TWI633734B - Method for reusing green energy in the Internet of Things - Google Patents

Method for reusing green energy in the Internet of Things Download PDF

Info

Publication number
TWI633734B
TWI633734B TW106123652A TW106123652A TWI633734B TW I633734 B TWI633734 B TW I633734B TW 106123652 A TW106123652 A TW 106123652A TW 106123652 A TW106123652 A TW 106123652A TW I633734 B TWI633734 B TW I633734B
Authority
TW
Taiwan
Prior art keywords
water
recovery system
internet
things
water recovery
Prior art date
Application number
TW106123652A
Other languages
Chinese (zh)
Other versions
TW201909514A (en
Inventor
吳韻吾
梁暉宏
陳佳妤
王宥涵
楊文慧
Original Assignee
中國科技大學
Priority date (The priority date is an assumption and is not a legal conclusion. Google has not performed a legal analysis and makes no representation as to the accuracy of the date listed.)
Filing date
Publication date
Application filed by 中國科技大學 filed Critical 中國科技大學
Priority to TW106123652A priority Critical patent/TWI633734B/en
Application granted granted Critical
Publication of TWI633734B publication Critical patent/TWI633734B/en
Publication of TW201909514A publication Critical patent/TW201909514A/en

Links

Landscapes

  • Management, Administration, Business Operations System, And Electronic Commerce (AREA)
  • Separation Using Semi-Permeable Membranes (AREA)

Abstract

本發明為有關一種具物聯網之綠能中水再利用之方法,主要結構包括一中水回收系統、至少一設於該中水回收系統一側且高度低於該中水回收系統之水力發電裝置、至少一連通該水力發電裝置及該中水回收系統之生態水域、至少一設於該生態水域且電性連結該水力發電裝置之環境監控模組、及一無線控制系統,係供資訊連結至少一行動電子裝置。藉上述結構,使中水回收系統在回收生態水域之廢水時,可同步利用水力發電裝置進行發電,且可配合環境監控模組與無線控制模組而兼具物聯網與無線感測網路之統合監控功能,以擴大中水之實用性。 The invention relates to a method for reusing green energy in the Internet of Things, the main structure comprising a middle water recovery system, at least one hydropower generation disposed on one side of the middle water recovery system and having a height lower than the middle water recovery system The device, at least one ecological water area connecting the hydroelectric power generation device and the intermediate water recovery system, at least one environmental monitoring module disposed in the ecological water area and electrically connecting the hydroelectric power generation device, and a wireless control system for information connection At least one mobile electronic device. With the above structure, the water recovery system can simultaneously use the hydroelectric power generation device to generate electricity when recycling the wastewater in the ecological waters, and can be combined with the environmental monitoring module and the wireless control module to have both the Internet of Things and the wireless sensing network. Integrate monitoring functions to expand the practicality of China Water.

Description

具物聯網之綠能中水再利用之方法 Method for reusing green energy in the Internet of Things

本發明為提供一種具物聯網之綠能中水再利用之方法,尤指一種可在中水製備過程中進行水力發電,並配合物聯網及無線感測網路(WSN)進行環境監控與整合控制,以增加中水之應用層面的具物聯網之綠能中水再利用之方法。 The invention provides a method for reusing green energy in the Internet of Things, in particular to hydroelectric power generation in the preparation process of the intermediate water, and environmental monitoring and integration with the Internet of Things and the wireless sensing network (WSN). Control to increase the reuse of green energy in the Internet of Things at the application level of the water.

按,一般人生活中仍有許多能源是可能被回收再利用的。例如一般建築物內皆具有水循環管路,不論是一般生活用水或排放廢水,最終將通過該水循環管路中的一段回收管路。並透過該回收管路的淨化動作,將可再利用的水藉由地勢落差獲得向下流的動能,而重覆回到水循環管路中。 According to the fact, there are still many energy sources in ordinary people's lives that may be recycled. For example, in a general building, there is a water circulation pipeline, and whether it is general domestic water or discharged wastewater, it will eventually pass through a section of the recovery pipeline in the water circulation pipeline. And through the purification operation of the recovery pipeline, the reusable water is obtained by the ground potential drop to obtain the kinetic energy of the downward flow, and is returned to the water circulation pipeline repeatedly.

