References
- J.K. Raman, C.M. Alves, E. Gnansounou, A review on moringa
tree and vetiver grass – potential biorefinery feedstocks,
Bioresour. Technol., 249 (2017) 1044–1051.
- V.R. Pidatala, K. Li, D. Sarkar, R. Wusirika, R. Datta, Comparative
metabolic profiling of vetiver (chrysopogon zizanioides) and
maize (zea mays) under lead stress, Chemosphere, 193 (2018)
903–911.
- E.A. Ewetola, S.A. Babarinde, T. Omirin and D.O. Ojewole,
Farmers’ perception of the usefulness of vetiver grass for termite
control on Ogbomoso agricultural zone farmlands, southwestern
Nigeria, J. King Saud Univ. – Sci.,30 (2017) 214–222.
- R. Seroja, H. Effendi, S. Hariyadi, Tofu wastewater treatment
using vetiver grass (Vetiveria zizanioides) and zeliac, Appl. Water
Sci., 8 (2018) 1–6.
- E. Gnansounou, J.K. Raman, Environmental performances of
coproducts. application of claiming-based allocation models to
straw and vetiver biorefineries in an Indian context, Bioresour.
Technol., 262 (2018) 203–211.
- K. Subsamran, P. Mahakhan, K. Vichitphan, S. Vichitphan,
J. Sawaengkaew, Potential use of vetiver grass for cellulolytic
enzyme production and bioethanol production, Biocatal. Agric.
Biotechnol., 17 (2019) 261–268.
- H. Zhu, Z. Li, J. Yang, A novel composite hydrogel for adsorption
and photocatalytic degradation of bisphenol A by visible light
irradiation, Chem. Eng. J., 334 (2018) 1679–1690.
- Ü. Uras-Postma, M. Carrier, J. (Hansie) Knoetze, Vacuum
pyrolysis of agricultural wastes and adsorptive criteria description
of biochars governed by the presence of oxides, J. Anal.
Appl. Pyrolysis, 107 (2014) 123–132.
- K.F. Fu, Q.Y. Yue, B.Y. Gao, Y. Wang, Q. Li, Activated carbon
from tomato stem by chemical activation with FeCl2, Colloids
Surf., A, 529 (2017) 842–849.
- G.Z. Li, J.X. Li, W. Tan, H. Jin, H.X. Yang, J.H. Peng,
C.J. Barrow, M. Yang, H.B. Wang, W.R. Yang, Preparation and
characterization of the hydrogen storage activated carbon from
coffee shell by microwave irradiation and KOH activation,
Int. Biodeterior. Biodegrad., 113 (2016) 386–390.
- H. Laksaci, A. Khelifi, B. Belhamdi, M. Trari, Valorization of
coffee grounds into activated carbon using physic—chemical
activation by KOH/CO2, J. Environ. Chem. Eng., 5.5 (2017)
5061–5066.
- A. Bazan-Wozniak, P. Nowicki, R. Pietrzak, Production of new
activated bio-carbons by chemical activation of residue left
after supercritical extraction of hops, Environ. Res., 161 (2018)
456–463.
- T. Tay, S. Ucar, S. Karagöz, Preparation and characterization
of activated carbon from waste biomass, J. Hazard. Mater.,
165 (2009) 481–485.
- H. Dolas, O. Sahin, C. Saka, H. Demir, A new method on
producing high surface area activated carbon: the effect of salt
on the surface area and the pore size distribution of activated
carbon prepared from pistachio shell, Chem. Eng. J., 166 (2011)
191–197.
- X. Fang, G. Li, J. Li, H. Jin, J. Li, V. Jegatheesan, M. Yang,
Bamboo charcoal derived high-performance activated carbon
via microwave irradiation and KOH activation: application
as hydrogen storage and super-capacitor, Desal. Wat. Treat.,
96 (2017) 120–127.
- M. Danish, T. Ahmad, W.N.A.W. Nadhari, M. Ahmad,
W.A. Khanday, Z. Lou, Z. Pin, Optimization of banana trunkactivated
carbon production for methylene blue-contaminated
water treatment, Appl. Water Sci., 8 (2018) 1–11.
- S.J. Li, K.H. Han, J.X. Li, M. Li, C.M. Lu, Preparation and
characterization of super activated carbon produced from
gulfweed by KOH activation, Microporous Mesoporous Mater.,
243 (2017) 291–300.
