Novel high-efficient treatment facility of boats and ships sewage
Technical Field
The utility model relates to the technical field of sewage treatment equipment, in particular to novel efficient ship sewage treatment equipment.
Background
The traditional ship sewage treatment methods mainly depend on physical filtration and precipitation technologies, and the methods really play a certain role in the aspects of primarily removing large-particle impurities and suspended matters in water, but the treatment efficiency is often unsatisfactory.
Specifically, physical filtration generally relies on the pore size of a filter screen to entrap impurities, but has a certain filtering effect, but the marine sewage has complex components, contains various harmful substances such as heavy metals, oils, organic pollutants and the like besides common suspended substances, and can cause immeasurable damage to the marine ecological environment if the substances are directly discharged without effective treatment, however, the traditional physical filtration and precipitation technology has very limited removing effect on the harmful substances, and can not thoroughly purify the sewage very well.
Disclosure of utility model
The utility model aims to solve the defect that the existing sewage treatment device for ships has insufficient medicament adding when sewage is treated, and provides novel high-efficiency sewage treatment equipment for ships.
In order to achieve the above purpose, the present utility model adopts the following technical scheme:
The novel efficient ship sewage treatment equipment comprises a stirring chamber, wherein a stirring member is arranged on the inner side of the stirring chamber, a filter cavity is fixed on the inner side of the stirring chamber, a water inlet is formed in the top of the filter cavity, a filter hole is formed in one side of the filter cavity, and a water outlet pipe is arranged on one side of the bottom of the stirring chamber;
a purifying component is arranged on one side of the stirring chamber;
Preferably, the purifying member comprises a liquid storage tank, one side of the stirring chamber is provided with the liquid storage tank, the top of the liquid storage tank is fixedly provided with a mixer, the bottom of the mixer is fixedly provided with a transfusion tube, one side of the transfusion tube is connected with a water suction pump, the direction of the output end of the water suction pump is fixedly provided with a liquid outlet pipe, and one side of the liquid outlet pipe is fixedly provided with the stirring chamber.
Preferably, the mixer comprises a servo motor, the top of the liquid storage tank is fixed with the servo motor, a round roller is fixed in the direction of the output end of the servo motor through a connecting rod, and a stirring block is fixed on the outer side wall of the round roller.
Preferably, the stirring block is arranged in a micro-arch structure.
The servo motor drives the round roller to rotate, and the stirring block (arranged in a micro-arch structure) at the outer side of the round roller rotates along with the round roller to stir the purifying agent (such as chemical agent and biological agent) which is put into the liquid storage tank in advance, so that the purifying agent, the chemical agent and the biological agent are uniformly mixed. And then the water suction pump pumps out the evenly mixed purifying agent through the infusion tube, and sends the purifying agent into the stirring chamber through the liquid outlet tube, and the purifying agent is mixed with sewage in the stirring chamber, and the purifying agent and pollutant in the sewage are subjected to chemical reaction or biological action, so that harmful substances in the sewage are further removed.
Preferably, the stirring member comprises a rotating motor, one side of the stirring chamber is fixed with the rotating motor, the output end direction of the rotating motor is fixed with a stirring roller through a connecting rod, and the outer side of the stirring roller is fixed with blades.
Preferably, the stirring roller and the blades are positioned on the lower side of the filter cavity.
The stirring component in the stirring chamber starts to work, the rotating motor drives the stirring roller to rotate, the blades on the outer side of the stirring roller rotate along with the stirring roller to stir sewage entering the stirring chamber, the stirring aim is to uniformly disperse pollutants in the sewage and prepare for subsequent processing steps, and the stirring roller and the blades are positioned on the lower side of the filter cavity, so that the sewage subjected to preliminary filtration can smoothly enter the stirring chamber and be sufficiently stirred.
Preferably, the plurality of filtering holes are formed, and the plurality of filtering holes are formed in a rectangular array.
Preferably, the shape of the filter hole is a triangle structure.
Compared with the prior art, the utility model provides novel high-efficiency ship sewage treatment equipment, which has the following beneficial effects:
According to the utility model, through combining a stirring device with a physical and chemical method, the filter cavity preliminarily filters large-particle impurities and suspended matters, so that the treatment efficiency is improved, the pollutant is uniformly dispersed in the stirring chamber, the purification effect is improved, the harmful substances are removed by the purification component through chemical reaction or biological action, the mixer ensures the consistent treatment effect, the raw material consumption is reduced, the running cost is reduced, the treatment quality is improved, and the problem that the removal effect of ship sewage on the harmful substances is very limited is solved.
Drawings
FIG. 1 is a schematic perspective view of the present utility model;
FIG. 2 is a schematic cross-sectional view of the present utility model;
FIG. 3 is a schematic view of another perspective view of the present utility model;
FIG. 4 is a schematic view of a purifying member according to the present utility model;
fig. 5 is a schematic view of a mixer according to the present utility model.
The device comprises a stirring chamber 1, a stirring member 2, a rotating motor 21, a stirring roller 22, a stirring roller 23, a blade 3, a filter cavity 4, a water inlet 5, a filter hole 6, a water outlet pipe 7, a purifying member 71, a liquid storage tank 72, a mixer 721, a servo motor 722, a round roller 723, a stirring block 73, a liquid conveying pipe 74, a water pump 75 and a liquid outlet pipe.
Detailed Description
The following description of the embodiments of the present utility model will be made clearly and completely with reference to the accompanying drawings, in which it is apparent that the embodiments described are only some embodiments of the present utility model, but not all embodiments.