水資源的回收動作看似不起眼,事實上台灣雖然年雨量很高,但受到極端氣候影響、都市化的普及與用水需求不斷增加,而經常面臨缺水問題。目前都市建築中之中水再利用的方式,主要在建築物中設置中水水箱,經回收處理後,用於廁所沖水、綠地灌溉、洗滌或空調冷卻,並未考慮其他更有效的利用方式。 The recovery of water resources seems to be inconspicuous. In fact, although Taiwan has a high annual rainfall, it is affected by extreme weather, the popularity of urbanization and the increasing demand for water, and often face water shortages. At present, the way of reusing water in urban buildings is mainly to set up a water tank in the building. After recycling, it is used for toilet flushing, greenland irrigation, washing or air conditioning cooling, without considering other more effective ways of utilization. .

然上述中水再利用的方式於使用時,為確實存在下列問題與缺失尚待改進: However, when the above-mentioned method of reusing water is used, the following problems and defects are still needed to be improved:

一、回收再利用的水資源,應用層面較狹隘,一般僅將中水回饋使用於原廢水回收來源。 First, the recycling and reuse of water resources, the application level is relatively narrow, generally only the water reuse feedback used in the original wastewater recovery source.

二、回收動作亦須消耗電力資源,而降低水資源轉用其他用途之意願。 Second, the recycling operation also consumes power resources and reduces the willingness of water resources to switch to other uses.

三、僅單純執行中水再利用,未加以監控檢測,或無法配合遠端即時監控,而降低其實用性。 Third, only the implementation of re-use of water, no monitoring and detection, or can not cooperate with remote monitoring, but reduce its practicability.

是以,要如何解決上述習用之問題與缺失,即為本發明之申請人與從事此行業之相關廠商所亟欲研究改善之方向所在者。 Therefore, how to solve the above-mentioned problems and deficiencies of the above-mentioned applications is the applicant who is interested in researching and improving the direction of the applicants and related manufacturers engaged in the industry.

故,本發明之申請人有鑑於上述缺失,乃蒐集相關資料,經由多方評估及考量,並以從事於此行業累積之多年經驗,經由不斷試作及修改,始設計出此種可在中水製備過程中進行水力發電,並配合物聯網及無線感測網路(WSN)進行環境監控與整合控制,以增加中水之應用層面的具物聯網之綠能中水再利用之方法的發明專利者。 Therefore, the applicants of the present invention have collected the relevant materials in view of the above-mentioned shortcomings, and through multi-party evaluation and consideration, and through years of experience accumulated in the industry, through continuous trial and modification, the design can be designed in the preparation of water. In the process of hydroelectric power generation, and with the Internet of Things and Wireless Sensing Network (WSN) for environmental monitoring and integration control, to increase the application level of the invention of the Internet-based green energy re-use method patents .

本發明之主要目的在於:利用物聯網及無線感測網路(Wireless Sensor Network,WSN)全面整合中水回收系統,以有效提供更多中水利用方式,而增加中水回收系統之實用性。 The main purpose of the present invention is to fully integrate the water recycling system by using the Internet of Things and the Wireless Sensor Network (WSN) to effectively provide more water utilization modes and increase the practicality of the water recovery system.

本發明之另一主要目的在於:將綠能發電系統(水力發電裝置)結合中水回收系統,而提高環保效益、減少水資源及電能源的消耗。 Another main object of the present invention is to combine a green energy power generation system (hydropower generation device) with a water recovery system to improve environmental protection benefits and reduce water and electricity consumption.

