PL410013A1 - Multi-component mineral fertilizer with prolonged action containing a core from mineral components and method for producing the multi-component mineral fertilizer with prolonged action containing a core from mineral components - Google Patents

Multi-component mineral fertilizer with prolonged action containing a core from mineral components and method for producing the multi-component mineral fertilizer with prolonged action containing a core from mineral components

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Publication number
PL410013A1
PL410013A1 PL410013A PL41001314A PL410013A1 PL 410013 A1 PL410013 A1 PL 410013A1 PL 410013 A PL410013 A PL 410013A PL 41001314 A PL41001314 A PL 41001314A PL 410013 A1 PL410013 A1 PL 410013A1
Authority
PL
Poland
Prior art keywords
fertilizer
butylene
core
polymer layer
mineral
Prior art date
Application number
PL410013A
Other languages
Polish (pl)
Other versions
PL228404B1 (en
Inventor
Krzysztof Lubkowski
Aleksandra Smorowska
Agnieszka Kozłowska
Agnieszka Romanowska-Osuch
Barbara Grzmil
Artur Bartkowiak
Original Assignee
Zachodniopomorski Uniwersytet Technologiczny W Szczecinie
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 Zachodniopomorski Uniwersytet Technologiczny W Szczecinie filed Critical Zachodniopomorski Uniwersytet Technologiczny W Szczecinie
Priority to PL410013A priority Critical patent/PL228404B1/en
Publication of PL410013A1 publication Critical patent/PL410013A1/en
Publication of PL228404B1 publication Critical patent/PL228404B1/en

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  • Fertilizers (AREA)

Abstract

Mineralny nawóz wieloskładnikowy, w którym powłokę stanowi biodegradowalny, nierozpuszczalny w wodzie kopoliester polibursztynianu butylenowego i estru butylenowego kwasu linolowego, w którym zawartość segmentów sztywnych, tworzonych przez polibursztynian butylenowy, wynosi od 40 do 80% mas., a zawartość segmentów giętkich, pochodzących od estru butylenowego kwasu linolowego wynosi od 20 do 60% mas. Wynalazek charakteryzuje się tym, że warstwa polimerowa zawiera dodecylosiarczan sodu i ma grubość od 0,50 do 1,48 mm, co odpowiada stosunkowi masowemu warstwy polimerowej do całkowitej masy nawozu od 0,22 do 0,75. Warstwa polimerowa stanowi minimum 17,8% całkowitej masy otrzymanego nawozu. Sposób wytwarzania mineralnego nawozu wieloskładnikowego, charakteryzuje się tym, że rdzeń powleka się dyspersją wodną kopoliestru polibursztynianu butylenowego i estru butylenowego kwasu linolowego z dodatkiem dodecylosiarczanu sodu jako emulgatora. Rdzeń powleka się do uzyskania warstwy polimerowej o grubości od 0,50 do 1,48 mm, co odpowiada stosunkowi masowemu warstwy polimerowej do całkowitej masy nawozu od 0,22 do 0,75, a utworzona warstwa polimerowa stanowi minimum 17,8% całkowitej masy otrzymanego nawozu. Materiał rdzenia powleka się dyspersją wodną zawierającą od 14 do 28% mas. kopoliestru polibursztynianu butylenowego i estru butylenowego kwasu linolowego oraz zawierającą od 6,5 do 14% mas. dodecylosiarczanu sodu.Mineral compound fertilizer in which the coating is a biodegradable, water-insoluble copolyester of butylene polysuccinate and linoleic acid butylene ester, in which the content of rigid segments formed by butylene polysuccinate is from 40 to 80% by mass, and the content of flexible segments derived from the ester butylene linoleic acid ranges from 20 to 60% by mass The invention is characterized in that the polymer layer contains sodium dodecyl sulfate and has a thickness of 0.50 to 1.48 mm, which corresponds to the mass ratio of the polymer layer to the total weight of the fertilizer from 0.22 to 0.75. The polymer layer constitutes a minimum of 17.8% of the total weight of the fertilizer obtained. The method of producing mineral compound fertilizer is characterized in that the core is coated with an aqueous dispersion of butylene polysuccinate copolyester and linoleic acid butylene ester with the addition of sodium dodecyl sulfate as an emulsifier. The core is coated to obtain a polymer layer 0.50 to 1.48 mm thick, which corresponds to the mass ratio of the polymer layer to the total weight of the fertilizer from 0.22 to 0.75, and the formed polymer layer accounts for a minimum of 17.8% of the total weight fertilizer received. The core material is coated with an aqueous dispersion containing from 14 to 28% by weight. copolyester butylene polysuccinate and butylene ester linoleic acid and containing from 6.5 to 14% by mass sodium dodecyl sulfate.

PL410013A 2014-11-05 2014-11-05 Multi-component mineral fertilizer with prolonged action containing a core from mineral components and method for producing the multi-component mineral fertilizer with prolonged action containing a core from mineral components PL228404B1 (en)

Priority Applications (1)

Application Number Priority Date Filing Date Title
PL410013A PL228404B1 (en) 2014-11-05 2014-11-05 Multi-component mineral fertilizer with prolonged action containing a core from mineral components and method for producing the multi-component mineral fertilizer with prolonged action containing a core from mineral components

Applications Claiming Priority (1)

Application Number Priority Date Filing Date Title
PL410013A PL228404B1 (en) 2014-11-05 2014-11-05 Multi-component mineral fertilizer with prolonged action containing a core from mineral components and method for producing the multi-component mineral fertilizer with prolonged action containing a core from mineral components

Publications (2)

Publication Number Publication Date
PL410013A1 true PL410013A1 (en) 2016-05-09
PL228404B1 PL228404B1 (en) 2018-03-30

Family

ID=55910529

Family Applications (1)

Application Number Title Priority Date Filing Date
PL410013A PL228404B1 (en) 2014-11-05 2014-11-05 Multi-component mineral fertilizer with prolonged action containing a core from mineral components and method for producing the multi-component mineral fertilizer with prolonged action containing a core from mineral components

Country Status (1)

Country Link
PL (1) PL228404B1 (en)

Also Published As

Publication number Publication date
PL228404B1 (en) 2018-03-30

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