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矢崎エナジーシステム

EstablishmentAugust 21, 1963
capital31000Ten thousand
number of employees1915
addressTokyo/Minato-ku/6th Floor, W Building, 1-8-15 Konan
phone03-5782-2715
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last updated:Oct 04, 2024
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矢崎エナジーシステム List of Products and Services

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Introduction to the technologies that support our products. Introduction to the technologies that support our products.
New initiative New initiative
Electric wire business Electric wire business
Environmental System Business Environmental System Business
Gas appliance business Gas appliance business
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A system for measuring the calorific value of biogas simply and with high precision.

Our company has developed a system that enables simple and highly accurate measurement of the calorific value of biogas, and we are conducting demonstration experiments for it.

By focusing on the methane gas contained in biogas and measuring its concentration, we can indirectly determine the calorific value. For measuring methane gas concentration, we use an infrared gas sensor that utilizes the infrared absorption wavelength of gas molecules. This allows for rapid and highly accurate measurement of gas concentration even in high concentration areas. It is equipped with a compact and inexpensive pressure reduction and flow rate stabilization system, enabling the extraction of process gas and real-time data acquisition. An example of methane concentration measurement data can be downloaded from the catalog. *For more details, please feel free to contact us. *Please note that we cannot reply to g-mail addresses on our company system.

  • Sensors

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A reliable manufacturing technology with "freedom of degree."

Do you have any problems with metal processing parts?

- Because of the special pipe shape, I can't find a processing location... - I want a large rack to store heavy items, but... - I want to create a special cart, but the cost is... - I wonder if I can make a small original souvenir... - I need complex hole processing for metal parts, but... ↓↓↓ Consultations and estimates are free! Please feel free to contact us.

  • Special Processing Machinery
  • Processing Contract
  • Other processing machines

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Efforts towards new gas detection sensor technology

Gas sensors using microheaters achieve safer and more efficient gas detection through high sensitivity, low power consumption, and compact design.

Our company is working on a new technology that utilizes microheaters based on semiconductor technology, moving away from the traditional platinum coils used in contact combustion gas sensors. Microheaters can achieve instantaneous temperature increases and high sensitivity detection due to their high reactivity, while also being energy-efficient due to low power consumption. Traditional gas sensors required a large power consumption and had to be configured for AC power supply. Gas sensors utilizing microheaters can operate for long periods on battery power.

  • Sensors

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Principle of contact combustion gas sensor

The contact combustion-type gas sensor is a sensor that detects gas concentration by utilizing the heat generated during the combustion (oxidation reaction) of flammable gases.

Contact combustion-type sensors are widely used for the detection of combustible gases such as methane and propane. They are also commonly used as gas leak detectors in industrial and household settings, playing a crucial role in safety measures.

  • Sensors

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Introduction to the Gas Equipment Division

We provide gas-related equipment and services.

Since we began selling the LP gas meter "LP10" in Japan in 1963, we have been providing equipment and services to ensure the safe use of gas, one of the essential energies for our rich lives. For more details about the gas equipment division, please visit the website below. https://www.yazaki-group.com/gas/index.html

  • Flow Meter
  • Other inspection equipment and devices

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Introduction to the Electric Wire Division

A wire manufacturer that engages in the manufacturing, sales, and development design of products tailored to the diverse needs of customers.

We aim to create better products through integrated production from molten copper and compounds (raw materials) to finished products. In addition to manufacturing various general electric wires, we focus on producing products that meet diverse customer needs, such as the "soft" wire series that allows for easy bending and shaping, eco-friendly cables that consider the environment, branch cables and unit cables designed for reduced construction work on-site, as well as insulation diagnostic devices for 6kV CV cables that can be performed while live, and comprehensive electrostatic measures including conductive flooring materials. We are committed to the manufacturing, sales, and development design of products tailored to our customers' diverse needs. 【HP】https://www.yazaki-group.com/densen/index.html 【Ipros Page】https://www.ipros.jp/company/detail/2029145/

  • cable
  • Wiring materials
  • Other cable related products

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Creating regional resource circulation and economic circulation <Hamamatsu City, Shizuoka Prefecture>

Creating regional resource circulation and economic circulation! Introducing Hamamatsu City's decarbonization case.

