Proposal for Implementation of Extraction Mechanism of Raw Materials during Landfill Mining and Its Application in Alternative Fuel Production

Author:

Pitak Inna1ORCID,Denafas Gintaras1,Baltušnikas Arūnas1ORCID,Praspaliauskas Marius2ORCID,Lukošiūtė Stasė-Irena1

Affiliation:

1. Laboratory of Materials Research and Testing, Lithuanian Energy Institute, Breslaujos st. 3, LT-44403 Kaunas, Lithuania

2. Laboratory of Heat-Equipment Research and Testing, Lithuanian Energy Institute, Breslaujos st. 3, LT-44403 Kaunas, Lithuania

Abstract

New approaches to waste management and the demands of the circular economy have changed the management of landfills. Over time, the decomposition of buried waste primarily determines the amount of recyclable and combustible materials. This pilot study attempted to assess the feasibility of extracting and recovering energy-intensive raw materials from landfills by developing a waste extraction mechanism and creating a solid recovered fuel (SRF) production line for use as a replacement fuel in the cement industry. The proposed mechanism consisted of two stages. The first stage was recommended to be carried out on the landfill territory by screening out the fine fraction and extracting inert materials and bulky waste. The second stage should be on the mechanical biological treatment (MBT) plant’s territory by adding additional technological equipment to the MBT line. The productivity of the SRF production line was calculated and was 4.9 t/h. The mechanism proposed in the work was tested at the operating test site in Lithuania. The composition of Landfill Mined Residues (LMRs) was studied, and the energy potential of the studied part of the landfill was calculated, which was 196,700 GJ. It has been found that the SRF produced complies with the European Union (EU) standard and, according to its classification characteristics, belongs to class III and can be used as a replacement fuel in the clinker firing process. An environmental and economic efficiency assessment was conducted using SRF in the cement kiln. The calculation result showed that using 10% SRF as a replacement fuel for coal used in clinker firing at 2.51 t/h would save 1274 USD/h in coal costs. This use of SRF will emit 3.64 t/h CO2 and achieve a net savings of 1355 USD/h. The mechanism proposed in this work aimed at reducing waste in landfills by converting materials into energy resources will help achieve the circular economy’s goals.

Publisher

MDPI AG

Subject

Management, Monitoring, Policy and Law,Renewable Energy, Sustainability and the Environment,Geography, Planning and Development,Building and Construction

Reference73 articles.

1. (2017, November 08). EU Council Directive 1999/31/EC of 26 April 1999 on the Landfill of Waste. Available online: http://eur-lex.europa.eu/legal-content/EN/TXT/?uri=celex:31999L0031.

2. (2017, November 08). EC, Waste Policy Review-Environment-European Commission. Available online: http://ec.europa.eu/environment/waste/target_review.htm.

3. (2017, May 02). Eurelco, European Parliament Votes YES to Include ELFM in the EU Landfill Directive Eurelco. Available online: https://www.eurelco.org/single-post/2017/03/15/European-Parliament-votes-YES-toinclude-Enhanced-Landfill-Mining-in-the-EU-Landfill-Directive.

4. (2017, November 08). COST Mining the European Anthroposphere (MINEA). Available online: http://www.cost.eu/COST_Actions/ca/CA15115.

5. Experiencing Urban Mining in an Italian Municipality towards a Circular Economy vision;Ragazzi;Energy Procedia,2017

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