Study of Phytoremediation Capability in Sulfate Removal from Water
Phytoremediation is known as a pollutants method with low cost, without operational complexity, with low energy consumption and no need for sludge disposal. In this study, hydroponic cultivation was chosen for estimation of sulfate removal as a significant sulfur compound in effluents on two fenny p...
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Water and Wastewater Consulting Engineers Research Development
2014-07-01
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doaj-322072cb0d2e42cebdd7a6e934dd0c0a2021-03-02T02:04:29ZengWater and Wastewater Consulting Engineers Research Developmentآب و فاضلاب1024-59362383-09052014-07-0125348564588Study of Phytoremediation Capability in Sulfate Removal from WaterMilad Tafazoli0Hossein Ganjidoust1Bita Ayati2دانشجوی کارشناسی ارشد مهندسی عمران- محیط زیست، دانشگاه تربیت مدرس، تهراناستاد گروه مهندسی عمران- محیط زیست، دانشگاه تربیت مدرس، تهراندانشیار گروه مهندسی عمران- محیط زیست، دانشگاه تربیت مدرس، تهرانPhytoremediation is known as a pollutants method with low cost, without operational complexity, with low energy consumption and no need for sludge disposal. In this study, hydroponic cultivation was chosen for estimation of sulfate removal as a significant sulfur compound in effluents on two fenny plants: pampas grass and bamboo.In this case, the plants were examined under two different retention times and after determining the optimum time (7 days), the main experiments were done for evaluating the plants removal efficiency and sulfate mass absorbance by plants. For better analysis, T-Test and ANOVA with significant influence (p < 0.05%) were also done. Finally, the removal efficiency in pampas grass for all concentrations of 50, 200, 300, 600, 900, 1200, 1500 and 3000 mg/L were 44, 36, 34.22, 30.55, 15.93, 9.72, 7.77 and 4.44 percent, respectively, which were up to two times higher for the bamboos.http://www.wwjournal.ir/article_4588_8fe8b386700743673c58ecf27803f9f2.pdfHydroponicPhytoremediationPampas GrassBambooSulfate |
collection |
DOAJ |
language |
English |
format |
Article |
sources |
DOAJ |
author |
Milad Tafazoli Hossein Ganjidoust Bita Ayati |
spellingShingle |
Milad Tafazoli Hossein Ganjidoust Bita Ayati Study of Phytoremediation Capability in Sulfate Removal from Water آب و فاضلاب Hydroponic Phytoremediation Pampas Grass Bamboo Sulfate |
author_facet |
Milad Tafazoli Hossein Ganjidoust Bita Ayati |
author_sort |
Milad Tafazoli |
title |
Study of Phytoremediation Capability in Sulfate Removal from Water |
title_short |
Study of Phytoremediation Capability in Sulfate Removal from Water |
title_full |
Study of Phytoremediation Capability in Sulfate Removal from Water |
title_fullStr |
Study of Phytoremediation Capability in Sulfate Removal from Water |
title_full_unstemmed |
Study of Phytoremediation Capability in Sulfate Removal from Water |
title_sort |
study of phytoremediation capability in sulfate removal from water |
publisher |
Water and Wastewater Consulting Engineers Research Development |
series |
آب و فاضلاب |
issn |
1024-5936 2383-0905 |
publishDate |
2014-07-01 |
description |
Phytoremediation is known as a pollutants method with low cost, without operational complexity, with low energy consumption and no need for sludge disposal. In this study, hydroponic cultivation was chosen for estimation of sulfate removal as a significant sulfur compound in effluents on two fenny plants: pampas grass and bamboo.In this case, the plants were examined under two different retention times and after determining the optimum time (7 days), the main experiments were done for evaluating the plants removal efficiency and sulfate mass absorbance by plants. For better analysis, T-Test and ANOVA with significant influence (p < 0.05%) were also done. Finally, the removal efficiency in pampas grass for all concentrations of 50, 200, 300, 600, 900, 1200, 1500 and 3000 mg/L were 44, 36, 34.22, 30.55, 15.93, 9.72, 7.77 and 4.44 percent, respectively, which were up to two times higher for the bamboos. |
topic |
Hydroponic Phytoremediation Pampas Grass Bamboo Sulfate |
url |
http://www.wwjournal.ir/article_4588_8fe8b386700743673c58ecf27803f9f2.pdf |
work_keys_str_mv |
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