References
- H. Chen, S. Chen, X. Quan, H. Zhao, Y. Zhang, Sorption of polar
and nonpolar organic contaminants by oil-contaminated soil,
Chemosphere, 73 (2008) 1832–1837.
- A. Möller, A.P. Guimaraes, R. Gläser, R. Staudt, Uptake-curves
for the determination of diffusion coefficients and sorption
equilibria for n-alkanes on zeolites, Microporous Mesoporous
Mater., 125 (2009) 23–29.
- V.A. Oyanedel-Crever, M. Fuller, J.A. Smith, Simultaneous
sorption of benzene and heavy metals onto two organoclays, J.
Colloid Interface Sci., 309 (2007) 485–492.
- Cz. Rosik-Dulewska, T. Ciesielczuk, M. Krysiński, Organic
pollutants in groundwater in the former airbase, Arch. Environ.
Prot., 38 (2012) 27–34.
- Cz. Rosik-Dulewska, T. Ciesielczuk, Degradation of diesel oil
on municipal solid waste composts and sorbents in laboratory
experiment, Annu. Set Environ. Prot., 15 (2013) 766–779 (in
Polish).
- M. Włodarczyk-Makuła, Influence of selected organic
micropollutants on organisms, Civil Environ. Eng. Rep., 24
(2017) 83–97.
- M. Likon, M. Remskar, V. Ducman, F. Svegl, Populus seed fibers
as a natural source for production of oil super absorbents, J.
Environ. Manage., 114 (2013) 158–167.
- L. Dąbek, Application of sorption and advanced oxidation
processes for removal of phenols from aqueous solutions,
Annu. Set Environ. Prot., 17 (2015) 616–645 (in Polish).
- K. Kuśmierek, P. Idźkiewicz, A. Świątkowski, L. Dąbek,
Adsorptive removal of pentachlorophenol from aqueous
solutions using powdered eggshell, Arch. Environ. Prot., 43
(2017) 10–16.
- J. Kyzioł-Komosińska, Cz. Rosik-Dulewska, A. Dzieniszewska,
M. Pająk, Compost as biosorbent for removal of acid dyes from
the wastewater generated by the textile industry, Arch. Environ.
Prot., 37 (2011) 3–14.
- T. Ciesielczuk, Usage of Composts as Sorbents Removing
Petroleum Hydrocarbons, Studies and Monographs No. 539,
Opole University Press, Opole, 2017 (in Polish).
- Ch.Wong, T. Mcgowan, S.G. Bajwa, D.S. Bajwa, Impact of fiber
treatment on the oil absorption characteristics of plant fibers,
BioResources, 11 (2016) 6452–6463.
- A.M.A. Pintor, V.J.P. Vilar, C.M.S. Botelho, R.A.R. Boaventura,
Oil and grease removal from wastewaters: sorption treatment as
an alternative to state of the art technologies. A critical review,
Chem. Eng. J., 297 (2016) 229–255.
- E. Witka-Jeżewska, J. Hupka, P. Pieniążek, Investigation of
oleophilic nature of straw sorbent conditioned in water, Spill
Sci. Technol. Bull., 8 (2003) 561–564.
- T.R. Annunciado, T.H.D. Sydenstricker, S.C. Amico,
Experimental investigation of various vegetable fibers as
sorbent materials for oil spills, Mar. Pollut. Bull., 50 (2005)
1340–1346.
- R. Gąsiorowski, Sz. Rojewski, D. Wesołek, R. Wójcik, Influence
of natural fibres chemical modifications on flammability of
polyurethane composites, Przetwórstwo Tworzyw, 3 (2012)
189–193 (in Polish).
- A.M. Mohd Edeerozey, Hazizan Md Akil, A.B. Azhar, M.I.
Zainal Ariffin, Chemical modification of kenaf fibers, Mater.
Lett., 61 (2007) 2023–2025.
- Ch. Teas, S. Kalligeros, F. Zanikos, S. Stoumas, E. Lois, G.
Anastopoulos, Investigation of the effectiveness of absorbent
materials in oil spills clean up, Desalination, 140 (2001) 259–264.
- J. Wang, Y. Zheng, A. Wang, Superhydrophobic kapok fiber oilabsorbent:
preparation and high oil absorbency, Chem. Eng. J.,
213 (2012) 1–7.
- J. Gassan, A.K. Bledzki, Possibilities for improving the
mechanical properties of jute/epoxy composites by alkali
treatment of fibres, Compos. Sci. Technol., 59 (1999) 1303–1309.
- M. Półka, B. Kukfisz, P. Wysocki, P. Polakovic, M. Kvarcak,
Efficiency analysis of the sorbents used to adsorb the vapors
of petroleum products during rescue and firefighting actions,
Przemysł Chemiczny, 94 (2015) 331–335 (in Polish).
- C.P. Moura, C.B. Vidal, A.L. Barros, L.S. Costa, L.C.G.
Vasconcellos, F.S. Dias, R.F. Nascimento, Adsorption of BTX
(benzene, toluene, o-xylene, and p-xylene) from aqueous
solutions by modified periodic mesoporous organosilica, J.
Colloid Interface Sci., 363 (2011) 626–634.
- H. Nourmoradi, M. Nikaeen, M. Khiadani (Hajian), Removal
of benzene, toluene, ethylbenzene and xylene (BTEX) from
aqueous solutions by montmorillonite modified with nonionic
surfactant: equilibrium, kinetic and thermodynamic study,
Chem. Eng. J., 191 (2012) 341–348.