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International Research Journal of Engineering and Technology (IRJET) e-ISSN: 2395-0056
Volume: 06 Issue: 04 |Apr 2019 www.irjet.net p-ISSN: 2395-0072
© 2019, IRJET | Impact Factor value: 7.211 | ISO 9001:2008 Certified Journal | Page 4596
PHYTOREMEDIATION OF DOMESTIC WASTEWATER USING
CATTAIL PLANTS
Nafiya1, And Anitha K G2
1Student, M. Tech. Environmental Engineering, B.I.E.T., Davangere, Karnataka, India
2Assistant Professor, Department of Civil Engineering, B.I.E.T., Davangere, Karnataka, India
---------------------------------------------------------------------***----------------------------------------------------------------------
Abstract – This paper presents the Phytoremediation is one of the remediation technology for treatment of water,
wastewater and soil, which utilizes the different plants for removal of contamination or management of nutrients in water.
It is a low cost technique compared to conventional treatment methods. In this study the Cattail plants (Typha latifolia) are
used for the removal of nutrients such as Nitrogen and Phosphate from wastewater (sewage). The sample is collected from
the inlet of 20MLD treatment plant located at B.kallappana halli of Davanagere city. The Cattail plants are kept in the
sewage water for nutrients absorption for 15 days. For each 5days readings are taken and observed that nutrients
(Nitrogen and Phosphate) removal efficiency of Cattail plants from the sewage water up to between 45 to 50%.
Key Words: Phytoremediation, nutrient Cattail plants (Typha latifolia)s, Phosphate, Nitrogen.
1. INTRODUCTION
Plants are the valuable resources that are recognized throughout the human history. Purification of water from plants has
been recognized long time back. The plants naturally improve the water quality after passing through them. When water is
passing through them manyprocesses are carried out such as physical purification, chemical purification and biological
purifications that removes the pollutants from water and filters the water. They act as the natural filter Phytoremediation
is a new technology that uses the wetland plants to remove the pollutants from the water and wastewater processes are
carried out such as physical purification, chemical purification and biological purifications that removes the pollutants
from water and filters the water. They act as the natural filters. Phytoremediation is a new technology that uses the and
wetland plants to remove the pollutants from the water.1
wastewater. Types of Phytoremediations [From Environmental science and technology]
1. Rhizodegradation1
2. Phytohydraulics1
3. Phytoextraction1
4. Phytovolatization
5. Phytodegradation
Phosphate is a nutrient that excess can cause the eutrification or contamination. The contamination increases the cost of
treatment, also toxic to the drinking water. Hence it is necessary to remove the excess phosphate.
Nitrogen is also a major nutrient but in excess quantity can results in growth of algae and other weeds. Excess of nitrate in
drinking water can leads to health problems particularly in children’s that is “Methenoglobinemia” or Blue baby disease.
Davangere is a city, placed at the central part of Karnataka. It is one among the 25 cities of the Karnataka state where
urban sector investment program have been proposed. Sewage is a major carrier of diseases (from human wastes) and
toxins (from industrial wastes). The safe treatment of sewage is necessary to the health of any community. The sewage
treatment plant focuses on the all physical chemical and biological treatments used to make the sewage biologically and
chemically harmless.
The 20MLD plant in Davanagere city has primary and secondary treatment units. Primary treatment includes screenings,
grit chamber. Then divided into two and goes to secondary treatment that is technology. Then for tertiary treatment and
out let.
International Research Journal of Engineering and Technology (IRJET) e-ISSN: 2395-0056
Volume: 06 Issue: 04 |Apr 2019 www.irjet.net p-ISSN: 2395-0072
© 2019, IRJET | Impact Factor value: 7.211 | ISO 9001:2008 Certified Journal | Page 4597
1.1 OBJECTIVES
Specific Objectives of this project
 Sample is collected from the inlet of 20MLD treatment plant located at B.Kallappana halli of Davanagere city.
