WO2017107020A1 - 一种家用太阳能海水淡化装置 - Google Patents
一种家用太阳能海水淡化装置 Download PDFInfo
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- WO2017107020A1 WO2017107020A1 PCT/CN2015/098130 CN2015098130W WO2017107020A1 WO 2017107020 A1 WO2017107020 A1 WO 2017107020A1 CN 2015098130 W CN2015098130 W CN 2015098130W WO 2017107020 A1 WO2017107020 A1 WO 2017107020A1
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- distillation
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- C—CHEMISTRY; METALLURGY
- C02—TREATMENT OF WATER, WASTE WATER, SEWAGE, OR SLUDGE
- C02F—TREATMENT OF WATER, WASTE WATER, SEWAGE, OR SLUDGE
- C02F1/00—Treatment of water, waste water, or sewage
- C02F1/02—Treatment of water, waste water, or sewage by heating
- C02F1/04—Treatment of water, waste water, or sewage by heating by distillation or evaporation
- C02F1/10—Treatment of water, waste water, or sewage by heating by distillation or evaporation by direct contact with a particulate solid or with a fluid, as a heat transfer medium
- C02F1/12—Spray evaporation
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- C—CHEMISTRY; METALLURGY
- C02—TREATMENT OF WATER, WASTE WATER, SEWAGE, OR SLUDGE
- C02F—TREATMENT OF WATER, WASTE WATER, SEWAGE, OR SLUDGE
- C02F1/00—Treatment of water, waste water, or sewage
- C02F1/02—Treatment of water, waste water, or sewage by heating
- C02F1/04—Treatment of water, waste water, or sewage by heating by distillation or evaporation
- C02F1/14—Treatment of water, waste water, or sewage by heating by distillation or evaporation using solar energy
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- Y—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
- Y02—TECHNOLOGIES OR APPLICATIONS FOR MITIGATION OR ADAPTATION AGAINST CLIMATE CHANGE
- Y02A—TECHNOLOGIES FOR ADAPTATION TO CLIMATE CHANGE
- Y02A20/00—Water conservation; Efficient water supply; Efficient water use
- Y02A20/124—Water desalination
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- Y—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
- Y02—TECHNOLOGIES OR APPLICATIONS FOR MITIGATION OR ADAPTATION AGAINST CLIMATE CHANGE
- Y02A—TECHNOLOGIES FOR ADAPTATION TO CLIMATE CHANGE
- Y02A20/00—Water conservation; Efficient water supply; Efficient water use
- Y02A20/124—Water desalination
- Y02A20/138—Water desalination using renewable energy
- Y02A20/142—Solar thermal; Photovoltaics
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- Y—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
- Y02—TECHNOLOGIES OR APPLICATIONS FOR MITIGATION OR ADAPTATION AGAINST CLIMATE CHANGE
- Y02A—TECHNOLOGIES FOR ADAPTATION TO CLIMATE CHANGE
- Y02A20/00—Water conservation; Efficient water supply; Efficient water use
- Y02A20/20—Controlling water pollution; Waste water treatment
- Y02A20/208—Off-grid powered water treatment
- Y02A20/212—Solar-powered wastewater sewage treatment, e.g. spray evaporation
Definitions
- the invention relates to a seawater desalination device, in particular to a solar seawater desalination device.
- the structure generally comprises a bracket, a distillation box is arranged at the upper end of the bracket, and a solar heat collecting component is connected to the side of the bracket, and the end of the solar heat collecting component is inserted into the distillation box, and the distillation box is provided.
- a fresh water collecting tank There is a fresh water collecting tank, the collecting trough is connected with a diversion trough, the diversion trough is connected with the outlet pipe, and the outlet pipe is connected with a fresh water tank.
- the disadvantages are that the condensation area is small, the heat energy utilization is insufficient, the water capacity of the distillation tank is too small, the evaporation area is too small, and the efficiency of seawater desalination is restricted.
- the object of the present invention is to provide a domestic solar seawater desalination device which is capable of utilizing solar energy to atomize hot water and then condense to achieve the purpose of collecting fresh water.
