Academic literature on the topic 'Service Station Wastewater'

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Journal articles on the topic "Service Station Wastewater"

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Kumar, S. Adish, A. Kokila, and J. Rajesh Banu. "Biodegradation of automobile service station wastewater." Desalination and Water Treatment 52, no. 25-27 (2013): 4649–55. http://dx.doi.org/10.1080/19443994.2013.808416.

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Revanth, K., and R. Vinothkumar. "Experimental Study on Treatment of Automobile Service Station Effluent using - Prosopis juliflora." Journal of Environmental Engineering and its Scope 5, no. 1 (2022): 1–8. https://doi.org/10.5281/zenodo.6446176.

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Water is one of the basic needs for all living beings on earth to survive. And has also marked its significant contribution in the development of industrialization and urbanization. Automobile service stations use large volumes of water and release wastewater containing harmful chemicals into the environment. These effluent waters are tested and found to contain pollution as like COD, TSS, BOD5, Oil and Grease, phosphates, etc. more than the desirable limits set by regulatory bodies. This study is about the treatment of wastewater using adsorption method to attain water conservation and cost e
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M. K, Krishna, Manjunath H.N, and Ayesha Siddiqa. "TREATMENT OF SERVICE STATION WASTEWATER USING ELECTROCOAGULATION PROCESS." International Journal of Research -GRANTHAALAYAH 5, no. 7 (2017): 348–53. http://dx.doi.org/10.29121/granthaalayah.v5.i7.2017.2140.

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The various electrodes such as iron, aluminium, stainless steel and graphite are used in this study. Main objectives of the present paper is to evaluate the removal of COD, pH, TDS and oil and grease from the automobile wastewater by Electro coagulation using iron as Monopolar configuration at different voltages and electrolysis time. To study the effect of inter electrode spacing and effect of different initial pH for the removal of selected parameter at constant voltage for the iron electrode. The removal efficiency decreases with increase in electrode spacing as 71.2% of COD, 96.5% of TDS a
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Dr., Krishna M. K., Manjunath H.N Dr., and Siddiqa Ayesha. "TREATMENT OF SERVICE STATION WASTEWATER USING ELECTROCOAGULATION PROCESS." International Journal of Research - Granthaalayah 5, no. 7 (2017): 348–53. https://doi.org/10.5281/zenodo.837276.

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The various electrodes such as iron, aluminium, stainless steel and graphite are used in this study. Main objectives of the present paper is to evaluate the removal of COD, pH, TDS and oil and grease from the automobile wastewater by Electro coagulation using iron as Monopolar configuration at different voltages and electrolysis time. To study the effect of inter electrode spacing and effect of different initial pH for the removal of selected parameter at constant voltage for the iron electrode. The removal efficiency decreases with increase in electrode spacing as 71.2% of COD, 96.5% of TDS a
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Amran, Ramzi H., Mamdoh T. Jamal, Arulazhagan Pugazhendi, Mamdouh Al- Harbi, and Saba Bowrji. "Petroleum Hydrocarbon Degradation and Treatment of Automobile Service Station Wastewater by Halophilic Consortia Under Saline Conditions." Nature Environment and Pollution Technology 21, no. 4 (2022): 1629–37. http://dx.doi.org/10.46488/nept.2022.v21i04.015.

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The halophilic consortia were enriched from water samples of Abhor, Red Sea, Jeddah, Saudi Arabia for the degradation of phenanthrene, fluorene, hexadecane, pyrene, and treatment of automobile service station wastewater under saline conditions (4%). Complete degradation of phenanthrene and fluorene was recorded up to a concentration of 500 mg.L-1 in 12 days, when the concentration was raised to 800 mg.L-1, the percentage of degradation of the two compounds was recorded by 84 and 90% within 14 days, while when the concentration increased to 1000 mg.L-1, a significant decline was recorded. Pyren
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Chauca, Janina, María Rosales, Diego Muñoz, and Carlos Banchón. "Finding Chemical Pathways Toward the Valorization of Automobile-Service-Station Wastes." KnE Engineering 3, no. 1 (2018): 636. http://dx.doi.org/10.18502/keg.v3i1.1467.