 Analysis of physical and chemical parameters in the laboratory.
 Identifying the nutrient removal efficiency of Cattail plants.
1.2METHEDOLOGY
COLLECTION OF SAMPLE
 Samples are collected from the inlet of 20MLD treatment plant located at B. Kallappana halli of Davanagere city.
 There are three methods of sampling
 In this study samples are collected by using grap sampling method.
4 liters of sample is collected at the inlet of 20MLD treatment plant in plastic bottles. Figure 1 show the inlet of 20MLD
STP of Davanagere city where the sample is collected.
Figure 1: Inlet of 20MLD STP in Davanagere
1.3 INITIAL PARAMETERS ANALYSIS
1. BOD (Biochemical oxygen demand)
2. COD (Chemical oxygen demand)
3. DO (Dissolved oxygen)
4. Conductivity
5. TDS
6. Nitrate
7. pH
8. Temperature
9. Phosphate
10. Turbidity
1.4 Cattail plant (Typha latifolia)
This plant comes under monocotyledonous. flowering plants in the family of Typhaceae. These are tall sturdy plants that
can grow to almost 10 feet tall. It has long flat leaves and long cylindrical flower spikes. It will grow anywhere that
supplies a constant source of water. It has ability to absorb the nutrients. Plants are help in treating or cleaning the water.
Nutrients (Nitrate and Phosphate) are absorbed by roots of the plants where detoxifying mechanisms are taking place.
International Research Journal of Engineering and Technology (IRJET) e-ISSN: 2395-0056
Volume: 06 Issue: 04 |Apr 2019 www.irjet.net p-ISSN: 2395-0072
© 2019, IRJET | Impact Factor value: 7.211 | ISO 9001:2008 Certified Journal | Page 4598
These stored nutrients are supplied to the stem, leaves and turned it into harmless chemicals or into gases. Absorbed
nutrients are leads to the growth of the plants.
1.5 EXPIRIMENTAL SETUP AT LABORATORY
 Experiments were conducted in laboratory scale systems consisting of one sprayer, three trays, one mesh, one
collecting tray, and one bucket as shown in figure 10.
 Collected sewage water is sprayed uniformly on the first tray.
 Then the water is move down to second tray where it passes through the filter media (the middle tray there is a mesh
of opening of size 1mmx1mm and containing the aggregates of size more than 4.75mm and less than 4.25mm as lower
layer and upper layer respectively so as to filter the sewage water) then collected at the bottom.
 Then the water is tested initial parameters which are listed below(table1).then the water is send to bucket using pipe
of diameter 0.5cm.then the plant is placed in the water for 15 days.
 For each 5 days readings are taken to know how much a plant can absorb the nitrate and phosphate.
Experimental setup at laboratory
2 RESULTS AND DISCUSSIONS
Three samples are collected from the inlet of 20MLD treatment plant at B.Kallappana halli of Davanagere city. Samples
are collected, analyzed and treated and results are discussed.