In Hamamatsu City, a consortium centered around the city and local businesses is considering the use of regional biomass for power generation and heat utilization, utilizing forest resources in the Sakuma area and driftwood collected at Sakuma Dam. Our company is involved in the planning of biomass heat utilization based on the achievements cultivated in places like Yuhara Town and Nishi-Awakura Village. Please feel free to contact us when you need our services. 【Case Overview】 ■ Participation in the "Dream Project Sakuma" ■ Hamamatsu City, Shizuoka Prefecture *For more details, please refer to the PDF materials or feel free to contact us.

  • others

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Selected as an 'Environmental Model City' and 'Biomass Industrial City' (Nishiwakura Village, Okayama Prefecture)

Selected as an 'Environmental Model City' and 'Biomass Industrial City'! Introducing the decarbonization case of Nishiawakura Village.

In Nishiawakura Village, we supply hot water to public facilities in the area using a wood chip boiler that utilizes local timber as a heat source. Our company is involved in the selection of the wood chip boiler used for heat supply, as well as the design and management of the heat supply network. Additionally, Nishiawakura Village is actively working on reducing CO2 emissions in public facilities within the region. We conduct surveys on the current CO2 emissions at each facility and propose specific measures for CO2 emission reduction. [Case Overview] ■ First Selection of Decarbonization Leading Regions ■ Nishiawakura Village, Okayama Prefecture *For more details, please refer to the PDF document or feel free to contact us.

  • others

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The town-owned afforestation area has been certified as a forest therapy road in Yusuhara Town, Kochi Prefecture.

The town-owned afforestation area has been certified as a forest therapy road! Introducing the decarbonization case of Yusuhara Town.

The Tawaramachi Forest Association aims for self-reform into a global forest association in the era of global environmental and resource energy circulation, and has established Action Guideline 21, "Eight Strategies in the Mountains." At the same time, the forest association has obtained FSC certification. Additionally, the town-owned afforestation areas that have been jointly developed so far have been recognized as a Forest Therapy Road. This therapy road has been named "OAAO Road" and is being used for purposes such as "forest kindergartens." [Case Overview] ■ First Selection of Decarbonization Leading Regions ■ Tawaramachi, Kochi Prefecture *For more details, please refer to the PDF document or feel free to contact us.

  • others

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Reduce costs and CO2 emissions! Renewable energy and energy-saving solutions for factories.

Are you having trouble with "promoting carbon neutrality," "responding to the revised Energy Conservation Act," or "ESG management" for designated energy management factories?

Are you having trouble with "promoting carbon neutrality," "responding to energy conservation law amendments," or "ESG management"? In response to energy challenges in factories, such as reducing electricity consumption, decreasing fossil fuel use, and expanding the introduction of renewable energy, our company provides support from energy measurement to solutions based on our track record of 82 energy diagnostics (*). Since we can offer a one-stop solution from proposal to construction, we can promote carbon neutrality while keeping costs down. 【CO2 Reduction Benefits When Implemented (Partial)】 <Hotels> ■ CO2 Reduction Amount: 99t/year ■ Area of cedar forest that absorbs CO2 in one year: 11.6ha ■ Amount of wood pellets used: 162t/year (*) Energy diagnostic achievements…CO2 reduction potential diagnostic project (Ministry of the Environment) *For more details, please refer to the PDF document or feel free to contact us.

  • Management Seminar
  • Heat exchanger

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CO2 reduction! An energy circulation system that contributes to forest maintenance.

CO2 reduction effects from the introduction of pellet burning! A top-class combination for year-round CO2 reduction and environmental contribution.

The wood pellet burner "Bio Aloe Ace" is an energy circulation system that contributes to CO2 reduction and forest management. When converting the CO2 reduction effect from the use of wood pellets into the amount absorbed by forests, it is equivalent to the area that a cedar forest of 5 to 12 hectares can absorb in one year. Additionally, during the summer and winter months when air conditioning loads increase, operating the "Super Aloe Ace" allows for efficient air conditioning management. 【CO2 Reduction Benefits Upon Implementation (Partial)】 <Office> ■ CO2 Reduction Amount: 46t/year ■ Area of Cedar Forest that Absorbs CO2 in One Year: 5.4ha ■ Amount of Wood Pellets Used: 80t/year *For more details, please refer to the PDF document or feel free to contact us.

  • Other air conditioning equipment

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The mechanism for generating cold water from heat.

