. 3-12, (1994)
[9]  
Undersökning av blandningar av faeces och urine beträffande biokemisk syreförbrukning samt totalhalt kväve och fosfor, (1966)
[10]  
Li C.K., Chen R.Y., Ammonium bicarbonate used as a nitrogen fertilizer in China, Fert Res, 1, pp. 125-136, (1980)