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Automobile-service-station wastes make for an acute environmental concern because they contain polyaromatic hydrocarbons, heavy metals, surfactants, and other harmful elements. An eco-friendly way to treat and take advantage of these wastes is embodied in the concept called "valorization". In the present work, valorization is described as a chemical process to remove solids from contaminated water and to stabilize oily sludge into a saponified product. Electrocoagulation and coagulation with aluminum were applied to separate oil-water emulsions and removed 99.7% of turbidity. Both coagulation
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Ahmed, Thabit A., Saba S. Ayob, Mohammed A. Shahatha, Shaymaa R. Khorsheed, and Mohammed J. Mohammed. "Treatment of Contaminated Collected Wastwater at Petroleum Fuel Filling Stations for Using as Make Up Water for Cooling Tower in Petroleum Refineries." Journal of Petroleum Research and Studies 13, no. 4 (2023): 131–46. http://dx.doi.org/10.52716/jprs.v13i4.723.

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The collection of washing wastewater (oily water) in petroleum service stations represents an environmental problem particularly after the introducing of cars washing stations to the petroleum station site. The generated water from washing and maintenance of the petroleum stations, rain water is collected in the storage tank. This water contains hydrocarbons and suspended solids with high organic load. Discarding this type of water to the water bodies like rivers without treatment causes increasing of pollution. This study aims to manage generated wastewater in petroleum service stations succe
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Yousuf, Sumra, Payam Shafigh, Zakaria Che Muda, Herda Yati Binti Katman, and Abid Latif. "Alternatives for Fresh Water in Cement-Based Materials: A Review." Water 15, no. 15 (2023): 2828. http://dx.doi.org/10.3390/w15152828.

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Huge amounts of fresh water are used in the concrete industry every day. The quantity and quality of water play important roles in determining the quality, strength, setting time, and durability of cement-based materials (CBMs), such as paste, mortar, and concrete. Freshwater systems are under pressure due to climate changes, industrialisation, population growth, urbanisation, and the lack of proper water resource management. The lack of potable water has resulted in the search for possible alternatives, such as seawater, treated industrial wastewater, treated sewage wastewater, carwash servic
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Abdullayev, Ş. N., F. Y. İbadullayev, E. H. Nəsirov, A. R. Qüdrətli, and A. R. Qüdrətli. "HÖVSAN AERASİYA STANSİYASINDA TEXNOLOJİ PROSES ZAMANI ƏMƏLƏ GƏLƏN İZAFİ LİLİN TƏDQİQİ." “Water Problems: science and technologies” 1, no. 1 (2021): 75–81. http://dx.doi.org/10.30546/wtst.2020.1.75.

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Abstract. hovsan Aeration Station provides treatment and processing of wastewater in baku. The amount of annual sludge here reaches 2 million cubic meters. These sludges contain complex multicomponent substances of organic and mineral origin. Taking this into consideration, we analyzed surplus sludge that generated during the technological process at hovsan Aeration Station. The studied surplus sample is a substance that is thickened in the mechanical workshop of the station, and then the substances are dehydrated in a centrifuge. They consist of a complex polydisperse system. The study of sur
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Galatanu, Sergiu-Valentin, Sebastian Muntean, Liviu Marsavina, Dan Micota, and Ionel Draghici. "Integrity Analysis of the Rainwater Pump Impeller." MATEC Web of Conferences 188 (2018): 04005. http://dx.doi.org/10.1051/matecconf/201818804005.

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The purpose of this paper is to examine the failure problems encountered during the operation of the rainwater pump impellers installed in a wastewater station. The rainwater pumps are specially designed to operate in wastewater plants. The fibbers and wastes are discharged together with rainwater during storms with this type of pumps to avoid the flood of the wastewater station. Several problems have occurred in service due to the fibbers clog the gap between the impeller blades and the pump casing. The analysis of the catastrophic events associated to the rainwater pumps installed in a waste
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Books on the topic "Service Station Wastewater"

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Dissanayake, Priyanka. Guide to on-site wastewater management for industrial and commercial establishments and other institutions: Guide for vehicle service station owners and managers. International Water Management Institute, 2008.

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Board, Ontario Environmental Assessment. In the matter of an application by Cobi Foods Inc. for approval to construct a wastewater treatment and disposal system consisting of a pumping station, forcemain, aerated lagoon and spray irrigation system to service the applicant's canning plant in the Village of Bloomfield: September 16, 1988. s.n, 1988.

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Himmelblau, Nellor Margaret Ann, Brosseau Geoff, and WEF Pollution Prevention Committee., eds. Controlling vehicle service facility discharges in wastewater: How to develop and administer a source control program. Water Environment Federation, 1995.

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J, Dolan Roger, and Water Environment Federation, eds. Managing the water and wastewater utility. Water Environment Federation, 2003.

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Wef Pollution Prevention Committee (Corporate Author), Margaret Ann Himmelblau Nellor (Editor), and Geoff Brosseau (Editor), eds. Controlling Vehicle Service Facility Discharges in Wastewater: How to Develop and Administer a Source Control Program. Water Environment Federation, 1995.