- a household solar desalination device comprising a bracket, the upper end of the bracket is provided with a water tank, the side of the bracket is connected with a solar heat collecting component, and the end of the solar heat collecting component is inserted into the water tank Inside, the water tank is provided with a water tank inlet, a water tank outlet and a water tank overflow from the top to the bottom of the water tank, and a water tank drain is arranged on the bottom surface of the water tank; a fresh water component is arranged on the side of the water tank, and the fresh water component includes a fresh water tank.
- a fresh water tank inlet and a fresh water tank outlet are arranged on the side wall of the fresh water tank; a distillation tank is arranged on the top of the fresh water tank; the distillation tank comprises a casing, a glass cover is connected at the top end of the casing, and wrinkle water is arranged in the casing
- the tray has a collecting groove connected to the casing at a downward bend of the water tray, and a guiding tube is arranged on the inner wall of the casing, and a collecting groove is arranged below the inclined end of the glass cover plate, and the collecting groove and the guiding tube are arranged Connected, the corrugated water tray is interspersed with a communication tube; the housing is provided with a vacuum port, a distillation tank water inlet, a distillation tank water outlet, a distillation tank water inlet, a distillation tank overflow, a circulating water outlet and a distillation tank row
- the outlet pipe is connected with the water outlet of the distillation box, and the circulating water outlet is connected with the
- the valve on the pipe fitting of the distillation tank is opened, seawater is injected into the distillation tank, and the connecting pipe will The seawater in the first-stage wrinkle water tray is injected into the secondary wrinkle water tray, and then the connecting tube then injects the seawater in the secondary corrugated water tray into the bottom of the distillation tank, and the seawater at the bottom of the distillation tank conveys the seawater into the water tank through the water pump, ensuring The seawater in the water tank will be submerged through the end of the solar heat collecting component inserted into the water tank.
- the vacuum pump works to make the sealed distillation tank reach a relative vacuum.
- the sunlight passes through the solar heat collecting component to heat the seawater in the water tank, and the hot water is sprayed from the spray component through the pipe member, and the heated water vapor is respectively condensed to the glass cover plate and the first wrinkle water.
- the plate and the secondary wrinkle water tray On the plate and the secondary wrinkle water tray, a large amount of condensed water drops into the collecting tank, and the condensed water flows into the water outlet of the distillation tank through the draft tube, opens the valve, and the fresh water flows into the fresh water tank.
- the water tank drain port is opened respectively.
- the drain port of the distillation tank discharges high-concentration water and re-injects fresh sea water.
- the invention has the advantages that the wrinkle water tray is increased, the condensation area of the water vapor is increased, and the evaporation area of the water vapor is increased, and the condensation surface is a sloped surface, which is more likely to cause water vapor to condense into the collection tank.
- the condensing process is strengthened; the vacuum pump and the spray parts are added to accelerate the evaporation of water vapor.
- the device has the advantages of simple structure, convenient material selection, low operating cost, strong practicability and high seawater desalination efficiency.
- the device can be used as a domestic solar desalination device, and its use is safe and reliable.
- the corrugated water tray comprises a first-stage wrinkle water tray and a second-stage wrinkle water tray.
- a pipe is arranged below the secondary wrinkle water tray, and the water inlet of the distillation tank is provided with three, respectively located under the glass cover plate, below the first-stage wrinkle water tray and Below the secondary wrinkle water tray.
- the respective pipe members are provided with valves.
- Figure 1 is a front view of the present invention.
- 1 bracket 2 water tank, 201 water tank inlet, 202 water tank outlet, 203 water tank overflow, 204 water tank drain, 3 solar collector parts, 4 distillation tank, 401 shell, 402 glass cover, 403 collection tank , 404 diversion tube, 405 communication tube, 406 wrinkle water tray, 407a distillation tank inlet, 407b distillation tank water inlet, 407c distillation tank outlet, 407d distillation tank overflow, 407e distillation tank drain, 407f circulation outlet, 408 spray parts, 409 vacuum pump, 409a vacuum port, 409b vacuum pump suction port, 5 fresh water parts, 501 fresh water tank, 502 fresh water tank inlet, 503 fresh water tank outlet, 6 pumps, 7 valves.
