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    المؤلفون: Lizcano Toledo, Mayra

    المصدر: Pensamiento Actual; Vol. 23 No. 40 (2023): Vol. 23 Núm. 40 (2023): Pensamiento Actual (Junio 2023- Noviembre 2023) ; Pensamiento Actual; Vol. 23 Núm. 40 (2023): Vol. 23 Núm. 40 (2023): Pensamiento Actual (Junio 2023- Noviembre 2023) ; 2215-3586 ; 1409-0112 ; 10.15517/pa.v23i40

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    المصدر: Natural Resources; Vol. 13 No. 2 (2023): Natural Resources: Mar, Abr, Mai 2023; 28-34 ; Natural Resources; Vol. 13 Núm. 2 (2023): Natural Resources: Mar, Abr, Mai 2023; 28-34 ; Natural Resources; v. 13 n. 2 (2023): Natural Resources: Mar, Abr, Mai 2023; 28-34 ; 2237-9290

    مصطلحات موضوعية: Macrófita invasora, Biomassa, Água, Invasive macrophyte, Biomass, Water

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    المصدر: Research, Society and Development; Vol. 11 No. 4; e23011427231 ; Research, Society and Development; Vol. 11 Núm. 4; e23011427231 ; Research, Society and Development; v. 11 n. 4; e23011427231 ; 2525-3409

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    المصدر: Acta Biológica Colombiana; Vol. 25 Núm. 1 (2020); 5 - 13 ; Acta Biológica Colombiana; Vol. 25 No. 1 (2020); 5 - 13 ; 1900-1649 ; 0120-548X

