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Heating and cooling - Import export

Switzerland

Switzerland

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A smart and eco-friendly heating solution for your home. Discover our range of advanced heat pump solutions designed to meet your specific need. Works seamlessly with PV systems to harness solar energy for even greater efficiency with R290 technology Swimming Pool Heat Pump Heating & Cooling Heat Pump including Domestic Heat Pump Water Heater Commercial Heat Pump Water Heater

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Switzerland

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Pressure vessels/containers and reactors must meet the highest quality requirements. The pressurized objects are designed at KASAG according to the relevant regulations and subsequently produced, with great enthusiasm, using the most modern technology. Stainless steel and special materials, such as duplex and nickel-based alloys (Hastelloy, Inconel) are processed. All our production experts have the mandatory certificates, and have mastered the welding process MIG, MAG, TIG, Plasma and Orbital and work solely with certified welding consumables. The pressure vessles and chemical reactors are finally polished, pickled, passivated and tested using non-destructive test methods. KASAG products meet all your standards.

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Switzerland

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The KASAG sterile containers, mixing tanks are used for preparing and mixing of products in the food industry. The container is equipped with a mixing device and jacket for heating and cooling. The entire system is built on a frame with a control unit and weighing cells.

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Switzerland

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The wastewater in the sewers is an ideal source of energy when combined with heat pumps and cooling machines, for heating and cooling of buildings. Per our experience, the minimal requirements for such a plant include: a wastewater flow of approx.. 10 l/s a wastewater temperature level of about 10°C a power requirement from 100kW (for heating and cooling from ca. 50kW). During the course of conveying wastewater to the sewage treatment plant, there are many possibilities for exploiting thermal energy. Wastewater can also be used many times over consecutively as energy source. Despite new inflows, or the confluence into larger canals, but also through heat influx from cooling systems, the change in temperature of the wastewater is mostly marginal. Innovative cities have ready energy guidelines (energy plans), based on which you can orient yourself to find out whether there is a suitable wastewater canal in your near vicinity (maximally approx. at a distance of 200 m).

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Switzerland

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The wastewater in the sewers is an ideal source of energy when combined with heat pumps and cooling machines, for heating and cooling of buildings. Per our experience, the minimal requirements for such a plant include: a wastewater flow of approx.. 10 l/s a wastewater temperature level of about 10°C a power requirement from 100kW (for heating and cooling from ca. 50kW). During the course of conveying wastewater to the sewage treatment plant, there are many possibilities for exploiting thermal energy. Wastewater can also be used many times over consecutively as energy source. Despite new inflows, or the confluence into larger canals, but also through heat influx from cooling systems, the change in temperature of the wastewater is mostly marginal. Innovative cities have ready energy guidelines (energy plans), based on which you can orient yourself to find out whether there is a suitable wastewater canal in your near vicinity (maximally approx. at a distance of 200 m).

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Switzerland

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The use of energy potential at the place of its origin is optimal. Ensuring the heat transfer in the heat exchanger is thereby a vital criterion and requires customized solutions. The torrent of sewage flow in buildings is collected in a containment volume for generating energy using heat exchanger for heating and cooling. No retention volume is necessary for continuous outflows and process heating. This can be applied, for instance, in apartment buildings, residential buildings, communal buildings, hotels, thermal baths, swimming pools as well as in different energy-intensive industries, such as in foodstuffs, chemicals and pharmaceuticals.

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Switzerland

The temperature of jacketed reactors can be controlled by TCUs (temperature control unit) large central heating/cooling units with secondary systems for individual reactor temperature control process steam (in case of large metal reactors) Our jacketed reactors are typically temperature controlled using heat transfer oil and TCU or central heating/cooling units. The heat transfer oil which is pumped through the jacket of the reactor controls the process temperature inside the reactor. The temperature range of the heat transfer oil spans from -80°C up to 300°C (depending on the heat transfer oil used).

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