References
- H.G. Joglekar, I. Rahman, S. Babu, B.D. Kulkarni, A. Joshi,
Comparative assessment of downstream processing options
for lactic acid, Sep. Purif. Technol., 52 (2006) 1–17.
- X. Sun, Q. Wang, W. Zhao, H. Ma, K. Sakata, Extraction and purification
of lactic acid from fermentation broth by esterification
and hydrolysis method, Sep. Purif. Technol., 49 (2006) 43–48.
- Y.J. Wee, J.N. Kim, H.W. Ryu, Biotechnological production of
lactic acid and its recent applications, Food Technol. Biotechnol.,
44(2) (2006) 163–172.
- P. Pal, J. Sikder, S. Roy, L. Giorno, Process intensification in lactic
acid production: A review of membrane based processes,
Chem. Eng. Process, 48 (2009) 1549–1559.
- R.-S. Juang, R.-H. Huang, R.-T. Wu, Separation of citric and lactic
acids in aqueous solutions by solvent extraction and liquid
membrane processes, J. Membr. Sci., 136 (1997) 89–99.
- A.V. Sosa, J. Ochoa, N.I. Perotti, Modelling of direct recovery
of lactic acid from whole broths by ion exchange adsorption, J.
Biosep., 9 (2001) 283–289.
- Y.H. Kim, S.-H. Moon, Lactic acid recovery from fermentation
broth using one-stage electrodialysis, J. Chem. Technol. Biotechnol.,
76 (2001) 169–178.
- J.I. Choi, W.H. Hong, Recovery of lactic acid by batch distillation
with chemical reactions using ion exchange resin, J.
Chem. Eng. Jpn., 32(2) (1999) 184–189.
- P. Boyaval, C. Corre, S. Terre, Continuous lactic acid fermentation
with concentrated product recovery by ultrafiltration and
electrodialysis, Biotechnol. Lett., 9(3) (1987) 207–212.
- Y. Li, A. Shahbazi, K. Williams, C. Wan, Separate and concentrate
lactic acid using combination of nanofiltration and
reverse osmosis membranes, Appl. Biochem. Biotechnol., 147
(2008) 1–9.
- C. Xiong, C. Yao, Synthesis, characterization and application
of triethylenetetramine modified polystyrene resin in removal
of mercury, cadmium and lead from aqueous solutions, Chem.
Eng. J., 155 (2009) 844–850.
- X. Cao, H.S. Yun, Y.-M. Koo, Recovery of l-(+)-lactic acid by
anion exchange resin Amberlite IRA-400, Biochem. Eng. J., 11
(2002) 189–196.
- Z. Xu, A. Afacan, K.T. Chuang, Removal of acetic acid from
water by catalytic distillation part 1: experimental studies,
Can. J. Chem. Eng., 77 (1999) 677−681.
- H. Hong, L. Chen, Q. Zhang, Z. Zhang, Acetic acid/water separation
by pervaporation with silica filled pdms membrane,
Polym. Eng. Sci., 51 (2011) 819−825.
- M. Chen, H.W. Yu, J.H. Chen, H.S. Koo, Effect of purification
treatment on adsorption characteristics of carbon nanotubes,
Diamond Related Mat., 16 (4–7) (2007) 1110–1115.
- C. Lu, F. Su, Adsorption of natural organic matter by carbon
nanotubes, Sep. Purif. Technol., 58(1) (2007) 113–121.
- X. Ren, C. Chen, M. Nagatsu, X. Wang, Carbon nanotubes
as adsorbents in environmental pollution management: A
review, Chem. Eng. J., 170 (2011) 395–410.
- A. Stafiej, K. Pyrzynska, Adsorption of heavy metal ions with
carbon nanotubes, Sep. Purif. Technol., 58 (2007) 49–52.
- S.S. Karajanagi, A.A. Vertegel, R.S. Kane, J.S. Dordick, Structure
and function of enzymes adsorbed onto single-walled carbon
nanotubes, Langmuir, 20 (2004) 11594–11599.
- J. Zhao, A. Buldum, J. Han, J.P. Lu, Gas molecule adsorption in
carbon nanotubes and nanotube bundles, Nanotechnology, 13
(2002) 195–200.
- J.-L. Gong, B. Wang, G.-M. Zeng, C.-P. Yang, C.-G. Niu, Q.-Y. Niu,
W.-J. Zhou, Y. Liang, Removal of cationic dyes from aqueous
solution using magnetic multi-wall carbon nanotube nanocomposite
as adsorbent, J. Hazard. Mater., 164 (2009) 1517–1522.