Table 1: Results of sample 1 (nitrate concentration) during experiment
Time
in
days
1st Day 5th Day 10th Day 15th Day Removal
(%)
Nitrate
(ppm)
1900.40 1501.087 1100.88 1010.540 46.803%
International Research Journal of Engineering and Technology (IRJET) e-ISSN: 2395-0056
Volume: 06 Issue: 04 |Apr 2019 www.irjet.net p-ISSN: 2395-0072
© 2019, IRJET | Impact Factor value: 7.211 | ISO 9001:2008 Certified Journal | Page 4599
Concentration of nitrate in sample 1 during experiment
Table 2: Results of sample 1 (phosphate concentration) during experiment
Time in days 1st Day 5th Day 10th Day 15th Day Removal (%)
Phosphate
(ppm)
29.850 26.321 24.147 18.166 40.423%
Concentration of Phosphate in sample 1 during experiment
Table 3: Results of sample 2 (nitrate concentration) during experiment
Time in days 1st Day 5th Day 10th Day 15th Day Removal (%)
Nitrate (ppm) 1991.560 1854.34 1524.35 1100.11 44.761%
0
500
1000
1500
2000
Concentration(ppm)
Time in days
Nitrate (ppm)
Nitrate (ppm)
0
5
10
15
20
25
30
35
1st Day5th Day 10th
Day
15th
Day
Concentration(ppm)
Time in days
Phosphate (ppm)
Phosphate
(ppm)
International Research Journal of Engineering and Technology (IRJET) e-ISSN: 2395-0056
Volume: 06 Issue: 04 |Apr 2019 www.irjet.net p-ISSN: 2395-0072
© 2019, IRJET | Impact Factor value: 7.211 | ISO 9001:2008 Certified Journal | Page 4600
Concentration of Nitrate in sample 2 during experiment
Table 4: Results of sample 2 (phosphate concentration) during experiment
Time in
days
1st
Day
5th
Day
10th Day 15th Day
Removal
(%)
Phosphate
(ppm)
30.14
8
27.05
5
18..123 17.880 40.692%
Concentration of Phosphate in sample 3 during experiment
From the results of three samples, the sample 3 is treated more efficiently within the same period of treatment. We can say
that the Cattail plant (Typha latifolia) can remove the nitrate and phosphate effectively. The removal efficiency of cattail
plants is about 48.922% for nitrate and about 47.614% for phosphate within 15 days of treatment.
3. CONCLUSIONS
 The results from this study seem to show the removal efficiency of nitrate and phosphate from the cattail plants.
 This study shows the using of wetland plants is a feasible way to treat the nutrient contaminated water. By these types
of project we can find the natural plants which can remove more concentration of nutrients.
0
500
1000
1500
2000
2500
1st
Day
5th
Day
10th
Day
15th
Day
Concentration(ppm)
Time in days
Nitrate (ppm)
Nitrate (ppm)
0
5
10
15
20
25
30
35
1st
Day
5th
Day
10th
Day
15th
Day
Concentration(ppm)
Time in days
Phosphate (ppm)
Phosphate (ppm)
International Research Journal of Engineering and Technology (IRJET) e-ISSN: 2395-0056
Volume: 06 Issue: 04 |Apr 2019 www.irjet.net p-ISSN: 2395-0072
© 2019, IRJET | Impact Factor value: 7.211 | ISO 9001:2008 Certified Journal | Page 4601
 By the results of this experiment we can conclude that the cattail plants are more efficient to nutrient removal process.
 Cattail plants can be planted in the wetland systems or others areas where the nutrient rich water flows. Then we can
treat the water by placing water or allowing water to flow through by the plants. And harvesting the plants regular
intervals we can permanently remove the nutrients. Harvested matter can be used as fertilizers in the agricultural
field [1].
 Using of these types of technique we can potentially decrease the amount of nitrate or phosphates reaching the lake
that is leads to eutrification and other problems. And also it can be used to limit the point and non point source of
pollutions entering the rivers and lakes [15].
 Lastly phytoremediation is the natural method of remove the nutrients from environment. Especially in case of lake
water rivers and wastewater [9].
 It is a cost effective, simple applicability.
 Hence based on all these factors, the conclusion of this project is Phyto remediation is the one of the best eco friendly
method to treat water with large number of benefits.
REFERENCES
1. Aaron D.Petersen et.al “Phytoremediation of Phosphates and Nitrates in the Lake Macatawa Watershed Using
Wetland Plants” Published in 2002.
2. Aditya Vikram Chopra “Waste water Treatment by Phyto-Remediation Technique” Published in International
Journal of Earth Sciences and Engineering (June 2016).Pg No 393- 399.
3. A. K. Hegazy et.al “Phytoremediation of industrial wastewater potentiality by Typha domingensis” Published in
(20th February 2011) International Journals of Environmental Science. Pg No 639-648.

