EVALUATION THE CHLORINATION EFFECT OF WATER INFILTRATION'S SYSTEM OF TRICKLE IRRIGATION
DOI:
https://doi.org/10.18011/bioeng2007v1n1p30-39Keywords:
Filters, clogging, non woven synthetic fabricsAbstract
This research had the objective to do an inquiry experimental surface a water source superficial utilized superficial utilized in a trickle irrigation's system. Besides as the chlorination water can influence on uniformity distribution water and out fluent filtration's system. The chemical treatment had done with chlorine, when the source washy pochlorite sodium. Utilized two filters, a disc and other non woven synthetic fabricson filtration water, and compared its out fluent. Analyzed the parameters: physical solids suspension and turbity and biological concentration algae and bacterium in out fluent filters, during one year. The obstruction degree of emitters was available with flow test that determined the uniformity distribution water with two different index, where varietythe emitters number sample. There were variation on performance between filters non woven synthetic fabrics and disc to parameters physical and biological during the year.The average value of uniformity distribution water index were similar for the two block irrigated that utilized the filters disc and non woven synthetic fabrics. The chlorine concentration free was higher in filter disc outfluent.
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ADIN, A.; ALON,G. Mechanisms and process parameters of filter screens. Journal of Irrigation and Drainage Engineering, Reston, VA. v.112, p.293-304, 1986.
BRALTS, V.F.; KESNER, C.D. Drip Irrigation Field Uniformity Estimation. Transactions of American Society of Agricultural Engineers, Michigan, v.26, n.5. p.1369–1374,1983.
CRUZ, L.B. Utilização de mantas sintéticas não tecidas na filtração sob pressão. Campinas, 1996. Dissertação (Mestrado)-Faculdade de Engenharia Agrícola, Universidade Estadual de Campinas.
ENGLISH, S.D. Filtration and water treatment for micro-irrigation. In.INTERNACIONAL DRIP/TRICKLE IRRIGATION CONGRESS, 3., Fresno, Proceedings. St Joseph: American Societyof Agricultural Engineers, 1985. p. 50-57.
NAKAYAMA, F.S; BUCKS, D.A. Trickle irrigation for crop production: design, operation and management. Amsterdam: Elsevier, 1986. 164p
RAVINA, E.P.; SOFER, Z.; MARCU, A.;SHISHA, A.; SAGI, G. Control of emitter clogging in drip irrigation with wastewater. Irrigation Science, Sidney, v.13 p. 129-139, 1992.
SCATOLINI, M.E. Utilização de mantas não tecidas como elemento filtrante em sistemas de irrigação localizada. Campinas, 2001. Tese (Doutorado)–Faculdade de Engenharia Agrícola,nUniversidade Estadual de Campinas.
SMAJSTRLA, A.G.; HARRISON,D.S.; ZAZUETA, F.S. Field evaluation of trickle irrigation systems uniformity of water aplication. Gainesville, FL.: Institute of Food and Agricultural Sciences, 1985. Bulletin 195.
SOARES, J.B.; MAIA, A.C. F. Água:microbiologia e tratamento. Fortaleza: UFC, 1999. 206p
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Copyright (c) 2014 Túlio A. P. Ribeiro, José E. S. Paterniani
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