- FIG. 1 it is a domestic solar desalination device, comprising a bracket 1 , the upper end of the bracket 1 is provided with a water tank 2 , the side of the bracket 1 is connected with a solar heat collecting component 3 , and the end of the solar heat collecting component 3 is interspersed
- the water tank 2 is provided with a water tank inlet 201, a water tank outlet 202 and a water tank overflow 203 from the top to the bottom of the water tank 2, and a water tank drain 204 is provided on the bottom surface of the water tank 2;
- the fresh water tank 501 is provided with a distillation tank 4 on the top thereof, and the distillation tank 4 includes a casing 401, and the top end of the casing 401 is connected
- the cover glass 402 is provided with a wrinkle water tray 406.
- the wrinkle water tray 406 includes a first-stage wrinkle water tray and a second-stage wrinkle water tray.
- the fold water tray 406 is connected to the housing 401 at a downward bend.
- the upper collecting groove 403 is provided with a draft tube 404 on the inner wall of the housing 401.
- a collecting groove 403 is disposed below the inclined end of the glass cover 402. The collecting groove 403 is connected with the guiding tube 404, and the wrinkle water tray 406 is inserted and connected.
- a tube 405 a housing 401 is provided with a vacuum port 409a, a distillation tank water inlet 407b, a distillation tank water outlet 407c, a distillation tank water inlet 407a, a distillation tank overflow 407d, a circulating water outlet 407f and a distillation tank drain 407e, and a diversion
- the tube 404 is connected to the distillation tank water outlet 407c, and the circulating water outlet 407f is connected to the water tank inlet 201 via the pipe member, and the pipe member is provided with a water pump 6, and the distillation box water inlet 407a is connected to the water tank outlet 202 via the pipe fitting, and the pipe fitting There is a water pump 6, a wrinkle water tray 406 and a glass cover 402
- the pipe end is connected to the distillation tank water inlet 407a, and the pipe member is provided with a spray member 408.
- the distillation tank water outlet 407c is connected to the fresh water tank inlet 502 via the pipe; the fresh water tank 501 is provided with a vacuum pump 409 at the side, and the vacuum pump 409 is provided with a vacuum pump.
- the suction port 409b is connected to the vacuum pump exhaust port, and the vacuum pump suction port 409b is connected to the vacuum port 409a via a pipe member, and each pipe member is provided with a valve 7.
- the valve 7 on the pipe of the distillation tank water filling port 407b is opened, seawater is injected into the distillation tank 4, and the connecting pipe 405 injects the seawater in the first-stage wrinkling water tray into the secondary wrinkle water tray, and then the connecting pipe 405 is further
- the seawater in the secondary wrinkle water tray is injected into the bottom of the distillation tank 4, and the seawater at the bottom of the distillation tank 4 is transported into the water tank 2 by the water pump 6, ensuring that the seawater in the water tank 2 will penetrate the solar heat collecting member 3 inserted into the water tank 2.
- the end is submerged.
- the vacuum pump 409 operates to bring the sealed distillation tank 4 to a relative vacuum.
- the sunlight passes through the solar heat collecting member 3 to heat the seawater in the water tank 2, and the hot water is ejected from the spray member 408 through the pipe member, and the heated water vapor is condensed to the glass cover separately.
- a first-stage wrinkle water tray, a second-stage wrinkle water tray, a large amount of condensation water drops into the collection tank 403
- the condensed water flows into the distillation tank water outlet 407c through the draft tube 404, opens the valve, and the fresh water flows into the fresh water tank 501.
- the water tank drain 204 and the distillation tank drain 407e are respectively opened, and the high-concentration water is discharged to re-inject the fresh seawater.