Utilizing the principle of "uchimizu," we create cold water from heat. We will explain that technology (mechanism) in an easy-to-understand manner.

In normal physical phenomena, it is considered difficult to directly create cold water from heat. Heat is a form of energy in an object, and since energy is conserved, it is necessary to convert the heat into another form of energy in order to cool it down. Because heat naturally flows from high temperature to low temperature, it is possible to cool an object by removing heat. For example, it becomes possible to create cold water by extracting heat from a heat source through water and transferring it to another object to lower its temperature.

  • Other air conditioning equipment
  • Heat exchanger

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Technology for producing cold water

Specifically, I will explain the process of making cold water from heat.

First, a low-temperature, low-pressure gas-liquid mixed refrigerant (water and water vapor) enters the evaporator. Inside the evaporator, which is in a near-vacuum state, the boiling point of water at 100°C is reduced to 7-10°C, allowing the refrigerant (water) to boil and turn into water vapor by absorbing heat from relatively warm water in the chilled water piping. The water vapor is drawn into the absorber, similar to the suction side of a vapor compression refrigeration cycle compressor. The water vapor is absorbed by the absorbent "lithium bromide" and is pumped into the regenerator. In the regenerator, the mixture of refrigerant and absorbent is heated to separate it back into the original water vapor and absorbent, with the absorbent returning to the absorber and the water vapor being sent to the condenser. There are methods for adding heat in the regenerator, including combustion using fuels such as gas or oil, or using steam or hot water. The refrigerant, which has returned to water after losing heat in the condenser, is depressurized in the expansion device and flows back to the evaporator, repeating the cycle.

  • Heat exchanger

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Environmentally friendly agricultural system

We are promoting the "5 Ts" of agriculture: Timely T, Quantitative T, Quality T, Low Personnel T, and Low Price T.

■Energy sources: Utilization of diverse energy sources ➡ Low cost ■Indoor environment control system: Creating "four seasons" with hot and cold water ➡ Quantitative and consistent quality ■ICT/IoT technology: Solving the labor shortage problem ➡ Timely and low personnel ■Cultivation control system: Pursuit of deliciousness and increased income ➡ Quantitative and consistent quality               ⇊⇊⇊⇊ ■Environmentally friendly agricultural system: Energy-saving and energy-generating agricultural houses ➡ Low cost and consistent quality

  • Other metal materials
  • Solar power generator

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Utilizing hot water and steam from factories! Hot water absorption chiller.

Contributing to carbon neutrality, responding! Can be operated in combination with direct-fired absorption chiller.

The "Aloe Ace (WFC-SH10 to SH90)" is a hot water absorption chiller that accurately responds to all waste heat applications. By installing the main unit, it can be used within a cooling capacity range of 10RT to 90RT. It features a built-in heating and cooling switching function and can also be used in conjunction with direct-fired absorption chillers. This product is ideal for those considering energy-saving solutions that utilize waste heat (hot water) to supply cold and hot water. 【Features】 ■ Rich variety of options ■ Capable of using low-temperature water ■ Quick startup during operation ■ Can operate in conjunction with direct-fired absorption chillers ■ Capable of both heating and cooling with a single unit *For more details, please refer to the PDF materials or feel free to contact us.

  • Wastewater/wastewater treatment equipment

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Utilizing hot water from solar panels! Hot water absorption chiller.

A suitable model for those considering fuel cost reduction! Contributes to carbon neutrality and is compatible.

The "Aloe Ace (WFC-SC5 to SC150)" is an air conditioning unit that generates cold water using waste heat (hot water). It accurately responds to all waste heat applications. By installing the main unit, it can be used within a cooling capacity range of 10RT to 90RT. In systems that require hot water, please install a separate heating and cooling switching valve in the heat transfer circuit and send the heat transfer medium (hot water) directly to the secondary side for use. 【Features】 ■ Improved cold water temperature characteristics ■ Increased efficiency at low heat sources ■ Quick startup operation ■ More compact and lightweight ■ Can be installed in various locations without restrictions *For more details, please refer to the PDF materials or feel free to contact us.

  • Wastewater/wastewater treatment equipment

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Achieve energy-saving heating and cooling operation! Steam-fired absorption chiller.

Achieve energy conservation and further power savings! Easy equipment design for combined use with other systems.

