A Comparative Study of Electrochemical Treatment of Para-Toluic Acid (p-TA) from Aqueous Solution: Process Optimization and Sludge Analysis
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Kleerebezem R, Hulshoff Pol LW, Lettinga G (2005) High rate treatment of terephthalic acid production wastewater in a two-stage anaerobic bioreactor. Biotechnol Bioeng 91:169–179
Karthik M, Dafale N, Pathe P, Nandy T (2008) Biodegradability enhancement of purified terephthalic acid wastewater by coagulation-flocculation process as pretreatment. J Hazard Mater 154:721–730
Guyot JP, Macarie H, Noyola A (1990) Anaerobic digestion of a petrochemical wastewater using the UASB process. Appl Biochem Biotechnol 24(25):579–589
Macarie H, Guyot JP (1992) Inhibition of the methanogenic fermentation of p-toluic acid (4-methylbenzoic acid) by acetate. Appl Microbiol Biotechnol 38:398–402
Young JC, Kim IS, Page IC, Wilson DR, Brown GJ, Cocci AA (2000) Two-stage anaerobic treatment of purified terephthalic acid production wastewaters. Water Sci Technol 42:277–282
Noyola A, Macarie W, Guyot JP (2006) Treatment of terephthalic acid plant wastewater with an anaerobic fixed film reactor. Environ Technol 11:239–248
Zhang XX, Cheng SP, Wan YQ, Sun SL, Zhu CJ, Zhao DY, Pan WY (2006) Degradability of five aromatic compounds in a pilot wastewater treatment system. Inter Biodeter Biodegr 58:94–98
Matsumoto M, Hirata-Koizumi M, Ema M (2008) Potential adverse effects of phthalic acid esters on human health: a review of recent studies on reproduction. Regul Toxicol Pharmacol 50:37–49
Manzurola E, Apelblat A (2002) Solubilities of L-glutamic acid, 3-nitrobenzoic acid, p-toluic acid, calcium-L-lactate, calcium gluconate, magnesium-DL-aspartate, and magnesium-L-lactate in water. J Chem Thermodyn 34(7):1127–1136
Anand MV, Srivastava VC, Singh S, Bhatnagar R, Mall ID (2014) Electrochemical treatment of alkali decrement wastewater containing terephthalic acid using iron electrodes. J Taiwan Ins Chem Eng 45:908–913
Saxena MP, Gupta AK, Sharma SK, Bangwal SD, Kumar K (2013) A process for the preparation of p-toluic acid by liquid phase oxidation of p-xylene in water, CA patent 2603160 C
Wu CH (2004) Comparison of azo dye degradation efficiency using UV/single semiconductor and UV/coupled semiconductor systems. Chemosphere 57(7):601–608
Shirota M, Seki T, Tago K, Katoh H, Marumo H, Furuya M, Shindo T, Ono H (2008) Screening of toxicological properties of 4-methylbenzoic acid by oral administration to rats. J Toxicol Sci 33:431–445
Wu CH (2007) Photodegradation of toluic acid isomers by UV/TiO2. React Kinet Catal Lett 90(2):301–308
US EPA (1992) Code of Federal Regulations 40 CFR. Part 136
Proposed Effluent and Emission Standards for Petroleum Oil Refineries, Central Pollution Control Board. 2005 ( http://www.cpcb.nic.in/finalstandardsoilrefineries271205.doc ) as accessed on 03.02.09.
