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An Analysis of the Physicochemical and Energy Parameters of Briquettes Manufactured from Sewage Sludge Mixtures and Selected Organic Additives

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  • Sebastian Kujawiak

    (Department of Hydraulic and Sanitary Engineering, Poznań University of Life Sciences, Piątkowska 94A, 60-649 Poznan, Poland)

  • Małgorzata Makowska

    (Department of Hydraulic and Sanitary Engineering, Poznań University of Life Sciences, Piątkowska 94A, 60-649 Poznan, Poland)

  • Damian Janczak

    (Department of Biosystems Engineering, Poznań University of Life Sciences, Wojska Polskiego 50, 60-627 Poznan, Poland)

  • Wojciech Czekała

    (Department of Biosystems Engineering, Poznań University of Life Sciences, Wojska Polskiego 50, 60-627 Poznan, Poland)

  • Włodzimierz Krzesiński

    (Department of Vegetable Crops, Poznań University of Life Sciences, Dąbrowskiego 159, 60-594 Poznan, Poland)

  • Ariel Antonowicz

    (Institute of Computing Science, Poznan University of Technology, Piotrowo 2, 60-965 Poznan, Poland)

  • Karol Kupryaniuk

    (Department of Biosystems Engineering, Poznań University of Life Sciences, Wojska Polskiego 50, 60-627 Poznan, Poland)

Abstract

As a by-product of wastewater treatment, sewage sludge can be used for natural, agricultural, or energy purposes. One method of preparing sludge for management and use is solar drying. To intensify the drying process, natural additives can be used to alter the structure of the sludge and accelerate the evaporation of water. This research aimed to evaluate the influences of different organic additives in sewage sludge mixtures on the physicochemical and energy parameters of briquettes. This research was carried out without thermal boosting in a 4 × 2.5 × 2 m plastic tunnel. The tunnel was equipped with three drying stations and control and measuring equipment. In two test series, sludge additives in the form of straw and lignocellulosic materials, sawdust, bark, woodchips, and walnut shells, were used. Briquettes were made from the resulting mixtures and then subjected to physical and chemical analyses. This research showed high variability in the contents of trace elements, nitrogen, and sulphur in relation to an increase in the amount of sludge in the briquettes, which, for the briquettes made from sewage sludge, was nearly twice as high as for the briquettes made from the mixtures. The results of the flue gas analysis for the briquettes with sawdust and wood chip additives were very similar. The briquettes made from sewage sludge with lignocellulosic materials (bark and wood chips) had fuel properties similar to woody biomass, with a calorific value and heat of combustion of 15–16 MJ/kg. Fibrous additives (straw) significantly increased the strength parameters of the briquettes, by more than 50% of the value. The compositions and properties of the mixtures affected the following briquetting parameters: temperature and compressive force. The briquettes made from sewage sludge and additives can be classified according to ISO 21640 as SRFs (solid recovered fuels). In most of the results, the net calorific value (NCV) was 3 to 4; the chlorine content (CL) was 2 to 1; and the mercury content (Hg) was 1. The sewage sludge mixtures facilitated the agricultural and energy use of the briquettes.

Suggested Citation

  • Sebastian Kujawiak & Małgorzata Makowska & Damian Janczak & Wojciech Czekała & Włodzimierz Krzesiński & Ariel Antonowicz & Karol Kupryaniuk, 2024. "An Analysis of the Physicochemical and Energy Parameters of Briquettes Manufactured from Sewage Sludge Mixtures and Selected Organic Additives," Energies, MDPI, vol. 17(18), pages 1-12, September.
  • Handle: RePEc:gam:jeners:v:17:y:2024:i:18:p:4573-:d:1476666
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    Citations

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    Cited by:

    1. Asri Peni Wulandari & Nia Rossiana & Farrel Radhysa Muhammad Zahdi & Renasya Nuraulia & Reni Nur’anifah & Chairanisa Intan Kartika & Lulu Aulia Rahmah & Joko Kusmoro & Madihah & Yusnaidar, 2024. "Formulation and Characterization of Bio-Briquettes and Bio-Pellets from Ramie ( Boehmeria nivea ) Biomass as Renewable Fuel," Sustainability, MDPI, vol. 16(24), pages 1-13, December.

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