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Security and emergency planning for water and wastewater utilities. American Water Works Association, 2010.

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Book chapters on the topic "Service Station Wastewater"

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Bahukhandi, Kanchan Deoli, H. Tonsana, Mayuri Deka, Shalini Vohra, and Mohini Singh. "Impact of Discharge of Wastewater and Used Oil from Motor Service Stations on Groundwater Quality of Dehradun City of Outer Himalaya Region." In Springer Proceedings in Earth and Environmental Sciences. Springer International Publishing, 2022. http://dx.doi.org/10.1007/978-3-031-05335-1_22.

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Chowdhury, Banani Ray, Avijit Chakraborty, Sagnik Roy, Zacharias Frontistis, and Pallabi Roy Chowdhury. "Fortifying Resilience: Predictive Modelling for Wastewater Management for Sustainable Futures." In Smart Wastewater Systems and Climate Change. Royal Society of Chemistry, 2025. https://doi.org/10.1039/9781837676880-00105.

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Water pollution is a growing global issue threatening human health, environmental services, and agricultural productivity. Wastewater infrastructure systems, including service laterals, sewage pipes, maintenance holes, syphons, force mains, combined sewer overflow restrictions, pumping stations, and wet wells, are essential for collecting and transporting wastewater from various sources. To improve wastewater treatment efficiency, modelling and process optimization of pollutant removal methods are crucial. In wastewater treatment plants (WWTPs), complex interactions between input and output pa
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Ma, Tiantian. "Intelligent Engineering and Sustainable Development of Wastewater Treatment." In Frontiers in Artificial Intelligence and Applications. IOS Press, 2024. http://dx.doi.org/10.3233/faia241087.

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In order to alleviate the rural water environment pollution problem, which restricts the rural ecological environment and hinders the sustainable development of agriculture, the rural sewage treatment system based on smart water services was proposed. The system is developed in B/S mode and adopts distributed component structure, which can be applied to a variety of hardware platforms and operating systems. Each application end obtains on-site data and operation and maintenance conditions through the data cloud platform to realize remote centralized management of sewage treatment stations. The
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Tammemagi, Hans. "Wastes: Know Your Enemy." In The Waste Crisis. Oxford University Press, 2000. http://dx.doi.org/10.1093/oso/9780195128987.003.0009.

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When Sherlock Holmes solves a mystery, he studies the strengths, weaknesses, foibles, egos, sensitivities, and other traits of the villains. It is the same with wastes: a detailed understanding of their characteristics is fundamental to being able to manage them properly. To determine the size of a disposal facility, we must know the volumes and rate of generation of waste. A MRF cannot be designed unless it is known what recyclables are contained in the waste stream. A knowledge of the physical and chemical nature of waste allows engineers to select landfill construction materials that will b
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Beisaw, April M. "Ruined by the Thirst for Urban Prosperity: Contemporary Archaeology of City Water Systems." In Contemporary Archaeology and the City. Oxford University Press, 2017. http://dx.doi.org/10.1093/oso/9780198803607.003.0015.

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City residents expect pressurized water to flow from kitchen, bath, and laundry room taps. Access to clean water is a contemporary human necessity, but is it a human right? City water is not free—creating and maintaining urban water systems is a complex engineering process that requires political power; land and labour are necessary to obtain and store water, operate pumping stations, maintain plants for filtration and wastewater treatment, and build out the subsurface pipe network. After initial construction costs have been paid, the efficiency of an entire water system dictates the costs of
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Conference papers on the topic "Service Station Wastewater"

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Yarbrough, Mark E., and Lon C. Brouse. "Cooling Tower Blowdown Reduction at Palo Verde Nuclear Generating Station." In CORROSION 1993. NACE International, 1993. https://doi.org/10.5006/c1993-93650.

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Abstract Palo Verde Nuclear Generating Station, operated by Arizona Public Service Company, is comprised of three 1,270 MW pressurized water reactors. The plant site is 55 miles west of Phoenix, Arizona, in the Sonoran desert. The Water Reclamation Facility is an on-site, 90 million gallon per day tertiary treatment plant, that receives secondary treated sewage from the cities of Phoenix and Tolleson. The plant operating license requires zero water discharge from the site. Evaporation ponds collect and detain tower blowdown and other non-radioactive wastewater streams. Original guidelines for
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Brodsky, Ira S., John V. Smolenski, and Miles R. Ford. "Tampa Electric Company Big Bend Station: System Design, Mat’L Selection and Construction of Units 1 and 2 Wet FGD System." In CORROSION 2000. NACE International, 2000. https://doi.org/10.5006/c2000-00584.

