References
- C. Zinge, B. Kandasubramanian, Nanocellulose based
biodegradable polymers, Eur. Polym. J., 133 (2020) 109758,
doi: 10.1016/j.eurpolymj.2020.109758.
- E.J. Cho, L.T.P. Trinh, Y. Song, Y.G. Lee, H.-J. Bae, Bioconversion
of biomass waste into high value chemicals, Bioresour. Technol.,
298 (2020) 122386, doi: 10.1016/j.biortech.2019.122386.
- K.F. Mahmoud, S.C. Alfaro, O. Favez, M.M. Abdel Wahab,
J. Sciare, Origin of black carbon concentration peaks in Cairo
(Egypt), Atmos. Res., 89 (2008) 161–169.
- A. El Nemr, Non-Conventional Textile Waste Water Treatment,
Nova Science Publishers, Inc., Hauppauge New York, 2012.
[Hard Cover ISBN: 978-1-62100-079-2, e-book ISBN: 978-1-62100-228-4, 267 pages.
- A. El Nemr, A. Khaled, O. Abdelwahab, A. El-Sikaily, Treatment
of wastewater containing toxic chromium using new activated
carbon developed from date palm seed, J. Hazard. Mater.,
152 (2008) 263–275.
- A. El Nemr, A. El-Sikaily, A. Khaled, Modeling of adsorption
isotherms of Methylene Blue onto rice husk activated carbon,
Egypt. J. Aquat. Res., 36 (2010) 403–425.
- A. El Nemr, A. El-Sikaily, A. Khaled, O. Abdelwahab, Removal
of toxic chromium from aqueous solution, wastewater and
saline water by marine red alga Pterocladia capillacea and its
activated carbon, Arabian J. Chem., 8 (2015) 105–117.
- H. Guo, S. Zhang, Z. Kou, S. Zhaib, W. Ma, Y. Yang, Removal
of cadmium(II) from aqueous solutions by chemically modified
maize straw, Carbohydr. Polym., 115 (2015) 177–185.
- A. Eleryan, A. El Nemr, M. Mashaly, A. Khaled,
6-Triethylenetetramine 6-deoxycellulose grafted with
crotonaldehyde as adsorbent for Cr6+ removal from wastewater,
Int. J. Sci. Eng. Res., 10 (2019) 1199–1211.
- A. Eleryan, A. El Nemr, M.M. Alghamdi, A.A. El-Zahhar,
A.M. Idris, Feasible and eco-friendly removal of hexavalent
chromium toxicant from aqueous solutions using chemically
modified sugarcane bagasse cellulose, Toxin Rev., 40 (2021)
835–846.
- M.K.M. Haafiz, A. Hassan, Z. Zakaria, I.M. Inuwa, Isolation
and characterization of cellulose nanowhiskers from oilpalm
biomass microcrystalline cellulose, Carbohydr. Polym.,
103 (2014) 119–125.
- C. Zhong, C. Wang, F. Huang, H. Jia, P. Wei, Wheat straw
cellulose dissolution and isolation
by tetra-n-butylammonium
hydroxide, Carbohydr. Polym., 94 (2013) 38–45.
- H.K. Shin, J.P. Jeun, H.B. Kim, P.H. Kang, Isolation of cellulose
fibers from kenaf using electron beam, Radiat. Phys. Chem.,
81 (2012) 936–940.
- C. Mu, M. Jiang, J. Zhu, M. Zhao, S. Zhu, Z. Zhou, Isolation
of cellulose from steam-exploded rice straw with aniline
catalyzing dimethyl formamide aqueous solution, Renewable
Energy, 63 (2014) 324–329.
- M. Jiang, M. Zhao, Z. Zhou, T. Huang, X. Chen, Y. Wang,
Isolation of cellulose with ionic liquid from steam exploded rice
straw, Ind. Crops Prod., 33 (2011) 734–738.
- I. Bicu, F. Mustata, Optimization of isolation of cellulose from
orange peel using sodium hydroxide and chelating agents,
Carbohydr. Polym., 98 (2013) 341–348.
- M.L. Hassan, J. Brasc, E.A. Hassan, C. Silard, E. Mauret,
Enzyme-assisted isolation of micro fibrillated cellulose from
date palm fruit stalks, Ind. Crops Prod., 55 (2014) 102–108.
