Urban river channel direct purification device
11401186 · 2022-08-02
Assignee
Inventors
- Zhaohui Wang (Shanghai, CN)
- Hao Lu (Shanghai, CN)
- Xin Zhang (Shanghai, CN)
- Shaobo ZHU (Shanghai, CN)
- Xiang LONG (Shanghai, CN)
Cpc classification
C02F1/286
CHEMISTRY; METALLURGY
C02F3/32
CHEMISTRY; METALLURGY
C02F2103/007
CHEMISTRY; METALLURGY
C02F2203/00
CHEMISTRY; METALLURGY
B01D25/00
PERFORMING OPERATIONS; TRANSPORTING
B01D25/164
PERFORMING OPERATIONS; TRANSPORTING
B01D25/215
PERFORMING OPERATIONS; TRANSPORTING
International classification
B01D25/00
PERFORMING OPERATIONS; TRANSPORTING
C02F3/32
CHEMISTRY; METALLURGY
B01D25/164
PERFORMING OPERATIONS; TRANSPORTING
Abstract
The present disclosure provides an urban river channel direct purification device. The device includes a support wall panel arranged vertically, an upper tray and a lower tray arranged horizontally, an upper end of the support wall panel is connected with the upper tray, a lower end of the support wall panel is connected with the lower tray, the upper tray and the lower tray are respectively semi-circular, several filler biological walls are disposed between the upper tray and the lower tray, a top end of each filler biological wall is fixedly connected with the bottom of the upper tray, a bottom end of each filler biological wall is fixedly connected with the lower tray, and the filler biological wall is arranged along a radial direction of the upper tray/lower tray. The device can purify the water of the river channel through the adsorption material in the device.
Claims
1. An urban river channel direct purification device, comprising a support wall panel (1) arranged vertically, an upper tray (2) and a lower tray (3) arranged horizontally, an upper end of the support wall panel (1) is connected with the upper tray (2), a lower end of the support wall panel (1) is connected with the lower tray (3), the upper tray (2) and the lower tray (3) are respectively semi-circular, a plurality of filler biological walls (4) is disposed between the upper tray (2) and the lower tray (3), a top end of each filler biological wall (4) is fixedly connected with the upper tray (2), a bottom end of each filler biological wall (4) is fixedly connected with the lower tray (3), and the plurality of filler biological walls (4) is arranged along a radial direction of the upper tray (2) or the lower tray (3); wherein each filler biological wall (4) comprises a filler grid frame including two pieces of grids (43), wherein a filler layer for directly purifying water in the river channel is disposed between the two pieces of grids (43), an upper end and a lower end of each of the grids (43) are respectively bent outward to form connecting portions (431), the connecting portion (431) at the upper end of each of the grids (43) are connected with the upper tray (2), and the connecting portion (431) at the lower end of each of the grids (43) is connected with the lower tray (3).
2. The urban river channel direct purification device according to claim 1, wherein each filler biological wall (4) comprises a first biological wall (41) and a second biological wall (42), a radial length of the first biological wall (41) is greater than a radial length of the second biological wall (42), the first biological wall (41) and the second biological wall (42) are arranged in a staggered manner.
3. The urban river channel direct purification device according to claim 1, wherein the filler layer comprises two first adsorption layers (461), each made of a bamboo raft, and a second adsorption layer (462) disposed between the two first adsorption layers (461), wherein the second adsorption layer (462) is formed by stacking bags of coal cinders.
4. The urban river channel direct purification device according to claim 3, wherein the bamboo raft is woven from bamboo sheets into a mesh structure, and is bound to the filler grid frame by an iron wire.
Description
BRIEF DESCRIPTION OF THE DRAWINGS
(1)
(2)
(3)
(4)
(5)
(6) TABLE-US-00001 Description of Reference Numerals 1 Support wall panel 11 First inclined support 12 Second inclined support 13 Hook 2 Upper tray 21 Hole 22 Amphiphyte 3 Lower tray 31 Hole 4 Filler biological wall 41 First biological wall 42 Second biological wall 43 Grid 431 Connecting portion 44 Batten 45 Bolt 461 First adsorption layer 462 Second adsorption layer 47 External green plant 5 Retaining wall 51 Expansion bolt
DETAILED DESCRIPTION OF THE PREFERRED EMBODIMENTS
(7) The embodiments of the present disclosure will be described below. Those skilled may easily understand other advantages and effects of the present disclosure according to contents disclosed by the specification.