The "Super Aloe Ace" is a steam-driven absorption chiller that utilizes exhaust steam from factories and cogeneration systems. We offer a lineup of four models equipped with standard large heating capacity. You can select equipment that matches your air conditioning load. Options are available to accommodate government projects as well. Thanks to Yazaki's unique steam input control, we independently manage steam input control even with fluctuations in steam pressure, reducing the impact of steam pressure variations on other systems. 【Features】 - Top-class energy-saving operation for compact units - Abundant variations - Refrigeration capacity follows fluctuating steam pressure - Exemption from pressure vessel regulations - Capable of both cooling and heating with a single unit *For more details, please refer to the PDF materials or feel free to contact us.

  • Water treatment equipment

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Contributing to global warming prevention and forest management: Wood pellet-fired absorption chiller.

Achieve carbon neutrality, reduce CO2 emissions, and prevent global warming! Contribute to revitalizing the local economy and protecting forests.

"Bio Aloe Ace" is a wood pellet-fired absorption chiller that contributes to the restoration of the Earth's environment through resource circulation. By operating throughout the year during the base load period, this product reduces CO2 emissions. The energy sources include thinned wood, forest residuals, and offcuts. It significantly contributes to the recovery of neglected forests and forest management. 【Features】 ■ A top-class product that uses wood pellets as fuel, reducing environmental impact ■ Carbon-neutral (zero CO2 emission factor) wood pellets ■ Contributes to preventing global warming and forest management *For more details, please refer to the PDF document or feel free to contact us.

  • Other air conditioning equipment

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Please consult us about carbon neutrality in factories, from energy conservation to renewable energy.

Are you having trouble with 'Promoting Carbon Neutrality', 'Responding to Energy Conservation Law Amendments', and 'ESG Management'?

■Significant reduction of CO2 emissions with a carbon-neutral wood pellet air conditioning system ■Yazaki's solar thermal system, with over 50 years of experience, significantly reduces hot water energy consumption ■Utilizing 7°C cold water generated from waste heat, exhaust heat, wastewater, and sewage for improving labor conditions through air conditioning and energy savings in process cooling ■A variety of implementation methods for solar power generation systems, from company-owned to PPA ■Easily reduce air conditioning load just by switching to vacuum-insulated windows ■Easily implemented LEDs provide high-efficiency lighting equipment with a short payback period on investment

  • Heat exchanger

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Carbon neutral equipment

Effective use of heat is possible! We have prepared a lineup of equipment focusing on small and medium-sized machines!

Since the launch of our absorption chiller in 1970, we have adopted air conditioning and cooling systems utilizing cogeneration and waste heat from factories in countries around the world. We offer a new model that fits a variety of cooling temperature ranges, the "New WFC-S Series," along with the "WFC-MB100," "CH-KP30," and "CH-KGST Series." Additionally, we have a lineup of various solar thermal hot water systems for the use of renewable energy in hot water supply, which dramatically reduces CO2 emissions for customers with high hot water demand. 【Product Lineup】 ■ Hot Water Utilization WFC-S Series ■ Hot Water Utilization WFC-MB ■ Wood Pellet Utilization CH-KP30 ■ Steam Utilization CH-KGST Series ■ Solar Thermal Utilization Equipment (Commercial/Residential) *For more details, please refer to the PDF materials or feel free to contact us.

  • air conditioning

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Warm Water Burning Absorption Chilled Water Machine "Warm Water Burning Aloe Ace S Series"

Rich variety! We accurately respond to all exhaust heat applications!

We would like to introduce our hot water absorption chiller, the "Hot Water Burning Aloe Ace S Series." The "WFC-SH10 to SH90" is a suitable model for those considering energy savings, as it utilizes waste heat (hot water) to supply cold and hot water. The unit is equipped with a heating and cooling switching function and can also be used in conjunction with direct hot water absorption chillers. Additionally, we offer a wide variety of models, including the cooling-only unit "WFC-SC5 to SC150." 【Features】 - In combination with various waste heat devices, it enhances the overall efficiency of micro-cogeneration systems. - The waste heat hot water temperature range can be utilized from 70 to 95°C, and the cooling capacity performance has also improved. - The miniaturization of the unit has reduced the solution volume by half and achieved a 41% reduction in unit weight. - It can be installed in various locations without restrictions. *For more details, please refer to the PDF materials or feel free to contact us.