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Abstract Tampa Electric Company (TEC) Big Bend Station is located in Apollo Beach, Florida and consists of four (4) coal-fired boilers with a total generating capacity of 1,840 MW. A limestone based forced oxidation flue gas desulfurization (FGD) system began operation in March 1985 to control sulfur dioxide emissions from Unit 4. Flue gas from Unit 3 was added to the existing FGD system for sulfur dioxide removal in 1996. To meet 1990 Clean Air Act Amendments Phase 11 requirements, TEC is required to reduce sulfur dioxide emissions from Units 1 & 2. To achieve compliance and broaden the r
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Giddings, Jeffry B., Richard Pousard, Joe Weaver, Graham Bell, Matt Gaughan, and Ed Weaver. "Assessing and Sharing Success: Comparing Program-wide Corrosion Engineering Service Benefits against Individual Project Design Packages." In CORROSION 2017. NACE International, 2017. https://doi.org/10.5006/c2017-09144.

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Abstract Corrosion management success not only depends how programs are implemented and performed, but start early in the planning and development stages when considering new pipeline design; taking advantage of lessons learned from previous pipeline design and construction, on-going operation and maintenance of existing cathodic protection systems, and incorporating updates to overcome challenges and benefit from this experience. Leading up to the planning, development, design, and construction of one of the nations largest water conveyance projects in 2012, the program manager’s approach env
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Sandoval Campos, Sebastian, Fabián A. Ballesteros Higuera, Sebastián Roa Prada, Claudia I. Cáceres Becerra, and Alfredo A. Díaz Claro. "Development of a Low-Cost Sensor Network for Community-Made Measurements of Air Pollution." In ASME 2020 International Mechanical Engineering Congress and Exposition. American Society of Mechanical Engineers, 2020. http://dx.doi.org/10.1115/imece2020-23994.

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Abstract The levels of pollution present in the air have been dramatically increasing over the years due to the continuous emission of greenhouse gases such as CO2, CO, NOx and H2S, among others. The main source of these emissions is from burning fossil fuels for electricity, heat, and transportation. This represents a tremendous risk to the populations located near the emission sources where people get exposed to dangerous concentrations of such gases on a daily basis. The lack of open real-time monitoring tools makes people unaware of the damage these pollutants cause to their health. This r
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Schneider, Jakob, Ramadhani Kurniawan Subroto, Wybren Meinte Oppedijk, and Tomislav Dragičević. "Flexibility Estimation for Wastewater Pumping Stations Participating in Grid Ancillary Services." In IECON 2023- 49th Annual Conference of the IEEE Industrial Electronics Society. IEEE, 2023. http://dx.doi.org/10.1109/iecon51785.2023.10312219.

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Kobayashi, Dylan, Ganesh Arumugam, Mark Kimura, et al. "AI-Enhanced Tools for Performance Enhancement in Energy and Water Systems." In ADIPEC. SPE, 2023. http://dx.doi.org/10.2118/216257-ms.

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Abstract Whether used for transportation of gas, oil, produced water, or wastewater, pipeline infrastructure is critical to many industries and is the most effective way to transport large quantities of fluids and gases. Considering that that large portions of pipelines are increasingly reaching or exceeding their service lifetimes, technologies that help with maintenance and extension of service life are a critical future need. One increasingly popular method of improving performance and reducing maintenance requirements are utilizing internal surface application of coatings and surface treat
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Brichler, Eric. "Shoreline Storage Tunnel Shafts and Near Surface Structures Support of Excavation." In Deep Foundations Institute 49th Annual Conference. Deep Foundations Institute, 2024. https://doi.org/10.37308/dfi49.20241100307.

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The Shoreline Storage Tunnel (SST) Project in Cleveland, Ohio is part of EPA-mandated Project Clean Lake, Northeast Ohio Regional Sewer District’s program designed to reduce pollution in Lake Erie by 4 billion gallons per year over the next 25 years. The $3-billion program includes construction of large ‑diameter storage/conveyance tunnels, shafts at key combined sewer overflow (CSO) pick-up points, underground pump stations, improvements to wastewater treatment plant capacity and treatment, and expansion of green infrastructure. When completed, SST will comprise over 2.5 miles of 23-ft-diamet
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Reports on the topic "Service Station Wastewater"

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Dissanayake, Priyanka, M. Tennakoon, and J. Burmeister. Guide to on-site wastewater management for industrial and commercial establishments and other institutions: guide for vehicle service station owners and managers. International Water Management Institute (IWMI), 2008. http://dx.doi.org/10.5337/2011.0016.

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