In the description of the present utility model, it should be understood that the terms "upper," "lower," "front," "rear," "left," "right," "top," "bottom," "inner," "outer," and the like indicate or are based on the orientation or positional relationship shown in the drawings, merely to facilitate description of the present utility model and to simplify the description, and do not indicate or imply that the devices or elements referred to must have a specific orientation, be configured and operated in a specific orientation, and thus should not be construed as limiting the present utility model.
Example 1
Referring to fig. 1, 3, 4 and 5, the novel efficient ship sewage treatment equipment comprises a stirring chamber 1, wherein a stirring member 2 is arranged on the inner side of the stirring chamber 1, a filter cavity 3 is fixed on the inner side of the stirring chamber 1, a water inlet 4 is formed in the top of the filter cavity 3, a filter hole 5 is formed in one side of the filter cavity 3, and a water outlet pipe 6 is arranged on one side of the bottom of the stirring chamber 1;
One side of the stirring chamber 1 is provided with a purifying member 7;
The purifying member 7 comprises a liquid storage tank 71, one side of the stirring chamber 1 is provided with the liquid storage tank 71, the top of the liquid storage tank 71 is fixedly provided with a mixer 72, the bottom of the mixer 72 is fixedly provided with a transfusion tube 73, one side of the transfusion tube 73 is connected with a water suction pump 74, the output end direction of the water suction pump 74 is fixedly provided with a liquid outlet pipe 75, and one side of the liquid outlet pipe 75 is fixedly provided with the stirring chamber 1.
The mixer 72 includes a servo motor 721, the servo motor 721 is fixed to the top of the liquid storage tank 71, a round roller 722 is fixed to the output end direction of the servo motor 721 through a connecting rod, and a stirring block 723 is fixed to the outer side wall of the round roller 722.
The stirring block 723 is provided in a micro-arch structure.
The servo motor 721 drives the round roller 722 to rotate, and the stirring block 723 (arranged in a micro-arch structure) at the outer side of the round roller 722 rotates along with the round roller, so as to stir the purifying agent (such as chemical agent and biological agent) which is put in the liquid storage tank 71 in advance, and uniformly mix the purifying agent and the biological agent. The water pump 74 then pumps the evenly mixed purifying agent out through the infusion tube 73, and sends the purifying agent into the stirring chamber 1 through the liquid outlet tube 75 to be mixed with the sewage in the stirring chamber 1, and the purifying agent and the pollutant in the sewage are subjected to chemical reaction or biological action to further remove the harmful substances in the sewage.
Example two
Based on example 1, referring to fig. 1, 2 and 3, the stirring member 2 includes a rotary motor 21, the rotary motor 21 is fixed to one side of the stirring chamber 1, a stirring roller 22 is fixed to the output end direction of the rotary motor 21 via a link, and a blade 23 is fixed to the outer side of the stirring roller 22.
The stirring roller 22 and the blade 23 are positioned at the lower side of the filter chamber 3.
The stirring member 2 in the stirring chamber 1 starts to work, the rotating motor 21 drives the stirring roller 22 to rotate, the blades 23 on the outer side of the stirring roller 22 rotate along with the stirring roller to stir sewage entering the stirring chamber 1, the stirring purpose is to uniformly disperse pollutants in the sewage, preparation is made for subsequent processing steps, and the stirring roller 22 and the blades 23 are positioned on the lower side of the filter cavity 3, so that the sewage subjected to preliminary filtration can be ensured to smoothly enter the stirring chamber 1 and be sufficiently stirred.
The filter holes 5 are arranged in a plurality, and the filter holes 5 are arranged in a rectangular array.
The filter holes 5 are formed in a triangular structure.
The working principle of the sewage treatment device for the ship is mainly based on the combination of physical and chemical methods, sewage is treated through the steps of stirring, filtering, purifying and the like, so that the aim of purifying water quality is achieved, and the following detailed working principle is explained:
Sewage firstly enters the filter cavity 3 through the water inlet 4 at the top of the filter cavity 3, and the sewage is subjected to preliminary filtration in the filter cavity 3. Because one side of the filter cavity 3 is provided with a plurality of filter holes 5 which are rectangular arrays and have a triangular structure, the filter holes can primarily block and remove large particle impurities and suspended matters in sewage. After the sewage enters, at the same time, the stirring member 2 in the stirring chamber 1 starts to work, the rotating motor 21 drives the stirring roller 22 to rotate, the blades 23 on the outer side of the stirring roller 22 rotate along with the stirring member, the sewage entering the stirring chamber 1 is stirred, the stirring aim is to uniformly disperse pollutants in the sewage, preparation is made for the subsequent treatment step, and the stirring roller 22 and the blades 23 are positioned on the lower side of the filter cavity 3, so that the sewage subjected to preliminary filtration can smoothly enter the stirring chamber 1 and be sufficiently stirred.
After the sufficient stirring, the cleaning member 7 starts to operate, particularly the mixer 72, and the servo motor 721 drives the round roller 722 to rotate, so that the stirring block 723 (arranged in a micro-arch structure) outside the round roller 722 rotates, and the cleaning agent (such as chemical agent and biological agent) put in advance in the liquid storage tank 71 is stirred to be uniformly mixed. The water pump 74 then pumps the evenly mixed purifying agent out through the infusion tube 73, and sends the purifying agent into the stirring chamber 1 through the liquid outlet tube 75 to be mixed with the sewage in the stirring chamber 1, and the purifying agent and the pollutant in the sewage are subjected to chemical reaction or biological action to further remove the harmful substances in the sewage.
The water quality of the sewage after stirring and purifying treatment is obviously improved, the treated water is discharged through the water outlet pipe 6 at one side of the bottom of the stirring chamber 1 (the water outlet pipe 6 is provided with a valve which is described in the prior art, and the utility model is not described too much), and finally the sewage can be reused on ships or safely discharged to the external environment.