LinkedIn Profile

Access Exergyn historical Linkedin company profile data on number of followers, employee headcount and more
Ticker Symbol Entity Name As Of Date Company Name Followers Employees on Linkedin Link Industry Date Added Date Updated Description Website Specialities Logo HQ.Street HQ.City HQ.State HQ.Country HQ.Postal Headcount change in past 24 months Company Name Sector Industry
private:exergyn 5340143 Dec 3rd, 2020 12:00AM Exergyn 261 21.00 Open Mechanical Or Industrial Engineering Dec 3rd, 2020 10:11AM Dec 3rd, 2020 10:11AM Exergyn has developed an engine that runs on hot water. Technically, it converts low-grade heat (<100degC) to power at low cost and high power-density. The technology is particularly suited to industrial applications e.g. Combined Heat & Power (CHP), Biogas, Centralised Power, Geothermal, and Cargo Shipping. It's important to note that we are not an Organic Rankine Cycle (ORC) technology or variation thereof. In fact, we do not use heat exchangers at all, which makes us a game-changer. Compared to ORCs our technology is significantly cheaper, more power-dense, easier to install and has no hazardous materials or gases. Open converting low-grade heat to power, engine design, biogas, intellectual property Open DCU Alpha, Old Finagles Rd, Glasnevin Dublin IE 11 Exergyn
private:exergyn 5340143 Dec 2nd, 2020 12:00AM Exergyn 261 21.00 Open Mechanical Or Industrial Engineering Dec 2nd, 2020 12:34PM Dec 2nd, 2020 12:34PM Exergyn has developed an engine that runs on hot water. Technically, it converts low-grade heat (<100degC) to power at low cost and high power-density. The technology is particularly suited to industrial applications e.g. Combined Heat & Power (CHP), Biogas, Centralised Power, Geothermal, and Cargo Shipping. It's important to note that we are not an Organic Rankine Cycle (ORC) technology or variation thereof. In fact, we do not use heat exchangers at all, which makes us a game-changer. Compared to ORCs our technology is significantly cheaper, more power-dense, easier to install and has no hazardous materials or gases. Open converting low-grade heat to power, engine design, biogas, intellectual property Open DCU Alpha, Old Finagles Rd, Glasnevin Dublin IE 11 Exergyn
private:exergyn 5340143 Dec 1st, 2020 12:00AM Exergyn 261 21.00 Open Mechanical Or Industrial Engineering Dec 1st, 2020 12:17PM Dec 1st, 2020 12:17PM Exergyn has developed an engine that runs on hot water. Technically, it converts low-grade heat (<100degC) to power at low cost and high power-density. The technology is particularly suited to industrial applications e.g. Combined Heat & Power (CHP), Biogas, Centralised Power, Geothermal, and Cargo Shipping. It's important to note that we are not an Organic Rankine Cycle (ORC) technology or variation thereof. In fact, we do not use heat exchangers at all, which makes us a game-changer. Compared to ORCs our technology is significantly cheaper, more power-dense, easier to install and has no hazardous materials or gases. Open converting low-grade heat to power, engine design, biogas, intellectual property Open DCU Alpha, Old Finagles Rd, Glasnevin Dublin IE 11 Exergyn
private:exergyn 5340143 Nov 30th, 2020 12:00AM Exergyn 261 21.00 Open Mechanical Or Industrial Engineering Nov 30th, 2020 01:09PM Nov 30th, 2020 01:09PM Exergyn has developed an engine that runs on hot water. Technically, it converts low-grade heat (<100degC) to power at low cost and high power-density. The technology is particularly suited to industrial applications e.g. Combined Heat & Power (CHP), Biogas, Centralised Power, Geothermal, and Cargo Shipping. It's important to note that we are not an Organic Rankine Cycle (ORC) technology or variation thereof. In fact, we do not use heat exchangers at all, which makes us a game-changer. Compared to ORCs our technology is significantly cheaper, more power-dense, easier to install and has no hazardous materials or gases. Open converting low-grade heat to power, engine design, biogas, intellectual property Open DCU Alpha, Old Finagles Rd, Glasnevin Dublin IE 11 Exergyn
private:exergyn 5340143 Nov 29th, 2020 12:00AM Exergyn 261 21.00 Open Mechanical Or Industrial Engineering Nov 29th, 2020 06:07PM Nov 29th, 2020 06:07PM Exergyn has developed an engine that runs on hot water. Technically, it converts low-grade heat (<100degC) to power at low cost and high power-density. The technology is particularly suited to industrial applications e.g. Combined Heat & Power (CHP), Biogas, Centralised Power, Geothermal, and Cargo Shipping. It's important to note that we are not an Organic Rankine Cycle (ORC) technology or variation thereof. In fact, we do not use heat exchangers at all, which makes us a game-changer. Compared to ORCs our technology is significantly cheaper, more power-dense, easier to install and has no hazardous materials or gases. Open converting low-grade heat to power, engine design, biogas, intellectual property Open DCU Alpha, Old Finagles Rd, Glasnevin Dublin IE 11 Exergyn
