References
- B.D. Guo, The Absorption and Degradations of Acetochlor in
Different Types of Soils, Master Dissertation, Fujian Agriculture
and Forestry University, 2008.
- Y. Li, The Effects of Biochar on Environmentai Behavior and
Bioavailability of Acetochlor in Soil, Ph. D Dissertation, Chinese
Academy of Agricultural Sciences, 2017.
- Z.Y. Wang, M.Y. Qiu, Y. Yang, K. Sun, Sorption of acetochlor
by biochars derived from wood dust and swine manure at
different pyrolytic temperatures, J. Agro-Environ. Sci., 35 (2016)
93–100.
- X.W. Li, C.H. Teng, Y.F. Yu, B. Tao, Impact of different additives
on the sorption and desorption behavior of acetochlor in soil,
J. Agro-Environ. Sci., 28 (2009) 696–701.
- L. Li, M. Wang, S. Chen, W. Zhao, Y. Zhao, X. Wang, Y. Zhang,
A urinary metabonomics analysis of long-term effect of
acetochlor exposure on rats by ultra-performance liquid
chromatography/mass spectrometry, Pestic. Biochem. Physiol.,
128 (2015) 82–88.
- E.J. Brcaux, Identification of the initial metabolites of acctochlor
in corn and soybean seedlings, J. Agric. Food Chem., 34 (1986)
884–888.
- J.E. Barbash, G.P. Thelin, D.W. Kolpin, Major herbicides in
groundwater, J. Environ. Qual., 30 (2001) 831–845.
- F. Bedmar, P.E. Daniel, J.L. Costa, D. Gimenez, Sorption
of acetochlor, S-metelachlor, and atrazinc in surface and
subsurface soil horizons of Argentina, Environ. Toxicol. Chem.,
30 (2011) 1990–1996.
- N. Veldhoen, C.C. Helbing, Detection of environmental
endocrine disruptor effects on gene expression in live Rana
catesbeiana tadpoles using a tail fin biopsy technique, Environ.
Toxicol. Chem., 20 (2001) 2704–2708.
- C. Xu, W.Q. Tu, M. Deng, Y.X. Jin, B. Lu, C.N. Zhang, C.M. Lin,
Y.M. Wu, W.P. Liu, Stereoselective induction of developmental
toxicity and immunotoxicity by acetochlor in the early life stage
of zebrafish, Chemosphere, 164 (2016) 618–626.
- Y.J. Feng, S.H. Xie, H. Tian, F. Pan, Y.P. Liang, D.Q. Zeng,
Adsorption and leaching behavior of metolachlor in different
soils Southwest China, J. Agric. Sci., 30 (2017) 2751–2755.
- C.E. Rose, R.H. Coupe, P.D. Capel, R.M.T. Webb, Holistic
assessment of occurrence and fate of metolachlor within
environmental compartments of agricultural watersheds,
Sci. Total Environ., 612 (2018) 708–719.
- M.C. Alavanja, M. Dosemeci, C. Samanic, Pesticides and
lung cancer risk in the agricultural health study cohort,
Am. J. Epidemiol., 160 (2004) 876–885.
- J.A. Rusiecki, L. Hou, W.J. Lee, A. Blair, M. Dosemeci,
J.H. Lubin, M. Bonner, C. Samanic, J.A. Hoppin, D.P. Sandler,
M.C.R. Alavanja, Cancer incidence among pesticide applicators
exposed to metolachlor in the agricultural health study, Int. J.
Cancer, 118 (2006) 3118–3123.
- L.T. Dai, Adsorption and Release Properties of Pretilachlor and
Acetochlor on Organic Bentonit, Ph.D Dissertation, Guangxi
University, 2014.
- L. Li, W.X. Xie, Y. Zang, L.M. Cai, X.M. Xu, Adsorption of
acetochlor in water by single and double chain quaternary
ammonium intercalated montmorillonite, Technol. Water
Treat., 44 (2018) 45–50.
- X. Yang, S.Q. Zhang, Q.D. Hou, Y.N. Wang, M.T. Ju, L. Liu, The
preparation of biochar and adsorption behavior of Mg-modified
biochar to pollutants, Acta Sci. Circum., 38 (2018) 4032–4043.
- Y. Zhang, S. Wang, Y.J. Wang, Adsorption behavior of acetochlor
in the acidification black soil, J. Northeast For. Univ., 41 (2013)
137–140.