為達上述目的,本發明之結構包括:一中水回收系統,於該中水回收系統一側設置至少一高度低於該中水回收系統之水力發電裝置,以藉水的位能差發電,並將該水力發電裝置及該中水回收系統連通至少一生態水域,且於該生態水域設置至少一電性連結該水力發電裝置之環境監控模組,以配合一資訊連結該環境監控模組及該中水回收系統之無線控制系統,來連結至少一行動電子裝置;俾當使用者利用本發明進行中水再利用時,係將中水回收系統連通生態水域,使其回收處理生態水域之汙水以再造中水,於此同時則藉由水從高處向低處流動的位能差,以水力發電裝置進行發電,並供電給環境監控模組做為電力來源輔助或其他電力用途,再配合無線控制系統的物聯網功效,讓使用者得以利用行動電子裝置進行遠端即時監控,以有效發揮環境監控模組之功效,擴大中水的應用層面。 In order to achieve the above object, the structure of the present invention comprises: a medium water recovery system, wherein at least one hydroelectric power generation device having a height lower than the middle water recovery system is disposed on one side of the middle water recovery system to generate electricity by the potential difference of the water. The environmental monitoring module is connected to the environmental monitoring module and the information is connected to the environmental monitoring module and the information is connected to the environmental monitoring module. The wireless control system of the medium water recovery system is configured to connect at least one mobile electronic device; when the user uses the present invention to carry out the reuse of the medium water, the middle water recovery system is connected to the ecological waters to recover and treat the ecological waters. Water recreates the water, and at the same time, the power is generated by the hydroelectric generating device by the difference in the energy of the water flowing from the high to the low, and the power is supplied to the environmental monitoring module as a power source auxiliary or other power use. With the IoT function of the wireless control system, users can use the mobile electronic device for remote real-time monitoring to effectively utilize the environmental monitoring module. Efficiency, expand the application level in the water.

藉由上述技術,可針對習用述中水再利用的方式所存在之應用層面較狹隘、水資源轉用之意願低、及無法配合遠端即時監控等問題點加以突破,達到上述優點之實用進步性。 With the above-mentioned technology, it is possible to make breakthroughs in the application of the water reuse method, such as narrow application, low willingness to switch to water resources, and inability to cooperate with remote real-time monitoring, to achieve practical progress of the above advantages. Sex.

1‧‧‧中水回收系統 1‧‧‧Water recovery system

11‧‧‧中水水箱 11‧‧‧Water tank

12‧‧‧汙水處理裝置 12‧‧‧Sewage treatment plant

2‧‧‧水力發電裝置 2‧‧‧Hydroelectric installation

3‧‧‧生態水域 3‧‧‧Ecological waters

4‧‧‧環境監控模組 4‧‧‧Environmental Monitoring Module

41‧‧‧水質監測單元 41‧‧‧Water quality monitoring unit

42‧‧‧水位感測器 42‧‧‧Water level sensor

5‧‧‧無線控制系統 5‧‧‧Wireless Control System

51‧‧‧資料庫 51‧‧‧Database

52‧‧‧決策模組 52‧‧‧Decision module

6‧‧‧行動電子裝置 6‧‧‧Mobile electronic devices

第一圖 係為本發明較佳實施例之系統方塊圖。 The first figure is a block diagram of a system in accordance with a preferred embodiment of the present invention.

第二圖 係為本發明較佳實施例之方塊流程圖。 The second drawing is a block flow diagram of a preferred embodiment of the invention.

第三圖 係為本發明較佳實施例之水循環示意圖。 The third figure is a schematic diagram of the water cycle of the preferred embodiment of the invention.

第四圖 係為本發明較佳實施例之系統實施示意圖。 The fourth figure is a schematic diagram of the system implementation of the preferred embodiment of the present invention.

為達成上述目的及功效,本發明所採用之技術手段及構造,茲繪圖就本發明較佳實施例詳加說明其特徵與功能如下,俾利完全了解。 In order to achieve the above objects and effects, the technical means and the structure of the present invention will be described in detail with reference to the preferred embodiments of the present invention.

