INTRODUCTION:- Water is abundantly found on earth. Water is essential not only for humans but also for animals , plants and other living organisms . Only 0.3% of total water of earth is available for human use. Drinking water should be of high quality and constituents required for human health under prescribed limit .For the present study the Amarpatan region of satna district of M.P is chosen and sample were collected ,analysed for only uoride ion concentration .In this area bore well water is major source for drinking purpose .Fluoride ingested with water is almost completely absorbed and distributed rapidly throughout the body, with main retention in the bones and small portion in teeth . Recommended value of uoride ion according to WHO is 0.5 to 1.0 ppm[3]. MATERIAL AND MATHOD :- In present study to access the uoride content in drinking water samples collected from different sampling sites of amarpatan area of satna city during Nov.2018 to April 2019.Details of which are given in table no.1 Table No.1 Details of sampling stations Water sample of bore wells were collected from above mentioned sampling stations of amarpatan area and deter mined uoride ion by zirconium alizarin-s method. In the acidic medium zirconium react with alizarin red –s to form complex, which is bleached on the addition of uoride ion and colour changes from red violet to yellow green [4]. 20ml of ltered sample is taken and sodium arsenite solution is added to remove residual chlorine. 5ml of zirconium alizarin solution added to the standards and samples solution mixed well immedietly and measured the absorbance after 20minutes at 520nm. RESULT AND DISCUSSION:- The result of analysis of uoride ion content of water samples of borewells of amarpatan regions of satna district are given in the table 2 .From the table the uoride content ranges from 0.2 to 1.6ppm at different sampling stations .In the present study uoride concentration is found within the prescribed limit except SS1 and SS2. Apart from rock forming mineral which on weathering can contribute to the uoride content in ground water the use of phosphoric fertilizer in agriculture and industrial efuent can enhance the concentration of uoride . Table No.2 Fluoride concentration of different borewells FLUORIDE ION CONCENTRATION IN PPM ANALYSIS OF FLUORIDE CONCENTRATION IN THE WATER OF BOREWELLS OF AMARPATAN AREA IN SATNA DISTRICT (M.P.) INDIA Original Research Paper Prince Soni Department Of Chemistry AKS University Satna M.P. INDIA 485001 Shakti Patel Department Of Chemistry AKS University Satna M.P. INDIA 485001 X 53GJRA - GLOBAL JOURNAL FOR RESEARCH ANALYSIS Chemistry Concentration of uoride should be within permissible limit as prescribed by organizations like ICMR, WHO, BIS. High concentration of uoride in drinking water causes uorosis and mottling of teeth. Fluoride ions enters in ground water from geological formation. The absence or very low concentration of uoride ions causes dental carries in children's teeth. So it is necessary to nd out the concentration of uoride ion in water used for drinking purpose. In present study uoride ion concentration is determine by standard analytical procedures and found in the range from 0.2 to 1.6ppm at different sampling stations of Amarpatan area in satna district during Nov. 2018 to April 2019. ABSTRACT KEYWORDS : Drinking Water Fluorosis, Mottling Of Children Teeth. Deependra Singh* Department Of Chemistry AKS University Satna M.P. INDIA 485001 *Corresponding Author Shailendra Yadav Department Of Chemistry AKS University Satna M.P. INDIA 485001 Sujit Dubey Department Of Chemistry AKS University Satna M.P. INDIA 485001 Shafqat Alauddin Department Of Chemistry-S.N.C . Azamgarh,U.P, INDIA VOLUME-8, ISSUE-12, DECEMBER-2019 • PRINT ISSN No. 2277 - 8160 • DOI : 10.36106/gjra SN. Locality Sampling Stations Owner of the Bore- well 1. Nadan Tola Amarpatan Ss1 Makhan Singh 2. Jurmaniya Amarpatan Ss2 Kamta Yadav 3. Purani Basti Ramnagar Road Ss3 Om Prakash Saket 4. Kharamseda Road Amarpatan Ss4 Rameshwer Prasad sahu 5. Amarpatan City Ss5 Neeraj Agrawal 6. Word No 12 Lalpur Amarpatan Ss6 Munni Lal 7. Khaas Amarpatan Ss7 Shurendra Prasad chaurasiya 8. Rewa Road Amarpatan Ss8 Diwakar Singh 9. Chaturvedi Colony Amarpatan Ss9 Prabha Devi Pandey SN. Sampling Stations November-2018 January-2019 April-2019 1. Ss1 1.1 0.95 1.0 2. Ss2 1.6 1.5 1.3 3. Ss3 0.2 0.3 0.3 4. Ss4 0.5 0.5 0.6 5. Ss5 0.8 0.7 0.8 6. Ss6 1.0 0.95 1.0 7. Ss7 0.3 0.4 0.5 8. Ss8 0.4 0.4 0.3 9. Ss9 0.5 0.6 0.5 54 X GJRA - GLOBAL JOURNAL FOR RESEARCH ANALYSIS ACKNOWLEDGEMENT :- The authors are very thankful to chairman AKS University satna, m.p. for providing fund and necessary facilities. REFERENCES:- 1. Khadsan, R. E.,(2007),Analysis of uoride in borewells water of Chikhli City, Dist. Buldana (M.S.), Journal of Ultra Chemistry,3(1),p 93-95 2. Handa, B. K. (1988), Fluoride occurrence in natural water in India and its signicance, Bhujal News, 3(2), p 3-7 3. WHO, International Standards for drinking water, (1971), 3rd Edition ,WHO, Geneva 4. Megregian, S., (1954) Rapid spectrophotometric determination of uoride with zirconium eriochrome cyanine R lake, Anal. Chem 26, p 1167-s1166. 5. APHA (1993), Standard methods for the examination of water and waste water, 16th edition American public health association, washington for D.C. 2005. 6. Shafqat Alauddin, Shailendra Yadav (2016) Study of uoride concentration in the ground water of Atrauliya Nagar Panchyat area of Azamgarh. IJETER Volume 4, Issue 1, January 2016. 7. Handa B.K. (1975), Geochemistry and genessis of uoride containing ground water in India groundwater, 13(3) P 275-281. 8. Manivaskam, M. (1996), Physico-Chemical Examination of water, sevage and industrial efuents pragati prakashan, 3rd Edition P-83-88. VOLUME-8, ISSUE-12, DECEMBER-2019 • PRINT ISSN No. 2277 - 8160 • DOI : 10.36106/gjra