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IRJET- Phytoremediation of Domestic Wastewater using Cattail Plants

  • 1. International Research Journal of Engineering and Technology (IRJET) e-ISSN: 2395-0056 Volume: 06 Issue: 04 |Apr 2019 www.irjet.net p-ISSN: 2395-0072 © 2019, IRJET | Impact Factor value: 7.211 | ISO 9001:2008 Certified Journal | Page 4596 PHYTOREMEDIATION OF DOMESTIC WASTEWATER USING CATTAIL PLANTS Nafiya1, And Anitha K G2 1Student, M. Tech. Environmental Engineering, B.I.E.T., Davangere, Karnataka, India 2Assistant Professor, Department of Civil Engineering, B.I.E.T., Davangere, Karnataka, India ---------------------------------------------------------------------***---------------------------------------------------------------------- Abstract – This paper presents the Phytoremediation is one of the remediation technology for treatment of water, wastewater and soil, which utilizes the different plants for removal of contamination or management of nutrients in water. It is a low cost technique compared to conventional treatment methods. In this study the Cattail plants (Typha latifolia) are used for the removal of nutrients such as Nitrogen and Phosphate from wastewater (sewage). The sample is collected from the inlet of 20MLD treatment plant located at B.kallappana halli of Davanagere city. The Cattail plants are kept in the sewage water for nutrients absorption for 15 days. For each 5days readings are taken and observed that nutrients (Nitrogen and Phosphate) removal efficiency of Cattail plants from the sewage water up to between 45 to 50%. Key Words: Phytoremediation, nutrient Cattail plants (Typha latifolia)s, Phosphate, Nitrogen. 1. INTRODUCTION Plants are the valuable resources that are recognized throughout the human history. Purification of water from plants has been recognized long time back. The plants naturally improve the water quality after passing through them. When water is passing through them manyprocesses are carried out such as physical purification, chemical purification and biological purifications that removes the pollutants from water and filters the water. They act as the natural filter Phytoremediation is a new technology that uses the wetland plants to remove the pollutants from the water and wastewater processes are carried out such as physical purification, chemical purification and biological purifications that removes the pollutants from water and filters the water. They act as the natural filters. Phytoremediation is a new technology that uses the and wetland plants to remove the pollutants from the water.1 wastewater. Types of Phytoremediations [From Environmental science and technology] 1. Rhizodegradation1 2. Phytohydraulics1 3. Phytoextraction1 4. Phytovolatization 5. Phytodegradation Phosphate is a nutrient that excess can cause the eutrification or contamination. The contamination increases the cost of treatment, also toxic to the drinking water. Hence it is necessary to remove the excess phosphate. Nitrogen is also a major nutrient but in excess quantity can results in growth of algae and other weeds. Excess of nitrate in drinking water can leads to health problems particularly in children’s that is “Methenoglobinemia” or Blue baby disease. Davangere is a city, placed at the central part of Karnataka. It is one among the 25 cities of the Karnataka state where urban sector investment program have been proposed. Sewage is a major carrier of diseases (from human wastes) and toxins (from industrial wastes). The safe treatment of sewage is necessary to the health of any community. The sewage treatment plant focuses on the all physical chemical and biological treatments used to make the sewage biologically and chemically harmless. The 20MLD plant in Davanagere city has primary and secondary treatment units. Primary treatment includes screenings, grit chamber. Then divided into two and goes to secondary treatment that is technology. Then for tertiary treatment and out let.