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    Relation: https://revistas.unal.edu.co/index.php/actabiol/article/view/74749/70810; https://revistas.unal.edu.co/index.php/actabiol/article/view/74749/74334; ABNT - ASSOCIAÇÃO BRASILEIRA DE NORMAS TÉCNICAS. NBR 9898: Preservação e técnicas de amostragem de efluentes líquidos e corpos receptores. Rio de Janeiro: Associação Brasileira de Normas Técnicas; 1987. 22 p. Aluko OO, Sridhar MKC. Evaluation of effluents from bench-scale treatment combinations for landfill leachate in Ibadan, Nigeria. Waste Manag Res. 2014;32(1):70-78. Doi: https://doi.org/10.1177/0734242X13514624 Andrade JCM, Tavares SRL, Mahler CF. Fitorremediação: o uso de plantas na melhoria da qualidade ambiental. São Paulo: Oficina de Textos; 2007. 176 p. APHA - AMERICAN PUBLIC HEALTH ASSOCIATION; AMERICAN WATER WORKS ASSOCIATION - AWWA; WATER POLLUTION CONTROL FEDERATION - WPCF. Standard methods for the examination of water and wastewater. Washington: American Public Health Association; American Water Works Association; Water Environment Federation; 2012. 1360 p. Arcadia Ingeniería del Agua, Aire y Suelo. Depuración de aguas residuales con filtros de macrofitas en flotación, sistema “FMF” - ventajas [serial online] 2019. Available at: https://docs.wixstatic.com/ugd/8932fe_ec9d199b49e549c283cae77449394a3e.pdf. Cited in 20 Mar 2019. Arunbabu V, Indu KS, Ramasamy EV. Leachate pollution index as an effective tool in determining the phytotoxicity of municipal solid waste leachate. Waste Manag. 2017;68(1):329-336. Doi: https://doi.org/10.1016/j.wasman.2017.07.012 Ashraf S, Afzal M, Naveed M, Shahid M, Zahir ZA. Endophytic bacteria enhance remediation of tannery effluent in constructed wetlands vegetated with Leptochloa fusca. Inter Jou Phyto. 2018;20(2):121-128. Doi: https://doi.org/10.1080/15226514.2017.1337072 Aziz HA, Adlan MN, Zahari MSM, Alias, S. Removal of ammoniacal nitrogen (N-NH3) from municipal solid waste leachate by using activated carbon and limestone. Waste Manag Res. 2004;22(5):371-375. Doi: https://doi.org/10.1177/0734242X04047661 Barros MJG. Utilização de wetlands no tratamento de lixiviado de aterros sanitários (master’s thesis). Rio de Janeiro: Environmental Engineering Program, Federal University of Rio de Janeiro; 2013. 111 p. Beltrão KGQB, Jucá JFT, Brito AR, Alves MCM. Sistema de barreira bio-química como alternativa de tratamento para chorume em aterros sanitários. In: 23° Brazilian Congress of Sanitary and Environmental Engineering; Sept. 18-23; Campo Grande: ABES; 2005. p. 1-12. Bernard C, Guido P, Colin J, Ane LD. Estimation of the hazard of landfills through toxicity testing of leachates. Determination of leachate toxicity with a battery of acute tests. Chemosphere. 1996;33(11):2303-2320. Doi: https://doi.org/10.1016/0045-6535(96)00322-0 Bozkurt S, Moreno L, Neretnieks I. Long-term fate of organics in waste deposits and its effect on metal release. Sci Total Env. 1999;228(2-3):135-152. Doi: https://doi.org/10.1016/S0048-9697(99)00047-9 Bulc TG. Long term performance of a constructed wetland for landfill leachate treatment. Ecol Engi. 2006;26(4):365-374. Doi: https://doi.org/10.1016/j.ecoleng.2006.01.003 Clarke E, Baldwin AH. Responses of wetland plants to ammonia and water level. Ecol Eng. 2002;18(3):257-264. Doi: https://doi.org/10.1016/S0925-8574(01)00080-5 Chen Y, Wen Y, Tang Z, Huang J, Zhou Q, Vymazal J. Effects of plant biomass on bacterial community structure in constructed wetlands used for tertiary wastewater treatment. Ecol Eng. 2015;84:38-45. Doi: https://doi.org/10.1016/j.ecoleng.2015.07.013 Escosteguy PAV, Cerini JB, Gobbi D, Gobi D, Cecconello CM. Extração de nutrientes por macrófitas cultivadas com lixiviado de aterro de resíduos sólidos urbanos. Revis Bras Ciên Solo. 2008;32(2):853-860. 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Doi: https://doi.org/10.1007/BF03326249 Kadlec RH, Wallace SD. Treatment wetlands. 2 ed. Boca Raton: CRC Press; 2009. 1016 p. Kulikowska D, Klimiuk E. The effect of landfill age on municipal leachate composition. Biores Tech. 2008;99(13):5981-5985. Doi: https://doi.org/10.1016/j.biortech.2007.10.015 Luca GA, Mufarrege MM, Hadad HR, Maine MA. Nitrogen and phosphorous removal and Typha domingensis tolerance in a floating treatment wetland. Sci Total Env. 2019;650(1):233-240. Doi: https://doi.org/10.1016/j.scitotenv.2018.09.042. Mannarino CF, Ferreira JA, Campos JC, Ritter E. Wetlands para tratamento de lixiviados de aterros sanitários – experiências no aterro sanitário de Piraí e no aterro metropolitano de Gramacho (RJ). Eng San Amb. 2006;11(2):108-112. Doi: http://dx.doi.org/10.1590/S1413-41522006000200002. Martelo J, Borrero JAL. Macrófitas flotantes en el tratamiento de aguas residuales: una revisión del estado del arte. Ingen Ciên. 2012;8(15):221-243. Mehmood MK, Adetutu E, Nedwell DB, Ball AS. In situ microbial treatment of landfill leachate using aerated lagoons. Biores Tech. 2009;100(10):2741-2744. Doi: https://doi.org/10.1016/j.biortech.2008.11.031 Mojiri A, Aziz HA, Zahed MA, Aziz SQ, Selamat MRB. Phytoremediation of heavy metals from urban waste leachate by Southern Cattail (Typha domingensis). Inter Jou Scie Res Env Sci. 2013;1(4):63-70. Doi: https://doi.org/10.12983/ijsres-2013-p063-070 Mojiri A, Ziyang L, Tajuddin RM, Farraji H, Alifar N. Co-treatment of landfill leachate and municipal wastewater using the ZELIAC/zeolite constructed wetland system. Jou Env Man. 2016;166(1):124-130. Doi: https://doi.org/10.1016/j.jenvman.2015.10.020 Mojiri A, Ahmad Z, Tajuddin RM, Arshad MF, Gholami A. Ammonia, phosphate, phenol, and copper(II) removal from aqueous solution by subsurface and surface flow constructed wetland. Env Mon Assess. 