Birgoan, Raipur, Chhattisgarh
GST No. 22AUUPD9183D1ZH
Call 08043892757 56% Response Rate
Minimum Order Quantity: 1 Piece
Product Brochure
Model Name/Number | DW103D |
Brand | PINEA |
Type | Digital |
Material | SS |
Voltage | 12V |
Packaging Type | WOODEN |
Operating Temperature | 50 |
Country of Origin | Made in India |
Pinea (Erstwhile-Kent Meters) is an industry leader in the development and implementation of Innovative metering solutions to the flow meter industry and is committed to address the unique challenges the industry faces.
We are actively leading e-Water Governance and environmental conservation with IOT technology. Developed innovative water governance instruments for groundwater and surface water distribution and monitoring. Fulfill the Guidelines of CGWB / Govt Compliance
Digital water level recorders with telemetry are devices used to measure water levels in lakes, rivers, wells, and other bodies of water. They consist of a sensor that measures the water level, a data logger that records the measurements, and a telemetry system that transmits the data to a remote location for analysis. There are several advantages to using digital water level recorders with telemetry, including:
Real-time data: With digital water level recorders with telemetry, data is transmitted in real-time, allowing for quick analysis and decision-making. This is particularly important for flood warning systems or water management operations.
1.Accurate data: Digital water level recorders with telemetry provide accurate and precise measurements, ensuring that the data collected is reliable and can be used for scientific research, monitoring, and modeling.
2.Cost-effective: Digital water level recorders with telemetry can be more cost-effective than traditional monitoring methods, as they can reduce the need for manual data collection and field visits.
3.Easy to install and maintain: These devices are relatively easy to install and maintain, with minimal on-site training required for operators.
4.Remote accessibility: With digital water level recorders with telemetry, data can be accessed remotely from anywhere with an internet connection, making it easier to monitor water levels and make informed decisions.
5.Customizable: Digital water level recorders with telemetry can be customized to meet specific monitoring requirements, such as measuring water temperature, pH levels, and other water quality parameters.
6.Low Maintenance: Digital water level recorders are low-maintenance devices that require little to no manual intervention. They can be left in place for long periods of time without requiring any attention.
7.Data Logging: Digital water level recorders are capable of logging data over long periods of time, which means that you can easily track changes in water levels over weeks, months, or even years.
8.Remote Monitoring: Some digital water level recorders can be connected to the internet, which means that you can monitor water levels remotely from anywhere in the world.
9.Cost-effective: Digital water level recorders can be a cost-effective solution for measuring water levels over long periods of time. They often require less manual labor compared to traditional measuring methods, which can save you money in the long run.
Additional Information:
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Minimum Order Quantity: 1 Piece
Capacity (KLD/MLD) | 50 KLD |
Capacity | Up to 30 KLD |
AMC Provided | Yes |
Application Industry | Food Industry |
Treatment Technology | Activated Sludge Process(ASP) |
Feed Flow Rate(m3/day) | Up to 50 m3/day |
Feed Flow Rate(m3/day or m3/hr) | 51-100 m3/day |
Installation Type | Containerized Plug & Play |
Material of Construction | Mild Steel |
Impurities To Be Removed | TDS, Dissolved Minerals |
Deliver Type | PAN India |
Treatment Stages | Preliminary Treatment, Secondary Treatment |
Country of Origin | Made in India |
An industrial sewage treatment plant is designed to treat wastewater generated from industrial processes. Industrial wastewater can contain a wide variety of pollutants, including heavy metals, oils, chemicals, and organic matter, which require specialized treatment processes to be removed before the water can be discharged safely into the environment or reused.
There are several types of industrial sewage treatment plants, including:
1.Physical Treatment: Physical treatment involves the use of physical processes to remove pollutants from wastewater. This can include screening to remove large particles, sedimentation to remove suspended solids, and filtration to remove finer particles.
2.Chemical Treatment: Chemical treatment involves the use of chemicals to remove pollutants from wastewater. This can include adding coagulants or flocculants to the water to cause the pollutants to clump together and settle out, or adding chemicals to neutralize acids or bases in the water.
