Rural water-quality-based water supply and purification integrated system for energy conservation and emission reduction
An energy saving and emission reduction, rural technology, applied in the fields of water pollutants, multi-stage water treatment, water/sewage treatment, etc., can solve the problem that ordinary water purifiers are not widely used, water pressure is not guaranteed, and consumption is harmed. health and other issues, to achieve the effect of high water resource utilization, cost and resource saving, and low cost
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Embodiment 1
[0030] An integrated system for energy-saving and emission-reducing rural water supply and purification by quality separation, comprising a pretreatment system 2, a heavy metal ion treatment system 5, a water softening system 9 and an ultrafiltration treatment system 14 connected in sequence through pipelines.
[0031]The water inlet of the pretreatment system 2 is connected to the water outlet 1 of the water source, and the water outlet of the pretreatment system 2 is connected to the water inlet of the heavy metal ion treatment system 5 . The pretreatment system 2 is a PP cotton coil 3. The PP cotton coil 3 is composed of PP cotton wound on a support frame 4. The support frame 4 is a hollow cylinder for removing particulate matter in water.
[0032] Both sides of the bottom of the heavy metal ion treatment system 5 are connected to the sewage outlet 20 and the backwash valve 21, and the water outlet of the heavy metal ion treatment system 5 is connected to the water inlet of ...
Embodiment 2
[0037] The difference between embodiment 2 and embodiment 1 is that the adsorption body 6 is composed of a first adsorption layer 61, a second adsorption layer 62 and a third adsorption layer 63, the adsorption material of the first adsorption layer 61 is graphene oxide, and the second adsorption layer 61 is made of graphene oxide. The adsorption material of the second adsorption layer 62 is activated carbon, the adsorption material of the third adsorption layer 63 is KDF55 alloy, the bottoms of the first adsorption layer 61, the second adsorption layer 62, and the third adsorption layer 63 are all provided with filter plates 67, the first The adsorption layer 61, the second adsorption layer 62, and the third adsorption layer 63 are detachably connected by flanges 68, so that the materials in the adsorption layers can be replaced at any time and prolong the service life of the system. The flanges 65 are connected by bolts.
Embodiment 3
[0039] The difference between embodiment 3 and embodiment 1 is that the adsorption body consists of a first adsorption layer 61, a second adsorption layer 62, a third adsorption layer 63, a fourth adsorption layer 64, a fifth adsorption layer 65, and a sixth adsorption layer. layer 66, the adsorption material of the first adsorption layer 61 is activated carbon, FDF55 alloy, and graphene oxide from left to right, the adsorption material of the second adsorption layer 62 is activated carbon, and the adsorption material of the third adsorption layer 63 is KDF55 alloy. The adsorption material of the fourth layer of adsorption layer 64 is graphene oxide, the adsorption material of the fifth layer of adsorption layer 65 is KDF55 alloy and activated carbon, the adsorption material of the sixth layer of adsorption layer 66 is KDF55 and graphene oxide, the bottom of each adsorption layer All are equipped with filter plates 67, and each adsorption layer is detachably connected by flange...
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