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Wyszukujesz frazę "water treatment sludge" wg kryterium: Temat


Wyświetlanie 1-2 z 2
Tytuł:
Usuwanie fosforanów z wykorzystaniem osadów potechnologicznych pochodzących ze stacji uzdatniania wody
Removal of Phosphates with Post-technological Sludge from Water Treatment Plant
Autorzy:
Totczyk, G.
Klugiewicz, I.
Pasela, R.
Górski, Ł.
Powiązania:
https://bibliotekanauki.pl/articles/1818613.pdf
Data publikacji:
2015
Wydawca:
Politechnika Koszalińska. Wydawnictwo Uczelniane
Tematy:
osady z uzdatniania wody
osady pokoagulacyjne zawierające glin
defosfatacja
TZB
oczyszczalnia ścieków
water processing sludge
alumina water processing sludge
dephosphatation
RBC
sewage treatment plant
Opis:
With the treatment of water, especially surface waters, there is produced a high amount of sewage and sludge. They make up a serious ecology problem that due to a high volume and the content of sludge of iron or aluminium oxide-hydroxide or, pollution which occur in the intaken water (mineral and organic substances, algae, protozoa and bacteria) as well as the chemicals added. The environmental protection requires limiting materials as well as it makes you search for effective waste management problem-solving methods. The waste generated at present during water treatment most often undergo dehydration and drying and then they are deposited at the landfill site. The currently binding environmental protection law makes you look for the possibilities of the use of sludge as recycled materials, e.g. in brick factories, cement factories or with sewage treatment. Sludge containing aluminium or iron can be used e.g. in the process of municipal sewage treatment. The application of sludge containing aluminium for dephosphatation has the advantage of protecting the system from secondary release of precipitated phosphates in the environment deprived of dissolved oxygen. The possibilities of sludge application to remove phosphates differ, depend not only on the sludge characteristics but also on the sewage treatment process. The article demonstrates the results of research into using sludge derived from water treatment station in Lubicz to remove phosphates from sewage. At present the sludge after sedimentation and mechanical dehydration with the filtration press finally reaches the municipal landfill site. The sludge, applied for research, concentrated in settling vessels, is a mixture of post-coagulation sludge and washings from anthracite-sand and carbon filters. Its hydration accounting for 98,7% shows a high colour, above 80 mg Pt/dm3, it contains about 2,6 g/dm3 of aluminium as well as organic compounds expressed with BOD5 value equal 170 mg O2/dm3. The sludge shows a high COD of 3990 mg O2/dm3, and organic substance – for 31,6% of dry weight. The study of effectiveness of the removal of phosphates was made with the vessel test method. The sludge was dispensed at a changing volume from 0,5 to 100 cm3 per 1 dm3 of prepared water and then sewage. Both in water and in sewage there was recorded a 90% removal of phosphates by applying 80 cm3 of sludge per 1 dm3 of the sample. Additionally there was investigated the effect of dispensed sludge on the effectiveness of sewage treatment with the model of the treatment plant with rotating biological contactors. Applying the rate of 40 cm3 of sludge per 1 dm3 produced 96,0% elimination of COD, 97,7% removal of organic compounds characterised with the values of COD and BOD5 as well as 100% removal of phosphates. Finally it was found that it is possible to use the sludge to remove phosphates from sludge. During dephosphatation there was reported no use-up of the natural alkalinity of sewage. Sludge dispensing did not result in a decrease in the effectiveness of sewage treatment with the method of rotating biological contactors. The research is preliminary in nature and it needs to be continued.
Źródło:
Rocznik Ochrona Środowiska; 2015, Tom 17, cz. 2; 1660-1673
1506-218X
Pojawia się w:
Rocznik Ochrona Środowiska
Dostawca treści:
Biblioteka Nauki
Artykuł
Tytuł:
Zrównoważone gospodarowanie ściekami na przykładzie obszarów wiejskich
Sustainable Sewage Management in Rural Areas
Autorzy:
Obarska-Pempkowiak, H.
Kołecka, K.
Gajewska, M.
Wojciechowska, E.
Ostojski, A.
Powiązania:
https://bibliotekanauki.pl/articles/1818174.pdf
Data publikacji:
2015
Wydawca:
Politechnika Koszalińska. Wydawnictwo Uczelniane
Tematy:
oczyszczanie ścieków
oczyszczalnie hydrofitowe
gospodarka wodno-ściekowa
sanitacja
zagospodarowanie osadów ściekowych
wastewater treatment
constructed wetlands
water and wastewater management
sanitation
sewage sludge management
Opis:
The Baltic Sea is highly susceptible to eutrophication. Among the nine countries located in the Baltic Sea catchment area Poland discharges the biggest load of nitrogen and phosphorus. Although in recent years this load has been significantly reduced, however it is still too high. No sustainable municipal management results in the decreasing water quality of the Baltic Sea contributing to the sea eutrophication. The implementation of the National Programme for Development of Sewage caused a number of activities related to the construction and modernization of existing wastewater treatment plants. Although the number of wastewater treatment plants has been constantly increasing, still a number of households do not have the possibility to connect to the municipal wastewater treatment plant, mainly for economic reasons. Although in Poland there is 3157 municipal wastewater treatment plants (the most in Central and Eastern Europe), only 64% of the population is connected to them. It is estimated that 7.64 million people do not have the possibility of connection to municipal wastewater treatment plants. One of the solutions to wastewater management, especially in non-urbanized areas, are on-site wastewater treatment plants, for example treatment wetland systems. These technologies provide a sustainable solution of sewage and sludge management, since they can be used not only for treatment of wastewater, but also for dewatering and stabilization of produced sewage sludge. The article presents the results of research on local constructed wetlands for biological wastewater treatment (from 15 to 750 inhabitants) located in Darżlubie, Wieszyno, Wiklino, Sarbsk and Schodno as well as individual treatment wetlands representing 9 on-site wastewater treatment plants built in three different configurations in the municipality of Stężyca. There are also results of research from sludge treatment reed beds used for dewatering and stabilization of sewage sludge from municipal wastewater treatment plants located in Denmark (Helsinge, Rudkobing, Nakskov, Vallo) and in Poland (Gniewino). Based on studies related to the latest examples of wastewater and sewage sludge management using treatment wetlands it has been shown that this method is a good example of ecological engineering. Local treatment wetland systems can be used as the second stage of wastewater treatment up to 3500 residents. With proper operation of primary tanks, these systems are characterized by high treatment efficiency. Treatment wetland systems can work as on-site wastewater treatment plants. The highest efficiency of pollutant removal was observed in the hybrid systems. Another facilities, constructed as reed beds or basins, are applied to effective dewatering and stabilization of sewage sludge. These facilities offer a sustainable solution of sludge management in local conditions.
Źródło:
Rocznik Ochrona Środowiska; 2015, Tom 17, cz. 1; 585-602
1506-218X
Pojawia się w:
Rocznik Ochrona Środowiska
Dostawca treści:
Biblioteka Nauki
Artykuł
    Wyświetlanie 1-2 z 2

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