3.Biological Treatment: Biological treatment involves the use of microorganisms to break down pollutants in the wastewater. This can include using aerobic bacteria to break down organic matter, or using anaerobic bacteria to break down chemicals such as oils or solvents.
4.Membrane Treatment: Membrane treatment involves the use of membranes to filter pollutants from wastewater. This can include using microfiltration or ultrafiltration membranes to remove suspended solids, or using reverse osmosis membranes to remove dissolved pollutants.
5.Advanced Treatment: Advanced treatment involves the use of specialized treatment processes to remove specific pollutants from wastewater. This can include using activated carbon to remove organic chemicals, or using ion exchange to remove heavy metals.
The choice of industrial sewage treatment plant will depend on factors such as the type and concentration of pollutants in the wastewater, the required effluent quality, and the volume of wastewater generated. It is important to consult with a professional to select the appropriate treatment plant for a specific industrial wastewater application.
Important of Sewage Treatment plant
Sewage treatment plants are important for several reasons:
1.Protecting Public Health: Sewage treatment plants remove harmful pollutants and contaminants from wastewater before it is discharged into the environment or reused. This helps to prevent the spread of waterborne diseases and protects public health.
2.Protecting the Environment: Sewage treatment plants remove pollutants from wastewater before it is discharged into the environment, which helps to prevent contamination of surface water, groundwater, and soil. This protects the environment and helps to preserve natural habitats.
3.Conserving Water Resources: Sewage treatment plants can treat wastewater for reuse in various applications such as irrigation, industrial processes, and even potable water. By treating and reusing wastewater, sewage treatment plants help to conserve water resources.
4.Meeting Regulatory Requirements: Sewage treatment plants are subject to regulatory requirements that specify the effluent quality and discharge standards. By complying with these requirements, sewage treatment plants help to protect the environment and ensure public health.
In summary, sewage treatment plants are important for protecting public health, the environment, and water resources, meeting regulatory requirements, and supporting economic development. Sewage treatment plants help to ensure that wastewater is treated effectively and safely before it is discharged into the environment or reused for various purposes.
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Minimum Order Quantity: 1 Piece
Plant Capacity | Up To 200 LPH |
Capacity | Up to 30 KLD |
Water Source Type | Industrial Effluent |
Application Industry | Pharmaceutical & Chemicals |
Inlet Flow Rate(m3/day or m3/hr) | 50 m3/day |
Air Blower Count | 2 Blowers |
Air Blower Power | 0.5 KW |
Treatment Technology | Mixed Bed Bio Reactor(MBBR) |
Water Source | Commercial Waste Water |
Treatment Stages | Secondary Treatment, Primary Treatment |
An Industrial ETP (Effluent Treatment Plant) is a facility designed to treat and clean the wastewater generated by industrial processes. Industrial wastewater contains various pollutants such as chemicals, oils, heavy metals, and organic materials that can harm the environment if not treated properly.
An ETP typically involves a series of physical, chemical, and biological processes to remove these pollutants from the wastewater before it is discharged into the environment or reused within the industrial process. The treatment process may involve steps such as:
Preliminary treatment: This involves screening, grit removal, and sedimentation to remove large solids and debris.
Primary treatment: This involves the removal of suspended solids and organic matter using physical or chemical processes such as coagulation, flocculation, sedimentation, and filtration.
Secondary treatment: This involves the removal of dissolved organic matter and nutrients using biological processes such as activated sludge treatment, trickling filter, or biofilm systems.
Tertiary treatment: This involves further treatment of the effluent to remove any remaining pollutants or contaminants, such as disinfection or advanced oxidation.
The specific treatment process used in an ETP will depend on the type and concentration of pollutants in the industrial wastewater, as well as the discharge standards set by regulatory authorities.
Overall, an ETP is an essential part of many industrial processes as it helps to protect the environment and ensure compliance with regulations. Proper maintenance and operation of the ETP are necessary to ensure optimal treatment efficiency and minimize the risk of environmental pollution.
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Service Location | Orissa & Chhattisgarh |
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