請參閱第一圖及第二圖所示,係為本發明較佳實施例之系統方塊圖及方塊流程圖,由圖中可清楚看出本發明係包括:一中水回收系統1,該中水回收系統1係包含至少一供引入雜用水源之中水水箱11、及一設於該中水水箱11一側之汙水處理裝置12;至少一設於該中水回收系統1一側且高度低於該中水回收系統1之水力發電裝置2,係藉位能差發電;至少一連通該水力發電裝置2及該中水回收系統1之生態水域3;至少一設於該生態水域3且電性連結該水力發電裝置2之環境監控模組4,且該環境監控模組4係包含至少一設於該汙水處理裝置12一側之水質監測單元41、及至少一水位感測器42,係供偵測該水力發電裝置2之水位高度;及一資訊連結該環境監控模組4及該中水回收系統1之無線控制系統5,係供資訊連結至少一行動電子裝置6,該無線控制系統5係包含至少一資料庫51、及一資訊連結該資料庫51之決策模組52。 Referring to the first and second figures, which are a block diagram of a system and a block diagram of a preferred embodiment of the present invention, it will be apparent from the drawings that the present invention includes: a water recovery system 1 in which The water recovery system 1 includes at least one water tank 11 for introducing a miscellaneous water source, and a sewage treatment device 12 disposed on one side of the intermediate water tank 11; at least one is disposed on one side of the middle water recovery system 1 and The hydroelectric power generation device 2 having a height lower than the medium water recovery system 1 is a power generation by borrowing energy; at least one is connected to the hydroelectric power generation device 2 and the ecological water area 3 of the intermediate water recovery system 1; at least one is located in the ecological water area 3 The environmental monitoring module 4 is electrically connected to the environmental monitoring module 4 of the hydropower generating device 2, and the environmental monitoring module 4 includes at least one water quality monitoring unit 41 disposed on one side of the sewage treatment device 12, and at least one water level sensor. And a wireless control system 5 for linking the environmental monitoring module 4 and the medium water recovery system 1 to the at least one mobile electronic device 6 for information connection, The wireless control system 5 includes at least one database 5 1. The information is linked to the decision module 52 of the database 51.

而本發明之具物聯網之綠能中水再利用之方法,其步驟為:(a)利用一中水回收系統引入至少一生態水域之水源;(a1)該中水回收系統係將雜用水源引入中水水箱,並透過汙水處理裝置進行水質淨化;(b)將至少一水力發電裝置結合於該中水回收系統,以同時利用位能差發電;(b1)利用環境監控模組之水位感測器,使該水力發電裝置於高水位時進行發電;(c)將產生之電力給予環境監控模組作動,使其監控該中水回收系統及該生態水域;(c1)該環境監控模組係利用至少一水質監測單元監測該汙水處理裝置之水質; (d)透過一無線控制系統連結該環境監控模組,以利用行動電子裝置整合-控制該中水回收系統及該水力發電裝置;(d1)該無線控制系統係透過一決策模組,根據至少一資料庫之現況資料及歷史資料進行評估;及(e)將該中水回收系統淨化後之水源回流至該生態水域。 The method for reusing green energy in the Internet of Things of the present invention comprises the steps of: (a) introducing a water source of at least one ecological water area by using a water recovery system; (a1) the medium water recovery system is for miscellaneous use. Water source is introduced into the water tank and purified by the sewage treatment device; (b) at least one hydropower unit is combined with the medium water recovery system to simultaneously utilize the potential energy difference; (b1) using the environmental monitoring module a water level sensor for generating electricity at a high water level; (c) giving the generated electricity to an environmental monitoring module to monitor the water recovery system and the ecological water area; (c1) the environmental monitoring The module monitors the water quality of the sewage treatment device by using at least one water quality monitoring unit; (d) linking the environmental monitoring module through a wireless control system to integrate-control the water recovery system and the hydropower generating device using the mobile electronic device; (d1) the wireless control system transmits a decision module according to at least The current status and historical data of a database are evaluated; and (e) the purified water source of the water recovery system is returned to the ecological waters.

藉由上述之說明,已可了解本技術之結構,而依據這個結構之對應配合,更可在中水製備過程中進行水力發電,並配合物聯網及無線感測網路(WSN)進行環境監控與整合控制,以增加中水之應用層面等優勢,而詳細之解說將於下述說明。 Through the above description, the structure of the present technology can be understood, and according to the corresponding cooperation of the structure, hydroelectric power generation can be performed in the middle water preparation process, and environmental monitoring is carried out by using the Internet of Things and the wireless sensing network (WSN). With integrated control to increase the application level of China Water, the detailed explanation will be explained below.

