PL407915A1 - Method for drying, preferably the sewage sludge, and producing biofuel and organic fertilizers from them, and the device for the utilization of this method - Google Patents

Method for drying, preferably the sewage sludge, and producing biofuel and organic fertilizers from them, and the device for the utilization of this method

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Publication number
PL407915A1
PL407915A1 PL407915A PL40791514A PL407915A1 PL 407915 A1 PL407915 A1 PL 407915A1 PL 407915 A PL407915 A PL 407915A PL 40791514 A PL40791514 A PL 40791514A PL 407915 A1 PL407915 A1 PL 407915A1
Authority
PL
Poland
Prior art keywords
heat
sludge
drying
heat exchanger
granulate
Prior art date
Application number
PL407915A
Other languages
Polish (pl)
Other versions
PL230712B1 (en
Inventor
Janusz Moszczański
Jerzy Muszyński
Zbigniew Bukowski
Original Assignee
Granipol Construction
Priority date (The priority date is an assumption and is not a legal conclusion. Google has not performed a legal analysis and makes no representation as to the accuracy of the date listed.)
Filing date
Publication date
Application filed by Granipol Construction filed Critical Granipol Construction
Priority to PL407915A priority Critical patent/PL230712B1/en
Publication of PL407915A1 publication Critical patent/PL407915A1/en
Publication of PL230712B1 publication Critical patent/PL230712B1/en

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  • Fertilizers (AREA)
  • Treatment Of Sludge (AREA)
  • Solid Fuels And Fuel-Associated Substances (AREA)

Abstract

Przedmiotem wynalazku jest sposób suszenia zwłaszcza osadów ściekowych, wytwarzania z nich biopaliwa i nawozów organicznych za pomocą obróbki cieplnej oraz urządzenie do stosowania tego sposobu. Sposób charakteryzuje się tym, że granulowany termoodporny materiał całkowicie oddziela się od wysuszonego osadu ze ścieków komunalnych i ponownie kieruje się do ogrzania w wymienniku ciepła, a wysuszony osad poddaje się zwęgleniu w reaktorze w temperaturze powyżej 300°C w celu uzyskania biowęgla. Urządzenie do suszenia, zwłaszcza osadów ściekowych, wytwarzania z nich biopaliwa i nawozów organicznych charakteryzuje się tym, że instalację suszącą (1) stanowi wymiennik ciepła (2) do podgrzewania termoodpornego granulatu, ogrzewanego gorącymi spalinami z pieca (3), do zgazowania paliwa stałego, który jest połączony z piecem (3) poprzez kanał grzewczy (15, 16), przy czym wymiennik ciepła (2) granulatu poprzez zasobnik (4) i podajnik (8) połączony jest z mieszalnikiem (6), w którym mieszany jest gorący termoodporny granulat z mokrym osadem ściekowym, podawanym do mieszalnika (6) z urządzenia zasypowego (5), tak przygotowana mieszanina po wstępnym odparowaniu i odprowadzeniu pary do głównego wymiennika ciepła (9) jest dostarczana i suszona w reaktorze suszącym (12), połączonym z separatorem (14), służącym do oddzielenia suchych składników osadów od termoodpornego granulatu, przy czym za pomocą dozownika (13) część osadów jest transportowana do reaktora (18) do zwęglania osadów i wytworzenia biowęgla, a pozostała część suchego osadu jest wykorzystana w urządzeniu uzdatniającym (19) do produkcji nawozów organicznych, a termoodporny granulat jest transportowany podajnikiem (20) do zbiornika zasypowego (21) wymiennika ciepła (2) granulatu.The subject of the invention is a method for drying, in particular sewage sludge, the production of biofuels and organic fertilizers from them by heat treatment, and a device for using this method. The method is characterized in that the granular heat-resistant material is completely separated from the dried sludge from municipal wastewater and again directed to heat in a heat exchanger, and the dried sludge is subjected to carbonization in the reactor at a temperature above 300 ° C to obtain biochar. The device for drying, especially sewage sludge, the production of biofuel and organic fertilizers from them is characterized by the fact that the drying installation (1) is a heat exchanger (2) for heating heat-resistant granules, heated with hot exhaust gases from the furnace (3), for gasification of solid fuel, which is connected to the furnace (3) through a heating channel (15, 16), the heat exchanger (2) of the granulate through the reservoir (4) and the feeder (8) is connected to the mixer (6) in which hot heat-resistant granulate is mixed with wet sewage sludge fed to the mixer (6) from the charging device (5), the mixture prepared after initial evaporation and evacuation to the main heat exchanger (9) is supplied and dried in a drying reactor (12) connected to the separator (14 ), used to separate dry sludge components from heat-resistant granules, with the help of the dispenser (13) some of the sludge is transported to reactor (18) to carbonize the sludge and produce biochar, and the remaining part of the dry sludge is used in the treatment device (19) for the production of organic fertilizers, and the heat-resistant granulate is transported by the feeder (20) to the hopper (21) of the heat exchanger (2) granulate .

PL407915A 2014-04-15 2014-04-15 Method for drying, preferably the sewage sludge, and producing biofuel and organic fertilizers from them, and the device for the utilization of this method PL230712B1 (en)

Priority Applications (1)

Application Number Priority Date Filing Date Title
PL407915A PL230712B1 (en) 2014-04-15 2014-04-15 Method for drying, preferably the sewage sludge, and producing biofuel and organic fertilizers from them, and the device for the utilization of this method

Applications Claiming Priority (1)

Application Number Priority Date Filing Date Title
PL407915A PL230712B1 (en) 2014-04-15 2014-04-15 Method for drying, preferably the sewage sludge, and producing biofuel and organic fertilizers from them, and the device for the utilization of this method

Publications (2)

Publication Number Publication Date
PL407915A1 true PL407915A1 (en) 2015-10-26
PL230712B1 PL230712B1 (en) 2018-11-30

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Family Applications (1)

Application Number Title Priority Date Filing Date
PL407915A PL230712B1 (en) 2014-04-15 2014-04-15 Method for drying, preferably the sewage sludge, and producing biofuel and organic fertilizers from them, and the device for the utilization of this method

Country Status (1)

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PL (1) PL230712B1 (en)

Also Published As

Publication number Publication date
PL230712B1 (en) 2018-11-30

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