2017;189(7):337. Doi: https://doi.org/10.1007/s10661-017-6052-x Moreira FMS, Siqueira JO. Microbiologia e bioquímica do solo. Lavras: UFLA; 2002. 625 p. Muzaini SA, Beg MU, Muslami K. Characterization of landfill leachates at a waste disposal site in Kuwait. Env Inter. 1995;21(4):399-405. Doi: https://doi.org/10.1016/0160-4120(95)00042-J Ogata Y, Ishigaki T, Ebie Y, Sutthasil N, Witthayaphirom C, Chiemchaisri C, Yamada M. Design considerations of constructed wetlands to reduce landfill leachate contamination in tropical regions. Jou Mat Cycle Waste Manag. 2018;20(4):1961-1968. Doi: https://doi.org/10.1007/s10163-018-0755-0 Oliveira R. Factores que afectam o pH de uma água. [serial online] 2007. Available at: http://www.notapositiva.com/trab_estudantes/trab_estudantes/fisico_quimica/fisico_quimica_trabalhos/factoresafectamph.htm. Cited in 28 Jun 2018. OWP – OFFICE OF WATER PROGRAMS. CALIFORNIA STATE UNIVERSITY SACRAMENTO. Ammonia Removal in Wetlands: a Literature Review. Sacramento Regional County Sanitation District; 2009. 13 p. Pandey VC, Bajpai O, Singh N. Energy crops in sustainable phytoremediation. Renew Sust Ener Rev. 2016;54:58-73. Doi: https://doi.org/10.1016/j.rser.2015.09.078 Randall DJ, Tsui TKN. Ammonia toxicity in fish. Mar Poll Bull. 2002;45(1-12):17-23. Doi: https://doi.org/10.1016/S0025-326X(02)00227-8 Sales Filho I, Lima HC, Santos SM. Tolerância da Typha domingensis a efluente de alta carga orgânica. Revis Bras Geog Fís. 2015;8(3):823-830. Schierano MC, Maine MA, Panigatti MC. Dairy farm wastewater treatment using horizontal subsurface flow wetlands with Typha domingensis and different substrates. Env Tech. 2016;38(2):192-198. Doi: https://doi.org/10.1080/09593330.2016.1231228 Silvestrini NEC, Hadad HR, Maine MA, Sánchez GC, Pedro MC, Caffaratti SE. Vertical flow wetlands and hybrid systems for the treatment of landfill leachate. Env Sci Poll Res. 2019;26(8):8019-8027. Doi: https://doi.org/10.1007/s11356-019-04280-5 Song U, Waldman B, Park JS, Lee K, Park SJ, Lee EJ. Improving the remediation capacity of a landfill leachate channel by selecting suitable macrophytes. Jou Hydro-env Res. 2018;20:31-37. Doi: https://doi.org/10.1016/j.jher.2018.04.005 Souto GDB. Lixiviado de aterros sanitários brasileiros – estudo de remoção do nitrogênio amoniacal por processo de arraste com ar (“stripping”) (doctoral thesis). São Carlos: Postgraduate Program in Hydraulic Engineering and Sanitation, University of São Paulo; 2009. 371 p. Tam NFY, Wong YS. Effect of ammonia concentrations on growth of Chlorella vulgaris and nitrogen removal from media. Biores Tech. 1996;57(1):45-50. Doi: https://doi.org/10.1016/0960-8524(96)00045-4 Valencia-Castañeda G, Frías-Espercueta MG, Vanegas-Pérez RC, Pérez-Ramírez JA, Chávez-Sánchez MC, Páez-Osuna F. Acute toxicity of ammonia, nitrite and nitrate to shrimp Litopenaeus vannamei postlarvae in low-salinity water. Bull Env Contam Toxic. 2018;101(2):229-234. Doi: https://doi.org/10.1007/s00128-018-2355-z Valente JPS, Padilha PM, Silva AMM. Oxigênio dissolvido (OD), demanda bioquímica de oxigênio (DBO) e demanda química de oxigênio (DQO) como parâmetros de poluição no ribeirão Lavapés/Botucatu – SP. Eclét Quím. 1997;22:49-66. Doi: http://dx.doi.org/10.1590/S0100-46701997000100005 Wojciechowska E, Gajewska M, Obarska-Pempkowiak H. Treatment of landfill leachate by constructed wetlands: three case studies. Polish Jou Env Stud. 2010;19(3):643-650. Yalcuk A, Ugurlu A. Comparison of horizontal and vertical constructed wetland systems for landfill leachate treatment. Biores Tech. 2009;100(9):2521-2526. Doi: https://doi.org/10.1016/j.biortech.2008.11.029 Zhang DQ, Jinadasa KBSN, Gersberg RM, Liu Y, Ng WJ, Tan SK. Application of constructed wetlands for wastewater treatment in developing countries – a review of recent developments (2000 – 2013). Jou Env Manag. 2014;141(1):116-131. Doi: https://doi.org/10.1016/j.jenvman.2014.03.015 Zhang D, Vahala R, Wang Y, Smets BF. Microbes in biological processes for municipal landfill leachate treatment: community, function and interaction. Inter Biodet & Biodeg. 2016;113:88-96. Doi: https://doi.org/10.1016/j.ibiod.2016.02.013 Zhang M, Li M, Wang R, Qian Y. Effects of acute ammonia toxicity on oxidative stress, immune response and apoptosis of juvenile yellow catfish Pelteobagrus fulvidraco and the mitigation of exogenous taurine. Fish & Shellfish Immun. 2018;79:313-320. Doi: https://doi.org/10.1016/j.fsi.2018.05.036 Zoppas FM, Bernardes AM, Meneguzzi A. Parâmetros operacionais na remoção biológica de nitrogênio de águas por nitrificação e desnitrificação simultânea. Bio: Revis Engen San. 2016;21(1):29-42. Doi: https://doi.org/10.1590/S1413-41520201600100134682; https://revistas.unal.edu.co/index.php/actabiol/article/view/74749

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