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http://dx.doi.org/10.4491/eer.2018.081

Enrichment of poultry manure with biomass ash to produce organomineral fertiliser  

Dede, Omer Hulusi (Department of Environmental Engineering, Engineering Faculty, Sakarya University)
Ozer, Hasan (Department of Environmental Engineering, Engineering Faculty, Sakarya University)
Publication Information
Environmental Engineering Research / v.23, no.4, 2018 , pp. 449-455 More about this Journal
Abstract
In this study, the contribution of hot biomass ash to enrichment of the mineral content and to reducing the moisture content of broiler poultry manure was investigated. For this purpose, the mixtures have been prepared by adding biomass ash at varying rates (10%, 20%, 30%, 40% and 50%) and at different temperatures ($100^{\circ}C$, $150^{\circ}C$, $200^{\circ}C$ and $250^{\circ}C$) according to the dry matter content (74.77%) of the poultry manure. The results showed that incorporation of biomass ash into poultry manure at 50% at $250^{\circ}C$ reduced the moisture content from 25.23% to 9.82%. Regarding the maximum N in the final product, the ideal temperature of biomass ash has been obtained at $150^{\circ}C$. The highest nutrient contents were obtained at 50% biomass ash incorporation. The highest dose of biomass ash application had significantly increased nutrients, such as Ca (19.34%), K (4.03%), Fe (1,545 mg/kg), Mn (812 mg/kg) and Zn (479 mg/kg) in the final organomineral fertiliser formulation. Overall, it was concluded that the addition of hot biomass ash can dramatically decrease the moisture content of poultry manure and therefore provide odour and pathogen removal and increase its plant nutrient content.
Keywords
Ammonia volatilisation; Enrichment; Fertilising value; Plant nutrition; Poultry litter;
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1 Kominko H, Gorazda K, Wzorek Z. The possibility of organo-mineral fertilizer production from sewage sludge. Waste Biomass Valor. 2017;8:1781-1791.   DOI
2 Florio A, Felici B, Miglione M, Dell'Abate MT, Benedetti A. Nitrogen losses, uptake and abundance of ammonia oxidizers in soil under mineral and organo-mineral fertilization regimes. J. Sci. Food Agr. 2016;96:2440-2450.   DOI
3 Preusch PL, Adler PR, Sikora LJ, Tworkoski TJ. Nitrogen and phosphorus availability in composted and uncomposted poultry litter. J. Environ. Qual. 2002;31:2051-2057.   DOI
4 Tiquia SM, Tam NFY. Fate of nitrogen during composting of chicken litter. Environ. Pollut. 2000;110:535-541.   DOI
5 Sommer SG. Effect of composting on nutrient loss and nitrogen availability of cattle deep litter. Eur. J. Agron. 2001;14:123-133.   DOI
6 Benito M, Masaguer A, Moliner A, De Antonior R. Chemical and physical properties of pruning waste compost and their seasonal variability. Bioresour. Technol. 2006;97:2071-2076.   DOI
7 Ogunwande GA, Osunade JA, Adekalu KO, Ogunjimi LAO. Nitrogen loss in chicken litter compost as affected by carbon to nitrogen ratio and turning frequency. Bioresour. Technol. 2008;99:7495-7503.   DOI
8 Erisman JW, Bleeker A, Galloway J, Sutton MS. Reduced nitrogen in ecology and the environment. Environ. Pollut. 2007;150:140-149.   DOI
9 Oenema O, Witzke HP, Klimont Z, Lesschen JP, Velthof GL. Integrated assessment of promising measures to decrease nitrogen losses from agriculture in EU-27. Agr. Ecosyst. Environ. 2009;133:280-288.   DOI
