Effect of waste Al-phosphate on soil and plant

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Irreplaceability of phosphorus as a necessary macroelement in crop production is due to limited resources and costly processing of ores and immobilization in soil, which force for seeking an alternative sources or the use of waste materials. In this paper, the waste aluminum phosphate from pharmaceutical factory used as phosphate fertilizer and its effects were celý popis

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Další autoři
N. R. Amaizah, Dragan Cakmak, E. Saljnikov, G. Roglic, N. Kokovic, D. Manojlovic
Typ dokumentu
Články
Fyzický popis
6 il.
Publikováno v
Plant, Soil and Environment. -- ISSN 1214-1178. -- Roč. 59, č. 3 (2013), s. 130-135
Témata
Popis jednotky
6 tabulek
Bibliografie
Seznam literatury na s. 135,

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245 0 0 |a Effect of waste Al-phosphate on soil and plant /  |c N. R. Amaizah, D. Cakmak, E. Saljnikov ... [et al.] 
300 |b 6 il. 
500 |a 6 tabulek 
504 |a Seznam literatury na s. 135,  |b 20 záznamů 
520 3 9 |a Irreplaceability of phosphorus as a necessary macroelement in crop production is due to limited resources and costly processing of ores and immobilization in soil, which force for seeking an alternative sources or the use of waste materials. In this paper, the waste aluminum phosphate from pharmaceutical factory used as phosphate fertilizer and its effects were compared with other phosphorus fertilizers (superphosphate and rock phosphate). Except the analysis of available phosphorus (AL-method) the sequential extraction of phosphorus (modified Chang and Jackson) and sequential extraction of aluminum (modified Tessier) were performed. The experimental plant was mustard (Sinapis alba). The pot experiment was carried out on two soil types: Stagnosol and Vertisol. Application of phosphorus with aluminum phosphate had the same effect as the application of other phosphatic fertilizers in both soil types. In Stagnosol Al-phosphate directly influenced the increase in plant fresh weight by 39% and dry weight by 43% compared to the control, and also decreased the content of mobile Al for 40% and Pb for 47% in plant biomass. Based on these results, the use of waste aluminum phosphate has a potential to be used as a phosphorus fertilizer under given conditions.  |9 eng 
530 |a Dostupné též na internetu 
546 |a Anglický text, anglický abstrakt 
650 0 9 |a PHOSPHORUS 
650 0 9 |a NUTRIENTS 
650 0 9 |a PHOSPHATES (SALTS) 
650 0 9 |a WASTE UTILIZATION 
650 0 9 |a PHOSPHATE FERTILIZERS 
650 0 9 |a ALUMINIUM 
650 0 9 |a VERTISOLS 
650 0 7 |a půdní typy  |2 agrovoc 
650 0 9 |a Soil horizons 
650 0 9 |a BIOMASS 
650 0 7 |a Sinapis alba  |2 agrovoc 
650 0 9 |a PH 
650 0 9 |a CALCIUM CARBONATE 
650 0 9 |a CARBON 
650 0 9 |a NITROGEN 
650 0 9 |a POTASSIUM 
650 0 9 |a SUPERPHOSPHATE 
650 0 9 |a NUTRIENT AVAILABILITY 
650 0 9 |a nutrient utilization 
650 0 7 |a fosfor  |2 agrovoc 
650 0 7 |a živiny  |2 agrovoc 
650 0 7 |a fosfáty  |2 agrovoc 
650 0 7 |a využití odpadů  |2 agrovoc 
650 0 7 |a fosfátová hnojiva  |2 agrovoc 
650 0 7 |a hliník  |2 agrovoc 
650 0 7 |a vertisoly  |2 agrovoc 
650 0 7 |a půdní horizonty  |2 agrovoc 
650 0 7 |a biomasa  |2 agrovoc 
650 0 7 |a pH  |2 agrovoc 
650 0 7 |a uhličitan vápenatý  |2 agrovoc 
650 0 7 |a uhlík  |2 agrovoc 
650 0 7 |a dusík  |2 agrovoc 
650 0 7 |a draslík  |2 agrovoc 
650 0 7 |a superfosfát  |2 agrovoc 
650 0 7 |a dostupnost živin  |2 agrovoc 
650 0 7 |a využití živin  |2 agrovoc 
651 7 |a Varna (Bulharsko)  |7 ge134563  |2 czenas 
651 4 |a Bozurna 
653 0 |a modelová rostlina  |a imobilizace živin  |a sekvenční analýza 
700 1 |a Amaizah, N. R.,  |u University of Belgrade, Faculty of Chemistry, Belgrade, Serbia  |4 aut 
700 1 |a Cakmak, Dragan,  |u Institute of Soil Science, Belgrade, Serbia  |4 aut 
700 1 |a Saljnikov, E.,  |u Institute of Soil Science, Belgrade, Serbia  |4 aut 
700 1 |a Roglic, G.,  |u University of Belgrade, Faculty of Chemistry, Belgrade, Serbia  |4 aut 
700 1 |a Kokovic, N.,  |u Institute of Soil Science, Belgrade, Serbia  |4 aut 
700 1 |a Manojlovic, D.,  |u University of Belgrade, Faculty of Chemistry, Belgrade, Serbia  |4 aut 
773 0 |t Plant, Soil and Environment  |x 1214-1178  |g Roč. 59, č. 3 (2013), s. 130-135  |q 59:3  |9 2013 
856 4 1 |u https://www.agriculturejournals.cz/publicFiles/82949.pdf  |q text/pdf  |y Plný text  |4 N 
910 |a ABA009  |x czpb000149140 
990 |a RS 
998 |a http://aleph.nkp.cz/F/?func=direct&doc_number=001470665&local_base=ANL