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Number of results: 8
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Abstract

Most often sewage treatment and sludge disposal are handled as two separate technological parts of treatment plants. Attempts are made to change the practice. Keeping the standards of treated sewage is the primary objective, and sewage sludge is a by-product which has to he get rid of. The environmental consequences of various procedures of sludge disposal are rarely considered. On the other hand, incorporation of sludge handling procedures in the processes of sewage treatment can result in cost savings and be environmentally friendly. In the presented paper, suggestions arc given on possibilities of closer integration of sewage and sludge treatment, based on experiments. Research aimed at sewage sludge quantity minimization and quality upgrading, recovery of phosphorous and efficient nitrogen removal. Appearing occasionally scum floating over biological sewage treatment units was shown to be considered as an integrated part or sewage treatment and sludge handling at EBNRP's.
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Authors and Affiliations

Jan Suschka
Eligiusz Kowalski
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Abstract

The distribution of heavy metals in the bonom sediments has been determined, It has been shown that they are spaciously differentiated. The differentiation is a result of water movement, eutroficat ion, bioaccurnulation and anthropoprcsion processes. As a result of specific water movement the area of intensity of the heavy metals accumulation was created. This area (about 150 ha) is located in the northwest part of the reservoir. The maximal concentrations of heavy metals for this region are: for cadmium 30 mg Cd/kg, for nickel 55 mg Ni/kg, for chromium 130 mg Cr/kg, for lead 160 mg Pb/kg, for copper 1000 mg Cu/kg, for zinc 1300 mg Zn/kg. The localization of the most polluted areas is essential for possible reclamation procedures to improve water and overall ecosystem quality.
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Authors and Affiliations

Maciej Kostecki
Eligiusz Kowalski
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Abstract

The results of research on the role of water mass movements arising as a result of anthropoprcsion, in heavy metals arrangement in sediments have been presented on the example of dam reservoir in Rybnik. The carried out thermo-visual measurements of the thermally polluted Rybnik dam-reservoir revealed spatial diversification of water temperature. The zones of diverse dynamics of water mass movements have been shown, including the zone of intensive water flow and the zone of stagnation. [t has been proved that the values of these concentrations arc strongly diverse in space. This is the result of the cutrophication grade, bioaccumulation process, and anthropomixtion. As a result of specific water movement, which transports biomass inside the ecosystem, the zone, developed in which the transfer of heavy metals to the sediments is intensified. This zone of about 150 ha in area was located. The maximum concentrations of metals described in this area arc: for cadmium - 30 mg/kg, for nickel - 55 mg/kg, for chromium - 130 mg/kg, for lead - 160 mg/kg, for copper - 1 000 mg/kg, for zinc - 1300 mg/kg. In the case ofmobile fractions, potentially capable of freeing themselves from sediments the concentration values are: for cadmium - 14 mg/kg, for nickel - 15 mg/kg, for chromium - 4 mg/kg, for lead - 8 mg/kg, for copper - 100 mg/kg, for zinc - 600 mg/kg. The participation ofmobile fractions of metals in their total quantity was: for zinc - 46%, for cadmium - 46%, for nickel - 27%, for copper - 10%, for lead- 5%, for chromium - 3%. The relationship between the total concentrations of metals likewise their mobile forms and the content of organic matter in sediments, points to the role ofbiomass of plankton organisms and detritus as bio-sorbcnt in the process of transporting and transferring metals from water to sediments. With reference to water mass dislocation effect inside the reservoir under the influence of anthropogenic factor, in the situation when this factor is stronger than the factors which cause natural water movements, author suggests using the term anthropomixion.
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Authors and Affiliations

Maciej Kostecki
ORCID: ORCID
Eligiusz Kowalski
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Abstract

The results of investigation on the amount and chemical composition of biogas emitted from bottom sediments of polluted Dzierżno Duże dam reservoir have been presented. The bottom sediments could be a resource of considerable quantity of biogas, e.g. methane. The dilution of methane in water is similar to that of oxygen. The presence of methane dissolved in the water deteriorates environmental conditions. The quantity of biogas depending on temperature ranged from 2 to 12 dm3/m2*d. The biggest singular grow exist in the water temperature 10-15°C. Chemical composition for biogas is dependent on the temperature. Along with the water temperature growth from 7 to 24°C, participation of methane in the biogas increased from 73% to 85%, and the participation of nitrogen from 3.9% to 22.47%. The participation of carbon dioxide decreased from 22% to 4.5%. The heterogeneous process of biogas emission arc running in the kinetic and diffusion area is dependent on temperature. In the low temperature the progress of the process is controlled by the speed of biochemical reaction. The progress of the diffusion process grows in a high temperature, and in the range of 15-24° C the processes is controlled by diffusion of substrates and products of reaction.
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Authors and Affiliations

Maciej Kostecki
Jerzy Mazierski
Eligiusz Kowalski
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Abstract

Improving the effects of hydrolysis on waste activated sludge (WAS) prior to anaerobic digestion is of primary importance. Several technologies have been developed and partially implemented in practice. In this paper, perhaps the simplest of these methods, alkaline solubilization, has been investigated and the results of hydrolysis are presented. An increase to only pH 8 can distinctively increase the soluble chemical oxygen demand (SCOD), and produce an anaerobic condition effect favorable to volatile fatty acids (VFA) production. Further increases of pH, up to pH 10, leads to further improvements in hydrolysis effects. It is suggested that an increase to pH 9 is sufficient and feasible for technical operations, given the use of moderate anti-corrosive construction material. This recommendation is also made having taken in consideration the option of using hydrodynamic disintegration after the initial WAS hydrolysis process. This paper presents the effects of following alkaline solubilization with hydrodynamic disintegration on SCOD

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Authors and Affiliations

Jan Suschka
Eligiusz Kowalski
Jerzy Mazierski
Klaudiusz Grübel
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Abstract

In the presented work the limnological characteristics of the Reservoir Nakło-Chechło elaborated on the basis of investigations carried out in 1996 has been shown. The results of investigations on thermal and oxygenic conditions existing in the Reservoir and the change dynamics of selected physico-chemical indicators of water quality in the Reservoir Nakło-Chechło are described. The paper describes aspecific example of acidotrophy of the Nakło-Chechło Reservoir as a result of anthropopressure. The results of chemical analysis of water in the Nakło-Chechło Reservoir and evaluation of the dynamic changes of various indicators with the atmospheric precipitation quantity on the basin superficies have shown that the Reservoir is under strong hydrological and chemical influence of the precipitation, which generally is acidic and has a very low total hardness. The exceptional vulnerability for acidification due to deficiency in water buffering capacity was, however, the decisive factor. The discharged weak buffering capacity of the Reservoir water facilitates the influence of direct precipitation and through superficial run off. The results of chemical analysis show high state of water quality in the Reservoir Nakło-Chechło as regards amount of indicators which describe water mineralization degree.
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Authors and Affiliations

Maciej Kostecki
Agata Domurad
Eligiusz Kowalski
Jerzy Kozłowski

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