- S.M.A.S. Keshk, M.A. Haija, A new method for producing
microcrystalline cellulose from Gluconacetobacter xylinus and
kenaf, Carbohydr. Polym., 84 (2011) 1301–1305.
- C.S. Patil, D.B. Gunjal, V.M. Naik, N.S. Harale, S.D. Jagadale,
A.N. Kadam, P.S. Patil, G.B. Kolekar, A.H. Gore, Waste tea
residue as a low cost adsorbent for removal of hydralazine
hydrochloride pharmaceutical pollutant from aqueous media:
An environmental remediation, J. Cleaner Prod., 206 (2019)
407–418.
- M. Corral-Bobadilla, A. González-Marcos, F. Alba-Elías,
E.D. de Santo Domingo, Valorization of bio-waste for the
removal of aluminum from industrial wastewater, J. Cleaner
Prod., 264 (2021) 121608, doi: 10.1016/j.jclepro.2020.121608.
- A. El Nemr, M.N.M. Ismail, E.S.H. El Ashry, H. Abdel Hamid,
Novel simple modification of chitosan as adsorptive agent
for removal of Cr6+ from aqueous solution, Egypt. J. Chem.,
63 (2020) 1219–1240.
- T.M. Eldeeb, A. El Nemr, M.H. Khedr, S.I. El-Dek, N.G. Imam,
Novel, Three-dimensionoal, chitosan-carbon nanotube–PVA
nanocomposite hydrogel for removal of Cr6+ from water, Desal.
Water Treat., 184 (2020) 163–177.
- A. Guleria, G. Kumari, E.C. Lima, Cellulose-g-poly-(acrylamideco-acrylic acid) polymeric bioadsorbent for the removal of toxic
inorganic pollutants from wastewaters, Carbohydr. Polym.,
228 (2020) 115396, doi:10.1016/j.carbpol.2019.115396.
- A. El Nemr, S. Ragab, Acetylation of Cotton-Giza 86 cellulose
using MnCl2 as a new catalyst and its application to machine oil
removal, Environ. Process., 5 (2018) 895–905.
- J.O. Zoppe, P.A. Larsson, O. Cusola, Chapter 2 – Surface
Modification of Nanocellulosics and Functionalities,
Lignocellulosics, Renewable Feedstock for (Tailored) Funct.
Mater. Nanotechnol., 2020, pp. 17–63. Available at: https://doi.
org/10.1016/B978-0-12-804077-5.00003-8
- B. Hashemi, P. Zohrabi, M. Shamsipur, Recent developments
and applications of different sorbents for SPE and SPME from
biological samples, Talanta, 187 (2018) 337–347.
- A. El Nemr, A.A. Moneer, A. Khaled, A. El-Sikaily, Levels,
distribution and risk assessment of organochlorines in surficial
sediments of the Red Sea coast, Egypt, Environ. Monit. Assess.,
185 (2013) 4835–4853.
- A. El Nemr, A.A. Moneer, S. Ragab, A. El Sikaily, Distribution
and sources of n-alkanes and polycyclic aromatic hydrocarbons
in Shellfish of the Egyptian Red Sea coast, Egypt. J. Aquat. Res.,
42 (2016) 121–131.
- A. El Nemr, G.F. El-Said, A. Khaled, S. Ragab, Distribution
and ecological risk assessment of some heavy metals in coastal
surface sediments along the Red Sea, Egypt. Int. J. Sediment.
Res., 31 (2016) 164–172.
- D.M.S. Salem, A. Khaled, A. El Nemr, Assessment of pesticides
and polychlorinated biphenyls (PCBs) in sediments of the
Egyptian Mediterranean Coast, Egypt. J. Aquat. Res., 39 (2013)
141–152.
- D.M.S.A. Salem, A. El Sikaily, A. El Nemr, Organocholorines and
their risk in marine shellfish collected from the Mediterranean
coast, Egypt, Egypt. J. Aquat. Res., 40 (2014) 93–101.
- D.M.S.A. Salem, A. Khaled, A. El Nemr, A. El-Sikaily,
Comprehensive risk assessment of heavy metals in surface
sediments along the Egyptian Red Sea coast, Egypt. J. Aquat.
Res., 40 (2014) 349–362.