  • 2. International Research Journal of Engineering and Technology (IRJET) e-ISSN: 2395-0056 Volume: 06 Issue: 04 |Apr 2019 www.irjet.net p-ISSN: 2395-0072 © 2019, IRJET | Impact Factor value: 7.211 | ISO 9001:2008 Certified Journal | Page 4597 1.1 OBJECTIVES Specific Objectives of this project  Sample is collected from the inlet of 20MLD treatment plant located at B.Kallappana halli of Davanagere city.  Analysis of physical and chemical parameters in the laboratory.  Identifying the nutrient removal efficiency of Cattail plants. 1.2METHEDOLOGY COLLECTION OF SAMPLE  Samples are collected from the inlet of 20MLD treatment plant located at B. Kallappana halli of Davanagere city.  There are three methods of sampling  In this study samples are collected by using grap sampling method. 4 liters of sample is collected at the inlet of 20MLD treatment plant in plastic bottles. Figure 1 show the inlet of 20MLD STP of Davanagere city where the sample is collected. Figure 1: Inlet of 20MLD STP in Davanagere 1.3 INITIAL PARAMETERS ANALYSIS 1. BOD (Biochemical oxygen demand) 2. COD (Chemical oxygen demand) 3. DO (Dissolved oxygen) 4. Conductivity 5. TDS 6. Nitrate 7. pH 8. Temperature 9. Phosphate 10. Turbidity 1.4 Cattail plant (Typha latifolia) This plant comes under monocotyledonous. flowering plants in the family of Typhaceae. These are tall sturdy plants that can grow to almost 10 feet tall. It has long flat leaves and long cylindrical flower spikes. It will grow anywhere that supplies a constant source of water. It has ability to absorb the nutrients. Plants are help in treating or cleaning the water. Nutrients (Nitrate and Phosphate) are absorbed by roots of the plants where detoxifying mechanisms are taking place.
  • 3. International Research Journal of Engineering and Technology (IRJET) e-ISSN: 2395-0056 Volume: 06 Issue: 04 |Apr 2019 www.irjet.net p-ISSN: 2395-0072 © 2019, IRJET | Impact Factor value: 7.211 | ISO 9001:2008 Certified Journal | Page 4598 These stored nutrients are supplied to the stem, leaves and turned it into harmless chemicals or into gases. Absorbed nutrients are leads to the growth of the plants. 1.5 EXPIRIMENTAL SETUP AT LABORATORY  Experiments were conducted in laboratory scale systems consisting of one sprayer, three trays, one mesh, one collecting tray, and one bucket as shown in figure 10.  Collected sewage water is sprayed uniformly on the first tray.  Then the water is move down to second tray where it passes through the filter media (the middle tray there is a mesh of opening of size 1mmx1mm and containing the aggregates of size more than 4.75mm and less than 4.25mm as lower layer and upper layer respectively so as to filter the sewage water) then collected at the bottom.  Then the water is tested initial parameters which are listed below(table1).then the water is send to bucket using pipe of diameter 0.5cm.then the plant is placed in the water for 15 days.  For each 5 days readings are taken to know how much a plant can absorb the nitrate and phosphate. Experimental setup at laboratory 2 RESULTS AND DISCUSSIONS Three samples are collected from the inlet of 20MLD treatment plant at B.Kallappana halli of Davanagere city. Samples are collected, analyzed and treated and results are discussed. Table 1: Results of sample 1 (nitrate concentration) during experiment Time in days 1st Day 5th Day 10th Day 15th Day Removal (%) Nitrate (ppm) 1900.40 1501.087 1100.88 1010.540 46.803%