- H. Li, Preparation of Alachlor and Acetochlor Sustained-Release
Preparations and Their Adsorption and Release Properties,
Ph.D Dissertation, Guangxi University, 2016.
- R. Otero, D. Esquivel, M.A. Ulibarri, C. Jiménez-Sanchidrián,
F.J. Romero-Salguero, J.M. Fernandez, Adsorption of the
herbicide S-metolachlor on periodic mesoporous organosilicas,
Chem. Eng. J., 228 (2013) 205–213.
- C.C. Ge, X. Guo, J.F. Li, J.H. Lv, S. Liu, H.X. Xu, Effects of ricestraw-
derived biochar on adsorbing and slow-releasing of
metolachlor, J. Ecol. Rural Environ., 32 (2016) 168–172.
- W. Franus, Characterization of X-type zeolite prepared from
coal fly ash, Pol. J. Environ. Stud., 21 (2012) 337–343.
- I. Külaots, R.H. Hurt, E.M. Suuberg, Size distribution of
unburned carbon in coal fly ash and its implications, Fuel,
83 (2004) 223–230.
- S.B. Wang, H.W. Wu, Environmental-benign utilisation of fly ash
as low-cost adsorbents, J. Hazard. Mater., 136 (2006) 482–501.
- Y. Yin, B.Y. Ma, Z. Zhang, K. Yu, Research situation of high
value utilization of coal ash, Mater. Res. Appl., 9 (2015) 158–161.
- W. Franus, M. Wdowin, M. Franus, Synthesis and
characterization of zeolites prepared from industrial fly ash,
Environ. Monit. Assess., 186 (2014) 5721–5729.
- W. Franus, M. Wiatros-Motyka, M. Wdowin, Coal fly ash as
a resource for rare earth elements, Environ. Sci. Pollut. Res.,
22 (2015) 9464–9474.
- L.T. Jia, Properties and modification of coal fly ash, Power
Gener. Technol., 1 (2017) 35–38.
- S.B. Wang, Q. Ma, Z.H. Zhu, Characteristics of coal fly ash and
adsorption application, Fuel, 87 (2008) 3469–3473.
- S.L. Peng, F.L. Wang, A.M. Gong, L. Yang, Experimental study
of fly ash on the mechanical properties of cement mortar, Water
Conservancy Sci. Tech. Econ., 19 (2013) 54–55.
- G.H. Pan, S.Q. Li, H.G. Qin, W. Sun, J.S. Zhang, X.T. Wang,
W.H. Huang, Y. Jiang, Study of frost resistance mechanism of
fly ash concrete, J. Build. Mater., 5 (2002) 37–41.
- S.Q. Chen, Analysis of application of fly ash as filling material
for railway embankment, J. Rail Eng. Soc., 20 (2003) 42–47.
- Z.Q. Hu, J.Z. Qi, J.T. Si, Physical and chemical properties of
reclaimed soil filled with fly ash, J. China Coal Soc., 27 (2002)
639–643.
- C.J. An, S.Q. Yang, G.H. Huang, S. Zhao, P. Zhang, Y. Yao,
Removal of sulfonated humic acid from aqueous phase by
modified coal fly ash waste: equilibrium and kinetic adsorption
studies, Fuel, 165 (2016) 264–271.
- X. Castillo, J. Pizarro, C. Ortiz, H. Cid, M. Flores, E.D. Canck,
P.V.D. Voort, A cheap mesoporous silica from fly ash as an
outstanding adsorbent for sulfate in water, Microporous
Mesoporous Mater., 272 (2018) 184–192.
- R.M. Novais, L.H. Buruberri, M.P. Seabra, J.A. Labrincha,
Novel porous fly-ash containing geopolymer monoliths for
lead adsorption from wastewaters, J. Hazard. Mater., 318 (2016)
631–640.
- F. Mushtaq, M. Zahid, I.A. Bhatti, S. Nasir, T. Hussain, Possible
applications of coal fly ash in wastewater treatment, J. Environ.
Manage., 240 (2019) 27–46.
- N. Boujelben, J. Bouzid, Z. Elouear, M. Feki, F. Jamoussi,
A. Montiel, Phosphorus removal from aqueous solution using
iron coated natural and engineered sorbents, J. Hazard. Mater.,
151 (2008) 103–110.
- R. Mallampati, S. Valiyaveettil, Apple peels-a versatile biomass
for water purification, ACS Appl. Mater. Interfaces, 5 (2013)
4443–4449.