- D.M.S.A. Salem, F.A.-E.M. Morsy, A. El Nemr, A. El-Sikaily,
A. Khaled, The monitoring and risk assessment of aliphatic
and aromatic hydrocarbons (PAHs) in sediments of the Red
Sea, Egypt, Egypt. J. Aquat. Res., 40 (2014) 333–348.
- S. Ragab, A. El Sikaily, A. El Nemr, Concentrations and sources
of pesticides and PCBs in surficial sediments of the Red Sea
Coast, Egypt, Egypt. J. Aquat. Res., 42 (2016) 365–374.
- A.M. Idris, T.O. Said, E.I. Brima, T. Sahlabji, M.M. Alghamdi,
A.A. El-Zahhar, M. Arshad, A.M. El Nemr, Assessment of
contents of selected heavy metals in street dust from Khamees-Mushait city, Saudi Arabia, using multivariate statistical
analysis, GIS mapping, geochemical indices and health risk,
Fresenius Environ. Bull., 28 (2019) 6059–6069.
- H.F.M. Asiri, A.M. Idris, T.O. Said, T. Sahlabji, M.M. Alghamdi,
A.A. El-Zahhar, E.-A. Nemr, Monitoring and health risk
assessment of some pesticides and organic pollutants in
fruit and vegetables consumed in Asir Region, Saudi Arabia,
Fresenius Environ. Bull., 29 (2020) 615–625.
- A. Kadama, R. Govind, B. Nairb, S.J. Dhoble, Insights into
the extraction of mercury from fluorescent lamps: a review,
J. Environ. Chem. Eng., 7 (2019) 103279, doi: 10.1016/j.
jece.2019.103279.
- A.R.K. Gollakota, S. Gautam, C.-M. Shu, Inconsistencies of
e-waste management in developing nations – facts and plausible
solutions, J. Environ. Manage., 261 (2020) 110234, doi: 10.1016/j.
jenvman.2020.110234.
- E. Serag, A. El Nemr, A. El-Maghraby, Synthesis of highly
effective novel graphene oxide-polyethylene
glycol-polyvinyl
alcohol nanocomposite hydrogel for copper removal, J. Water
Environ. Nanotechnol., 2 (2017) 223–234.
- E. Serag, A. El Nemr, F.F. Abdel Hamid, S.A. Fathy,
A. El-Maghraby, A novel three dimensional carbon nanotubepolyethylene
glycol – polyvinyl alcohol nanocomposite for
Cu(II) removal from water, Egypt. J. Aquat. Biol. Fisher.,
22 (2018) 103–118.
- S. Meseldzija, J. Petrovic, A. Onjia, T. Volkov-Husovic, A. Nesic,
N. Vukelic, Utilization of agro-industrial waste for removal of
copper ions from aqueous solutions and mining-wastewater,
J. Ind. Eng. Chem., 75 (2019) 246–252.
- M.A. El-Nemr, I.M.A. Ismail, N.M. Abdelmonem, S. Ragab,
A. El Nemr, Ozone and ammonium hydroxide modification
of biochar prepared from Pisum sativum peels improves the
adsorption of copper(II) from an aqueous medium, Environ.
Proc., 7 (2020) 973–1007.
- M.A. El-Nemr, I.M.A. Ismail, N.M. Abdelmonem, A. El Nemr,
S. Ragab, Amination of biochar derived from Watermelon peel
by triethylenetetramine and ammonium hydroxide for toxic
chromium removal enhancement, Chin. J. Chem. Eng., 36 (2021)
199–222.
- M.A. El-Nemr, I.M.A. Ismail, N.M. Abdelmonem, S. Ragab,
A. El Nemr, The efficient removal of the hazardous Azo Dye
Acid Orange 7 from water using modified biochar from pea
peels, Desal. Water Treat., 203 (2020) 327–355.
- M.A. El-Nemr, I.M.A. Ismail, N.M. Abdelmonem, S. Ragab,
A. El Nemr, Removal of Acid Yellow 11 Dye using novel
modified biochar derived from watermelon peels, Desal. Water
Treat., 203 (2020) 403–431.
- T. Sahlabji, A. El Nemr, S. Ragab, M.M. Alghamdi,
A.A. El-Zahhar, A.M. Idris, T.O. Said, High surface area
microporous activated carbon from Pisum sativum peels for
hexavalent chromium removal from aquatic environment, Toxin
Rev., (2021) (In Press), doi: 10.1080/15569543.2021.1908361.