  • 4. International Research Journal of Engineering and Technology (IRJET) e-ISSN: 2395-0056 Volume: 06 Issue: 04 |Apr 2019 www.irjet.net p-ISSN: 2395-0072 © 2019, IRJET | Impact Factor value: 7.211 | ISO 9001:2008 Certified Journal | Page 4599 Concentration of nitrate in sample 1 during experiment Table 2: Results of sample 1 (phosphate concentration) during experiment Time in days 1st Day 5th Day 10th Day 15th Day Removal (%) Phosphate (ppm) 29.850 26.321 24.147 18.166 40.423% Concentration of Phosphate in sample 1 during experiment Table 3: Results of sample 2 (nitrate concentration) during experiment Time in days 1st Day 5th Day 10th Day 15th Day Removal (%) Nitrate (ppm) 1991.560 1854.34 1524.35 1100.11 44.761% 0 500 1000 1500 2000 Concentration(ppm) Time in days Nitrate (ppm) Nitrate (ppm) 0 5 10 15 20 25 30 35 1st Day5th Day 10th Day 15th Day Concentration(ppm) Time in days Phosphate (ppm) Phosphate (ppm)
  • 5. International Research Journal of Engineering and Technology (IRJET) e-ISSN: 2395-0056 Volume: 06 Issue: 04 |Apr 2019 www.irjet.net p-ISSN: 2395-0072 © 2019, IRJET | Impact Factor value: 7.211 | ISO 9001:2008 Certified Journal | Page 4600 Concentration of Nitrate in sample 2 during experiment Table 4: Results of sample 2 (phosphate concentration) during experiment Time in days 1st Day 5th Day 10th Day 15th Day Removal (%) Phosphate (ppm) 30.14 8 27.05 5 18..123 17.880 40.692% Concentration of Phosphate in sample 3 during experiment From the results of three samples, the sample 3 is treated more efficiently within the same period of treatment. We can say that the Cattail plant (Typha latifolia) can remove the nitrate and phosphate effectively. The removal efficiency of cattail plants is about 48.922% for nitrate and about 47.614% for phosphate within 15 days of treatment. 3. CONCLUSIONS  The results from this study seem to show the removal efficiency of nitrate and phosphate from the cattail plants.  This study shows the using of wetland plants is a feasible way to treat the nutrient contaminated water. By these types of project we can find the natural plants which can remove more concentration of nutrients. 0 500 1000 1500 2000 2500 1st Day 5th Day 10th Day 15th Day Concentration(ppm) Time in days Nitrate (ppm) Nitrate (ppm) 0 5 10 15 20 25 30 35 1st Day 5th Day 10th Day 15th Day Concentration(ppm) Time in days Phosphate (ppm) Phosphate (ppm)
  • 6. International Research Journal of Engineering and Technology (IRJET) e-ISSN: 2395-0056 Volume: 06 Issue: 04 |Apr 2019 www.irjet.net p-ISSN: 2395-0072 © 2019, IRJET | Impact Factor value: 7.211 | ISO 9001:2008 Certified Journal | Page 4601  By the results of this experiment we can conclude that the cattail plants are more efficient to nutrient removal process.  Cattail plants can be planted in the wetland systems or others areas where the nutrient rich water flows. Then we can treat the water by placing water or allowing water to flow through by the plants. And harvesting the plants regular intervals we can permanently remove the nutrients. Harvested matter can be used as fertilizers in the agricultural field [1].  Using of these types of technique we can potentially decrease the amount of nitrate or phosphates reaching the lake that is leads to eutrification and other problems. And also it can be used to limit the point and non point source of pollutions entering the rivers and lakes [15].  Lastly phytoremediation is the natural method of remove the nutrients from environment. Especially in case of lake water rivers and wastewater [9].  It is a cost effective, simple applicability.  Hence based on all these factors, the conclusion of this project is Phyto remediation is the one of the best eco friendly method to treat water with large number of benefits. REFERENCES 1. Aaron D.Petersen et.al “Phytoremediation of Phosphates and Nitrates in the Lake Macatawa Watershed Using Wetland Plants” Published in 2002. 2. Aditya Vikram Chopra “Waste water Treatment by Phyto-Remediation Technique” Published in International Journal of Earth Sciences and Engineering (June 2016).Pg No 393- 399. 3. A. K. Hegazy et.al “Phytoremediation of industrial wastewater potentiality by Typha domingensis” Published in (20th February 2011) International Journals of Environmental Science. Pg No 639-648.