  • air conditioning

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Wood Pellet Burner Bio Aloe Ace CH-KP30

A new air conditioning system designed with coexistence with the Earth in mind. Contributing to the restoration of the Earth's environment through resource circulation, while achieving both environmental impact reduction and high performance of equipment!

The "Wood Pellet Burning Bio Aloe Ace CH-KP30" is a new air conditioning system that utilizes renewable energy. The energy sources include thinned wood, forest residuals, and offcuts, significantly contributing to forest management and cultivation, as well as the restoration of neglected forests. Additionally, during the summer and winter months when air conditioning loads increase, the "Super Aloe Ace" can also be activated for efficient air conditioning management. 【Features】 ■ Utilizes wood pellets, enabling the circulation of forest resources and contributing to the global environment. ■ Significantly contributes to CO2 reduction throughout the year, both during cooling and heating. ■ Absorbs CO2 to nurture forests and protect greenery. ■ Contributes to the revitalization of the local economy and forest conservation. ■ Achieves high efficiency through direct combustion of wood pellets. ■ Allows for remote operation with ON/OFF and flexible heating/cooling management system. ■ Can be installed outdoors, eliminating the need for machine room space. ■ Provides safety and reliability based on years of proven performance.

  • air conditioning

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Design Data: Steam-Baked Super Aloe Ace

Wide range of operating steam pressure (1 to 7 kgf/cm²G)! Achieved high efficiency comparable to medium-sized models!

The "Steam-Fired Super Aloe Ace" is an absorption chiller that operates at the highest level of efficiency by controlling steam input through our unique steam input control system, suppressing excessive steam input during the startup of the refrigeration unit and when the cooling water temperature decreases. This document includes the product's "features," as well as "model numbers," "external dimensions and foundation dimensions," and "performance characteristics." Please feel free to download and take a look. [Contents (partial)] ■ Features ■ Specifications ■ Electrical ■ Piping ■ Performance characteristics *For more details, please refer to the PDF document or feel free to contact us.

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Utilizing waste heat from the aluminum die-casting furnace for factory air conditioning.

Reducing energy consumption and CO2 emissions! A case study utilizing waste heat from aluminum die-casting furnaces.

We would like to introduce a case study of decarbonization through the utilization of factory waste heat that our company has implemented. At a machinery manufacturing company, we added a waste heat utilization unit (cooling output 35kW) to an existing gas-fired absorption chiller (cooling output 176kW). By using the waste heat utilization unit to cover the base operation of the existing unit, we reduced energy consumption and CO2 emissions. 【Case Overview】 ■ Business Type: Machinery Manufacturing Company ■ Model: Hot Water Fired Absorption Chiller 10RT (1 unit) ■ Waste Heat Amount: 51kW (waste hot water) ■ Cooling Water Application: Factory air conditioning ■ Energy Saving Effect: 79,620 (kWh/year) *For more details, please refer to the related links or feel free to contact us.

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Utilizing the waste heat from the compressor for factory cooling.

Installation of waste heat recovery units to existing electric air conditioning systems! Reducing energy consumption and CO2 emissions.

We would like to introduce a case study of decarbonization through the utilization of factory waste heat that our company has implemented. At a confectionery factory, we added a waste heat utilization unit (cooling output 105kW) to an existing electric air conditioning unit (cooling output 176kW). By using the waste heat utilization unit to cover the base operation of the existing unit, we reduced electricity consumption and CO2 emissions. 【Case Overview】 ■ Business Type: Confectionery Factory ■ Equipment: Hot Water Absorption Chiller 30RT (1 unit) ■ Waste Heat Amount: 151kW (waste hot water) ■ Cooling Water Application: Air conditioning for the transformer room ■ Energy Saving Effect: 153,400 (kWh/year) *For more details, please refer to the related links or feel free to contact us.

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Cooling coffee beans with cold water generated from the waste heat of the roaster.

Installation of waste heat utilization equipment (cooling output 211kW)! A case that achieved energy-saving effects of 255,300 kWh per year.

