References
- B. Alizadeh, M. Ghorbani, M.A. Salehi, Application of
polyrhodanine modified multi-walled carbon nanotubes for
high efficiency removal of Pb (II) from aqueous solution, J.
Mol. Liq., 220 (2016)142–149.
- E. Üçüncü Tunca, K. Terzioğlu, H. Türe, The effects of alginate
micro spheres on phytoremediation and growth of Lemna
minor in the presence of Cd, J. Chem. Ecol., 33 (2017) 652–668.
- M.O. Abd El-Magied, A.A. Tolba, H.S. El-Gendy, S.A. Zaki,
A.A. Atia, Studies on the recovery of Th (IV) ions from nitric
acid solutions using amino-magnetic glycidyl methacrylate
resins and application to granite leach liquors, Hydro metallurgy,
169 (2017) 89–98.
- M. Nadeem, M. Shabbir, M.A. Abdullah, S.S. Shah, G. McKay,
Sorption of cadmium from aqueous solution by surfactant-modified carbon adsorbents, Chem. Eng. J., 148 (2009)
365–370.
- A. Zahid, A. Shah, F.J. Iftikhar, A.H. Shah, R. Qureshi, Surfactant
modified glassy carbon electrode as an efficient sensing
platform for the detection of Cd (II) and Hg (II), Electrochim.
Acta, 235 (2017) 72–78.
- S. Pandey, A comprehensive review on recent developments in
bentonite-based materials used as adsorbents for wastewater
treatment, J. Mol. Liq., 241 (2017) 1091–1113.
- S. Daneshfozoun, M.A. Abdullah, B. Abdullah, Preparation
and characterization of magnetic biosorbent based on oil
palm empty fruit bunch fibers, cellulose and Ceiba pentandra for heavy metal ions removal, Ind. Crop. Prod., 105 (2017)
93–103.
- M. Afzaal, B. Periyasamy, M.A. Abdullah, Continuous heavy
metal removal from palm oil mill effluent using natural Ceiba
pentandra (L.) Gaertn packed-bed column. Appl. Mech. Mater.,
625 (2014) 822–825.
- R. Malik, S. Dahiya, S. lata, An experimental and quantum
chemical study of removal of utmostly quantified heavy metals
in wastewater using coconut husk: A novel approach to
mechanism, Int. J. Biol. Macromol., 98 (2017) 139–149.
- C. Mânzatu, B. Nagy, C. Majdik, The biosorptive effect of
untreated and chemically modified fir cone powder on Pb (II)
removal, Eur. J. Wood. Wood. Prod., 75 (2017) 623–632.
- A. Ali, Removal of Mn (II) from water using chemically modified
banana peels as efficient adsorbent, Environ. Nano technol.
Monitor. Manag., 7 (2017) 57–63.
- N. Gupta, R. Sen, Kinetic and equilibrium modelling of Cu
(II) adsorption from aqueous solution by chemically modified
groundnut husk (Arachis hypogaea), J. Environ. Chem. Eng., 5
(2017) 4274–4281.
- D. Mohammed, R. Hashim, M. Rafatullah, O. Sulaiman, A.
Ahmad, Adsorption of Pb (II) ions from aqueous solutions by
date bead carbon activated with ZnCl2, Clean–Soil, Air, Water,
39 (2011) 392–399.
- J. Singh, N. Dhiman, N.K. Sharma, Effect of Fe (II) on the
adsorption of Mn (II) from aqueous solution using esterified
saw dust: equilibrium and thermodynamic studies, Indian
Chem. Eng., (2017) 1–14.
- M.I. Errea, E. Rossi, S.N. Goyanes, N.B. D’Accorso, Chitosan:
From organic pollutants to high-value polymeric materials,
In: S.N. Goyanes, N.B. D’Accorso, Industrial Applications
of Renewable Biomass Products: Past, Present and Future,
Springer International Publishing, Cham, 2017, pp. 251–264.
- Q. Liu, J.J. Schauer, Local-acting air pollutant emissions from
road vehicles, In: Environmental impacts of road vehicles:
past, present and future, The Royal Society of Chemistry, 2017,
pp. 46–85.
- G. Marsh, N. Hill, J. Sully, Consultation on the need to reduce
the sulphur content of petroland diesel fuels below 50 ppm: A policy makers summary, A report produced for the European
Commission DG Environment, AEAT/ENV/R/0372 Issue 5,
2000, pp. 1–107.
- S.W. Lee, J.W. Ryu, W.Min, SK Hydrodesulfurization (HDS)
pretreatment technology for ultra low sulfur diesel (ULSD)
production, Catal. Surveys Asia, 7 (2003), pp. 271–279.
- M. Ergorova, Study of aspects of deep hydrodesulphurization
by means of model reactions, Doctoral Thesis, Swiss Federal
Institute of Technology, Zurich, 2003.
