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[112960] Artykuł:

The Biological Drying of Municipal Waste in an Industrial Reactor—A Case Study

Czasopismo: Energies   Tom: 15, Zeszyt: 3, Strony: 1-9
ISSN:  1996-1073
Opublikowano: Styczeń 2022
 
  Autorzy / Redaktorzy / Twórcy
Imię i nazwisko Wydział Katedra Do oświadczenia
nr 3
Grupa
przynależności
Dyscyplina
naukowa
Procent
udziału
Liczba
punktów
do oceny pracownika
Liczba
punktów wg
kryteriów ewaluacji
Jolanta Latosińska orcid logo WiŚGiEKatedra Geotechniki, Geomatyki i Gospodarki Odpadami*Takzaliczony do "N"Inżynieria środowiska, górnictwo i energetyka80101.82140.00  
Maria Żygadło orcid logo WiŚGiEKatedra Geotechniki, Geomatyki i Gospodarki Odpadami*Niespoza "N" jednostkiInżynieria środowiska, górnictwo i energetyka2025.45.00  
Marlena Dębicka WiŚGiEKatedra Geotechniki, Geomatyki i Gospodarki Odpadami*Niespoza "N" jednostkiInżynieria środowiska, górnictwo i energetyka1012.73.00  

Grupa MNiSW:  Publikacja w czasopismach wymienionych w wykazie ministra MNiSzW (część A)
Punkty MNiSW: 140


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Keywords:

municipal solid waste  mechanical-biological treatment  biodrying  moisture controlling  net heating value controlling  RDFSRF 



Abstract:

One of the methods of municipal solid waste (MSW) treatment is biodrying. The literature describes mainly the results obtained in a laboratory- and a pilot-scale reactor. The manuscript presents the results of MSW treatment in a full-scale bio-drying reactor (150 m3). The reactor is operated in one of the Polish installations specializing in mechanical-biological treatment (MBT). During the 14 day period of biodrying in the reactor, the parameters of MSW such as the moisture, temperature, loss on ignition (LOI), and net heating value (NHV) were examined. The temperature of the air in the reactor was also examined. The research also included changes in the above-mentioned parameters of MSW located in three parts of the reactor: the front, middle, and back. The test results showed that the moisture content of the waste decreased from the initial level of 55% to the level of 30%. This was accompanied by an increase in the NHV from 6.3 MJ kg−1 to 9.6 MJ kg−1. At the same time, the LOI decreased from 68% d.m. to 45% d.m. The LOI decrease is not favorable from the point of view of using MSW as refuse-derived fuel (RDF), as was expected in the final usage stage. The results have application value as the plant operator, having at their disposal the controlling of the reactor’s ventilation and the temperature inside the reactor, should select the speed of the moisture removal from MSW at such a level as to minimize the LOI decrease.