We would like to introduce a case study of decarbonization through the utilization of factory waste heat that our company has implemented. At a roasting factory, we installed a waste heat utilization unit (cooling output 211kW) in addition to the existing electric chiller (cooling output 352kW). By using the waste heat utilization unit to cover the base operation of the existing unit, we were able to reduce electricity consumption and CO2 emissions. 【Case Overview】 ■ Business Type: Roasting Factory ■ Equipment: Hot Water Absorption Chiller 30RT, 2 units ■ Waste Heat Amount: 301kW (waste hot water) ■ Cooling Water Application: Cooling coffee beans ■ Energy Saving Effect: 255,300 (kWh/year) *For more details, please refer to the related links or feel free to contact us.

  • Cooling system

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Utilizing cold water generated from burning chicken manure as air conditioning for poultry farms.

Introduction of a radiation cooling system in the poultry farm! Improving the rearing environment for chickens without increasing CO2 emissions.

We would like to introduce a case of decarbonization utilizing factory waste heat that our company has implemented. At a poultry farm, a radiant cooling system using biomass energy was introduced. This improved the rearing environment for chickens without increasing CO2 emissions. 【Case Overview】 ■ Business Type: Poultry Farm ■ Equipment: Hot Water Absorption Chiller 30RT, 1 unit ■ Waste Heat Amount: 151kW (waste hot water) ■ Cold Water Application: Radiant cooling within the poultry farm ■ Energy Saving Effect: 87,480 (kWh/year) *For more details, please refer to the related links or feel free to contact us.

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Waste Heat Utilization Web Simulator

Selection of waste heat utilization equipment! Simulation can be performed online.

We would like to introduce our "Waste Heat Utilization Web Simulator." By inputting waste heat-related information (temperature, flow rate), you can simulate the selection of waste heat utilization equipment online. Please feel free to consult us when you need assistance. *For more details, please refer to the related links or feel free to contact us.

  • simulator

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Utilizing cold water generated by waste heat recovery equipment for air conditioning within the sports center.

Utilizing waste heat to cover the base operation of existing equipment! Reducing CO2 emissions by approximately 180 tons per year.

We would like to introduce a case study of decarbonization through waste heat utilization in cogeneration conducted by our company. At a sports center, we added a waste heat utilization unit (cooling output 704kW) to an existing electric air conditioning unit (cooling output 1,408kW). By using the waste heat utilization unit to cover the base operation of the existing unit, we reduced electricity consumption and CO2 emissions. 【Case Overview】 ■ Business Type: Sports Center ■ Model: Hot Water Absorption Chiller 100RT (2 units) ■ Waste Heat Amount: 1,005kW (waste hot water) ■ Cooling Water Application: Air conditioning for recreational space ■ Energy Saving Effect: 408,800 (kWh/year) *For more details, please refer to the related links or feel free to contact us.

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Cooling the molds of the injection molding machine with cold water generated by the waste heat recovery system.

Reduce electricity consumption and CO2 emissions! Examples of utilizing cogeneration waste heat.

We would like to introduce a case of decarbonization through waste heat utilization in cogeneration conducted by our company. At a plastic factory, a waste heat utilization unit (cooling output 352kW) was added to an existing electric chiller (cooling output 704kW). By using the waste heat utilization unit to cover the base operation of the existing unit, we reduced electricity consumption and CO2 emissions. 【Case Overview】 ■ Industry: Plastic products factory ■ Model: Hot water absorption chiller 100RT (1 unit) ■ Waste heat amount: 504kW (waste hot water) ■ Cooling application: Cooling of injection molding machine molds ■ Energy-saving effect: 425,700 (kWh/year) *For more details, please refer to the related links or feel free to contact us.

  • air conditioning

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Cooling the wine storage room with cold water generated by a waste heat recovery system.

A case where cold water generated by a waste heat utilization system was used for cooling in a wine storage room!

We would like to introduce a decarbonization case study of cogeneration waste heat utilization conducted by our company. At a winery, cold water generated by a waste heat utilization system was used for cooling the wine storage room. This achieved temperature management of the wine storage room while keeping the increase in electricity usage to a minimum. 【Case Overview】 ■ Business Type: Winery ■ Equipment: Hot water absorption chiller 50RT (1 unit) ■ Waste Heat Amount: 252kW (waste hot water) ■ Cold Water Application: Cooling of the wine storage room ■ Energy Saving Effect: 147,000 (kWh/year) *For more details, please refer to the related links or feel free to contact us.

  • Heat exchanger

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Utilizing hot spring heat for air conditioning in hotel lobbies and guest rooms.

