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水資源循環利用的創新力量竟然是它?

來源:http://www.98146.com.cn/ 時間: 2025-03-18 瀏覽次數: 0

低溫廢水回收設備

Low temperature wastewater recovery equipment

在全球水資源日益緊張以及環保要求愈發嚴苛的大背景下,工業廢水的有效處理與回收利用成為各行業可持續發展的關鍵課題。低溫廢水回收設備應運而生,作為一種創新性的環保設備,它能夠在相對低溫的條件下,高效地從廢水中分離出可回收利用的水資源以及有價值的物質,為企業降低生產成本、減少環境污染提供了切實可行的解決方案,正逐漸在多個領域嶄露頭角,發揮著不可或缺的作用。?

Against the backdrop of increasingly scarce global water resources and stringent environmental requirements, effective treatment and recycling of industrial wastewater have become key issues for sustainable development in various industries. Low temperature wastewater recovery equipment has emerged as an innovative environmental protection device. It can efficiently separate recyclable water resources and valuable substances from wastewater under relatively low temperature conditions, providing practical and feasible solutions for enterprises to reduce production costs and environmental pollution. It is gradually emerging in multiple fields and playing an indispensable role. ?

工作原理:低溫蒸發與冷凝的巧妙運用?

Working principle: Clever application of low-temperature evaporation and condensation

低溫廢水回收設備的工作原理主要基于低溫蒸發和冷凝技術。設備內部構建了一個相對低壓的環境,根據水的沸點與壓力的關系,在低壓狀態下,水的沸點會顯著降低。一般情況下,通過真空泵將設備內壓力控制在較低水平,使得廢水在幾十攝氏度甚至更低的溫度下就能開始沸騰蒸發。?

The working principle of low-temperature wastewater recovery equipment is mainly based on low-temperature evaporation and condensation technology. A relatively low pressure environment is constructed inside the device, and according to the relationship between the boiling point of water and pressure, the boiling point of water will significantly decrease under low pressure conditions. In general, the pressure inside the equipment is controlled at a lower level by a vacuum pump, so that the wastewater can start boiling and evaporating at temperatures of tens of degrees Celsius or even lower. ?

以常見的低溫多效蒸發(LT-MED)設備為例,廢水首先進入預熱器,利用蒸汽或其他熱源的余熱對廢水進行初步加熱,提高廢水的溫度,減少后續蒸發所需的能量。預熱后的廢水進入蒸發器,在蒸發器內,由于低壓環境,廢水迅速蒸發形成水蒸氣。蒸發器通常采用多效設計,即前一效產生的二次蒸汽作為下一效蒸發器的熱源,依次傳遞熱量,實現能量的梯級利用,大大提高了能源利用效率。?

Taking the common low-temperature multi effect evaporation (LT-MED) equipment as an example, the wastewater first enters the preheater, and the waste heat of steam or other heat sources is used to preliminarily heat the wastewater, increase the temperature of the wastewater, and reduce the energy required for subsequent evaporation. The preheated wastewater enters the evaporator, where it rapidly evaporates into water vapor due to the low-pressure environment. Evaporators usually adopt a multi effect design, where the secondary steam generated by the previous effect serves as the heat source for the next effect evaporator, sequentially transferring heat and achieving cascading energy utilization, greatly improving energy efficiency. ?

產生的水蒸氣隨后進入冷凝器,冷凝器通過冷卻介質(如水、空氣等)將水蒸氣冷卻,使其重新凝結成液態水。冷卻介質在冷凝器內循環流動,吸收水蒸氣的熱量后排出設備,經過適當處理后可再次循環使用。凝結后的水即為回收的淡水,其水質可根據不同的處理工藝和需求,達到工業用水甚至生活飲用水的標準。在整個過程中,廢水中含有的雜質,如鹽分、重金屬離子、有機物等,由于沸點較高,不會隨水蒸氣一同蒸發,而是留在蒸發器底部,通過定期排放的方式進行后續處理,從而實現了水與雜質的有效分離。