- C. Saka, BET, TG–DTG, FT-IR, SEM, iodine number analysis and
preparation of activated carbon from acorn shell by chemical
activation with ZnCl2, J. Anal. Appl. Pyrolysis, 95 (2012) 21–24.
- W.Y. Ao, J. Fu, X. Mao, Q.H. Kang, C.M. Ran, Y. Liu, H.D.
Zhang, Z.P. Gao, J. Li, G.Q. Liu, J.J. Dai, Microwave assisted
preparation of activated carbon from biomass: a review,
Renewable Sustainable Energy Rev., 92 (2018) 958–979.
- W. Jiang, X.J. Xing, S. Li, X.W. Zhang, W.Q. Wang, Synthesis,
characterization and machine learning based performance prediction
of straw activated carbon, J. Cleaner Prod., 212 (2018)
1210–1223.
- Q.F. Yu, H.R. Zhao, H. Zhao, S.N. Sun, X. Ji, M. Li, Y.F. Wang,
Preparation of tobacco-stem activated carbon from using
response surface methodology and its application for water
vapor adsorption in solar drying system, Sol. Energy, 177 (2019)
324–336.
- Y.J. Meng, X.Z. Wang, Z.G. Wu, S.Q. Wang, T.M. Young,
Optimization of cellulose nanofibrils carbon aerogel fabrication
using response surface methodology, Eur. Polym. J., 73 (2015)
137–148.
- J.Q. Ren, D.B. Jia, Y.F. Zhuang, Determination of bisphenol-A
in plastic product using ultraviolet adsorption spectroscopy,
J. Jilin Inst. Chem. Technol., 24 (2007) 40–42.
- V. Montes, J.M. Hill, Activated carbon production: recycling
KOH to minimize waste, Mater. Lett., 220 (2018) 238–240.
- N.S. Sulaiman, R. Hashim, M.H.M. Amini, M. Danish,
O. Sulaiman,
Optimization of activated carbon preparation
from cassava stem using response surface methodology on
surface area and yield, J. Cleaner Prod., 198 (2018) 1422–1430.
- K.C. Bedin, A.C. Martins, A.L. Cazetta, O. Pezoti, V.C. Almeida,
KOH-activated carbon prepared from sucrose spherical carbon:
adsorption equilibrium, kinetic and thermodynamic studies for
methylene blue removal, Chem. Eng. J., 286 (2016) 476–484.
- C. Saka, Ö. Şahin, M.M. Küçük, Applications on agricultural
and forest waste adsorbents for the removal of lead (II) from
contaminated waters, Int. J. Environ. Sci. Technol., 9 (2012)
379–394.
- X.Y. Fang, M. Yang, J.X. Li, M. Xiang, K. Yang, H.B. Wang,
G.Z. Li, Preparation of bamboo activated carbon by microwave
radiation with water vapour activation and investigation of its
adsorption properties, Desal. Wat. Treat., 135 (2018) 351–361.
- Ö. Şahin, C. Saka, Preparation and characterization of activated
carbon from acorn shell by physical activation with H2O–CO2 in
two-step pretreatment, Bioresour. Technol., 136 (2013) 163–168.
- W.-T. Tsai, H.-C. Hsu, T.-Y. Su, K.-Y. Lin, C.-M. Lin, Adsorption
characteristics of bisphenol-A in aqueous solutions onto
hydrophobic zeolite, J. Colloid Interface Sci., 299 (2006) 513–519.
- L.H. Velazquez-Jimenez, J.A. Arcibar-Orozco, J.R. Rangel-Mendez, Overview of As(v) adsorption on Zr-functionalized
activated carbon for aqueous streams remediation, J. Environ.
Manage., 212 (2018) 121–130.
- X. Hu, H. Zhang, Z.R. Sun, Adsorption of low concentration
ceftazidime from aqueous solutions using impregnated
activated carbon promoted by iron, copper and aluminum,
Appl. Surf. Sci., 392 (2017) 332–341.
- I.W.A. Tan, A.L. Ahmad, B.H. Hameed, Adsorption isotherms,
kinetics, thermodynamics and desorption studies of 2,4,6-
trichlorophenol on oil palm empty fruit bunch-based activated
carbon, J. Hazard. Mater., 164 (2009) 473–482.
- M. Özdemir, Ö. Durmuş, Ö. Şahin, C. Saka, Removal of
methylene blue, methyl violet, rhodamine B, alizarin red, and
bromocresol green dyes from aqueous solutions on activated
cotton stalks, Desal. Wat. Treat., 57 (2016) 18038–18048.