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- Life Sciences & Earth Sciences (AREA)
- Engineering & Computer Science (AREA)
- Hydrology & Water Resources (AREA)
- Environmental & Geological Engineering (AREA)
- Water Supply & Treatment (AREA)
- Chemical & Material Sciences (AREA)
- Organic Chemistry (AREA)
- Sustainable Development (AREA)
- Sustainable Energy (AREA)
- Physics & Mathematics (AREA)
- Thermal Sciences (AREA)
- Heat Treatment Of Water, Waste Water Or Sewage (AREA)
Abstract
一种家用太阳能海水淡化装置,包括有支架(1),支架(1)的上端设有水箱(2),支架(1)的侧面连接有太阳能集热部件(3),太阳能集热部件(3)的端头穿插到水箱(2)内,水箱(2)的侧面设有淡水箱(501),淡水箱(501)的顶上设有蒸馏箱(4),蒸馏箱(4)包括有壳体(401),壳体(401)顶端连接有玻璃盖板(402),壳体(401)内设有折皱水盘(406),折皱水盘(406)下方设有收集槽(403),壳体(401)内壁上设有导流管(404),玻璃盖板(402)倾斜端的下方设有收集槽(403),各收集槽(403)与导流管(404)相连接,折皱水盘(406)穿插设有连通管(405);折皱水盘(406)与玻璃盖板(402)下方的管件上设有喷雾部件(408),淡水箱(501)侧面设有真空泵(409)。
Description
本发明涉及一种海水淡化装置,特别涉及一种太阳能海水淡化装置。
在淡水缺乏的岛屿或偏远的咸水湖地区,水资源大都是海水或者苦咸水,淡水严重缺乏,同时能源供应也比较困难,但太阳能资源丰富,因此利用太阳能进行海水或苦咸水淡化,是解决这些地区淡水短缺问题的重要途径。
在现有的太阳能蒸馏器中,其结构一般包括有支架,支架上端设有蒸馏箱,支架侧面连接有太阳能集热部件,太阳能集热部件端头穿插到所述蒸馏箱内,蒸馏箱内设有淡水收集槽,收集槽连接有导流槽,导流槽与出水管相连接,出水管连接有淡水箱。其不足之处在于:凝结面积狭小,热能利用不充分,蒸馏箱水容量过小,蒸发面积过小,海水淡化的效率受到制约。
发明内容
本发明的目的是提供一种家用太阳能海水淡化装置,使其能够利用太阳能,使热水雾化后,再冷凝,达到收集淡水的目的。
本发明的目的是这样实现的:一种家用太阳能海水淡化装置,包括有支架,支架的上端设有水箱,支架的侧面连接有太阳能集热部件,太阳能集热部件的端头穿插到所述水箱内,水箱的侧壁上自上而下设有水箱进水口、水箱出水口与水箱溢水口,水箱的底面上设有水箱排水口;水箱的侧面设有淡水部件,淡水部件包括有淡水箱,淡水箱的侧壁上设有淡水箱进水口与淡水箱出水口;淡水箱的顶上设有蒸馏箱,蒸馏箱包括有壳体,壳体顶端连接有玻璃盖板,壳体内设有折皱水盘,折皱水盘向下的折弯处设有连接在壳体上的收集槽,壳体内壁上设有导流管,玻璃盖板倾斜端的下方设有收集槽,收集槽与导流管相连接,折皱水盘穿插设有连通管;所述壳体上设有真空口、蒸馏箱补水口,蒸馏箱出水口、蒸馏箱进水口、蒸馏箱溢水口、循环出水口与蒸馏箱排水口,所述导流管与蒸馏箱出水口相连接,循环出水口经管件与水箱进水口相连接,且管件上设有水泵,蒸馏箱进水口经管件与水箱出水口相连接,且管件上设有水泵,所述折皱水盘与玻璃盖板下方的管件端头与蒸馏箱进水口连接,管件上设有喷雾部件,蒸馏箱出水口经管件与淡水箱进水口相连接;淡水箱侧面设有真空泵,真空泵设有真空泵吸气口与真空泵排气口,真空泵吸气口经管件与真空口相连接。
