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Article

Innovative Technological Approach for the Cyclic Nutrients Adsorption by Post-Digestion Sewage Sludge-Based Ash Co-Formed with Some Nanostructural Additives under a Circular Economy Framework

1
Division of Nanocrystalline and Functional Materials and Sustainable Pro-Ecological Technologies, Institute of Engineering Materials and Biomaterials, Faculty of Mechanical Engineering, Silesian University of Technology, Konarskiego 18A, 44-100 Gliwice, Poland
2
Department of Chemical Engineering and Process Design, Faculty of Chemistry, Silesian University of Technology, ks. M. Strzody 7, 44-100 Gliwice, Poland
3
Institute of Water and Wastewater Engineering, Faculty of Energy and Environmental Engineering, Silesian University of Technology, Konarskiego 18, 44-100 Gliwice, Poland
4
Department of Power Engineering and Turbomachinery, Faculty of Energy and Environmental Engineering, Silesian University of Technology, Konarskiego 18, 44-100 Gliwice, Poland
5
Department of Applied Social Sciences, Faculty of Organization and Management, Silesian University of Technology, Roosevelta 26-28, 41-800 Zabrze, Poland
6
Sewage and Water Supply Ltd., Pod Lasem 62, 44-210 Rybnik, Poland
7
Department of Civil & Environmental Engineering, University of Nevada, Reno, NV 89557, USA
*
Author to whom correspondence should be addressed.
Int. J. Environ. Res. Public Health 2022, 19(17), 11119; https://doi.org/10.3390/ijerph191711119
Submission received: 18 July 2022 / Revised: 26 August 2022 / Accepted: 30 August 2022 / Published: 5 September 2022

Abstract

This paper presents a new, innovative technological approach, in line with Circular Economy principles, to the effective management of sludge generated during municipal wastewater treatment processes and subsequently used for biogas production. This approach allows for optimal, functional, and controlled cascade-type biotechnological thermal conversion of carbon compounds present in sewage sludge, later in solid digestate residues (after biogas production), and finally in the ash structure (after incineration, purposefully dosed nanostructural additives make the production of a useful solid product possible, especially for cyclic adsorption and slow release of nutrients (N, P, K) in the soil). The idea is generally targeted at achieving an innovative conversion cycle under a Circular Economy framework. In particular, it is based on an energy carrier (methane biogas) and direct energy production. The functionalized combustion by-products can be advantageous in agriculture. The use of ashes with nanostructural additives (halloysite, kaolinite) from combustion of sewage sludge after the anaerobic fermentation as an adsorbent of selected nutrients important in agriculture (Na+, K+, NO3, SO42−, PO43−, Cl) was verified at laboratory scale. The tests were carried out both for pure ash and for the ash derived from combustion with the purposeful addition of kaolinite or halloysite. The equilibrium conditions for nitrate, potassium, sodium, phosphate(V), sulphate(VI), and chloride ions from aqueous solutions with the use of the three adsorbent structures were determined. The obtained innovative results were interpreted theoretically with adsorption isotherm models (Langmuir, Freundlich, Temkin, Jovanović). The most spectacular and clearly favorable results related to the influence of nanostructural additives in the process of sludge combustion, and formation of sorption surfaces under high temperature conditions were identified in the case of sorption-based separation of phosphate(V) ions (an increase from 1.13% to 61.24% with the addition of kaolinite, and even up to 76.19% with addition of halloysite).
Keywords: innovative pro-ecological technology; wastewater treatment; post-digestion sewage sludge; biogas plant; adsorption; ash; halloysite; kaolinite; nutrients; slow release; agricultural fertilizers innovative pro-ecological technology; wastewater treatment; post-digestion sewage sludge; biogas plant; adsorption; ash; halloysite; kaolinite; nutrients; slow release; agricultural fertilizers

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MDPI and ACS Style

Sakiewicz, P.; Piotrowski, K.; Rajca, M.; Maj, I.; Kalisz, S.; Ober, J.; Karwot, J.; Pagilla, K.R. Innovative Technological Approach for the Cyclic Nutrients Adsorption by Post-Digestion Sewage Sludge-Based Ash Co-Formed with Some Nanostructural Additives under a Circular Economy Framework. Int. J. Environ. Res. Public Health 2022, 19, 11119. https://doi.org/10.3390/ijerph191711119

AMA Style

Sakiewicz P, Piotrowski K, Rajca M, Maj I, Kalisz S, Ober J, Karwot J, Pagilla KR. Innovative Technological Approach for the Cyclic Nutrients Adsorption by Post-Digestion Sewage Sludge-Based Ash Co-Formed with Some Nanostructural Additives under a Circular Economy Framework. International Journal of Environmental Research and Public Health. 2022; 19(17):11119. https://doi.org/10.3390/ijerph191711119

Chicago/Turabian Style

Sakiewicz, Piotr, Krzysztof Piotrowski, Mariola Rajca, Izabella Maj, Sylwester Kalisz, Józef Ober, Janusz Karwot, and Krishna R. Pagilla. 2022. "Innovative Technological Approach for the Cyclic Nutrients Adsorption by Post-Digestion Sewage Sludge-Based Ash Co-Formed with Some Nanostructural Additives under a Circular Economy Framework" International Journal of Environmental Research and Public Health 19, no. 17: 11119. https://doi.org/10.3390/ijerph191711119

APA Style

Sakiewicz, P., Piotrowski, K., Rajca, M., Maj, I., Kalisz, S., Ober, J., Karwot, J., & Pagilla, K. R. (2022). Innovative Technological Approach for the Cyclic Nutrients Adsorption by Post-Digestion Sewage Sludge-Based Ash Co-Formed with Some Nanostructural Additives under a Circular Economy Framework. International Journal of Environmental Research and Public Health, 19(17), 11119. https://doi.org/10.3390/ijerph191711119

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