請同時配合參閱第一圖至第四圖所示,係為本發明較佳實施例之系統方塊圖至系統實施示意圖,藉由上述構件組構時,可由圖中清楚看出,本發明主要係以中水回收系統1為中心,利用中水水箱11引入生態水域3的雜用水源後(包括雨水、工業廢水、或浴廁用水、灌溉用水、洗滌用水、空調冷卻、養殖用水等生活汙水),利用汙水處理裝置12進行消毒、過濾、吸附、氧化、薄膜處理、電透析等淨化手段,接著利用水質監測單元41對淨化後的水質進行檢測,甚至透過環境監控模組4的不同感測器,進行二氧化碳含量、酸鹼質檢測、微生物含量等環境品質偵測,最後將淨化後的中水經過濾後回流至生態水域3,以供生活用水等用途之重複利用。此外,環境監控模組4更電性連結至少一水力發電裝置2,而利用水位感測器42偵測中水回收系統1中的水位高度,在累積水量符合發電條件時(例如水位高度高於出水口40cm以上時),則驅動水力發電裝置2運作,以確保發電水量充足,並將產生的電力傳遞給環境監控模組4或照明等其他用途輔助使用,而充分達到綠能環保之目的。 Please refer to the first to fourth figures, which are schematic diagrams of the system block diagram to the system according to the preferred embodiment of the present invention. When the above components are assembled, it can be clearly seen from the figure that the present invention is mainly Taking the water recovery system 1 as the center, the domestic water tank 11 is used to introduce the miscellaneous water source of the ecological waters 3 (including rainwater, industrial wastewater, or water for the toilet, irrigation water, washing water, air conditioning cooling, aquaculture water, etc.) The sewage treatment device 12 is used for purification, filtration, adsorption, oxidation, thin film treatment, electrodialysis, and the like, and then the water quality monitoring unit 41 is used to detect the purified water quality, even through the environmental monitoring module 4 The detector performs environmental quality detection such as carbon dioxide content, acid and alkali detection, and microbial content. Finally, the purified purified water is filtered and returned to the ecological waters 3 for reuse of domestic water and the like. In addition, the environmental monitoring module 4 is more electrically connected to at least one hydropower generating device 2, and the water level sensor 42 is used to detect the water level in the middle water recovery system 1, when the accumulated water amount meets the power generation condition (for example, the water level is higher than the water level) When the water outlet is 40 cm or more, the hydroelectric power generating device 2 is driven to ensure sufficient power generation amount, and the generated electric power is transmitted to the environmental monitoring module 4 or other uses such as lighting to fully achieve the purpose of green energy conservation.

且在上述循環過程中,可利用無線控制系統5與環境監控模組4及中水回收系統1的無線資訊連結,將相關資訊傳遞至資料庫51,而利用決策模組52針對現況資料及歷史資料進行綜合評估,以控制中水回收系統1與水力發電裝置2之動作,當然也可將相關資料傳遞至使用者之行動電子裝置6,以供使用者即時檢視、調整。藉此,得以行動電子裝置6為中央控制系統,配合物聯網及無線感測網路(Wireless Sensor Network,WSN)進行環境監控與整合控制,以增加中水之應用層面,增加中水回收系統1之實用性。 In the above loop process, the wireless control system 5 can be connected to the wireless information link of the environmental monitoring module 4 and the water recovery system 1 to transmit relevant information to the database 51, and the decision module 52 is used for current status data and history. The data is comprehensively evaluated to control the operation of the water recovery system 1 and the hydropower unit 2, and of course the relevant data can be transmitted to the user's mobile electronic device 6 for immediate viewing and adjustment by the user. In this way, the mobile electronic device 6 is a central control system, and the Internet of Things and the Wireless Sensor Network (WSN) are used for environmental monitoring and integration control to increase the application level of the water and increase the water recovery system. Practicality.

惟,以上所述僅為本發明之較佳實施例而已,非因此即侷限本發明之專利 範圍,故舉凡運用本發明說明書及圖式內容所為之簡易修飾及等效結構變化,均應同理包含於本發明之專利範圍內,合予陳明。 However, the above description is only a preferred embodiment of the present invention, and thus does not limit the patent of the present invention. The scope of the invention and the equivalent modifications and equivalent structural changes of the present invention are included in the scope of the patent of the present invention and are combined with Chen Ming.

