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Adsorption type fresh water trapping device with condensation unit and working method of adsorption type fresh water trapping device
The invention belongs to the technical field of adsorption, and particularly relates to an adsorption type fresh water trapping device with a condensation unit and a working method of the adsorption type fresh water trapping device. The trapping device is composed of a subsystem I used for trapping water vapor, a subsystem II used for condensing the water vapor, an electromagnetic valve set used for controlling airflow and a monitoring and control system. Air firstly enters the subsystem I to be adsorbed and captured, then desorbed water vapor enters the subsystem II to be cooled and fresh water is collected, and the subsystem I and the subsystem II achieve automatic cycle operation of the fresh water capturing device under sequential cycle control of a solenoid valve set set by a control system. According to the adsorption type fresh water trapping device, rapid adsorption and desorption of water molecules in air can be realized by utilizing the adsorption trapping unit, and rapid and efficient condensation is realized under the help of the novel needled condensation unit, so that the condensation efficiency of water vapor is improved, the amount of the water vapor escaping after the condensation process is reduced, and the working efficiency of the adsorption type fresh water trapping device is further improved.
本发明属于吸附技术领域,具体涉及一种带有冷凝单元的吸附式淡水捕集装置及其工作方法。所述捕集装置由用于捕获水蒸气的子系统Ⅰ,用于冷凝水蒸气的子系统Ⅱ,用于控制气流的电磁阀组,以及监测和控制系统组成。空气首先进入子系统Ⅰ进行吸附捕获,随后脱附水蒸气进入子系统Ⅱ进行冷却收集淡水,子系统Ⅰ和子系统Ⅱ在控制系统设定电磁阀组时序循环控制下实现淡水捕集装置自动循环运行。本发明利用利用吸附捕获单元可以实现空气中水分子的快速吸脱附,并在针刺状的新型冷凝单元的帮助下快速高效冷凝,提高了水蒸气的冷凝效率,减少了冷凝过程后逸出的水蒸气量,进而提高了吸附式淡水捕集装置的工作效率。
Adsorption type fresh water trapping device with condensation unit and working method of adsorption type fresh water trapping device
The invention belongs to the technical field of adsorption, and particularly relates to an adsorption type fresh water trapping device with a condensation unit and a working method of the adsorption type fresh water trapping device. The trapping device is composed of a subsystem I used for trapping water vapor, a subsystem II used for condensing the water vapor, an electromagnetic valve set used for controlling airflow and a monitoring and control system. Air firstly enters the subsystem I to be adsorbed and captured, then desorbed water vapor enters the subsystem II to be cooled and fresh water is collected, and the subsystem I and the subsystem II achieve automatic cycle operation of the fresh water capturing device under sequential cycle control of a solenoid valve set set by a control system. According to the adsorption type fresh water trapping device, rapid adsorption and desorption of water molecules in air can be realized by utilizing the adsorption trapping unit, and rapid and efficient condensation is realized under the help of the novel needled condensation unit, so that the condensation efficiency of water vapor is improved, the amount of the water vapor escaping after the condensation process is reduced, and the working efficiency of the adsorption type fresh water trapping device is further improved.
本发明属于吸附技术领域,具体涉及一种带有冷凝单元的吸附式淡水捕集装置及其工作方法。所述捕集装置由用于捕获水蒸气的子系统Ⅰ,用于冷凝水蒸气的子系统Ⅱ,用于控制气流的电磁阀组,以及监测和控制系统组成。空气首先进入子系统Ⅰ进行吸附捕获,随后脱附水蒸气进入子系统Ⅱ进行冷却收集淡水,子系统Ⅰ和子系统Ⅱ在控制系统设定电磁阀组时序循环控制下实现淡水捕集装置自动循环运行。本发明利用利用吸附捕获单元可以实现空气中水分子的快速吸脱附,并在针刺状的新型冷凝单元的帮助下快速高效冷凝,提高了水蒸气的冷凝效率,减少了冷凝过程后逸出的水蒸气量,进而提高了吸附式淡水捕集装置的工作效率。
Adsorption type fresh water trapping device with condensation unit and working method of adsorption type fresh water trapping device
一种带有冷凝单元的吸附式淡水捕集装置及其工作方法
SUN TIANJUN (author) / QI FENGSHI (author) / MIN XIUBO (author) / WANG QI (author) / SHAO MIHUA (author) / ZHAO BAOGANG (author)
2022-10-14
Patent
Electronic Resource
Chinese
IPC:
E03B
Anlagen oder Verfahren zum Gewinnen, Sammeln oder Verteilen von Wasser
,
INSTALLATIONS OR METHODS FOR OBTAINING, COLLECTING, OR DISTRIBUTING WATER
/
B01J
Chemische oder physikalische Verfahren, z.B. Katalyse oder Kolloidchemie
,
CHEMICAL OR PHYSICAL PROCESSES, e.g. CATALYSIS OR COLLOID CHEMISTRY
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