- M.M. Ramirez-Corredores, Z. Hernandez, J. Guerra, R.V.
Navarro, Selective sulfur removal from hydrocarbon streams
by absorption US Patent, US7446077 B2, 2008.
- I. Siró, D. Plackett, Micro fibrillated cellulose and new nano
composite materials: a review, Cellulose, 17 (2010) 459–494.
- R.M. Rowell, Paper and composites from agro-based resources,
CRC Press, University of Wisconsin, Madison, USA; Judith
Rowell, USDA, Madison, WI, 1996.
- D.W. O’Connell, C. Birkinshaw, T.F. O’Dwyer, Heavy metal
adsorbents prepared from the modification of cellulose: A
review, Bioresour. Technol., 99 (2008) 6709–6724.
- S. Daneshfozoun, B. Abdullah, M.A. Abdullah, Heavy metal
removal by Oil Palm Empty Fruit Bunches (OPEFB) biosorbent.
Appl. Mech. Mater., 625 (2014)889–892.
- M.S. Nazir, B.A. Wahjoedi, A.W. Yussof, M.A. Abdullah, Ecofriendly
extraction and characterization of cellulose from oil
palm empty fruit bunches, BioResour., 8 (2013) 2161–2172.
- M.A. Abdullah, M.S. Nazir, M.R. Raza, B.A. Wahjoedi, A.W.
Yussof, Autoclave and ultra-sonication treatments of oil palm
empty fruit bunch fibers for cellulose extraction and its polypropylene
composite properties, J Clean Prod., 126 (2016) 686–697.
- TAPPI, Alpha-, beta- and gamma- cellulose in pulp,In: Fibrous
material and pulp testing, T 203 om 88, Atlanta, TAPPI Press,
1991.
- ASTM, Annual Book of ASTM Standard, In: Soap, Polishes cellulose
leather, Resilient Floor covering, 15, 1983.
- C. Yun, X. Xiao-peng, Y. Guang, Z. Li-na, L. Se-lin, L. Hui,
Characterization of regenerated cellulose membranes hydrolyzed
from cellulose acetate, Chinese J. Polym. Sci., 20 (2002)
369–375.
- S. Lagergren, About the theory of so-called adsorption of soluble
substances, Kungliga. Svenska Vetenskapsakademiens
Handlingar, 24 (1898) 1–39.
- Y.S. Ho, W.T. Chiu, C.C. Wang, Regression analysis for the
sorption isotherms of basic dyes on sugarcane dust, Bioresour.
Technol., 96 (2005) 1285–1291.
- S. Karagöz, T. Tay, S. Ucar, M. Erdem, Activated carbons
from waste biomass by sulfuric acid activation and their use
on methylene blue adsorption, Bioresour. Technol., 99 (2008)
6214–6222.
- M.J. Temkin, V. Pyzhev, Recent modification to Langmuir isotherm,
Acta. Physiochim. USSR, 12 (1940) 217–222.
- M.M.L. Loo, R. Hashim, C.P. Leh, Recycling of valueless paper
dust to a low grade cellulose acetate: Effect of pretreatments on
acetylation, BioResour., 7 (2012) 1068–1083.
- M.S. Rosnah, A.A. Astimar, W. Hasamudin, W. Hassan, M.T.
Gapor, Solid-state characteristics of micro crystalline cellulose
from oil palm empty fruit bunch fibre, J. Oil Palm Res., 21
(2009) 613–620.
- F. Fahma, S. Iwamoto, N. Hori, T. Iwata, A. Takemura, Isolation,
preparation, and characterization of nano fibers from oil
palm empty-fruit-bunch (OPEFB), Cellulose, 17 (2010) 977–985.
- Y. Tian, M. Wu, R. Liu, D. Wang, X. Lin, W. Liu, L. Ma, Y. Li,
Y. Huang, Modified native cellulose fibers—A novel efficient
adsorbent for both fluoride and arsenic, J. Hazard. Mater., 185
(2011) 93–100.
- M.J. Haron, M. Tiansin, N.A. Ibrahim, A. Kassim, W.M. Wan
Yunus, S.M. Talebi, Sorption of Pb (ll) by poly(hydroxamic
acid) grafted oil palm empty fruit bunch, Water Sci. Technol.,
63 (2011) 1788–1793.
- M.N.M. Ibrahim, W.S.W. Ngah, M.S. Norliyana, W.R.W. Daud,
M. Rafatullah, O. Sulaiman, R. Hashim, A novel agricultural
waste adsorbent for the removal of lead (II) ions from aqueous
solutions, J. Hazard. Mater., 182 (2010) 377–385.
- J.T. Matheickal, Q. Yu, Biosorption of lead (II) and copper (II)
from aqueous solutions by pre-treated biomass of Australian
marine algae, Bioresour. Technol., 69 (1999) 223–229.