Anbia M, Salehi S (2012) Synthesis of polyelectrolyte-modified ordered nonporous carbon for removal of aromatic organic acids from purified terephthalic acid wastewater. Chem Eng Res Des 90(7):975–983
Chen J (2006) Preparation of highly efficient PTA degradation bacteria and biological treatment of PTA wastewater. Environ Sci Technol 10:75–76
Chen CY, Chen CC, Chung YC (2007) Removal of phthalate esters by R-cyclodextrin linked chitosan bead. Bioresour Technol 98:2578–2583
Verma S, Prasad B, Mishra IM (2014) Adsorption kinetics and thermodynamics of COD removal of acid pre-treated petrochemical wastewater by using granular activated carbon. Sep Sci Technol 49(7):1067–1075
Garg KK, Prasad B, Srivastava VC (2014) Comparative study of industrial and laboratory prepared purified terephthalic acid (PTA) wastewater with electrocoagulation process. Sep Purif Tech 128:80–88
Garg KK, Prasad B, Srivastava VC (2016) Development of Box Behnken design for treatment of terephthalic acid wastewater by electrocoagulation process: optimization of process and analysis of sludge. J Environ Chemical Eng 4:178–190
Verma S, Prasad B, Mishra IM (2010) Pretreatment of petrochemical wastewater by coagulation and flocculation and the sludge characteristics. J Hazard Mater 178(1–3):1055–1064. doi: 10.1016/j.jhazmat.2010.02.047. 20303661
Wen YZ, Tong SP, Zheng KF, Wang LL, Lv JZ, Lin J (2006) Removal of terephthalic acid in alkalized wastewater by ferric chloride. J Hazard Mater 138:169–172
Verma S, Prasad B, Mishra IM (2011) Thermochemical treatment (thermolysis) of petrochemical wastewater: COD removal mechanism and floc formation. Ind Eng Chem Res 50(9):5352–5359
Wu S, Cheng Z, Wang S, Shan X (2011) Recovery of terephthalic acid from alkali reduction wastewater by cooling crystallization. Chem Eng Technol 34:1614–1618
Park TJ, Lima JS, Lee YW, Kim SH (2003) Catalytic supercritical water oxidation of wastewater from terephthalic acid manufacturing process. J Supercrit Fluids 26:201–213
Thiruvenkatachari R, Tae OK, Jung CJ, Subramanian B, Manickam M, Shik M (2007) Application of several advanced oxidation processes for the destruction of terephthalic acid. J Hazard Mater 142(1):308–314
Mollah MYA, Schennach R, Parga JR, Cocke DL (2000) Electrocoagulation (EC)—science and applications. J Hazard Mater B84:29–41
Tagliabue M, Reverberi AP, Bagatin R (2014) Boron removal from water: needs, challenges and perspectives. J Clean Prod 77:56–64
Sayiner G, Kandemirli F, Dimoglo A (2008) Evaluation of boron removal by electrocoagulation using iron and aluminum electrodes. Desalination 230(1–3):205–212
Mohajeri S, Aziz HA, Isa MH, Zahed MA, Adlan MN (2009) Statistical optimization of process parameters for landfill leachate treatment using electro-Fenton technique. J Hazard Mater 176:749–758
Lee H, Shoda M (2008) Removal of COD and color from livestock wastewater by the Fenton method. J Hazard Mater 153:1314–1319
Mohanty NR, Wei IW (1993) Oxidation of 2, 4-dinitrotoluene using Fenton’s reagent: reaction mechanisms and their practical applications. Hazard Waste Hazard Mater 10:171–183
Guinea E, Arias C, Cabot PL, Garrido JA, Rodriguez RM, Centella F, Brillas E (2008) Mineralization of salicylic acid in acidic aqueous medium by electrochemical advanced oxidation processes using platinum and boron-doped diamond as anode and cathodically generated hydrogen peroxide. Water Res 42:499–511
Virkutyte J, Rokhina E, Jegatheesan V (2010) Optimization of electro-Fenton denitrification of a model wastewater using a response surface methodology. Bioresour Technol 101:1440–1446
Macarie H, Noyola A, Guyot JP (1992) Anaerobic treatment of a petrochemical wastewater from a terephthalic acid plant. Water Sci Technol 25(7):223–235
Macarie H, Guyot J (1992) Inhibition of the methanogenic fermentation of p-toluic acid (4-methylbenzoic acid) by acetate. Appl Microbiol Biotechnol 38(3):398–402. doi: 10.1007/BF00170093
