References
- N.K. Srivastava, C.B. Majumder, Novel biofiltration methods
for the treatment of heavy metals from industrial wastewater,
J. Hazard. Mater., 151 (2008) 1–8.
- A. Fairbrother, R. Wenstel, K. Sappington, W. Wood, Framework
for metals risk assessment, Ecotoxicol. Environ. Saf., 68 (2007)
145–227.
- P.B. Tchounwou, C.G. Yedjou, A.K. Patlolla, D.J. Sutton, Heavy
metal toxicity and the environment, EXS, 101 (2012) 133–164.
- M.A.A. Wijayawardena, M. Megharaj, R. Naidu, Exposure,
toxicity, health impacts, and bioavailability of heavy metal
mixtures, Adv. Agron., 138 (2016) 175–234.
- T.A. Kurniawan, G.Y.S. Chan, W.-H. Lo, S. Babel, Physico-chemical treatment techniques for wastewater laden with heavy
metals, Chem. Eng. J., 118 (2006) 83–98.
- A. Pal, Copper toxicity induced hepatocerebral and neurodegenerative
diseases: an urgent need for prognostic biomarkers,
Neurotoxicology, 40 (2014) 97–101.
- D.G. Barceloux, D. Barceloux, Copper, J. Toxicol. Clin. Toxicol.,
37 (1999) 217–230.
- S. Dudka, D.C. Adriano, Environmental impacts of metal ore
mining and processing: a review, J. Environ. Qual., 26 (1997)
590–596.
- V.J. Inglezakis, S.G. Poulopoulos, Adsorption, Ion exchange
and Catalysis: Design of Operations and Environmental
Applications, Elsevier, 2006.
- R. Xu, W. Pang, J. Yu, Q. Huo, J. Chen, Chemistry of Zeolites
and Related Porous Materials: Synthesis and Structure, John
Wiley & Sons, 2009.
- C. Baerlocher, L. McCusker, D. Olson, Atlas of Zeolite Framework
Types, Elsevier Science, Amsterdam, 2007.
- O.H. Elsayed-Ali, T. Abdel-Fattah, H.E. Elsayed-Ali, Copper
cation removal in an electrokinetic cell containing zeolite,
J. Hazard. Mater., 185 (2011) 1550–1557.
- C.S. Cundy, P.A. Cox, The hydrothermal synthesis of
zeolites: precursors, intermediates and reaction mechanism,
Microporous Mesoporous Mater., 82 (2005) 1–78.
- E.P. Ng, H. Awala, K.H. Tan, F. Adam, R. Retoux, S. Mintova,
EMT-type zeolite nanocrystals synthesized from rice husk,
Microporous Mesoporous Mater., 204 (2015) 204–209.
- J. Parfitt, M. Barthel, S. Macnaughton, Food waste within
food supply chains: quantification and potential for change
to 2050, Philos. Trans. R. Soc. Lond. B. Biol. Sci., 365 (2010)
3065–3081.
- R.M. Mohamed, I.A. Mkhalid, M.A. Barakat, Rice husk ash as
a renewable source for the production of zeolite NaY and its
characterization, Arabian J. Chem., 8 (2015) 48–53.
- C.Y.M. dos Santos, D. de A. Azevedo, F.R. de Aquino Neto,
Selected organic compounds from biomass burning found in
the atmospheric particulate matter over sugarcane plantation
areas, Atmos. Environ., 36 (2002) 3009–3019.
- D.I. Petkowicz, R.T. Rigo, C. Radtke, S.B. Pergher, J.H.Z. dos
Santos, Zeolite NaA from Brazilian chrysotile and rice husk,
Microporous Mesoporous Mater., 116 (2008) 548–554.
- P.K. Bajpai, M.S. Rao, K.V.G.K. Gokhale, Synthesis of mordenite
type zeolite using silica from rice husk ash, Ind. Eng. Chem.
Prod. Res. Dev., 20 (1981) 721–726.
- D. Prasetyoko, Z. Ramli, S. Endud, H. Hamdan, B. Sulikowski,
Conversion of rice husk ash to zeolite beta, Waste Manage., 26
(2006) 1173–1179.
- S.-F. Wong, H. Awala, A. Vincente, R. Retoux, T.C. Ling,
S. Mintova, R.R. Mukti, E.-P. Ng, K-F zeolite nanocrystals
synthesized from organic-template-free precursor mixture,
Microporous Mesoporous Mater., 249 (2017) 105–110.
- K.P. Dey, S. Ghosh, M.K. Naskar, Organic template-free
synthesis of ZSM-5 zeolite particles using rice husk ash as silica
source, Ceram. Int., 39 (2013) 2153–2157.
- B.S. Liu, D.C. Tang, C.T. Au, Fabrication of analcime zeolite
fibers by hydrothermal synthesis, Microporous Mesoporous
Mater., 86 (2005) 106–111.
- D.A. Fungaro, T.V.S. Reis, M. Antonio Logli, N.A. Oliveira,
Synthesis and characterization of zeolitic material derived
from sugarcane straw ash, Am. J. Environ. Prot., 2 (2014)
16–21.
