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005 20260818114136.0
008 190403s2016 u m rtt 000 a eng d
035 _a.b12304232
099 9 _aAIT Thesis no.ET-SUD-16-01
100 1 _aGebrewold, Berhane Desta
245 1 0 _aFluoride removal from groundwater using bio-adsorbents
260 _aPathum Thani, Thailand :
_bAsian Institute of Technology,
_c2016
300 _a77 leaves :
_bill. +
_e1 online resource
490 1 _aThesis ;
_vno. ET-SUD-16-01
500 _aA thesis submitted in partial fulfillment of the requirements for the degree of Master of Science in Environmental Engineering and Management with specialization in Environmental Technology for Sustainable Development jointly offered by the Asian Institute of Technology, Thailand and UNESCO{u2013}IHE, The Netherlands
500 _aAIT-UNESCO-IHE
502 _aThesis (M.Sc.) - Asian Institute of Technology, 2016
520 _aIn this study, fluoride uptake potential of rice husk carbon and corn cob carbon was investigated through batch and column experiments. Screening analysis was done using thermally activated different bio adsorbents (sugarcane bagasse, corn cob, rice husk, potato peel, papaya seed, groundnut shell and coconut husk). Rice husk and corn cob were selected and further studies were carried on in order to ascertain their adsorption capacities. The selected bio adsorbents were activated thermally and chemically to enhance the surface of the adsorbents for fluoride uptake. Central composite design in Response surface methodology was used in order to generate a combination of different independent variables (pH, initial fluoride concentration, contact time and adsorbent dose) and the results were analyzed using analysis of variance (ANOVA). Fluoride uptake using rice husk carbon showed maximum adsorption efficiency of 91% and capacity of 7.9 mg/gat optimum condition of pH 4, initial fluoride concentration of 18 mg/l, contact time 3 hours and adsorbent dose of 2 g/. whereas fluoride uptake using corn cob carbon resulted maximum adsorption efficiency of 89% and uptake capacity of 5.83 mg/g at optimum condition of pH 6, initial fluoride concentration of 13 mg/l, contact time of 5 hours and adsorbent dose of 2 g/l. Fluoride concentration in treated water was below standard limit in both cases. Equilibrium is attained within 3 hours for rice husk carbon and 5hoursusing corn cob carbon.pHpzc for rice husk carbon and corn cob carbon was obtained to be 6.7 and 2.3, respectively. The adsorption data fitted Langmuir adsorption model describing monolayer adsorption of fluoride on to rice husk carbon and corn cob carbon. Adsorption kinetic model study indicated that fluoride uptake followed pseudo{u2013}second order kinetic model with adsorption rate of 0.384 and 0.366 mg/g.min for rice husk carbon and corn cob carbon, respectively. Intraparticle diffusion was examined in order to determine rate-limiting step and was found that intraparticle diffusion is not a rate-limiting step, rather fluoride adsorption on to rice husk carbon and corn cob carbon was governed by both intraparticle diffusion and surface diffusion / surface adsorption. Column experiments were carried out using three columns packed with 100% rice husk carbon, 100% corn cob carbon and 50% rice husk carbon + 50% corn cob carbon. The breakthrough adsorption capacities were found to be 7.88 mg/g, 5.03 mg/g and 5.22 mg/g, respectively. Breakthrough was attained in 6thday for 100% rice husk carbon and 5th day for the remaining two columns. The results were analyzed using Thomas model, which yields adsorption capacities to be 11 mg/g, 8.1 mg/g and 9.4 mg/g, respectively for the three columns. In general, a satisfactory result was obtained for fluoride uptake using rice husk carbon and corn cob carbon.
650 0 _aWater
_xFluoridation
650 0 _aWater
_xSoftening
650 0 _aWater
_xPurification
_xAdsorption.
700 1 _aAnnachhatre, Ajit P.,
_eChairperson
700 1 _aRene, Eldon R.,
_eCo-Chairperson
700 1 _aLens, Piet N. L.,
_eExamination committee
700 0 _aThammarat Koottatep,
_eExamination Committee
700 1 _aNguyen, Thi Kim Oanh,
_eExamination Committee
700 0 _aPimluck Kijjanapanich,
_eExamination committee
710 2 _aNetherlands Fellowships Programmes (NFP),
_eScholarship donor
710 2 _aUNESCO {u2013} IHE/Asian Institute of Technology,
_eScholarship donor
810 2 _aAsian Institute of Technology.
_tThesis ;
_vno. ET-SUD-16-01
856 _3Full-Text
_uhttp://203.159.5.9/ait-thesis/detail.php?q=B02384
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