本发明工作时,打开蒸馏箱补水口管件上的阀门,向蒸馏箱内注入海水,连通管将
一级折皱水盘内的海水注入到二级折皱水盘内,然后连通管再将二级折皱水盘内的海水注入蒸馏箱箱底,蒸馏箱箱底的海水通过水泵将海水输送到水箱内,确保水箱内的海水将穿插入水箱内的太阳能集热部件的端头淹没。真空泵工作,使密封的蒸馏箱达到相对真空,太阳光经过太阳能集热部件将水箱内的海水加热,热水经管件从喷雾部件喷出,加热的水汽分别冷凝到玻璃盖板、一级折皱水盘,二级折皱水盘上,大量的冷凝水滴入收集槽内,冷凝水通过导流管流入蒸馏箱出水口内,打开阀门,淡水流入淡水箱内,海水利用一段时间过后分别打开水箱排水口与蒸馏箱排水口,将高浓度的水排出,重新注入新鲜海水。与现有技术相比,本发明的有益效果为:增加了折皱水盘,增加了水蒸汽的冷凝面积同时增加了水汽蒸发的面积,且冷凝面为斜面,更易使水蒸气凝结到收集槽中,强化了冷凝过程;增加了真空泵与喷雾部件,加快了水汽蒸发。本装置结构简单,取材方便,运行费用低,实用性较强,海水淡化效率高。该装置可作为家用太阳能海水淡化装置,其使用安全可靠。
为了强化冷凝速率,提高海水淡化效率,所述折皱水盘包括有一级折皱水盘与二级折皱水盘。
为了便于分别在玻璃盖板下方,一级折皱水盘下方,二级折皱水盘下方设置管件,所述蒸馏箱进水口设有3个,分别位于玻璃盖板下方,一级折皱水盘下方与二级折皱水盘下方。
为了便于控制水路的运动,所述各个管件上都设有阀门。
图1为本发明的主视图。
其中,1支架,2水箱,201水箱进水口,202水箱出水口,203水箱溢水口,204水箱排水口,3太阳能集热部件,4蒸馏箱,401壳体,402玻璃盖板,403收集槽,404导流管,405连通管,406折皱水盘,407a蒸馏箱进水口,407b蒸馏箱补水口,407c蒸馏箱出水口,407d蒸馏箱溢水口,407e蒸馏箱排水口,407f循环出水口,408喷雾部件,409真空泵,409a真空口,409b真空泵吸气口,5淡水部件,501淡水箱,502淡水箱进水口,503淡水箱出水口,6水泵,7阀门。
如图1所示,为一种家用太阳能海水淡化装置,包括有支架1,支架1的上端设有水箱2,支架1的侧面连接有太阳能集热部件3,太阳能集热部件3的端头穿插到水箱2内,水箱2的侧壁上自上而下设有水箱进水口201、水箱出水口202与水箱溢水口203,水箱2的底面上设有水箱排水口204;水箱2的侧面设有淡水部件5,淡水部件5包括有淡水箱
501,淡水箱501的侧壁上设有淡水箱进水口502与淡水箱出水口503;淡水箱501的顶上设有蒸馏箱4,蒸馏箱4包括有壳体401,壳体401顶端连接有玻璃盖板402,壳体401内设有折皱水盘406,折皱水盘406包括有一级折皱水盘与二级折皱水盘,折皱水盘406向下的折弯处设有连接在壳体401上的收集槽403,壳体401内壁上设有导流管404,玻璃盖板402倾斜端的下方设有收集槽403,收集槽403与导流管404相连接,折皱水盘406穿插设有连通管405;壳体401上设有真空口409a、蒸馏箱补水口407b,蒸馏箱出水口407c、蒸馏箱进水口407a、蒸馏箱溢水口407d、循环出水口407f与蒸馏箱排水口407e,导流管404与蒸馏箱出水口407c相连接,循环出水口407f经管件与水箱进水口201相连接,且管件上设有水泵6,蒸馏箱进水口407a经管件与水箱出水口202相连接,且管件上设有水泵6,折皱水盘406与玻璃盖板402下方的管件端头与蒸馏箱进水口407a连接,管件上设有喷雾部件408,蒸馏箱出水口407c经管件与淡水箱进水口502相连接;淡水箱501侧面设有真空泵409,真空泵409设有真空泵吸气口409b与真空泵排气口,真空泵吸气口409b经管件与真空口409a相连接,各个管件上都设有阀门7。