綜上所述,本發明之具物聯網之綠能中水再利用之方法於使用時,為確實能達到其功效及目的,故本發明誠為一實用性優異之發明,為符合發明專利之申請要件,爰依法提出申請,盼 審委早日賜准本發明,以保障申請人之辛苦發明,倘若 鈞局審委有任何稽疑,請不吝來函指示,創作人定當竭力配合,實感德便。 In summary, the method for reusing green energy in the Internet of Things of the present invention can achieve its efficacy and purpose when used, so the invention is an invention with excellent practicability, and is in conformity with the invention patent. Apply for the requirements, and apply in accordance with the law. I hope that the trial committee will grant the invention as soon as possible to protect the applicant's hard work. If there is any doubt in the trial committee, please do not hesitate to give instructions. The creator will try his best to cooperate with him.

Claims (5)

一種具物聯網之綠能中水再利用之方法,其步驟為:(a)利用一中水回收系統引入至少一生態水域之水源;(b)將至少一水力發電裝置結合於該中水回收系統,以同時利用位能差發電;(c)將產生之電力給予環境監控模組作動,使其監控該中水回收系統及該生態水域;(d)透過一無線控制系統連結該環境監控模組,以利用行動電子裝置整合控制該中水回收系統及該水力發電裝置;及(e)將該中水回收系統淨化後之水源回流至該生態水域。 A method for reusing green energy in the Internet of Things, the steps of which are: (a) introducing a water source of at least one ecological water source by using a medium water recovery system; (b) incorporating at least one hydropower generating device into the water recycling System for simultaneously generating power by using potential energy; (c) giving the generated power to the environmental monitoring module to monitor the water recovery system and the ecological waters; (d) linking the environmental monitoring module through a wireless control system a group for integrating and controlling the water recovery system and the hydroelectric power generation device by using a mobile electronic device; and (e) returning the purified water source of the water recovery system to the ecological water area. 如申請專利範圍第1項所述之具物聯網之綠能中水再利用之方法,其中更包含步驟(a1)該中水回收系統係將雜用水源引入中水水箱,並透過汙水處理裝置進行水質淨化。 The method for reusing green energy in the Internet of Things as described in claim 1 of the patent application, further comprising the step (a1), wherein the medium water recovery system introduces a miscellaneous water source into the middle water tank and passes through the sewage treatment The device performs water purification. 如申請專利範圍第1項所述之具物聯網之綠能中水再利用之方法,其中更包含步驟(c1)該環境監控模組係利用至少一水質監測單元監測該汙水處理裝置之水質。 The method for reusing green energy in the Internet of Things as described in claim 1, wherein the method further comprises the step (c1): monitoring the water quality of the sewage treatment device by using at least one water quality monitoring unit . 如申請專利範圍第1項所述之具物聯網之綠能中水再利用之方法,其中更包含步驟(b1)該環境監控模組係透過至少一水位感測器,使該水力發電裝置於高水位時進行發電。 The method for reusing green energy in the Internet of Things as described in claim 1, wherein the method further comprises the step (b1): the environmental monitoring module transmits the hydroelectric generating device through at least one water level sensor Power generation at high water levels. 如申請專利範圍第1項所述之具物聯網之綠能中水再利用之方法,其中更包含步驟(d1)該無線控制系統係透過一決策模組,根據至少一資料庫之現況資料及歷史資料進行評估。 The method for reusing green energy in the Internet of Things as described in claim 1, wherein the method further comprises the step (d1) that the wireless control system transmits information based on at least one database through a decision module and Historical data is evaluated.
TW106123652A 2017-07-14 2017-07-14 Method for reusing green energy in the Internet of Things TWI633734B (en)

Priority Applications (1)

Application Number Priority Date Filing Date Title
TW106123652A TWI633734B (en) 2017-07-14 2017-07-14 Method for reusing green energy in the Internet of Things

Applications Claiming Priority (1)

Application Number Priority Date Filing Date Title
TW106123652A TWI633734B (en) 2017-07-14 2017-07-14 Method for reusing green energy in the Internet of Things

Publications (2)

