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REMOVA L OF HEAVY METALS FR OM INDUSTRIAL …

1869 International Journal of Civil Engineering and Technology (IJCIET) Volume 8, Issue 4, April 2017, pp. 1869 1871, Article ID: IJCIET_08_04_213 Available online at ISSN Print: 0976-6308 and ISSN Online: 0976-6316 IAEME Publication Scopus Indexed REMOVAL OF HEAVY METALS FROM INDUSTRIAL WASTE WATER USING COCONUT COIR Ch. Aravind, K. chanakya Student, Civil Engineering Department, KL University, Vaddeswaram, Andhra Pradesh, India K. Mahindra Assistant Professor, Department of Civil Engineering, KL University, Vaddeswaram, Andhra Pradesh, India ABSTRACT HEAVY METALS are one of the major components of wastewater. In particular industries such as metal-plating industry, these values are very high. Removal of HEAVY METALS from wastewater requires significant attention.

Ch. Aravind, K. Chanakya and K. Mahindra http://www.iaeme.com/IJCIET/index.asp 1870 editor@iaeme.com Kidney damage, renal disorder, human carcino gen, Copper (Cu) causes Liver d a mage,

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Transcription of REMOVA L OF HEAVY METALS FR OM INDUSTRIAL …

1 1869 International Journal of Civil Engineering and Technology (IJCIET) Volume 8, Issue 4, April 2017, pp. 1869 1871, Article ID: IJCIET_08_04_213 Available online at ISSN Print: 0976-6308 and ISSN Online: 0976-6316 IAEME Publication Scopus Indexed REMOVAL OF HEAVY METALS FROM INDUSTRIAL WASTE WATER USING COCONUT COIR Ch. Aravind, K. chanakya Student, Civil Engineering Department, KL University, Vaddeswaram, Andhra Pradesh, India K. Mahindra Assistant Professor, Department of Civil Engineering, KL University, Vaddeswaram, Andhra Pradesh, India ABSTRACT HEAVY METALS are one of the major components of wastewater. In particular industries such as metal-plating industry, these values are very high. Removal of HEAVY METALS from wastewater requires significant attention.

2 T here are several conventional methods for treating INDUSTRIAL wastewater like Reverse-Osmosis, Electro-dialysis, Ion-exchange process which were found to be expensive and require conti nuous surveillance. Hence, there is requirement for use of some efficient method which is very easy and economical. Adsorption is one such basic method which proves to be cost-effective as well as conventional method which is easy to operate and manage. In present study, Coconut coir powder is used as an adsorbent to remove the HEAVY METALS Copper, Nickel, and Cadmium. It is found that the coconut coir has good adsorption capacity to separate the METALS from the wastewater. Key words: HEAVY METALS , Coconut coir, Adsorption. Cite this Article: Ch. Aravind, K. chanakya and K.

3 Mahindra, Removal of HEAVY METALS from INDUSTRIAL Waste Water Using Coconut Coir. International Journal of Civil Engineering and Technology, 8(4), 2017, pp. 1869 1871. 1. INTRODUCTION Water which is affected in quality by anthropogenic influence is called wastewater. It can originate from domestic, INDUSTRIAL , commercial or agricultural activities, surface runoff or storm water. HEAVY METALS are natural components of the Earth's crust. They cannot be degraded or destroyed. To a small extent they enter our bodies via food, drinking water and air. Presence of HEAVY METALS in groundwater and surface water has become one of the major environmental worries. Th e industries disposing wastewater into the surface water bodies without proper treatment, leads to several health disorders such as Cadmium (Cd) causes Ch.

4 Aravind, K. chanakya and K. Mahindra 1870 Kidney damage, renal disorder, human carcinogen, Copper (Cu) causes Liver damage, Wilson disease, insomnia, Nickel (Ni) causes Dermatitis, nausea, chronic asthma, coughing. Many techniques are readily available for removal of HEAVY METALS from wastewater. The conventional methods of treatment of HEAVY metal contamination includes chemical precipitation, chemical oxidation, ion exchange, membrane separation, reverse osmosis, electro dialysis etc. But these methods are costly. Adsorption is an efficient technique to remove the HEAVY METALS from wastewater. The objective of this study is to check the ability of coconut coir as adsorbent to the HEAVY METALS in wastewater. Materials The adsorbent used in the present study is coconut coir.

