Implementation of a new energy-efficient recycling technology for organic substances. (Q82596): Difference between revisions

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(‎Created claim: summary (P836): The project of the applicant concerns the implementation of its new intensive, energy-efficient recycling technology for organic substances from biodegradable waste using regenerated strains of bacteria from biofilters.The technology developed consists of two parallel composting processes.The first process consists of the recycling of organic waste in static piles which are used to build compost heaps inoculated with structural material from the...)
Property / summary
 
The project of the applicant concerns the implementation of its new intensive, energy-efficient recycling technology for organic substances from biodegradable waste using regenerated strains of bacteria from biofilters.The technology developed consists of two parallel composting processes.The first process consists of the recycling of organic waste in static piles which are used to build compost heaps inoculated with structural material from the parallel bio-filters process in bioreactors.The aim of the technology is to reduce to a minimum of phase I the mesophilic composting process in the static prism.A second parallel process is a composting of waste in a bioreactor, using a biofilter, in which the biofilter deposit bed by means of a process air flow from the aeration of a bioreactor under suitable conditions for the development of thermophilic bacteria is used in a process of static primism as bacterial strains thereby eliminating static rot in the mesophilic phase and accelerating the thermophilic phase.The implementation of the new technology will contribute to the European Union’s obligations under Directive 99/31, by improving the waste management service, which will result in:— completing the R3 recovery process in a shorter time period (significantly improved process), — getting a product in the form of compost with enhanced parameters, — making full use for the recovery of waste (waste free) waste, — minimising environmental risks (treatment of a higher amount of waste, elimination of rotting, reduction of greenhouse gas emissions, reduction of odour).The process described in the new technology has been declared as an invention in the Patent Office on 11.10.2016 No P-419057. (English)
Property / summary: The project of the applicant concerns the implementation of its new intensive, energy-efficient recycling technology for organic substances from biodegradable waste using regenerated strains of bacteria from biofilters.The technology developed consists of two parallel composting processes.The first process consists of the recycling of organic waste in static piles which are used to build compost heaps inoculated with structural material from the parallel bio-filters process in bioreactors.The aim of the technology is to reduce to a minimum of phase I the mesophilic composting process in the static prism.A second parallel process is a composting of waste in a bioreactor, using a biofilter, in which the biofilter deposit bed by means of a process air flow from the aeration of a bioreactor under suitable conditions for the development of thermophilic bacteria is used in a process of static primism as bacterial strains thereby eliminating static rot in the mesophilic phase and accelerating the thermophilic phase.The implementation of the new technology will contribute to the European Union’s obligations under Directive 99/31, by improving the waste management service, which will result in:— completing the R3 recovery process in a shorter time period (significantly improved process), — getting a product in the form of compost with enhanced parameters, — making full use for the recovery of waste (waste free) waste, — minimising environmental risks (treatment of a higher amount of waste, elimination of rotting, reduction of greenhouse gas emissions, reduction of odour).The process described in the new technology has been declared as an invention in the Patent Office on 11.10.2016 No P-419057. (English) / rank
 
Normal rank

Revision as of 09:39, 4 March 2020

Project in Poland financed by DG Regio
Language Label Description Also known as
English
Implementation of a new energy-efficient recycling technology for organic substances.
Project in Poland financed by DG Regio

    Statements

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    3,302,200.0 zloty
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    792,528.0 Euro
    13 January 2020
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    6,004,000.0 zloty
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    1,440,960.0 Euro
    13 January 2020
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    55.0 percent
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    1 March 2017
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    28 February 2018
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    "KOMPOSTECH" SPÓŁKA Z OGRANICZONA ODPOWIEDZIALNOSCIA
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    Projekt wnioskodawcy dotyczy wdrożenia własnej nowej intensywnej energooszczędnej technologii recyklingu substancji organicznych z odpadów ulegających biodegradacji przy wykorzystaniu zregenerowanych szczepów bakterii z biofiltrów. Opracowana technologia składa się z dwóch równoległych procesów kompostowania. Pierwszy proces polega na recyklingu odpadów organicznych w pryzmach statycznych otwartych, w których wykorzystuje się do budowy pryzm kompostowych zaszczepiony materiał strukturalny pochodzący z biofiltrów równoległego procesu zachodzącego w bioreaktorach. Celem technologii jest skrócenie do minimum fazy I mezofilnej procesu kompostowania w pryzmach statycznych. Drugi równoległy proces to kompostowanie odpadów w bioreaktorze zamkniętym z wykorzystaniem biofiltra, w którym złoże biofiltra poprzez przepływ powietrza poprocesowego z napowietrzania bioreaktora przy zachowaniu odpowiednich warunków do rozwoju bakterii termofilnych wykorzystane jest w procesie pryzm statycznych jako szczepy bakterii tym samym eliminując w pryzmach statycznych procesy gnilne w fazie mezofilnej i przyspieszając start fazy termofilnej. Wdrożenie nowej technologii przyczyni się do realizacji zobowiązań stawianych przez Unię Europejską, wynikających z Dyrektywy 99/31 WE, poprzez polepszenie usługi w zakresie gospodarowania odpadami, czego rezultatem będą: - przeprowadzenie procesu odzysku R3 w krótszym czasie (znacząco ulepszony proces), - uzyskanie produktu w postaci ziemi kompostowej o podwyższonych parametrach, - pełne wykorzystanie do odzysku odpadów biodegadowalnych (technologia bezodpadowa), - minimalizację zagrożeń środowiska naturalnego (przetwarzanie większej ilości odpadów, eliminacja procesów gnilnych, zmniejszenie emisji gazów cieplarnianych, zmniejszenie odoru). Proces opisany w nowej technologii został zgłoszony jako wynalazek do Urzędu Patentowego dnia 11.10.2016 nr P-419057 (Polish)
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    The project of the applicant concerns the implementation of its new intensive, energy-efficient recycling technology for organic substances from biodegradable waste using regenerated strains of bacteria from biofilters.The technology developed consists of two parallel composting processes.The first process consists of the recycling of organic waste in static piles which are used to build compost heaps inoculated with structural material from the parallel bio-filters process in bioreactors.The aim of the technology is to reduce to a minimum of phase I the mesophilic composting process in the static prism.A second parallel process is a composting of waste in a bioreactor, using a biofilter, in which the biofilter deposit bed by means of a process air flow from the aeration of a bioreactor under suitable conditions for the development of thermophilic bacteria is used in a process of static primism as bacterial strains thereby eliminating static rot in the mesophilic phase and accelerating the thermophilic phase.The implementation of the new technology will contribute to the European Union’s obligations under Directive 99/31, by improving the waste management service, which will result in:— completing the R3 recovery process in a shorter time period (significantly improved process), — getting a product in the form of compost with enhanced parameters, — making full use for the recovery of waste (waste free) waste, — minimising environmental risks (treatment of a higher amount of waste, elimination of rotting, reduction of greenhouse gas emissions, reduction of odour).The process described in the new technology has been declared as an invention in the Patent Office on 11.10.2016 No P-419057. (English)
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    Identifiers

    POIR.03.02.02-00-0703/16
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