Academic literature on the topic 'Sludge depot'

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Journal articles on the topic "Sludge depot"

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Zelenko, Yuliia, Maryna Bezovska, Anna Leshchynska, and Alexandr Shnaiderman. "Disposal of technological sludge of railway infrastructure enterprises." MATEC Web of Conferences 294 (2019): 02006. http://dx.doi.org/10.1051/matecconf/201929402006.

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The problem of improving environmental safety in the handling of oily waste and sludge is relevant for most industries. Significant amounts of waste oil adversely affect virtually all components of the environment. However, it is also a valuable hydrocarbon feedstock. Thus, a rational approach to the processing of sludge can have a significant environmental and economic effect. The shortcomings of traditional thermal technologies for the disposal of technological sludge and suggests using much cheaper mechanical methods were discussed in this article. For example, install decanters of various
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Wett, B., A. Eladawy, and W. Becker. "Carbonate addition - an effective remedy against poor activated sludge settling properties and alkalinity conditions in small wastewater treatment plants." Water Science and Technology 48, no. 11-12 (2004): 411–17. http://dx.doi.org/10.2166/wst.2004.0889.

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The impact of marble powder on the performance of small seasonal treatment plants dealing with high ammonia concentrated wastewater has been investigated. The carbonate has been added to one of two parallel lab-scale SBR-systems as an alkalinity depot and a bio-carrier. The focus of the monitoring program was put on the measurement of carbon fractions in the liquid and the solid phase and on the alkalinity conditions. Monitoring results show a significant correlation between carbonate dosage (and corresponding inorganic carbon concentration and pH-value) and sludge volume index and nitrificati
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Babić, Sanja, Zrinka Dragun, Roberta Sauerborn Klobučar, et al. "Indication of metal homeostasis disturbance in earthworm Eisenia fetida after exposure to semi-solid depot sludge." Science of The Total Environment 526 (September 2015): 127–35. http://dx.doi.org/10.1016/j.scitotenv.2015.04.056.

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Zhan, Xinjie, Wenwei Li, Xiaolong Xu, and Qunfeng Zhu. "Study on the Effect of Chemical Conditioning on the Consolidation Characteristics of Municipal Sludge in Landfill Depot." IOP Conference Series: Earth and Environmental Science 668, no. 1 (2021): 012010. http://dx.doi.org/10.1088/1755-1315/668/1/012010.

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Zhuravleva, V. "Use of reconstructive mixtures for the disposal of waste oil production." Bulletin of Science and Practice, no. 6 (June 14, 2017): 130–39. https://doi.org/10.5281/zenodo.808283.

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The activity of the enterprises of oil and gas branch inevitably leads to a technogenic impact on the environment. The extent of technogenic transformation of the environment in areas of development of oil fields is quite high now. As the major technogenic factors defining transformation of ecosystems at operation of oil fields are considered: mechanical violations of a vegetable and soil cover, redistribution of a drain of water, pollution of atmospheric air, a snow cover, soils, surface and underground water, ground deposits, receipt of waste of oil production in all natural components. The
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Zhalkin, Denis, Sergij Zhalkin, Valentin Vinichenko, and Sergij Skripchenko. "REMOVAL OF DIESEL OIL WATER BY HYDRODYNAMIC DISPERSION." Collected scientific works of Ukrainian State University of Railway Transport, no. 199 (June 10, 2022): 78–88. http://dx.doi.org/10.18664/1994-7852.199.2022.258810.

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Water, sulfur and lead compounds can enter the oil from the combustion chamber ofa running diesel engine. Significant amounts of diesel oil are missing due to water or vapor in thewater system and exhaust gases, which creates emulsion and sediment (sludge) at relatively lowtemperatures and disrupts the lubrication and cooling of friction surfaces and increases wear ofengine parts. Such oil must be drained from the crankcase and regenerated.The most promising method of regeneration of rejected oil, including in the locomotive depot,is hydrodynamic dispersion, which allows to remove water and mo
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Andrusenko, Serhiy, and Vladyslav Podpisnov. "OPTIMIZATION OF TROLLEYBUS TRACTION BATTERY PARAMETERS WHEN PARTIAL AUTONOMOUS RUNNING." Avtoshliakhovyk Ukrayiny, no. 3 (267)' 2021 (September 24, 2021): 15–21. http://dx.doi.org/10.33868/0365-8392-2021-3-267-15-21.

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The article describes the method of determining the optimal capacity of the traction battery of a trolleybus with autonomous travel depending on the share of the route without a catenary. In modern cities, there is often a situation in which on some sections of trolleybus routes for various reasons there is no contact network for trolleybus traffic. The solution to the problem of ensuring the movement of trolleybuses on such routes may be the use of autonomous trolleybuses, which use the energy of the traction battery (TAB). The battery may be partially or fully recharged while the trolleybus
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van Kessel, T., and W. G. M. van Kesteren. "Gas production and transport in artificial sludge depots." Waste Management 22, no. 1 (2002): 19–28. http://dx.doi.org/10.1016/s0956-053x(01)00021-6.