The generated water vapor then enters the condenser, which cools the water vapor through a cooling medium (such as water, air, etc.) to re condense it into liquid water. The cooling medium circulates in the condenser, absorbs the heat of water vapor, and is discharged from the equipment. After appropriate treatment, it can be reused. The condensed water is the recovered fresh water, and its water quality can meet the standards of industrial water and even domestic drinking water according to different treatment processes and requirements. Throughout the entire process, impurities such as salt, heavy metal ions, organic matter, etc. contained in the wastewater do not evaporate with water vapor due to their high boiling point. Instead, they remain at the bottom of the evaporator and undergo subsequent treatment through regular discharge, thereby achieving effective separation of water and impurities.

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低溫廢水回收設備主要由蒸發器、冷凝器、真空泵、循環泵、控制系統以及附屬的管道、閥門等部件構成,各部件協同工作,確保設備穩定高效運行。?

The low-temperature wastewater recovery equipment mainly consists of evaporator, condenser, vacuum pump, circulation pump, control system, and auxiliary pipelines, valves, and other components. These components work together to ensure stable and efficient operation of the equipment. ?

蒸發器是設備的核心部件之一,其結構設計直接影響蒸發效率和廢水處理效果。常見的蒸發器有降膜式蒸發器、強制循環蒸發器等。降膜式蒸發器利用重力使廢水在加熱管內壁形成均勻的液膜,在管外蒸汽的加熱下,液膜迅速蒸發。這種蒸發器具有傳熱效率高、設備占地面積小等優點,適用于處理量大、易結垢的廢水。強制循環蒸發器則通過循環泵使廢水在蒸發器內強制循環流動,提高了傳熱系數,增強了抗結垢能力,適用于處理高濃度、高粘度的廢水。蒸發器通常采用耐腐蝕的不銹鋼或鈦材制造,以適應廢水中各種化學物質的侵蝕。?

The evaporator is one of the core components of the equipment, and its structural design directly affects the evaporation efficiency and wastewater treatment effect. Common evaporators include falling film evaporators, forced circulation evaporators, etc. The falling film evaporator utilizes gravity to form a uniform liquid film on the inner wall of the heating tube for wastewater. Under the heating of steam outside the tube, the liquid film evaporates rapidly. This evaporator has the advantages of high heat transfer efficiency and small equipment footprint, and is suitable for treating large amounts of wastewater that is prone to scaling. The forced circulation evaporator uses a circulation pump to circulate the wastewater in the evaporator, improving the heat transfer coefficient and enhancing the anti scaling ability. It is suitable for treating high concentration and high viscosity wastewater. Evaporators are usually made of corrosion-resistant stainless steel or titanium materials to adapt to the erosion of various chemicals in wastewater. ?

冷凝器的作用是將蒸發器產生的水蒸氣冷凝成液態水。冷凝器的類型多樣,包括管殼式冷凝器、板式冷凝器等。管殼式冷凝器結構簡單、制造方便,適用于多種工況;板式冷凝器則具有傳熱效率高、占地面積小、易于清洗維護等優勢。冷凝器的冷卻介質可根據實際情況選擇,如工業冷卻水、環境空氣等。在一些缺水地區,采用空氣冷卻的冷凝器更為常見,其通過風扇將空氣強制吹過冷凝器表面,帶走水蒸氣的熱量,實現冷凝過程。

The function of the condenser is to condense the water vapor generated by the evaporator into liquid water. There are various types of condensers, including shell and tube condensers, plate condensers, etc. The shell and tube condenser has a simple structure, is easy to manufacture, and is suitable for various working conditions; Plate condenser has the advantages of high heat transfer efficiency, small footprint, and easy cleaning and maintenance. The cooling medium for the condenser can be selected according to the actual situation, such as industrial cooling water, ambient air, etc. In some water scarce areas, air-cooled condensers are more common, which use fans to forcefully blow air over the surface of the condenser, taking away the heat of water vapor and achieving the condensation process.

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