5 The Coconut coir was collected from local market and was cleaned to remove dust particles. Coir is soaked in 5% HCL solution for 24hrs and dried. It is then placed in muffle furnace for 20 minutes. This process is called activation of carbon. The activated fibre is taken and powdered into fine particles and stored in an air-tight plastic container. 2. METHODOLOGY The sample for this study is treated wastewater sample, collected from Common Effluent Treatment Plant (CETP) in Machilipatnam of Krishna district. The initial Concentration of HEAVY METALS Copper (Cu), Nickel (Ni), and Cadmium (Cd) was found using Atomic Absorption Spectrophotometer. The sample of 90ml sol ution is taken and adsorbent is added at different dosages 1gm, 3gm, and 5gm in 3 beakers.

6 Using Gyro Shaker, the adsorbent is mixed with sample for approximately 20 minutes. The samples are taken out and kept aside for 2 hours to allow the adsorbent adsorb the HEAVY METALS present in the water sample. All the 3 samples are filtered using What man filter paper number42. 50ml of this is taken as input to the atomic adsorption spectrophotometer to find the concentration of the METALS Cu, Ni and Cd. Throughout the testing, the room temperature was maintained at 25oC. 3. RESULTS AND DISCUSSIONS The results obtained from the Atomic Absorption Spectrophotometer are tabulated as follows: Table 1 Concentration of Cu, Ni, and Cd after different dosages of adsorbent Initial concentration Concentration after 1gm dosage Concentration after 3gm dosage Concentration after 5gm dosage Cu ppm 0 ppm 0 ppm 0 ppm Ni ppm ppm ppm ppm Cd ppm ppm ppm ppm All the three HEAVY METALS have been effectively removed by the coconut coir at a minimum dosage of 1 gram per 90 ml of the sample.

7 This indicates that minor dosage of carbon is sufficient for effective removal HEAVY METALS . Removal of HEAVY METALS from INDUSTRIAL Waste Water Using Coconut Coir 1871 Figure 1 Performance graph of adsorbent 4. CONCLUSION Coconut coir is found as an effective adsorbent material in removing HEAVY METALS from the wastewater. However, there is a large scope to study its other characteristics and to optimise the dosage of the adsorbent. REFERENCES [1] M. A. Barakat, New trends in removing HEAVY METALS from INDUSTRIAL wastewater, Arab. J. Chem., vol. 4, no. 4, pp. 361 377, 2011. [2] S. K. Gunatilake, Methods of Removing HEAVY METALS from INDUSTRIAL Wastewater, vol. 1, no. 1, pp. 12 18, 2015. [3] E. Bernard, A. Jimoh, and J. O. Odigure, HEAVY METALS Removal from INDUSTRIAL Wastewater by Activated Carbon Prepared from Coconut Shell, vol.

8 3, no. 8, pp. 3 9, 2013. [4] J. Hu, G. Chen, I. M. C. Lo, and M. Asce, Selective Removal of HEAVY METALS from INDUSTRIAL Wastewater Using Maghemite Nanoparticle : Performance and Mechanisms, 2004. [5] K. Kadirvelu, K. Thamaraiselvi, and C. Namasivayam, Removal of HEAVY METALS from INDUSTRIAL wastewaters by adsorption onto activated carbon prepared from an agricultural solid waste, vol. 76, pp. 2000 2002, 2001. [6] A. Pradesh, T. R. Sankar, and P. T. S. R. K. P. Rao, HEAVY Metal Assessment In INDUSTRIAL Groundwater In And Around Vijayawada , pp. 1008 1013, 2014. [7] S. S. Ahluwalia and D. Goyal, Microbial and plant derived biomass for removal of HEAVY METALS from wastewater, vol. 98, pp. 2243 2257, 2007. [8] M. M. Sihabudeen, A. A. Ali, and A. Z. Hussain, Removal of HEAVY METALS from Ground Water using Eucalyptus Carbon as Adsorbent, vol.

9 9, no. 3, pp. 254 257, 2016. [9] S. Lata and S. R. Samadder, Removal of HEAVY METALS Using Rice Husk : A Review, vol. 4, no. 2, pp. 165 170, 2014. [10] F. Fu and Q. Wang, Removal of HEAVY metal ions from wastewaters : A review, J. Environ. Manage., vol. 92, no. 3, pp. 407 418, 2011. 012345601gm3gm5gmConcentration of metallic ions in ppmDosage of adsorbentPerformance graph of adsorbentCuNiC


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