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Mokhtari-Hosseini, Zahra, Razieh Hosseinabadi, and Ashrafalsadat Zarmi. "The reduction of oil pollutants of petroleum products storage-tanks sludge using low-cost adsorbents." Chemical Industry and Chemical Engineering Quarterly 23, no. 2 (2017): 237–44. http://dx.doi.org/10.2298/ciceq150922037m.

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Disposal of storage tank sludge in oil depots is a major environmental concern due to the high concentration of hydrocarbons involved. This paper investigates the reduction of the sludge oil pollutants with initial oil and grease concentration of about 50 mass% using low cost adsorbents. Among the examined adsorbents, sawdust indicated the maximum removal of oil and grease. The screening and optimizing of process parameters were evaluated employing Plackett-Burman design and response surface method. For the optimized conditions, more than 60 mass% of oil and grease from the sludge was removed.
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Adityosulindro, Sandyanto, Nurul Hasanah Rochmatia, Djoko Mulyo Hartono, and Setyo Sarwanto Moersidik. "Evaluasi Kualitas dan Kuantitas Lumpur Alum dari Instalasi Pengolahan Air Minum Citayam." Jurnal Teknologi Lingkungan 21, no. 2 (2020): 157–64. http://dx.doi.org/10.29122/jtl.v21i2.4049.

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ABSTRACTWater treatment plants (WTPs) produces residues in the form of alum sludge during the treatment process. In Indonesia, due to various techno-economic constraints, some WTPs are not equipped by sludge treatment systems, so the generated alum sludge is discharged directly into water bodies without appropriate treatment. This condition may pollute water bodies because alum sludge contains various contaminants such as solid particles, organic compounds, inorganic metals, aluminum, and pathogenic microorganisms. This study aims to evaluate the characteristics of alum sludge from aspects of
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Books on the topic "Sludge depot"

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Miller, E. Willard. Environmental hazards: Air pollution : a bibliography. Vance Bibliographies, 1985.

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Miller, E. Willard. Environmental hazards: Air pollution : a reference handbook. ABC-CLIO, 1989.

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Miller, E. Willard. Environmental hazards: Liquid wastes : a bibliography. Vance Bibliographies, 1985.

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M, Miller Ruby, ed. Environmental hazards: Toxic waste and hazardous material : a reference handbook. ABC-CLIO, 1991.

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M, Miller Ruby, ed. Environmental hazards: Radioactive materials and wastes : a reference handbook. ABC-CLIO, 1990.

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Book chapters on the topic "Sludge depot"

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Bril, J., N. M. de Rooij, and J. G. C. Smits. "Modeling Heavy Metals in the Top Soil of a Harbour Sludge Depot." In Contaminated Soil. Springer Netherlands, 1986. http://dx.doi.org/10.1007/978-94-009-5181-5_4.

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Mathijssen F.A.J.M., de Jager R.R., and Hooiveld B.J. "Reliability Based Design of Dredge Sludge Depot for Mechanism Static Liquefaction." In Geotechnical Safety and Risk V. IOS Press, 2015. https://doi.org/10.3233/978-1-61499-580-7-318.

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Along the coastline and in particular in the deltaic estuaries of the Netherlands, the occurring of numerous flow slides have been recorded. Analysis of these historical instabilities has resulted in empirical guidelines for verification of occurring of flow slides.
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Mathijssen F.A.J.M., de Jager R.R., and Hooiveld B.J. "Reliability Based Design of Dredge Sludge Depot for Mechanism Static Liquefaction." In Geotechnical Safety and Risk V. IOS Press, 2015. https://doi.org/10.3233/978-1-61499-580-7-320.

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Along the coastline and in particular in the deltaic estuaries of the Netherlands, the occurring of numerous flow slides have been recorded. Analysis of these historical instabilities has resulted in empirical guidelines for verification of occurring of flow slides.
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Conference papers on the topic "Sludge depot"

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Kanaras, Louis, and Mahmood Qazi. "Destruction of Hazardous Military Wastes Using Plasma Arc Technology." In ASME 1996 International Mechanical Engineering Congress and Exposition. American Society of Mechanical Engineers, 1996. http://dx.doi.org/10.1115/imece1996-0168.

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Abstract A Plasma Arc Technology (PAT) system treats hazardous wastes in a furnace, at temperatures of 2000° C, or higher, using a plasma torch. The organic components vaporize, decompose or oxidize. The off-gases consist of hydrogen, carbon monoxide, carbon dioxide and nitric oxides. A wet air scrubber is used to remove most of these gases. The scrubber water is treated and recycled. Metal-bearing solids are melted or vaporized. The solids are usually recovered as molten metal, or as non-leachable vitrified slag, suitable for disposal in a landfill. A Plasma Arc Centrifugal Treatment system w
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Hartono, Djoko M., Nurannisa Shaleha, Nyoman Suwartha, and Sandyanto Adityosulindro. "Performance evaluation and sludge estimation of Legong water treatment plant in Depok city, Indonesia." In INTERNATIONAL CONFERENCE ON EMERGING APPLICATIONS IN MATERIAL SCIENCE AND TECHNOLOGY: ICEAMST 2020. AIP Publishing, 2020. http://dx.doi.org/10.1063/5.0002817.

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