- 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.
- D. Lu, Q. Cao, X. Li, X. Cao, F. Luo, W. Shao, Kinetics and
equilibrium of Cu(II) adsorption onto chemically modified
orange peel cellulose biosorbents, Hydrometallurgy, 95 (2009)
145–152.
- L. Zhou, Y. Duan, X. Xu, Facile preparation of amine-rich
polyamidoamine (PAMAM) gel for highly efficient removal of
Cr(VI) ions, Colloids Surf., A, 579 (2019) 123685, doi: 10.1016/j.
colsurfa.2019.123685.
- J. Tan, Y. Song, X. Huang, L. Zhou, Facile functionalization of
natural peach gum polysaccharide with multiple amine groups
for highly efficient removal of toxic hexavalent chromium
(Cr(VI)) ions from water, ACS Omega, 3 (2018) 17309–17318.
- O. Abdelwahab, A. El Sikaily, A. Khaled, A. El Nemr, Mass
transfer processes of chromium(VI) adsorption onto Guava
seeds, Chem. Ecol., 23 (2007) 73–85.
- A. El Nemr, A. El Sikaily, A. Khaled, O. Abdelwahab, Removal of
toxic chromium(VI) from aqueous solution by activated carbon
using Casuarina Equisetifolia, Chem. Ecol., 23 (2007) 119–129.
- WHO, Originally Published in Guidelines for Drinking-Water
Quality, 2nd ed., Vol. 2, Health Criteria and Other Supporting
Information, World Health Organization, Geneva, 1996.
- A. El Nemr, Potential of pomegranate husk carbon for Cr(VI)
removal from wastewater: kinetic and isotherm studies,
J. Hazard. Mater., 161 (2009) 132–141.
- J.C. Almeida, C.E.D. Cardoso, D.S. Tavares, R. Freitas,
T. Trindade, C. Vale, E. Pereira, Chromium removal from
contaminated waters using nanomaterials. A review, Trends
Anal. Chem., 118 (2019) 277–291.
- S.A. Kedzior, J.O. Zoppe, R.M. Berry, E.D. Cranston, Recent
advances and an industrial perspective of cellulose nanocrystal
functionalization through polymer grafting, Curr. Opin. Solid
State Mater. Sci., 23 (2019) 74–91.
- H. Gao, L.-L. Fu, M.-L. Cai, W. Chen, Z.-W. Bai, Preparation of
6-amino-6-deoxy cellulose and its derivatives used as chiral
separation materials, Carbohydr. Polym., 259 (2021) 117756, doi:10.1016/j.carbpol.2021.117756.
- W. Bessa, A.F. Tarchoun, D. Trache, M. Derradji, Preparation of
amino-functionalized microcrystalline cellulose from Arundo
Donax L. and its effect on the curing behavior of bisphenol
A–based benzoxazine, Thermochim. Acta, 698 (2021) 178882,
doi: 10.1016/j.tca.2021.178882.
- M. Shokri, S. Moradi, S. Amini, M. Shahlaei, F. Seidi, S.
Saedi, A novel amino cellulose derivative using ATRP
method: preparation, characterization, and investigation of
its antibacterial activity, Bioorg. Chem., 106 (2021) 104355,
doi: 10.1016/j.bioorg.2020.104355.
- Y. Dong, Y. Lai, X. Wang, M. Gao, F. Xue, X.F. Chen, Y.
Ma, Y. Wei, Design and synthesis of amine-functionalized
cellulose with multiple binding sites and their application in
C-C bond forming reactions, Int. J. Biol. Macromol., 130 (2019)
778–785.
- S. Ragab, A. El Nemr, Nanofiber cellulose di- and tri-acetate
using ferric chloride as a catalyst promoting highly efficient
synthesis under microwave irradiation, J. Macromol. Sci. Part
A Pure Appl. Chem., 55 (2018) 124–134.
- S. Ragab, A. El Nemr, Zirconyl chloride as a novel and efficient
green Lewis acid catalyst for direct acetylation of cotton
cellulose in the presence and absence of solvent, J. Polym.