- S. Salakhum, T. Yutthalekha, M. Chareonpanich, J. Limtrakul,
C. Wattanakit, Synthesis of hierarchical faujasite nanosheets
from corn cob ash-derived nanosilica as efficient catalysts for
hydrogenation of lignin-derived alkylphenols, Microporous
Mesoporous Mater., 258 (2018) 141–150.
- M.M.M. Ali, M.J. Ahmed, Adsorption behavior of doxycycline
antibiotic on NaY zeolite from wheat (Triticum aestivum)
straws ash, J. Taiwan Inst. Chem. Eng., 81 (2017) 218–224.
- E.-P. Ng, J.-H. Chow, R.R. Mukti, O. Muraza, T.C. Ling,
K.-L. Wong, Hydrothermal synthesis of zeolite a from bamboo
leaf biomass and its catalytic activity in cyanoethylation of
methanol under autogenic pressure and air conditions, Mater.
Chem. Phys., 201 (2017) 78–85.
- E. Fortunati, P. Benincasa, G.M. Balestra, F. Luzi, A. Mazzaglia,
D. Del Buono, D. Puglia, L. Torre, Revalorization of barley straw
and husk as precursors for cellulose nanocrystals extraction and
their effect on PVA_CH nanocomposites, Ind. Crops Prod., 92
(2016) 201–217.
- S.N. Azizi, A.R. Dehnavi, A. Joorabdoozha, Synthesis and
characterization of LTA nanozeolite using barley husk silica:
mercury removal from standard and real solutions, Mater. Res.
Bull., 48 (2013) 1753–1759.
- D.A. De Haro-Del Rio, S.M. Al-Jubouri, S.M. Holmes,
Hierarchical porous structured zeolite composite for removal
of ionic contaminants from waste streams, Chim. Oggi-Chem.
Today, 35 (2017) 56–58.
- Y.S. Ho, Citation review of Lagergren kinetic rate equation on
adsorption reactions, Scientometrics, 59 (2004) 171–177.
- Y.S. Ho, G. McKay, The kinetics of sorption of divalent metal
ions onto sphagnum moss peat, Water Res., 34 (2000) 735–742.
- N.Z. Misak, Langmuir isotherm and its application in ionexchange
reactions, React. Polym., 21 (1993) 53–64.
- J. Febrianto, A.N. Kosasih, J. Sunarso, Y.H. Ju, N. Indraswati,
S. Ismadji, Equilibrium and kinetic studies in adsorption of
heavy metals using biosorbent: a summary of recent studies,
J. Hazard. Mater., 162 (2009) 616–645.
- S.V. Vassilev, C.G. Vassileva, Y.C. Song, W.Y. Li, J. Feng, Ash
contents and ash-forming elements of biomass and their
significance for solid biofuel combustion, Fuel, 208 (2017)
377–409.
- O. Hernandez-Ramirez, S.K. Al-Nasri, S.M. Holmes,
Hierarchical structures based on natural carbons and zeolites,
J. Mater. Chem., 21 (2011) 16529–16534.
- D.A. De Haro-Del Rio, S. Al-Joubori, O. Kontogiannis,
D. Papadatos-Gigantes, O. Ajayi, C. Li, S.M. Holmes, The
removal of caesium ions using supported clinoptilolite,
J. Hazard. Mater., 289 (2015) 1–8.
- C. Belviso, F. Cavalcante, A. Lettino, S. Fiore, A and X-type
zeolites synthesised from kaolinite at low temperature, Appl.
Clay Sci., 80 (2013) 162–168.
- A.M. Cardoso, A. Paprocki, L.S. Ferret, C.M. Azevedo, M. Pires,
Synthesis of zeolite Na-P1 under mild conditions using Brazilian
coal fly ash and its application in wastewater treatment, Fuel,
139 (2015) 59–67.
- Y. Miyake, H. Ishida, S. Tanaka, S.D. Kolev, Theoretical analysis
of the pseudo-second order kinetic model of adsorption.
Application to the adsorption of Ag(I) to mesoporous silica
microspheres functionalized with thiol groups, Chem. Eng. J.,
218 (2013) 350–357.
- Y.S. Ho, G. McKay, Pseudo-second order model for sorption
processes, Process Biochem., 34 (1999) 451–465.
- X. Lu, F. Wang, X. Li, K. Shi, E.Y. Zheng, Adsorption and
Thermal Stabilization of Pb2+ and Cu2+ by Zeolite, Ind. Eng.
Chem. Res., 55 (2016) 8767–8773.
- X. Lu, D. Shi, J. Chen, Sorption of Cu2+ and Co2+ using zeolite
synthesized from coal gangue: isotherm and kinetic studies,
Environ. Earth Sci., 76 (2017) 1–10.
- Y. Taamneh, S. Sharadqah, The removal of heavy metals from
aqueous solution using natural Jordanian zeolite, Appl. Water
Sci., 7 (2017) 2021–2028.
- M. Irannajad, H.K. Haghighi, E. Safarzadeh, Kinetic,
thermodynamic and equilibrium studies on removal of
copper ions from aqueous solutions by natural and modified
clinoptilolites, Korean J. Chem. Eng., 55 (2016) 1629–1639.