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Integrated Constructed Wetland (ICW) System a Sustainable Novel Technique for Urban Wastewater Management
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Abstract
The present study focuses on various aspects of Integrated Constructed Wetland System (ICW) systems with reference to its efficiency, and eco-friendliness in the treatment of domesticwastewater. The biological oxygen demand (BOD) impurity level is in the ranged from 383 mgl-1 to 248 mgl-1, chemical oxygen demand (COD)420 mgl-1 to 340 mgl-1, Total Phosphorus (TP) 10.2 mgl-1 to 5 mgl-1 and Total Nitrogen (TN) 18.9 mgl-1 to 14.8 mgl-1 respectively over a period of one year (SRM University). The influent contaminants are degradable in nature especially with high TP and TN concentrations. Six units of Constructed Wetland System (ICW)units are built with uniform dimensions of 2×1× 0.9 m based on EPA and TVA.The wetland plants chosen areTypha Latifolia and Phragmites Australis. Among the wetland units, Typha oriented units are observed to perform better with a reduction efficiency of 87% for BOD, 86% for COD, 70% for TP and 78% for TN proving that Typha Latifoliais a better aquatic plant for overall wastewater treatment. The removal efficiency increases with time and reaches maximum in 192 hrs. To substantiate the experimental study output, Statistical analysis (ANOVA) and multiple regression analysis with normality plot has carried out. It isevident that thepercentage removal of many parameters especially organic parameters over a period of time in treating with different wetland units is highly significant.
Springer Science and Business Media LLC
Title: Integrated Constructed Wetland (ICW) System a Sustainable Novel Technique for Urban Wastewater Management
Description:
Abstract
The present study focuses on various aspects of Integrated Constructed Wetland System (ICW) systems with reference to its efficiency, and eco-friendliness in the treatment of domesticwastewater.
The biological oxygen demand (BOD) impurity level is in the ranged from 383 mgl-1 to 248 mgl-1, chemical oxygen demand (COD)420 mgl-1 to 340 mgl-1, Total Phosphorus (TP) 10.
2 mgl-1 to 5 mgl-1 and Total Nitrogen (TN) 18.
9 mgl-1 to 14.
8 mgl-1 respectively over a period of one year (SRM University).
The influent contaminants are degradable in nature especially with high TP and TN concentrations.
Six units of Constructed Wetland System (ICW)units are built with uniform dimensions of 2×1× 0.
9 m based on EPA and TVA.
The wetland plants chosen areTypha Latifolia and Phragmites Australis.
Among the wetland units, Typha oriented units are observed to perform better with a reduction efficiency of 87% for BOD, 86% for COD, 70% for TP and 78% for TN proving that Typha Latifoliais a better aquatic plant for overall wastewater treatment.
The removal efficiency increases with time and reaches maximum in 192 hrs.
To substantiate the experimental study output, Statistical analysis (ANOVA) and multiple regression analysis with normality plot has carried out.
It isevident that thepercentage removal of many parameters especially organic parameters over a period of time in treating with different wetland units is highly significant.
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