10 Sims JT, Wolf DC. Poultry waste management: Agricultural and environmental issues. Adv. Agron. 1994;52:1-83.
11 Lopez-Mosquera ME, Cabaleiro F, Sainz MJ, Lopez-Fabal A, Carral E. Fertilizing value of broiler litter: Effects of drying and pelletizing. Bioresour. Technol. 2008;99:5626-5633.   DOI
12 Vassilev SV, Baxter D, Andersen LK, Vassileva CG. An overview of the chemical composition of biomass. Fuel 2010;89:913-933.   DOI
13 Baxter XC, Darvell LI, Jones JM, Barraclough T, Yates NE, Shield I. Miscanthus combustion properties and variations with miscanthus agronomy. Fuel 2014;117:851-869.   DOI
14 Khan MR, Khan MW. The effect of fly ash on plant growth and yield of tomato. Environ. Pollut. 1996;92:106-111.
15 Alvarez R, Liden G. Low temperature anaerobic digestion of mixtures of llama, cow and sheep manure for improved methane production. Biomass Bioenerg. 2009;33:527-533.   DOI
16 Ozdemir S, Dede OH, Koseoglu G. Recycling of MSW compost and sewage sludge as growing substrate for ornamental potted plants. Fresen. Environ. Bull. 2004;13:30-33.
17 Abad M, Noguera P, Puchades R, Maquieira A, Noguera V. Physicochemical and chemical properties of some coconut coir dusts for use as a peat substitute for containerised ornamental plants. Bioresour. Technol. 2003;82:241-245.
18 Eliche-Quesada D, Leite-Costa J. Use of bottom ash from olive pomace combustion in the production of eco-friendly fired clay bricks. Waste Manage. 2016;48:323-333.   DOI
19 Brown JE, Gilliam CH, Shumack RL, Porch DW. Commercial snap bean response to fertilization with broiler litter. HortScience 1993;28:29-31.   DOI
20 Wood CW, Hall BM. Impact of drying method on broiler litter analyses. Commun. Soil Sci. Plant Anal. 1991;22:1677-1688.   DOI
21 Ekinci K, Keener HM, Elwell DL. Composting short paper fiber with broiler litter and additives. Part I: Effects of initial pH and carbon/nitrogen ratio on ammonia emission. Compost Sci. Util. 2000;8:160-172.   DOI
22 Flynn PR, Wood CW. Temperature and chemical changes during composting of broiler litter. Compost Sci. Util. 1996;4:62-70.
23 Lau SSS, Wong JWC. Toxicity evaluation of weathered coal fly ash-amended manure compost. Water Air Soil Pollut. 2001;128:243-254.   DOI
24 Chen C, Zhangc P, Zenga G, Denga J, Zhoua Y, Lud H. Sewage sludge conditioning with coal fly ash modified by sulfuric acid. Chem. Eng. J. 2010;158:616-622.   DOI
25 Carr LE, Wheaton FW, Douglass LW. Empirical models to determine ammonia concentrations from broiler chicken litter. Trans. ASAE 1990;33:1337-1342.   DOI
26 Choi IH, Moore PA. Effect of various litter amendments on ammonia volatilization and nitrogen content of poultry litter. J. Appl. Poultry Res. 2008;17:454-462.   DOI
27 Cummins CG, Wood CW, Delaney DP. Co-composted poultry mortalities and poultry litter: Composition and potential value as a fertilizer. J. Sustain. Agr. 1994;4:7-19.
28 Shan L, He Y, Chen J, Huang Q, Wang H. Ammonia volatilization a Chinese cabbage field under different nitrogen treatments in the Taihu Lake Basin, China. J. Environ. Sci. 2015;38:14-23.   DOI
29 Haynes RJ, Naidu R. Influence of lime, fertilizer and manure applications on soil organic matter content and soil physical conditions: A review. Nutr. Cycl. Agroecosyst. 1998;51:123-137.   DOI
30 Liu E, Yan C, Mei X, et al. Long-term effect of chemical fertilizer, straw, and manure on soil chemical and biological properties in northwest China. Geoderma 2010;158:173-180.   DOI