APHA (American Public Health Association), AWWA (American Water Works Association), WPCF (Water Pollution Control Federation) (1995) Standard methods for the examination of water and wastewater. APHA, Washington DC, USA
Garg KK, Prasad B (2015) Electrochemical treatment of benzoic acid (BA) from aqueous solution and optimization of parameters by response surface methodology (RSM). J Taiwan Inst Chem Eng 56:122–130
Thiruvenkatachari R, Kwon TO, Moon IS (2006) Degradation of phthalic acids and benzoic acid from terephthalic acid wastewater by advanced oxidation processes. J Environ Sci Health Part-A Tox/Hazard Subst Environ Eng 41(8):1685–1697. doi: 10.1080/10934520600754136.16835120
Verma S, Prasad B, Mishra IM (2014) Treatment of petrochemical wastewater by acid precipitation and carbon adsorption. J Hazard Toxic Radioact Waste 18(3):04014013
Wang CT, Chou WL, Chung MH, Kuo YM (2010) COD removal from real dyeing wastewater by electro-Fenton technology using an activated carbon fiber cathode. Desalination 253:129–134
Mollah MYA, Schennach R, Parga JR, Cocke DL (2001) Electrocoagulation (EC)—science and applications. J Hazard Mater 84:29–41
Park T, Lim JS, Lee Y, Kim S (2003) Catalytic supercritical water oxidation of wastewater from terephthalic acid manufacturing process. J Supercrit Fluids 26(3):201–213
Garg KK, Prasad B (2016) Treatment of multicomponent aqueous solution of purified terephthalic acid wastewater by electrocoagulation process: optimization of process and analysis of sludge. J Taiwan Inst Chem Eng 60:383–393
Thamer BJ, Voigt AF (1952) The spectrophotometric determination of overlapping constants of dibasic acids. The acid constants of isoththalic, terephthalic and chloranilic acids. J Phys Chem 56(2):225–232
Kushwaha JP, Srivastava VC, Mall ID (2010) Studies on electrochemical treatment of dairy wastewater using aluminum electrode. Environ Energy Eng 57:2589–2598
Do JS, Yeh WC (1996) Paired electrooxidative degradation of phenol with in situ electrogenerated hydrogen peroxide and hypochlorite. J Appl Electrochem 26:673–678
Franza JA, Williamsa RJ, Floraa JRV, Meadowsa ME, Irwinb WG (2002) Electrolytic oxygen generation for subsurface delivery: effects of precipitation at the cathode and an assessment of side reactions. Water Res 36:2243–2254
Kallel M, Belaid C, Boussahel R, Ksibi M, Montiel A, Elleuch B (2009) Olive mill wastewater degradation by Fenton oxidation with zero-valent iron and hydrogen peroxide. J Hazard Mater 163(2–3):550–554
Watts RJ, Foget MK, Kong SH, Teel AL (1999) Hydrogen peroxide decomposition in model subsurface systems. J Hazard Mater 69(2):229–243
Zhou M, Yu Q, Lei L, Barton G (2007) Electro-Fenton method for the removal of methyl red in an efficient electrochemical system. Sep Purif Technol 573:380–387
Pennizza M, Cerisola G (2008) Electrochemical degradation of methyl red using BDD and PbO2 anodes. Ind Eng Chem Res 47:6816–6820
Pennizza M, Cerisola G (2007) Electrocatalytic materials for the electrochemical oxidation of synthetic dyes. Appl Catal B Environ 75:95–101
Nidheesh PV, Gandhimathi R (2012) Trends in electro-Fenton process for water and wastewater treatment: an overview. Desalination 299:1–15
Kurt U, Apaydin O, Gonullu MT (2007) Reduction of COD in wastewater from an organized tannery industrial region by electro-Fenton process. J Hazard Mater 143:33–40
Narayanan TSNS, Magesh G, Rajendran N (2003) Degradation of O-chlorophenol from aqueous solution by electro-Fenton process. Fresenius Environ Bull 12(7):776–780
Song G, Cao C, Chen SH (2005) A study on transition of iron from active into passive state. Corros Sci 47(2):323–339
ASTM (2011) Annual book of ASTM standard, standard test for pH of activated carbon, ASTM D 3838–05, Philadelphia PA, USA