- L. Ai, C. Zhang, F. Liao, Y. Wang, M. Li, L. Meng, J. Jiang,
Removal of methylene blue from aqueous solution with magnetite
loaded multi-wall carbon nanotube: Kinetic, isotherm
and mechanism analysis, J. Hazard. Mater., 198 (2011) 282–290.
- K. Yang, W. Wu, Q. Jing, Lizhong Zhu,Aqueous adsorption of
aniline, phenol, and their substitutes by multi-walled carbon
nanotubes, Environ. Sci. Technol., 42 (2008) 7931–7936.
- T. Roman, W.A. Dino, H. Nakanishi, H. Kasai, Amino acid
adsorption on single-walled carbon nanotubes, Eur. Phys. J. D,
38 (2006) 117–120.
- D. Lin, B. Xing, Tannic acid adsorption and its role for stabilizing
carbon nanotube suspensions, Environ. Sci. Technol., 42
(2008) 5917–5923.
- K. Yang, B. Xing, Adsorption of fulvic acid by carbon nanotubes
from water, Environ. Pollut., 157 (2009) 1095–1100.
- X. Wang, S. Tao, A. Xing, Sorption and competition of aromatic
compounds and humic acid on multiwalled carbon nanotubes,
Environ. Sci. Technol., 43 (2009) 6214–6219.
- I.H. Aljundi, J.M. Belovich, O. Talu, Adsorption of lactic acid
from fermentation broth and aqueous solutions on Zeolite
molecular sieves, Chem. Eng. Sci., 60 (2005) 5004–5009.
- M.J. Dethe, K.V. Marathe, V.G. Gaikar, Adsorption of lactic acid
on weak base polymeric resins, Sep. Sci. Technol., 41 (2006)
2947–2971.
- Ş.S. Bayazit, İ. İnci, H. Uslu, Adsorption of lactic acid from
model fermentation broth onto activated carbon and Amberlite
IRA-67, J. Chem. Eng. Data, 56 (2011) 1751–1754.
- C.C. Chen, L.-K. Ju, Coupled lactic acid fermentation and
adsorption, Appl. Microbiol. Biotechnol., 59 (2002) 170–174.
- N. Pradhan, E.R. Rene, P.N.L. Lense, L. Dipasquale, G.
D’Ippolito, A. Fontana, A. Panico, G. Esposito, Adsorption
behaviour of lactic acid on granular activated carbon and
anionic resins: thermodynamics, isotherms and kinetic studies,
Energies, 10 (2017) 665.
- A. Yousuf, F. Bonk, J.R.B. Oyanedel, J.E. Schmidt, Recovery of
carboxylic acids produced during dark fermentation of food
waste by adsorption on Amberlite IRA-67 and activated carbon,
Bioresour. Technol., 217 (2016) 137–140.
- R.K. Rajoriya, B. Prasad, I.M. Mishra, K.L. Wasewar, Adsorption
of benzaldehyde on granular activated carbon: kinetics,
equilibrium, and thermodynamic, Chem. Biochem. Eng. Q., 21
(2007) 219–226.
- M. Chiban, A. Soudani, F. Sinan, M. Persin, Single, binary and
multi-component adsorption of some anions and heavy metals
on environmentally friendly Carpobrotus edulis plant, Colloids
Surf. B., 82 (2011) 267–276.
- C.O. Ijagbemi, M. Baek, D. Kim, Montmorillonite surface properties
and sorption characteristics for heavy metal removal
from aqueous solutions, J. Hazard. Mater., 166 (2009) 538–546.
- I. Langmuir, The adsorption of gases on plane surface of glass,
mica and platinum, J. Am. Chem. Soc., 40 (1916) 1361–1368.
- H.M.F. Freundlich, Over the adsorption in solution, J. Phys.
Chem., 57 (1906) 385–470.
- M.I. Temkin, V. Pyzhev, Kinetics of ammonia synthesis on
promoted iron catalysts, Acta physicochim. URSS, 12(3) (1940)
217–222.
- D. Özçimen, A. Ersoy Meriçboyu, Adsorption of copper (II)
ions onto hazelnut shell and apricot stone activated carbons,
Adsorpt. Sci. Technol., 28(4) (2010) 327–340.
- Y.S. Ho, G. Mckay, A comparison of chemisorption kinetic
models applied to pollutant removal on various sorbents, Process
Saf. Environ. Prot., 76B (1998) 332–340.