Explain components of a sewage pumping station
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Q: Explain components of a sewage pumping station
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- Subject: Environmental engineering Draw a schematic diagram of a sewage treatment plant consisting of all main components (e.g. preliminary, primary, and secondary treatments) for a conventional activated sludge system. Discuss the function of all units/processes involved in each component.Q#2b) Explain components of a sewage pumping stationidentify Wastewater standards, Advanced biological treatment systems and its processes
- 1. Question Number (1) Wastewater Engineering Civil Engineering State the function of manholes and list down the criteria to insert a manhole along the sewerage network.1. Prepare a neat sketch of the dissolved oxygen concentration profile downstream of a wastewater treatment plant discharge and label the dissolved oxygen saturation (Csat), the initial dissolved oxygen concantration (Co), the initial dissolved oxygen deficit (Do), the critical travel time (t*crit), the critical deficit (Derit) and the minimum dissolved oxygen concentration (Cmin). O See pdf O Unsure CheckConsult different sources on wastewater treatment plant used in the civil engineering industry, explain what a wastewater treatment plant is and what role does it play in the civil engineering industry
- Please include Equations used. This is for water and wastewater engineeringWhat are the 3 stages of wastewater treatment?CVE 360 - Environmental Engineering Homework 2 AIUS AMERICA INTERNATIONA UNIVERSIT Problem 1 A wastewater treatment plant is required to disinfect its effluent before releasing treated wastewater into a neighboring stream. An inflow concentration of a certain infectious germ in the wastewater is 25,000 mg/L. A concentration of 2,000 mg/L is the highest concentration that can be released. It is suggested that the disinfection process employ a pipe that carries the effluent. The length of the pipe is 1000 m and the reaction rate constant is 0.1 min¹. Assume that the pipe behaves as a steady-state plug-flow system. Determine a) The residence time of this system (min) b) The speed of flow in this system (m/min) c) If the pipe has a diameter of 250 mm, determine the flow rate in the pipe (m³/hr) Cin 25000 mg/L L = 1000 m pipe = Cout 2000 mg/L k = 0.1 min 1