- D.G. Grubb, M.S. Guimaraes, R. Valencia, Phosphate
immobilization using an acidic type fly ash, J. Hazard. Mater.,
76 (2000) 217–236.
- B.A. Shah, C.B. Mistry, A.V. Shah, Sequestration of Cu(II)
and Ni(II) from wastewater by synthesized zeolitic materials:
equilibrium kinetics and column dynamics, Chem. Eng. J.,
220 (2013) 172–184.
- J. Xie, W.N. Meng, D.Y. Wu, Z.J. Zhang, H.N. Kong, Removal of
organic pollutants by surfactant modified zeolite, comparison
between ionizable phenolic compounds and non-ionizable
organic compounds, J. Hazard. Mater., 231 (2012) 57–63.
- Q.Q. Wang, W.P. Liu, Adsorption of acetochlor and metolachlor
on Soils, Acta Pedol. Sin., 37 (2000) 96–101.
- L.H. Yang, The Adsorption–Desorption of Quinclorac on Some
Minerals and Soils and Its Mechanism, Ph.D Dissertation,
Hunan Agricultural University, 2014.
- M.R. Abukhadra, A. Adley, B.M. Bakery, Green fabrication
of bentonite/chitosan@ cobalt oxide composite (BE/CH@Co)
of enhanced adsorption and advanced oxidation removal of
Congo red dye and Cr(VI) from water, Int. J. Biol. Macromol.,
126 (2019) 402–413.
- H. Fu, Y. Yang, R. Zhu, J. Liu, M. Usman, Q. Chen, H. He,
Superior adsorption of phosphate by ferrihydrite-coated and
lanthanum-decorated magnetite, J. Colloid Interface Sci.,
530 (2018) 704–713.
- P.Y. Cao, Study on Degradation and Adsorption Behavior of
S-Metolachlor on Cotton and Soil, Ph.D Dissertation, China
Agricultural University, 2007.
- G.H. Xie, Y.F. Gao, J. Cheng, H. Guo, X.L. Chen, Study on the
thermodynamics of the soil adsorption to acetochlor, J. Anhui
Agric. Sci., 34 (2006) 2467–2468.
- J.S.J. Sindhunata, G.C. Deventer, G.C. Lukey, H. Xu, Effect
of curing temperature and silicate concentration on fly-ashbased
geopolymerization, Ind. Eng. Chem. Res., 45 (2006)
3559–3568.
- S. Wang, L. Li, Z.H. Zhu, Solid-state conversion of fly ash to
effective adsorbents for Cu removal from wastewater, J. Hazard.
Mater., 139 (2007) 254–259.
- N. Senesi, C. Testini, T.M. Miano, Interaction mechanisms
between humic acids of different origin of electron donor
herbicides-a comparative IR and ESR study, Org. Geochem.,
11 (1987) 25–30.
- K.V. Kumar, V. Ramamurthi, S. Sivanesan, Modeling the
mechanism involved during the sorption of methylene blue
onto fly ash, J. Colloid Interface Sci., 284 (2005) 14–21.
- A. Pandiarajan, R. Kamaraj, S. Vasudevan, S. Vasudevan,
OPAC orange peel activated carbon derived from waste
orange peel for the adsorption of chlorophenoxyacetic acid
herbicides from water: adsorption isotherm kinetic modelling
and thermodynamic studies, Bioresour. Technol., 261 (2018)
329–341.
- V.S. Mane, I.D. Mall, V.C. Srivastava, Kinetic and equilibrium
isotherm studies for the adsorptive removal of Brilliant Green
dye from aqueous solution by rice husk ash, J. Environ.
Manage., 84 (2007) 390–400.
- A. Aguayo-Villarreal, L.A. Ramírez-Montoya, V. Hemandez-
Montoya, A. BonillaPetriciolet, E.M. Ramírez-Lopez, Sorption
mechanism of anionic dyes on pecan nut shells (Carya
illinoinensis) using batch and continuous systems, Ind. Crop.
Prod., 48 (2013) 89–97.
- X. Querol, N. Moreno, J.C. Umana, R. Juan, S. Hernandez,
C. Fernandez-pereira, C. Ayora, M. Janssen, J. Garcia-Martinez,
A. Linares-Solano, D. Cazorla-Amoros, Application of zeolitic
material synthesized from fly ash to decontamination of waste
water and flue gas, J. Chem. Technol. Biotechnol., 77 (2002)
292–298.
