The present invention is related to an improved sewage floating/decontaminating tank structure, and more particularly to a sewage floating/decontaminating tank structure having a first tank and a second tank respectively for mixing procedure and precipitation procedure. The sewage floating/decontaminating tank structure is capable of providing better purifying effect to achieve cleaner reusable water.
A conventional sewage floating/decontaminating apparatus is generally equipped with a tank for containing sewage. Bubbles are added into the tank. The bubbles are stained with the dirt in the sewage to buoy up to the level, forming a floating layer of foams. The floating foams are then removed. By means of such sewage disposing apparatus, the water resource can be recovered and reused. Accordingly, the consumption of the water can be reduced and the cost for the water can be lowered. Such sewage disposing apparatus is widely applied to fish cultures, sewerage plants and secondary utility of civil water.
It is known that the conventional sewage floating/decontaminating apparatus is further equipped with a blending unit for expediting the contact between the bubbles and the pollutants. In addition, a material for absorbing the dirt can be added into the sewage. The blending unit serves to expedite the absorption of the dirt. Also, an absorbent can be added into the sewage for absorbing toxic components to obtain cleaner secondary usable water.
It is tried by the applicant to provide a sewage floating/decontaminating apparatus with different structure and better filtering effect. The sewage floating/decontaminating apparatus is applicable to wider range and daily life, especially in those districts lacking water resource.
It is therefore a primary object of the present invention to provide an improved sewage floating/decontaminating tank structure having multiple tanks respectively for mixing procedure and precipitation procedure. Therefore, the sewage floating/decontaminating tank structure is capable of providing better purifying effect to achieve cleaner reusable water.
According to the above object, the sewage floating/decontaminating tank structure of the present invention includes a first tank and a second tank. The first tank has a first inlet, a second inlet and a relief outlet. The sewage is conducted into the first tank from the first inlet. A decontaminating agent is added into the first tank from the second inlet. The sewage flows in a preset flowing path inside the first tank and then discharges from the relief outlet of the first tank. The second tank has an inlet communicating with the relief outlet of the first tank via a communicating member. The sewage is conducted from the relief outlet of the first tank into inlet of the second tank through the communicating member. The sewage is secondarily decontaminated in the second tank. The second tank has an exhaustion section arranged on an upper portion of the second tank. The contaminants floating on the level of the sewage in the second tank automatically spill out from the exhaustion section or are exhausted from the exhaustion section by means of a cleaning unit. The second tank further an outlet arranged on a lower portion of the second tank. The purified water free from the contaminants is conducted out from the outlet of the second tank for reuse. The sewage floating/decontaminating tank structure of the present invention further includes a blending unit disposed in at least one of the first tank and the second tank. The blending unit serves to fully mix the decontaminating agent with the sewage so as to achieve better decontaminating effect.
The present invention can be best understood through the following description and accompanying drawings wherein:
Please refer to
In this embodiment, the first tank 10 is positioned above the second tank 20. The first tank 10 is vertically arranged and has an elongated configuration, whereby the sewage can quickly pass through the first tank 10 with effect. In addition, there is a longer distance for the blending operation. The sewage mixed with gases is conducted from outer side into the first inlet 11 at the lower end of the first tank 10. The decontaminating agent is added into the first tank 10 from the second inlet 12. The decontaminating agent goes up from lower side of the first tank 10. In this embodiment, in order to more evenly spread the bubbles and decontaminating agent over the sewage, a blending unit 30 is mounted in the first tank 10. The blending unit 30 has a blender 31 vertically disposed in the first tank 10. When the sewage flows through the narrow and elongated space of the first tank 10, the blending unit 30 serves to fully evenly mix the bubbles and the decontaminating agent with the sewage. Then the sewage is exhausted from the relief outlet 13 disposed on upper side of the first tank 10.
It should be noted that the sewage and the decontaminating agent are fully mixed in the first tank 10. Then the mixture is conducted into the second tank 20 and reserved therein. Through precipitation, the purified water and the contaminants are separated. In practice, the mixing procedure is performed before the separation of the contaminants and the water. Therefore, during the reservation and precipitation, the contaminants can be more fully separated from the water. In contrast, in the conventional sewage floating/decontaminating apparatus, the mixing operation, the precipitation and the removal of the contaminants are performed at the same time in one single tank. When stirring the sewage to mix the decontaminating agent with the contaminants, the contaminants can hardly fully separate from the water. In comparison with the conventional sewage floating/disposing apparatus, the sewage floating/decontaminating tank of the present invention has better decontaminating effect.
In conclusion, the sewage floating/decontaminating tank of the present invention has two separate tanks. The mixing procedure is performed in the first tank and the reservation and precipitation procedure is performed in the second tank after the mixing procedure so that the contaminants can be more fully separated from the water.
The above embodiments are only used to illustrate the present invention, not intended to limit the scope thereof. Many modifications of the above embodiments can be made without departing from the spirit of the present invention.
Number | Date | Country | Kind |
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096201672 | Jan 2007 | TW | national |