(8) It should be understood that the structures, proportions, sizes, and the like, which are illustrated in the drawings of the present specification, are only used to clarify the contents disclosed in the specification for understanding and reading by those skilled, and are not intended to limit the implementation of the present disclosure, thus are not technically meaningful. Any modification of the structure, change of the scale, or adjustment of the size should still fall within the scope of the technical contents disclosed by the present disclosure without affecting the effects and achievable objectives of the present disclosure. In the meantime, the terms “upper”, “lower”, “left”, “right”, and “intermediate” as used in this specification are also for convenience of description, and are not intended to limit the scope of the present disclosure, and the change or adjustment of the relative relationship is considered to be within the scope of the present disclosure without substantial changes in technology.
(9) As shown in
(10) Potted green plants or amphibious plants 22 are arranged in the upper tray 2, which can not only beautify the environment, but also block the purification components below. The lower tray 3 mainly supports the bottom end of the filler biological wall 4, the lower tray 3 includes evenly holes 31 outside the biological wall. The upper tray 2 and the lower tray 3 have the same radius, which is set as required and generally ranges from 1.2 to 1.5 m. Circular holes 21 are arranged on the upper tray 2 and circular holes 31 are arranged on the lower tray 3 to reduce buoyancy and facilitate the mutual communication of water bodies. The upper tray 2 and the lower tray 3 have the same size and shape, which is convenient for standardized production and installation. The width of the support wall panel 1 is equal to the diameter of the upper tray 2/lower tray 3, and the height of the support wall panel 1 is equal to the height from the mud surface of the revetment to the design high water level. The support wall panel 1 is a whole board, or it can be empty in the middle. The support wall panel 1 may be partially thickened or adopt other structural measures according to strength requirements.
(11) As shown in
(12) As shown in
(13) As shown in
(14) A second adsorption layer 462 is disposed between the first adsorption layers 461 on both sides. The middle layer is the main adsorption decontamination layer, which uses coal cinder for adsorbing the pollutant. The thickness of the second adsorption layer 462 is generally greater than 200 mm. Coal cinder is packed in bags to form coal cinder bags. The coal cinder bags are stacked in a cavity formed by bamboo rafts of the grid frame, and their function is to adsorb harmful substances in water. The bags used to store the adsorbent coal cinder are permeable materials, which can use geotextiles or geogrids, and the mesh size of the bags should be smaller than the particle diameter of the adsorbent. The use of bags is convenient for construction and replacement. The size of the bags is suitable for one person to carry after loading. Generally, after one year of running the device, the filler has already saturated with adsorbed harmful substances. The device is lifted, the bags are pulled out of the empty space of the wall from the grid frame, and the adsorbent is replaced. The outer bamboo raft can not only degrade harmful substances in the river, but also provide space for the growth and reproduction of microorganisms in the river, and promote the degradation of pollutants in the water of the river. The bamboo raft, coal cinder bag, batten, bolt, etc. that constitute the biological wall have the same size and shape, which is convenient for standardized production and installation.
(15) As shown in
(16) As shown in
(17) As shown in
(18) The device of the present disclosure should meet the strength requirements. Since the filler biological wall material is light in weight and has the effect of water buoyancy, the general plastic is sufficient to meet the requirements. The trays, wall panel, grid frame, hooks, bamboo rafts and coal cinder bags are all standard components, which are versatile, so they are easy for the factory to make and easy for on-site installation.
(19) The coal cinder used in the present disclosure is a porous material, which has an enlarged structure, honeycomb pores, is insoluble in water, can be used as an adsorption material after screening and washing, and can filter out particulate materials that are visible to eyes. The coal cinder has a good effect on the separation of odor, suspended matter and color-developing substances in water, and is an inexpensive adsorption material.
(20) The coal cinder is used for purification of river water quality. The comprehensive utilization of coal cinder greatly reduces the generation amount of solid waste, saves the area of solid waste, and avoids many pollution problems caused by it. Using large amounts of coal cinder is the reuse of waste, which saves resources and energy, and creates economic value.