- O.K. Júnior, L.V.A. Gurgel, R.P. de Freitas, L.F. Gil, Adsorption
of Cu (II), Cd (II), and Pb (II) from aqueous single metal
solutions by mercerized cellulose and mercerized sugarcane
bagasse chemically modified with EDTA dianhydride
(EDTAD), Carbohydr. Polym., 77 (2009) 643–650.
- Y.S. Ho, W.T. Chiu, C.S. Hsu, C.T. Huang, Sorption of lead ions
from aqueous solution using tree fern as a sorbent, Hydro metallurgy,
73 (2004) 55–61.
- N. Jafari, Z. Senobari, Removal of Pb (II) ions from aqueous
solutions by Cladophora rivularis (Linnaeus) Hoek, Sci. World J.,
2012 (2012) 6.
- R.F. Carbonaro, Y.B. Atalay, D.M. Di Toro, Linear free energy
relationships for metal–ligand complexation: Bidentate binding
to negatively-charged oxygen donor atoms, Acta Cosmochim.
Geochim., 75 (2011) 2499–2511.
- L.D. Hafshejani, S.B. Nasab, R.M. Gholami, M. Moradzadeh, Z.
Izadpanah, S.B. Hafshejani, A. Bhatnagar, Removal of zinc and
lead from aqueous solution by nano structured cedar leaf ash
as biosorbent, J. Mol. Liq., 211 (2015) 448–456.
- P. Gao, Y. Feng, Z. Zhang, C. Wang, J. Liu, N. Ren, Kinetic and
thermodynamic studies of phenolic compounds’ adsorption
on river sediment, Soil Sediment Contaminat. Int. J., 21 (2012)
625–639.
- S. Daneshfozoun, Heavy metal ions removal using magnetic
bio-sorbent based on agro-lignocellulosic materials, PhD Thesis,
Universiti Teknologi PETRONAS, 2017.
- C. Moreno-Castilla, Adsorption of organic molecules from
aqueous solutions on carbon materials, Carbon, 42 (2004)
83–94.
- Q.S. Liu, T. Zheng, P. Wang, J.P. Jiang, N. Li, Adsorption isotherm,
kinetic and mechanism studies of some substituted
phenols on activated carbon fibers, Chem. Eng. J., 157 (2010)
348–356.
- E. Maekawa, T. Koshijima, Preparation and characterization of
hydroxamic acid derivative and its metal complexes derived
from cellulose, J. Appl. Polym. Sci., 40 (1990) 1601–1613.
- K.S. Low, C.K. Lee, S.M. Mak, Sorption of copper and lead by
citric acid modified wood, Wood Sci Technol., 38 (2004) 629–
640.
- H. Liu, F. Zhang, W. Li, X. Zhang, C.S. Lee, W. Wang, Porous
tremella-like MoS2/polyaniline hybrid composite with
enhanced performance for lithium-ion battery anodes, Electrochim.
Acta., 167 (2015) 132–138.
- Y. Xia, Y. Li, Y. Gu, T. Jin, Q. Yang, J. Hu, H. Liu, H. Wang,
Adsorption desulfurization by hierarchical porous organic
polymer of poly-methylbenzene with metal impregnation,
Fuel, 170 (2016) 100–106.
- J.A. Arcibar-Orozco, J.R. Rangel-Mendez, Model diesel
denitrogenation by modified activated carbon with iron nano
particles: Sulfur compounds effect, Chem. Eng. J., 230 (2013)
439–446.
- M.A. Abdullah, A.U. Rahmah, Z. Man, Physicochemical and
sorption characteristics of Malaysian Ceiba pentandra (L.)
Gaertn. as a natural oil sorbent, J. Hazard. Mater., 177 (2010)
683–691.
- M.A. Abdullah, M. Afzaal, Z. Ismail, A. Ahmad, M.S. Nazir,
A.H. Bhat, Comparative study on structural modification of
Ceiba pentandra for oil sorption and palm oil mill effluent
treatment, Desalin. Water Treat., 54 (2015) 3044–3053.
- M.A. Abdullah, S.H. Gheewala and A. Ullah, Integrated biorefinery
and life-cycle analysis for sustainable production of
biofuels and bioproducts based on microalgal cultivation and
palm oil milling, In: Proceeding of the 13th Universiti Malaysia
Terengganu International Annual Symposium on Sustainability
Science and Management: Science and Technology for Sustainable
Livelihood, Primula Beach Hotel, Kuala Terengganu,
Terengganu, Malaysia, UMTAS 2016140, 13-15th December, pp.
319–322, 2016.
- M.A. Abdullah, M.S. Nazir, H. Ajab, S. Daneshfozoun, S. Almustapha,
Advances in eco-friendly pre-treatment methods and
utilization of agro-based lignocelluloses. In: D. Thangadurai
and J. Sangeetha, Industrial Biotechnology: Sustainable Production
and Bioresource Utilization, Apple Academic Press,
USA, 2017, pp 371–420.