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2021 | OriginalPaper | Chapter

Optimized Functionalization of Industrial Waste for Oil Spill Remediation

Authors : Sebastiano Candamano, Angelo Mazza, Fortunato Crea, Sudip Chakraborty

Published in: Recent Advances in Environmental Science from the Euro-Mediterranean and Surrounding Regions (2nd Edition)

Publisher: Springer International Publishing

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Abstract

Oil spill and leakage can severely affect the environment, as many recent events testify. Many methods and materials have been developed and tested for oil spill cleanup, with the current research investigation focused on designing eco-friendly, inexpensive, and reliable adsorbents. In the present paper, two materials were tested. A 13X zeolite, produced using low-cost raw materials, and a zeolitic waste provided by a local plant. The selectivity between oil and water adsorption and the oil adsorption capacity were measured on the selected materials, before and after functionalization. The functionalization, via an esterification reaction using palmitic acid, has allowed attributing hydrophobic/oleophillic features to both materials. The water contact angles, after modification, resulted in a value equal to 136 ± 1° for the zeolitic waste and 128 ± 2° for the 13X zeolite. The treated materials segregated in oil region when spread in an oil/water dispersion, and the 13X exhibited an oil sorption capacity of 0.4 gr of oil/gr adsorbent and a selectivity in the oil/water absorption equal to 62%, whereas the zeolitic waste adsorbed 1 gr of oil/gr adsorbent with a selectivity of 73%. The better performance of the zeolitic waste can be ascribed to its heterogeneous nature, which allows the presence of additional mechanisms of clean up, such as oil stabilization. Furthermore, being currently landfilled, this potential application paves the way to its eco-friendly reuse.

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Literature
1.
go back to reference Cao, S., Dong, T., Xu, G., Wang, F.: Oil spill cleanup by hydrophobic natural fibers. J. Nat. Fibers 14(5), 727–735 (2017)CrossRef Cao, S., Dong, T., Xu, G., Wang, F.: Oil spill cleanup by hydrophobic natural fibers. J. Nat. Fibers 14(5), 727–735 (2017)CrossRef
2.
go back to reference Bandura, L., Woszuk, A., Kołodynska, D., Franus, W.: Application of mineral sorbents for removal of petroleum substances: a review. Minerals 7, 37 (2017)CrossRef Bandura, L., Woszuk, A., Kołodynska, D., Franus, W.: Application of mineral sorbents for removal of petroleum substances: a review. Minerals 7, 37 (2017)CrossRef
3.
go back to reference Frontera, P., Candamano, S., Macario, A., Crea, F., Scarpino, L.A., Antonucci, P.L.: Ferrierite zeolitic thin-layer on cordierite honeycomb support by clear solutions. Mater. Lett. 104, 72–75 (2013)CrossRef Frontera, P., Candamano, S., Macario, A., Crea, F., Scarpino, L.A., Antonucci, P.L.: Ferrierite zeolitic thin-layer on cordierite honeycomb support by clear solutions. Mater. Lett. 104, 72–75 (2013)CrossRef
4.
go back to reference Mastropietro, T.F., Drioli, E., Candamano, S., Poerio, T.: Crystallization and assembling of FAU nanozeolites on porous ceramic supports for zeolite membrane synthesis. Microporous Mesoporous Mater. 228(1), 141–146 (2016) Mastropietro, T.F., Drioli, E., Candamano, S., Poerio, T.: Crystallization and assembling of FAU nanozeolites on porous ceramic supports for zeolite membrane synthesis. Microporous Mesoporous Mater. 228(1), 141–146 (2016)
5.
go back to reference Yuan, X., Chung, T.C.M.: Novel Solution to Oil Spill Recovery: Using Thermodegradable Polyolefin Oil Superabsorbent Polymer (Oil–SAP) Energy Fuels, 26(8), 4896–4902 (2012) Yuan, X., Chung, T.C.M.: Novel Solution to Oil Spill Recovery: Using Thermodegradable Polyolefin Oil Superabsorbent Polymer (Oil–SAP) Energy Fuels, 26(8), 4896–4902 (2012)
6.
go back to reference Duong, H.T., Burford, R.P.: Effect of foam density, oil viscosity, and temperature on oil sorption behavior of polyurethane. J. Appl. Polym. Sci. 99(1), 360−367 (2006) Duong, H.T., Burford, R.P.: Effect of foam density, oil viscosity, and temperature on oil sorption behavior of polyurethane. J. Appl. Polym. Sci. 99(1), 360−367 (2006)
7.
go back to reference Likon, M., Saarela, J.: The Conversion of Paper Mill Sludge into Absorbent for Oil Spill Sanitation – The Life Cycle Macromolecular Symposia 320(1), 50–56 (2012) Likon, M., Saarela, J.: The Conversion of Paper Mill Sludge into Absorbent for Oil Spill Sanitation – The Life Cycle Macromolecular Symposia 320(1), 50–56 (2012)
8.
go back to reference Sakthivel, T., Reid, D.L., Goldstein, I., Hench, L., Seal, S.: Hydrophobic high surface area zeolites derived from fly ash for oil spill remediation. Environ. Sci. Technol. 47, 5843–5850 (2013)CrossRef Sakthivel, T., Reid, D.L., Goldstein, I., Hench, L., Seal, S.: Hydrophobic high surface area zeolites derived from fly ash for oil spill remediation. Environ. Sci. Technol. 47, 5843–5850 (2013)CrossRef
9.
go back to reference Candamano, S., Policicchio, A., Macario, A., Conte, G., Agostino, R.G., Frontera, P, Crea, F.: Co2 Adsorption investigation on an innovative nanocomposite material with hierarchical porosity. J. Nanosci. Nanotechnol. 19(6), 3223 (2019) Candamano, S., Policicchio, A., Macario, A., Conte, G., Agostino, R.G., Frontera, P, Crea, F.: Co2 Adsorption investigation on an innovative nanocomposite material with hierarchical porosity. J. Nanosci. Nanotechnol. 19(6), 3223 (2019)
10.
go back to reference Candamano, S., De Luca, P., Frontera, P., Crea, F.: Production of geopolymeric mortars containing forest biomass ash as partial replacement of metakaolin. Environments 4(4), 74 (2017)CrossRef Candamano, S., De Luca, P., Frontera, P., Crea, F.: Production of geopolymeric mortars containing forest biomass ash as partial replacement of metakaolin. Environments 4(4), 74 (2017)CrossRef
11.
go back to reference Boglaienko, D., Tansel, B.: Instantaneous stabilization of floating oils by surface application of natural granular materials (beach sand and limestone). Mar. Pollut. Bull. 91(1), 107–112 (2015)CrossRef Boglaienko, D., Tansel, B.: Instantaneous stabilization of floating oils by surface application of natural granular materials (beach sand and limestone). Mar. Pollut. Bull. 91(1), 107–112 (2015)CrossRef
Metadata
Title
Optimized Functionalization of Industrial Waste for Oil Spill Remediation
Authors
Sebastiano Candamano
Angelo Mazza
Fortunato Crea
Sudip Chakraborty
Copyright Year
2021
DOI
https://doi.org/10.1007/978-3-030-51210-1_73