In biological wastewater treatment plants, aeration chambers are used to remove organic matter from the water. Microorganisms are used to break down organic matter in the wastewater. Roots blowers provide the required oxygen to the microorganisms in the aeration chambers. Pressurized air is delivered through an aeration mat below the aeration chamber. The bubbling air not only provides oxygen to the process, but also keeps the microorganisms suspended in the water so that they do not settle. Depending on the biochemical oxygen demand, rotary vane blowers provide a constant air flow in the required amount. The correct selection and sizing of Roots blowers plays a vital role in the economic operation of wastewater treatment plants. The operating areas to which a rotary vane blower system will be subjected include the following parameters: Site conditions; Barometric pressure, discharge pressure, ambient temperature, relative humidity Type of aeration system Air mass flow at any time according to process conditions Other system and process variables such as upstream and downstream equipment, filters, valves, etc.
Wastewater Treatment Plant we facilities designed to treat municipal Wastewater. The level of treatment at a plant will vary based on the BOD limits(3-5 PPM) and the specific processes involved. This property use is intended for primary, secondary, and advanced treatment.
Our company performs a full range of design, construction and reconstruction of water supply and water disposal facilities for municipal and industrial enterprises – from technical audit and a particular object efficiency evaluation to the construction of wastewater treatment plants “on turnkey basis”. The company’s staff is a dynamic team combining professional skills and international experience in wastewater treatment issues and it can implement integrated project solutions, guarantee the functional quality, maximize the customer’s benefits from design and construction processes and commission the object “on turnkey basis”. Specialists of our company have successfully developed and implemented a number of projects on municipal and industrial wastewater treatment, in particular on adjustment of wastewater quality to the regulatory requirements for the discharge into water bodies from : fruit and vegetable proccesing enterprises ,slaughterhouses, food oil and fat producers, chemical, iron and steel and many other enterprises. The company experience in solving problems of wastewater treatment, high scientific and engineering potential, using of advanced world technologies allow us provide to our customers the best possible solutions. Please don't hesitate ask best solution for your task to vk at konstante dot eu . Also we implement using modern and reliable technologies: - Water treatment plants(industrial and municipal); - Wastewater treatment plants (industrial and municipal); - RO Desalination plants (Cost-efficient and energy-efficient); - H2S removal solutions (unique compact and cost-efficient ); - Iron and manganese removal solutions; - Wastewater Disinfection plants for irrigation. Supplied in 40' containers
Glass fused to steel Wastewater Storage Tanks is the premium coating storage tank technology in the storage tank market . Glass-fused to-steel wastewater storage tanks combines the strength and flexibility of steel and the corrosion resistance of glass. The glass steel plates are connected by high grade bolts on erection site and as well as sealed by silicone sealant . Glass-fused-to-steel wastewater storage tank is gas and water impermeable .Glass fused to steel wastewater storage tanks are widely used for industrial wastewater treatment plant. Center Enamel Glass fused to steel wastewater storage tanks engineering & design, product testing are in strict accordance with AWWA D103-09, OSHA, ISO/EN 28765, NSF61 and NFPA etc. international standards. our glass fused to steel wastewater storage tanks engineers make tank engineering calculation on each specific tank structure according to project local environmental conditions, such as snow load, wind speed, seismic zone etc., to make sure the glass fused to steel wastewater storage tanks structure's adequate security in long-term service life.
Supplier: Water and wastewater treatment plants.
Buyer: Pumps, blowers, valves, ro components.
Supplier: Water treatment plant , sewage treatment plant , waste water treatment plant, underground sewage treatment plant
Services: Manufacturers, treating, purifying and safe disposal of water
Wuhan Qingshuilvyuan Environmental Protection Co.,Ltd. It focus on refractory industrial wastewater treatment. The solution is lower in Capex and Opex. Moreover,land area is 40% smaller than all others. Key equipments and technology: 1) Compound MBBR System Biological tank will be 30% smaller,but 10%~30% higher COD,BOD removal rate. 2) No tank Magnetic flocculation clarifier. No civil work equipment with 99% SS removal rate,no chemical consumption. 3) Magnetized Fenton Advanced Oxidation. 10% higher effect than conventional Fenton and less chemical and energy consumption. 4) Tubular membrane and UF system. Max 500L/m2.h flux and outlet NTU 0.1. 5) Hybrid ABR. Higher efficiency than conventional ABR,IC,UASB etc. 6. Packaged wastewater treatment plant. Thank you.
An effluent treatment plant (ETP) is a facility designed to treat wastewater before it's released into the environment or reused. ETPs are crucial for managing wastewater from industries, sewage systems, or any source of liquid waste to prevent pollution and protect public health. Key Components of an ETP: Preliminary Treatment: This involves removing large solids and debris through screening and grit removal. Primary Treatment: Here, the wastewater is allowed to settle in large tanks, separating solids from liquids. The solids, known as sludge, are removed for further treatment. Secondary Treatment: This stage typically involves biological processes where microorganisms break down organic matter. Common methods include activated sludge systems and trickling filters. Tertiary Treatment: This advanced treatment focuses on removing remaining impurities, including nutrients like nitrogen and phosphorus. Techniques can include filtration, chemical treatment, or advanced oxidation. Disinfection: Before discharge or reuse, the treated water is disinfected to eliminate pathogens, often using chlorine, UV radiation, or ozone. Sludge Management: The sludge generated during treatment is further processed, which can involve digestion, dewatering, and sometimes incineration or landfilling.