Publication Number Publication Date
TWI633734B true TWI633734B (en) 2018-08-21
TW201909514A TW201909514A (en) 2019-03-01

Family

ID=63959734

Family Applications (1)

Application Number Title Priority Date Filing Date
TW106123652A TWI633734B (en) 2017-07-14 2017-07-14 Method for reusing green energy in the Internet of Things

Country Status (1)

Country Link
TW (1) TWI633734B (en)

Families Citing this family (4)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
US11502322B1 (en) 2022-05-09 2022-11-15 Rahul S Nana Reverse electrodialysis cell with heat pump
US11502323B1 (en) 2022-05-09 2022-11-15 Rahul S Nana Reverse electrodialysis cell and methods of use thereof
US12040517B2 (en) 2022-11-15 2024-07-16 Rahul S. Nana Reverse electrodialysis or pressure-retarded osmosis cell and methods of use thereof
US11855324B1 (en) 2022-11-15 2023-12-26 Rahul S. Nana Reverse electrodialysis or pressure-retarded osmosis cell with heat pump

Citations (4)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
TWM414491U (en) * 2011-06-21 2011-10-21 Tai-Lin Lu Power generation system by multi-storey building wastewater
TWM434827U (en) * 2011-06-30 2012-08-01 Wen-Xiang Zhang Hydraulic power generation system with water kinetic energy fully recycled (II)
TWM523761U (en) * 2015-08-28 2016-06-11 Tong-Wei Zhang Water recycling application power generation device
TW201641793A (en) * 2015-05-29 2016-12-01 洪榮昭 Greenhouse device and method for recycling and sorting rain

Patent Citations (4)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
TWM414491U (en) * 2011-06-21 2011-10-21 Tai-Lin Lu Power generation system by multi-storey building wastewater
TWM434827U (en) * 2011-06-30 2012-08-01 Wen-Xiang Zhang Hydraulic power generation system with water kinetic energy fully recycled (II)
TW201641793A (en) * 2015-05-29 2016-12-01 洪榮昭 Greenhouse device and method for recycling and sorting rain
TWM523761U (en) * 2015-08-28 2016-06-11 Tong-Wei Zhang Water recycling application power generation device

Also Published As

Publication number Publication date
TW201909514A (en) 2019-03-01

Similar Documents

Publication Publication Date Title
TWI633734B (en) Method for reusing green energy in the Internet of Things
CN206407992U (en) A kind of multi-stage, efficient sewage-treatment plant
CN206580667U (en) A kind of wallpaper produces wastewater recycling system
CN206397213U (en) A kind of multifunctional intelligent environmental protection machine
CN103941698A (en) Direct drinking water device networking system
CN203529959U (en) Separate-quality cascade water replenishment and drainage and circulating water conservation system of iron and steel enterprise
CN206450674U (en) A kind of Water Contamination Monitor system
CN203065268U (en) Intelligent water-saving purified water recycling device
CN201864636U (en) Recycling treatment device system of circulating water of power plant
CN203007079U (en) High mineralization degree and salinity spring water processing system
CN208152135U (en) A kind of water saving fixtures for being used to live by rainwater using internet of things sensors
CN106933174A (en) A kind of country sewage wisdom Control management system
CN205116359U (en) Domestic sewage intelligence recovery system
CN206594511U (en) A kind of Intelligent bathroom energy-saving control system
CN205644234U (en) Energy -conserving environmental protection system of sewage treatment based on computer control
CN206396807U (en) A kind of water level early warning inspection well cover
CN211419841U (en) Novel reclaimed water recycling treatment system
CN211086977U (en) Energy-saving water treatment control system
CN209311876U (en) A kind of energy saving water supply circuit
CN207163501U (en) A kind of city ponding monitoring management system based on intelligent cloud platform
CN210505974U (en) Waste incineration water supply and drainage system
CN205527948U (en) MBR distributing type effluent disposal system
Onishi et al. Smart Water Management and Usage Systems for Society and Environment
CN106988559A (en) A kind of municipal and environment-friendly is enjoyed the cool booth
CN102041835A (en) Sewage recycling device

Legal Events

Date Code Title Description
MM4A Annulment or lapse of patent due to non-payment of fees