(21) The bamboo raft used in the present disclosure is made of natural ecological materials, has a biological affinity, rough surface, and large specific surface area. Bamboo is rich in resources, and the cost of bamboo is low. Bamboo is renewable, environmental pollution is low, and bamboo can degrade itself. Bamboo is a natural material with good biological affinity and is a material with application potential. At present, the new bamboo fiber biofilm carrier prepared from bamboo fiber as a raw material has a stable effect on water treatment. Bamboo tube is split into pieces in a longitudinal direction, woven into a mesh, and placed vertically in the grid frame of the biological wall.
(22) Relevant tests show that the removal rate of bamboo rafts to COD is 74%, the removal rate to NO3-N is 95%, and the removal rate to TP reaches 37%, which has an obvious effect on improving the purification ability of river water quality. The content of microbial phospholipids and dehydrogenase activity attached to the surface of the bamboo sheet is large, which can provide space for the growth and reproduction of the microorganisms, and can continuously promote the degradation of pollutants in the river channel.
(23) The present disclosure adopts the direct purification technology of the river channel. The direct purification refers to that some purification measures are taken directly in the river bed to treat on the spot. For organic polluted river channels, the river bed itself is used as a treatment tank, the technical conditions for the physical sewage treatment are created, and the physical method is used to purify the water quality directly in the river bed itself.
(24) The device of the present disclosure hangs on the outside of the retaining wall on both sides of the river channel, and the river water immerses the biological walls of the device. The filler wall provides a place for microorganisms to attach, which forms a biofilm on the surface of the filler wall. As a carrier, the filler plays an extremely important role in the attachment and growth and contact oxidation of microorganisms. Under the action of the metabolism of microorganisms on the biofilm, the organic pollutants in the river water are removed and the sewage is purified.
(25) The biological wall of the device adopts a bamboo raft and coal cinder. After a period of use, the pollutants will cover the wall of the device. The wall will be lifted and placed on the empty ground to dry. After manual knocking or mechanical vibration to remove contaminants, the biological wall can be used again.
(26) The device of the present disclosure is hung on the retaining wall of the river channel, the outside of the retaining wall can be hung with aquatic plants, and the top surface of the retaining wall is provided with an ecological floating bed to plant aquatic plants, thereby forming a single water purification device as a whole into a green island. Along the banks of the river, semi-circular flower beds and vertical green plants of biological walls form a semi-circular island of plants, which can not only add beauty to the river, but also purify the water quality of the river.
(27) The advantage of the technology of the present disclosure is that the long-term benefit is obvious. The adsorption material in the ecological wall of the device can achieve reuse of waste, the maintenance and replacement are convenient, the cost is low, and there is no energy consumption during operation, which can not only adsorb the sewage and reduce the pollution of the sewage of the river, but also adsorb harmful substances. It can purify river water for a long time, and can maintain the diversity of river biological.
(28) The direct purification technology of the present disclosure plays a role in stabilizing the immune system of the river channel for intercepting sewage, dredging or remediation of the water system, can greatly enhance the self-purification ability of the river channel, eliminate odors, adsorb harmful substances in the water, and prevent repeated pollution. For a large number of untreated pollution rivers, it can continuously purify water at a low cost. For some rivers where the proportion of sewage is not too high, especially in non-point source pollution areas such as small towns and villages, there is no need to even intercept sewage to build sewage treatment plants. After entering the river, the sewage can be directly treated in the river, which can greatly reduce pollution control costs. Therefore, direct purification technology is a very vital frontier technology in the field of river water quality control. The present disclosure provides an innovative technology that responds to this requirement. It adopts a new process and technology for directly purifying river water using engineering technology. The device is simple, the manufacturing cost is low, and the filler biological wall can be reused.
(29) As mentioned above, the present disclosure effectively overcomes various shortcomings in the existing technology and has high industrial utilization value.
(30) The above-mentioned embodiments are just used for exemplarily describing the principle and effects of the present disclosure instead of limiting the present disclosure. Those skilled in the art can make modifications or changes to the above-mentioned embodiments without going against the spirit and the range of the present disclosure. Therefore, all equivalent modifications or changes made by those who have common knowledge in the art without departing from the spirit and technical concept disclosed by the present disclosure shall be still covered by the claims of the present disclosure.