A case of upgrading an existing heavy oil-fired absorption chiller to a waste heat utilization system using geothermal heat!

We would like to introduce a case study of decarbonization through geothermal utilization that our company has implemented. At a hotel, we contributed to CO2 reduction by upgrading the existing heavy oil-fired absorption chiller to a waste heat utilization system that uses geothermal heat. You can find more details about the case in the related links. 【Case Overview】 ■ Business Type: Hotel ■ Equipment: Hot Water Absorption Chiller 50RT (2 units) ■ Waste Heat Amount: 502kW (Geothermal Heat) ■ Cooling Water Applications: Hotel lobby, guest room air conditioning ■ Energy Saving Effect: 244,300 (kWh/year) *For more details, please refer to the related links or feel free to contact us.

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Utilizing hot spring heat for hospital air conditioning.

Reduction of electricity consumption and CO2 emissions! A case study of adding waste heat recovery units to existing electric air conditioning systems.

We would like to introduce a case study of decarbonization through geothermal utilization that our company has implemented. At a hospital, we added a waste heat utilization unit (cooling output 70kW) to an existing electric air conditioning unit (cooling output 105kW). By using the waste heat utilization unit to cover the base operation of the existing unit, we reduced electricity consumption and CO2 emissions. 【Case Overview】 ■ Industry: Hospital ■ Equipment: Two 10RT hot water absorption chillers ■ Waste heat amount: 101kW (from hot spring heat) ■ Cooling water application: Air conditioning within the hospital ■ Energy-saving effect: 12,400 kWh/year *For more details, please refer to the related links or feel free to contact us.

  • air conditioning

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Utilizing geothermal energy for factory cooling.

Use of cold water for air conditioning within the factory! A case study that reduced electricity consumption and CO2 emissions by approximately 40%.

We would like to introduce a case study of decarbonization through geothermal utilization that our company has implemented. At a leather goods factory, we installed a waste heat recovery unit (cooling output 105kW) in addition to an existing electric air conditioning unit (cooling output 175kW). By using the waste heat recovery unit to cover the base operation of the existing unit, we were able to reduce electricity consumption and CO2 emissions. [Case Overview] ■ Industry: Leather goods factory ■ Model: Hot water absorption chiller 30RT, 1 unit ■ Waste heat amount: 151kW (geothermal) ■ Cooling water application: Air conditioning within the factory ■ Energy-saving effect: 72,900 (kWh/year) *For more details, please refer to the related links or feel free to contact us.

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Trends in domestic consumption of wood pellets

Rapid increase of about 5 times over 4 years! Introduction of wood pellet production and import volumes in Japan.

We would like to introduce the trend of domestic consumption of wood pellets in our company's utilization of wood biomass. In response to the recent rise in energy prices and the acceleration of efforts toward decarbonization, the demand for wood biomass energy is increasing worldwide. As we move toward a carbon-neutral society, the demand for wood pellets, which are one form of wood biomass energy, is expected to continue to rise in the future. *For more details, please refer to the related links or feel free to contact us.

  • others

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Benefits of Using Wood Pellets

Utilizing wood pellets as a heat source for air conditioning systems! A reduction in CO2 emissions is expected.

We would like to introduce the benefits of using wood pellets in our wood biomass utilization. By using wood pellets as a heat source for air conditioning systems, we can expect a reduction in CO2 emissions and running costs associated with air conditioning. Please feel free to consult us when needed. *For more details, please refer to the related links or feel free to contact us.

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Utilizing cold water generated from locally sourced wood as fuel for air conditioning in student dormitories.

A case study of achieving air conditioning in student dormitories that reduces electricity consumption and CO2 emissions!

We would like to introduce a case study of decarbonization using wood biomass that our company has implemented. During the construction of a student dormitory, we proposed a wood pellet-fired absorption chiller that uses local timber as a heat source. This enabled us to achieve air conditioning for the student dormitory while reducing electricity consumption and CO2 emissions. 【Case Overview】 ■ Business Type: Student Dormitory ■ Model: 2 units of wood pellet-fired Bio Aloe Ace ■ Heat Input: 201 kW (wood pellets) ■ Cooling Application: Air conditioning within the student dormitory ■ Energy Saving Effect: 171,850 (kWh/year) *For more details, please refer to the related links or feel free to contact us.