private:exergyn 5340143 Nov 28th, 2020 12:00AM Exergyn 261 21.00 Open Mechanical Or Industrial Engineering Nov 28th, 2020 02:00PM Nov 28th, 2020 02:00PM Exergyn has developed an engine that runs on hot water. Technically, it converts low-grade heat (<100degC) to power at low cost and high power-density. The technology is particularly suited to industrial applications e.g. Combined Heat & Power (CHP), Biogas, Centralised Power, Geothermal, and Cargo Shipping. It's important to note that we are not an Organic Rankine Cycle (ORC) technology or variation thereof. In fact, we do not use heat exchangers at all, which makes us a game-changer. Compared to ORCs our technology is significantly cheaper, more power-dense, easier to install and has no hazardous materials or gases. Open converting low-grade heat to power, engine design, biogas, intellectual property Open DCU Alpha, Old Finagles Rd, Glasnevin Dublin IE 11 Exergyn
private:exergyn 5340143 Nov 27th, 2020 12:00AM Exergyn 261 21.00 Open Mechanical Or Industrial Engineering Nov 27th, 2020 10:21AM Nov 27th, 2020 10:21AM Exergyn has developed an engine that runs on hot water. Technically, it converts low-grade heat (<100degC) to power at low cost and high power-density. The technology is particularly suited to industrial applications e.g. Combined Heat & Power (CHP), Biogas, Centralised Power, Geothermal, and Cargo Shipping. It's important to note that we are not an Organic Rankine Cycle (ORC) technology or variation thereof. In fact, we do not use heat exchangers at all, which makes us a game-changer. Compared to ORCs our technology is significantly cheaper, more power-dense, easier to install and has no hazardous materials or gases. Open converting low-grade heat to power, engine design, biogas, intellectual property Open DCU Alpha, Old Finagles Rd, Glasnevin Dublin IE 11 Exergyn
private:exergyn 5340143 Nov 26th, 2020 12:00AM Exergyn 261 21.00 Open Mechanical Or Industrial Engineering Nov 26th, 2020 11:23AM Nov 26th, 2020 11:23AM Exergyn has developed an engine that runs on hot water. Technically, it converts low-grade heat (<100degC) to power at low cost and high power-density. The technology is particularly suited to industrial applications e.g. Combined Heat & Power (CHP), Biogas, Centralised Power, Geothermal, and Cargo Shipping. It's important to note that we are not an Organic Rankine Cycle (ORC) technology or variation thereof. In fact, we do not use heat exchangers at all, which makes us a game-changer. Compared to ORCs our technology is significantly cheaper, more power-dense, easier to install and has no hazardous materials or gases. Open converting low-grade heat to power, engine design, biogas, intellectual property Open DCU Alpha, Old Finagles Rd, Glasnevin Dublin IE 11 Exergyn
private:exergyn 5340143 Nov 25th, 2020 12:00AM Exergyn 261 21.00 Open Mechanical Or Industrial Engineering Nov 25th, 2020 02:26PM Nov 25th, 2020 02:26PM Exergyn has developed an engine that runs on hot water. Technically, it converts low-grade heat (<100degC) to power at low cost and high power-density. The technology is particularly suited to industrial applications e.g. Combined Heat & Power (CHP), Biogas, Centralised Power, Geothermal, and Cargo Shipping. It's important to note that we are not an Organic Rankine Cycle (ORC) technology or variation thereof. In fact, we do not use heat exchangers at all, which makes us a game-changer. Compared to ORCs our technology is significantly cheaper, more power-dense, easier to install and has no hazardous materials or gases. Open converting low-grade heat to power, engine design, biogas, intellectual property Open DCU Alpha, Old Finagles Rd, Glasnevin Dublin IE 11 Exergyn
private:exergyn 5340143 Nov 24th, 2020 12:00AM Exergyn 260 21.00 Open Mechanical Or Industrial Engineering Nov 24th, 2020 11:37AM Nov 24th, 2020 11:37AM Exergyn has developed an engine that runs on hot water. Technically, it converts low-grade heat (<100degC) to power at low cost and high power-density. The technology is particularly suited to industrial applications e.g. Combined Heat & Power (CHP), Biogas, Centralised Power, Geothermal, and Cargo Shipping. It's important to note that we are not an Organic Rankine Cycle (ORC) technology or variation thereof. In fact, we do not use heat exchangers at all, which makes us a game-changer. Compared to ORCs our technology is significantly cheaper, more power-dense, easier to install and has no hazardous materials or gases. Open converting low-grade heat to power, engine design, biogas, intellectual property Open DCU Alpha, Old Finagles Rd, Glasnevin Dublin IE 11 Exergyn

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