RECYCLING SYSTEM FOR TREATMING SEWAGE OF ECOLOGICAL FARM
20210139360 ยท 2021-05-13
Inventors
- Sheng SHENG (Hangzhou, CN)
- Huabin LI (Hangzhou, CN)
- Yunling DU (Hangzhou, CN)
- Shuxin WU (Hangzhou, CN)
- Linge XU (Hangzhou, CN)
- Yi JIN (Hangzhou, CN)
- Jianfeng LI (Hangzhou, CN)
Cpc classification
C02F1/008
CHEMISTRY; METALLURGY
C02F3/32
CHEMISTRY; METALLURGY
C02F9/00
CHEMISTRY; METALLURGY
C02F2103/26
CHEMISTRY; METALLURGY
Y02W10/10
GENERAL TAGGING OF NEW TECHNOLOGICAL DEVELOPMENTS; GENERAL TAGGING OF CROSS-SECTIONAL TECHNOLOGIES SPANNING OVER SEVERAL SECTIONS OF THE IPC; TECHNICAL SUBJECTS COVERED BY FORMER USPC CROSS-REFERENCE ART COLLECTIONS [XRACs] AND DIGESTS
International classification
C02F3/32
CHEMISTRY; METALLURGY
Abstract
Disclosed is a recycling system for treating sewage of an ecological farm, including an external water source, a living area producing domestic sewage, a culture area producing breeding sewage and a farmland area producing agricultural drainage. The external water source feeds water to an ecological river, a water-saving irrigation system of the farmland area, the living area and the culture area through a water-diversion system. A first channel configured to discharge the domestic sewage from the living area is communicated with the water-saving irrigation system through a domestic sewage treatment system. A second channel configured to discharge the breeding sewage from the culture area is communicated with the water-saving irrigation system through a breeding sewage treatment system.
Claims
1. A recycling system for treating sewage of an ecological farm, comprising: an external water source; a living area producing domestic sewage; a culture area producing breeding sewage; and a farmland area producing agricultural drainage; wherein: the external water source feeds water to an ecological river, a water-saving irrigation system of the farmland area, the living area and the culture area through a water-diversion system; a first channel configured to discharge the domestic sewage from the living area is communicated with the water-saving irrigation system through a domestic sewage treatment system; a second channel configured to discharge the breeding sewage from the culture area is communicated with the water-saving irrigation system through a breeding sewage treatment system; a third channel configured to discharge the agricultural drainage from the farmland area are communicated with the ecological river and an ecological pond through an agricultural drainage purifying system; and a valve I-A and a valve I-B are respectively provided at the ecological river and the ecological pond; the ecological river is communicated with the ecological pond and a downstream water system; and a valve II-A and a valve II-B are respectively provided at the ecological pond and the downstream water system; the ecological pond is communicated with the water-saving irrigation system and the downstream water system; and a valve III-A and a valve III-B are respectively provided at the water-saving irrigation system and the downstream water system.
2. The recycling system of claim 1, wherein the water-diversion system comprises a water purification device, a pumping station, a reservoir, a water delivery pipeline and a water diversion channel; the external water source feeds water to the living area and the culture area sequentially through the water purification device, the pumping station, the reservoir and the water delivery pipeline; and the external water source feeds water to the water-saving irrigation system of the farmland area through the water diversion channel.
3. The recycling system of claim 1, wherein the domestic sewage treatment system comprises a first sewage pipe network, a septic tank and a constructed wetland; the domestic sewage from the living area sequentially passes through the first sewage pipe network, the septic tank and the constructed wetland to feed water to the water-saving irrigation system of the farmland area.
4. The recycling system of claim 3, wherein the constructed wetland is a vertical subsurface flow constructed wetland.
5. The recycling system of claim 1, wherein the breeding sewage treatment system comprises a second sewage pipe network, a grille, an anaerobic tank, an aerobic tank, a subsurface flow constructed wetland and a surface flow constructed wetland; the breeding sewage from the culture area sequentially passes through the second sewage pipe network, the grille, the anaerobic tank, the aerobic tank, the subsurface flow constructed wetland and the surface flow constructed wetland to feed water to the water-saving irrigation system of the farmland area.