  • air conditioning

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Utilization of cold water generated from local timber as fuel for the town hall's air conditioning.

Local wood pellets as fuel! Introduction of an air conditioning system using a wood pellet-fired absorption chiller.

We would like to introduce a case of decarbonization using wood biomass that our company has implemented. During the reconstruction of the town hall, an air conditioning system using a wood pellet-fired absorption chiller was introduced, utilizing locally sourced wood pellets as fuel. This has achieved a reduction in electricity consumption and CO2 emissions for the town hall's air conditioning. [Case Overview] ■ Business Type: Town Hall ■ Model: Wood Pellet Fired Bio-Aloe Ace (3 units) ■ Heat Input: 302 kW (wood pellets) ■ Cooling Application: Air conditioning within the town hall ■ Energy Saving Effect: 258,280 (kWh/year) *For more details, please refer to the related links or feel free to contact us.

  • air conditioning

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Utilizing cold water generated from wood pellets as fuel for hospital air conditioning.

Installation of a wood pellet-fired absorption chiller for cooling and heating water! A case where it covered the base operation of the existing unit.

We would like to introduce a case study of decarbonization through the use of wood biomass that our company has implemented. We added a wood pellet-fired absorption chiller (cooling output 637 kW) to an existing kerosene-fired absorption chiller (cooling output 1,337 kW). By using the wood pellet-fired absorption chiller to cover the base operation of the existing unit, we were able to reduce energy consumption and CO2 emissions. 【Case Overview】 ■ Business Type: Hospital ■ Model: Two wood pellet-fired Bio Aloe Ace units ■ Heat Input: 603 kW (wood pellets) ■ Cooling Water Application: Air conditioning within the hospital ■ Energy Saving Effect: 922,400 (kWh/year) *For more details, please refer to the related links or feel free to contact us.

  • air conditioning

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Reducing hot water energy consumption in hospitals by utilizing solar heat.

The solar thermal energy utilization is 181.3 GJ! A case where CO2 emissions were reduced by approximately 10 tons annually.

We would like to introduce a case study of decarbonization using solar thermal energy that our company has conducted. By preheating the water supply for the LPG boiler used for hot water in the hospital with solar thermal equipment, we have reduced energy consumption. Please feel free to consult us when needed. 【Case Overview】 ■ Business Type: Hospital ■ Model: Eco Solar Multi 10 Set (50 panels) ■ Hot Water Application: Preheating water supply for existing LPG boiler ■ Solar Thermal Energy Utilization: 181.3 GJ ■ Energy Saving Effect: 49,823 (kWh/year) *For more details, please refer to the related links or feel free to contact us.

  • Other environmental equipment

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Reducing hot water energy consumption in elderly care facilities by utilizing solar heat.

Preheating the feed water of heavy oil boilers with solar heat! A case study that reduced energy consumption by approximately 30%.

We would like to introduce a case study of decarbonization using solar thermal energy that our company has implemented. By preheating the water supply for heavy oil boilers used in bathing at a nursing care facility with solar thermal energy, we have reduced energy consumption. Please feel free to consult us when needed. 【Case Overview】 ■ Business Type: Nursing Care Facility ■ Equipment: 42 Super Blue Panels ■ Hot Water Application: Preheating water supply for existing heavy oil boilers ■ Solar Thermal Energy Utilization: 204.7 GJ ■ Energy Saving Effect: 56,568 (kWh/year) *For more details, please refer to the related links or feel free to contact us.

  • Heat exchanger

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Reducing hot water energy in apartment buildings by utilizing solar heat.

Preheating water supply to the water heater using solar heat! Examples of reducing energy consumption in households.

We would like to introduce a case study of decarbonization using solar thermal energy that our company has conducted. By preheating the water supply for the water heaters used for hot water in apartment buildings with solar thermal energy, we have reduced the energy consumption of each household. Please feel free to consult us when needed. 【Case Overview】 ■ Business Type: Apartment Building ■ Model: Atsutaro 4 Sets (8 Panels) ■ Hot Water Application: Preheating water supply for existing LPG water heaters ■ Solar Thermal Energy Utilization: 32.9 GJ ■ Energy Saving Effect: 9,046 (kWh/year) *For more details, please refer to the related links or feel free to contact us.

  • Other environmental equipment

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  • 大型品の切削や低コストな複合加工に。ロボットシステムの資料進呈

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