工作时,打开蒸馏箱补水口407b管件上的阀门7,向蒸馏箱4内注入海水,连通管405将一级折皱水盘内的海水注入到二级折皱水盘内,然后连通管405再将二级折皱水盘内的海水注入蒸馏箱4箱底,蒸馏箱4箱底的海水通过水泵6将海水输送到水箱2内,确保水箱2内的海水将穿插入水箱2内的太阳能集热部件3的端头淹没。真空泵409工作,使密封的蒸馏箱4达到相对真空,太阳光经过太阳能集热部件3将水箱2内的海水加热,热水经管件从喷雾部件408喷出,加热的水汽分别冷凝到玻璃盖板402、一级折皱水盘,二级折皱水盘上,大量的冷凝水滴入收集槽403内,冷凝水通过导流管404流入蒸馏箱出水口407c内,打开阀门,淡水流入淡水箱501内,海水利用一段时间过后分别打开水箱排水口204与蒸馏箱排水口407e,将高浓度的水排出,重新注入新鲜海水。
本发明并不局限于上述实施例,在本发明公开的技术方案的基础上,本领域的技术人员根据所公开的技术内容,不需要创造性的劳动就可以对其中的一些技术特征作出一些替换和变形,这些替换和变形均在本发明的保护范围内。
Claims (6)
- 一种家用太阳能海水淡化装置,包括有支架,支架的上端设有水箱,支架的侧面连接有太阳能集热部件,太阳能集热部件的端头穿插到所述水箱内,水箱的侧壁上自上而下设有水箱进水口、水箱出水口与水箱溢水口,水箱的底面上设有水箱排水口;其特征在于:水箱的侧面设有淡水部件,淡水部件包括有淡水箱,淡水箱的侧壁上设有淡水箱进水口与淡水箱出水口;淡水箱的顶上设有蒸馏箱,蒸馏箱包括有壳体,壳体顶端连接有玻璃盖板,壳体内设有折皱水盘,折皱水盘向下的折弯处设有连接在壳体上的收集槽,壳体内壁上设有导流管,玻璃盖板倾斜端的下方设有收集槽,各收集槽与导流管相连接,折皱水盘穿插设有连通管;所述壳体上设有真空口、蒸馏箱补水口,蒸馏箱出水口、蒸馏箱进水口、蒸馏箱溢水口、循环出水口与蒸馏箱排水口,所述导流管与蒸馏箱出水口相连接,循环出水口经管件与水箱进水口相连接,且管件上设有水泵,蒸馏箱进水口经管件与水箱出水口相连接,且管件上设有水泵,所述折皱水盘与玻璃盖板下方设有管件,管件端头与蒸馏箱进水口连接,管件上设有喷雾部件,蒸馏箱出水口经管件与淡水箱进水口相连接;淡水箱侧面设有真空泵,真空泵设有真空泵吸气口与真空泵排气口,真空泵吸气口经管件与真空口相连接。
- 根据权利要求1所述的一种家用太阳能海水淡化装置,其特征在于:所述折皱水盘包括一级折皱水盘与二级折皱水盘。
- 根据权利要求1或2所述的一种家用太阳能海水淡化装置,其特征在于:所述蒸馏箱补水口位于一级折皱水盘上方,蒸馏箱出水口位于二级折皱水盘的下方。
- 根据权利要求1或2所述的一种家用太阳能海水淡化装置,其特征在于:所述蒸馏箱进水口设有3个,分别位于玻璃盖板下方,一级折皱水盘下方与二级折皱水盘下方。
- 根据权利要求1所述的一种家用太阳能海水淡化装置,其特征在于:所述蒸馏箱溢水口位于出水口下方。
- 根据权利要求1所述的一种家用太阳能海水淡化装置,其特征在于:所述各个管件上都设有阀门。
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