- M.S. Tanyildizi, Modeling of adsorption isotherms and kinetics
of reactive dye from aqueous solution by peanut hull, Chem.
Eng. J., 168 (2011) 1234–1240.
- N. Fayoud, S. Tahiri, S.A. Younssi, A. Albizane, D. Gallart-
Mateu, M. Cervera, M. de la Guardia, Kinetic isotherm and
thermodynamic studies of the adsorption of methylene blue
dye onto agro-based cellulosic materials, Desal. Water Treat.,
57 (2016) 16611–16625.
- M.M. Dubinin, L.V. Radushkevich, The equation of the
characteristic curve of the activated charcoal, Proc. Acad. Sci.
Phys. Chem. Sect., 55 (1947) 331–337.
- F. Helfferich, Ion Exchange, McGraw-Hill Book Co., New York,
NY, 1962.
- B.A. Shah, A.V. Shah, H.D. Patel, Equilibrium and kinetic
studies of the adsorption of basic dye from aqueous solutions
by zeolite synthesized from bagasse fly ash, Environ. Prog.
Sustainable Energy, 30 (2011) 549–557.
- S.S. Tahir, N. Rauf, Removal of cationic dye from aqueous
solutions by adsorption on to bentonite clay, Chemosphere,
63 (2006) 1842–1848.
- G. Marbán, BET adsorption reaction model based on the pseudo
steady-state hypothesis for describing the kinetics of adsorption
in liquid phase, J. Colloid Interface Sci., 467 (2016) 170–179.
- T. Nguyena, S. Rahimi-Aghdamb, Z.P. Bažant, Sorption
isotherm restricted by multilayer hindered adsorption and its
relation to nanopore size distribution, J. Mech. Phys. Solids,
127 (2019) 111–124.
- R. Otero, J.M. Fernández, M.A. Ulibarri, R. Celis, F. Bruna,
Adsorption of non-ionic pesticide S-Metolachlor on layered
double hydroxides intercalated with dodecylsulfate and
tetradecanedioate anions, Appl. Clay Sci., 65 (2012) 72–79.
- K.G. Bhattacharyya, S.S. Gupta, Adsorption of a few heavy
metals on natural and modified kaolinite and montmorillonite:
a review, Adv. J. Colloid Interface Sci., 140 (2008) 114–131.
- B.V. Oepen, W. Kördel, W. Klein, Sorption of nonpolar and polar
compounds to soils: processes measurement and experience
with the applicability of the modified OECD-guideline,
Chemosphere, 22 (1991) 285–304.
- C.M. Mikulski, J. Fleming, D. Fleming, Chelates of tetracycline
with first row transition metal perchlorates, Inorg. Chim. Acta,
144 (1988) 9–16.
- G. Jeffrey, An Introduction to Hydrogen Bond, Oxford
University Press, New York, NY, 1997.
- P. Kulshrestha, F.R. Giese, D.S. Aga, Investigating the molecular
interactions of oxytetracycline in clay and organic matter:
insights on factors affecting its mobility in soil, Environ. Sci.
Technol., 38 (2004) 4097–4105.
- F. Musso, P. Mignon, P. Ugliengo, M. Sodupe, Cooperative
effects at water-crystalline silica interfaces strengthen surface
silanol hydrogen bonding. An ab initio molecular dynamics
study, Phys. Chem. Chem. Phys., 14 (2012) 10507–10514.
- N.P. Qafoku, U. Kukier, M.E. Sumner, W.P. Miller, D.E. Radcliffe,
Arsenate displacement from fly ash in amended soils, Water Air
Soil Pollut., 114 (1999) 185–198.
- Y.J. Dai, K.X. Zhang, X.B. Meng, J.J. Li, X.T. Guan, Q.Y. Sun,
Y. Sun, W.S. Wang, M. Lin, M. Liu, S.S. Yang, Y.J. Chen, F. Gao,
X. Zhang, Z.H. Liu, New use for spent coffee ground as an
adsorbent for tetracycline removal in water, Chemosphere,
215 (2019) 163–172.
- V. Pophristic, L. Goodman, Hyperconjugation not steric
repulsion leads to the staggered structure of ethane, Nature,
411 (2001) 565–568.
- H. Viernstein, P. Weiss-Greiler, P. Wolschann, Solubility
enhancement of low soluble biologically active compoundstemperature
and cosolvent dependent inclusion complexation,
Int. J. Pharm., 256 (2003) 85–94.