6. The recycling system of claim 5, wherein the subsurface flow constructed wetland is a combination of a horizontal subsurface flow constructed wetland and a vertical subsurface flow constructed wetland.
7. The recycling system of claim 1, wherein the agricultural drainage purifying system comprises an ecological ditch.
8. The recycling system of claim 7, wherein the ecological ditch is backfilled with gravel filler and planted with aquatic plants.
Description
BRIEF DESCRIPTION OF THE DRAWINGS
[0028]
[0029]
[0030]
[0031]
[0032]
DETAILED DESCRIPTION OF EMBODIMENTS
[0033] As shown in
[0034] In this embodiment, the external water source 1 feeds water to respective water-consuming areas through the water-diversion system 6. The water-saving irrigation system 401 is provided in the farmland area 4 to improve the utilization efficiency of water and fertilizer as well as reduce the agricultural drainage. The water transported to the farmland area 4 by the water-diversion system 6 is used for irrigation through the water-saving irrigation system 401.
[0035] A first channel configured to discharge the domestic sewage from the living area 2 is communicated with the water-saving irrigation system 401 of the farmland area 4 through the domestic sewage treatment system 201. A second channel configured to discharge the breeding sewage from the culture area 3 is communicated with the water-saving irrigation system 401 of the farmland area 4 through the breeding sewage treatment system 301. The domestic sewage produced in the living area 2 and the breeding sewage produced in the culture area are respectively treated by the domestic sewage treatment system 201 and the breeding sewage treatment system 301, then are conveyed to the farmland area for re-utilization.
[0036] A third channel configured to discharge the agricultural drainage from the farmland area 4 is respectively communicated with the ecological river 7 and the ecological pond 8 through the agricultural drainage purifying system 402, and a valve I-A and a valve I-B are respectively provided at the ecological river 7 and the ecological pond 8. During the non-flood period, the agricultural drainage is purified by the agricultural drainage purifying system 402 and then temporarily stored in the ecological pond 8. During the flood period, the valve I-A is opened to discharge water through the ecological river 7.
[0037] The ecological river 7 is communicated with the ecological pond 8 and a downstream water system 9, where a valve II-A and a valve II-B are respectively provided in the ecological pond 8 and the downstream water system 9. During the non-flood period, water in the ecological river 7 flows into the ecological pond 8 to improve the hydrodynamic conditions and water quality of the ecological pond 8. During the flood period, the valve II-B is opened to discharge the water to the downstream water system 9.
[0038] In the embodiment, the ecological pond 8 is communicated with the water-saving irrigation system 401 and the downstream water system 9, where a valve III-A and a valve III-B are respectively provided in the water-saving irrigation system 401 and the downstream water system 9. During the non-flood period, the water stored in the ecological pond 8 is reused when the agricultural irrigation is needed. During the flood period, the valve III-B is opened to discharge the water to the downstream water system 9.
[0039] As shown in
[0040] As shown in
[0041] As shown in
[0042] As shown in
[0043] In this embodiment, after respectively treated by the domestic sewage treatment system 201 and the breeding sewage treatment system 301, the domestic sewage and the breeding sewage then enter the water-saving irrigation system 401 together with the external water source 1. The water-saving irrigation system 401 is operated in a manner of spray irrigation or drip irrigation. The ecological pond 8 has a depth of 1-2 m, and is filled with sand and gravel at a bottom thereof. Moreover, some emergent plants such as reeds, canna and lotus are planted in shallow water and submerged plants such as Vallisneria spiralis and hornwort are planted in deep water.
[0044] In the actual operation, the agricultural drainage is gathered in the ecological ditch 4021 and then enters the ecological pond 8 for purification and temporary storage. The water stored in the ecological pond 8 is reused when the agricultural irrigation is needed. During the flood period, the agricultural drainage gathered at the ecological ditch 4021 is directly discharged to the downstream water system 9 through the ecological river 7 without entering the ecological pond 8, protecting the ecological pond 8 from being damaged by the flood.