Res., 26 (2019) 156, doi: 10.1007/s10965-019-1816.
- A. El Nemr, S. Ragab, A. El Sikaily, Rapid synthesis of cellulose
triacetate from cotton cellulose and its effect on specific surface
area and particle size distribution, Iran Polym. J., 26 (2017)
261–272.
- T.A. Maxcy, G. Paul Willhite, D.W. Green, K. Bowman-James,
A kinetic study of the reduction of chromium(VI) to chromium
(III)/by thiourea, J. Pet. Sci. Eng., 19 (1998) 253–263.
- E. Malkoc, Y. Nuhoglu, The removal of chromium(VI) from
synthetic wastewater by Ulothrix zonata, Fresenius Environ.
Bull., 12 (2001) 361–376.
- I. Langmuir, The constitution and fundamental properties
of solids and liquids, J. Am. Chem. Soc., 38 (1916) 2221–2295.
- D.G. Kinniburgh, General purpose adsorption isotherms,
Environ. Sci. Technol., 20 (1986) 895–904.
- E. Longhinotti, F. Pozza, L. Furlan, M.D.N.D. Sanchez, M. Klug,
M.C.M. Laranjeira, V.T. Favere, Adsorption of anionic dyes
on the biopolymer chitin, J. Braz. Chem. Soc., 9 (1998) 435–440.
- H.M.F. Freundlich, Uber die adsorption in lo sungen, Zeitschrift
fur Physikalische Chemie (Leipzig), 57A (1906) 385–470.
- C. Aharoni, M. Ungarish, Kinetics of activated chemisorption.
Part 2. Theoretical models, J. Chem. Soc. Faraday Trans.,
73 (1977) 456–464.
- C. Aharoni, D.L. Sparks, Kinetics of Soil Chemical Reactions - A
Theoretical Treatment, D.L. Sparks, D.L. Suarez, Eds., Rate
of Soil Chem. Process., Soil Sci. Soc. Am., Madison, WI, 1991,
pp. 1–18.
- X.S. Wang, Y. Qin, Equilibrium sorption isotherms for of Cu2+ on
rice bran, Process Biochem., 40 (2005) 677–680.
- C.I. Pearce, J.R. Lioyd, J.T. Guthrie, The removal of color from
textile wastewater using whole bacterial cells: a review, Dyes
Pigm., 58 (2003) 179–196.
- G. Akkaya, A. Ozer, Adsorption of acid red 274 (AR 274) on
Dicranella varia: determination of equilibrium and kinetic model
parameters, Process Biochem., 40 (2005) 3559–3568.
- S. Lagergren, Zur theorie der sogenannten adsorption geloster
stoffe, Kungliga Svenska Vetenskapsakademiens, Handlingar,
24 (1898) 1–39.
- Y.S. Ho, G. McKay, D.A.J. Wase, C.F. Foster, Study of the
sorption of divalent metal ions on to peat, Adsorpt. Sci. Technol.,
18 (2000) 639–650.
- W.J. Weber, J.C. Morris, Kinetics of adsorption on carbon from
solution, J. Sanit. Eng. Div. Am. Soc. Civ. Eng., 89 (1963) 31–60.
- K. Srinivasan, N. Balasubramanian, T.V. Ramakrishan, Studies
on chromium removal by rice husk carbon, Ind. J. Environ.
Health., 30 (1988) 376–387.
- M.N.M. Ismael, A. El Nemr, E.S.H. El Ashry, H. Abdel Hamid,
Removal of hexavalent chromium by cross-linking chitosan
and N,N'-methylene bis-acrylamide, Environ. Process., 7 (2020)
911–930.
- J. Zeldowitsch, Uber den mechanismus der katalytischen
oxidation von CO an MnO2, Acta Physicochim, URSS, 1 (1934)
364–449.
- S.H. Chien, W.R. Clayton, Application of Elovich equation to
the kinetics of phosphate release and sorption on soils, Soil Sci.
Soc. Am. J., 44 (1980) 265–268.
- D.L. Sparks, Kinetics of Reaction in Pure and Mixed Systems,
in: Soil Physical Chemistry, CRC Press, Boca Raton, 1986.
- A. El Nemr, Pomegranate husk as an adsorbent in the removal
of toxic chromium from wastewater, Chem. Ecol., 23 (2007)
409–425.