- Product Details
- {{item.text}}
Quick Details
-
Weight (KG):
-
20 kg
-
material for housing:
-
carbon steel,SS304/316
-
power supply:
-
AC100-120V, or 220-240V,50/60Hz
-
working voltage:
-
<36V
-
water temperature:
-
0--95 centigrade
-
descaling efficiency:
-
>80%
-
loss of ater head:
-
4-7m
-
electrode power:
-
25W,50W
-
Feature:
-
Eco-Friendly Easy Operation
-
Technology:
-
High-frequency electrode Technology
-
Advantage:
-
Simple Installation
Quick Details
-
Place of Origin:
-
Jiangsu, China
-
Brand Name:
-
YLD
-
Productivity:
-
100m3/hour
-
Weight (KG):
-
20 kg
-
material for housing:
-
carbon steel,SS304/316
-
power supply:
-
AC100-120V, or 220-240V,50/60Hz
-
working voltage:
-
<36V
-
water temperature:
-
0--95 centigrade
-
descaling efficiency:
-
>80%
-
loss of ater head:
-
4-7m
-
electrode power:
-
25W,50W
-
Feature:
-
Eco-Friendly Easy Operation
-
Technology:
-
High-frequency electrode Technology
-
Advantage:
-
Simple Installation
Wastewater treatment is essential to protecting the environment and human welfare. Water is a resource that is fundamental to human life, which makes taking action to protect the resource on the forefront of research. Treated wastewater effluent is a possible source that can pollute receiving water bodies and cause contamination. It is often discharged into larger bodies of water that are used in people’s everyday lives. A new and novel approach technology is introduced to treat the waste water. Electromagnetic waste water is old but approached in new way to reduce the pollutant level. By applying this method chemical oxygen demand 1500mg, hardness80mg/l, suspended soild 65mg/l was reduced respectively. The purpose of the research described herein is to test the feasibility of alternative wastewater by electromagnetic methods. Treatment facilities are implementing alternative technologies, though the cost and efficiency associated with these practices leave much room in the wastewater field for innovation.
What is an electromagnetic water conditioner?
Water conditioners are the ecological solution for overcoming the lifecycle cost associated with the build-up of hard limescale in water systems. An electromagnetic water conditioner reduces the energy consumption and extends the life of equipment by eliminating the build-up of hard calcareous limescale, without introducing harmful chemicals or additives.
Working principle
Unlike other devices, an electromagnetic water softener does not remove dissolved substances like calcium or magnesium from water. It just alters them, and hence, it is also called an electromagnetic water conditioner. This appliance is installed with magnets for generating electromagnetic fields, when electricity passes through the magnets.
As a part of the softening process, the incoming hard water passes through the electromagnetic fields, which impart electrical charge on the mineral salts present in the hard water. The dissolved minerals and salts are altered in such a way that they can no longer form lime scales. Thus, these devices reduce the scale formation or watermarks created by the minerals.
For better performance, it is necessary to maintain certain water quality factors. The overall effectiveness of softening hard water may vary depending upon water hardness scale, amount of impurities present in water, temperature of the incoming hard water, and rate of water flow. Only if the incoming water quality matches the requirements of the devices, the softeners will show acceptable performance.
Though such devices are available in the market for home use, their effectiveness is still controversial. The promoters and/or manufacturers claim that these softeners effectively solve the problems of hard water. According to them, water treated by this technique is safe for drinking, as the generated electromagnetic field destroys the harmful bacteria, algae, and disease-causing microbes. However, appropriate tests and verification regarding their efficacy, should be done prior to installation of such devices.
The performance of such devices may vary from one house to another, based on the water variables. It is also to be noted that high voltage lines installed near the electromagnetic field also negatively affects the effectiveness of water softening. Hence, fixing of the magnets and electric lines should be done properly. Electromagnetic water softeners are reported to have positive results in large-scale water purification systems, such as industries and commercial complexes, in which the required water quality can be controlled according to the device.
Treating hard water with a water conditioner ensures that the quality of the water is maintained; none of the essential minerals present in potable drinking water are removed through the treatment.