Sensor Electronic Technology, Inc. (SETi) and Seoul Viosys have started mass production of a UV LED module designed to sterilize 99.9% of the coronavirus in three seconds using
According to foreign media reports: Seoul will develop green hydrogen production technology to produce gas fuel from sewage sludge generated by water recycling centers. Gasification sludge can be used to produce green hydrogen. While
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According to foreign media reports: Seoul will develop green hydrogen production technology to produce gas fuel from sewage sludge generated by water recycling centers. Gasification
Seoul, like many other cities, once suffered a spate of waste overloads and power shortages due to rapid growth. One of the solutions the city came up with is the Gangnam Resource Recovery Facility (RRF). The facility
Choi, I., Shin, H., Nguyen, T. T., & Tenhunen, J. (2017). Water policy reforms in South Korea: A historical review and ongoing challenges for sustainable water governance and management.
While nontraditional security issues that include climate, economy, environment, and technology are well securitized and prioritized in the notion of Seoul''s comprehensive security, another
Korea''s commitment to renewables, energy efficiency and hydrogen can help reduce emissions, enhance energy security and position industry for the future, IEA report says. The successful implementation of the
The city of Seoul developed new technology, ''power generating system with small head and flow'', to use small head effectively by using water flow and velocity. (Baek, 2014). As the system can use water flow and velocity
Although Seoul is at the very initial stage (energy production using renewables was 0.131% at raw water purification facilities and 51.6% in wastewater treatment facilities in 2015), its case shows a path for a city to pursue energy transition in the water sector.
Water reservoirs are generally located on hills in order to deliver water to households at a stable water pressure. However, pumps are required to send water to the hilltops. Some treated water is sent to pumping stations. There are 205 pumping stations in Seoul ( MOE, 2016b ).
This closely links Korea’s energy transition to efforts to spur investments in energy storage systems, smart grids and intelligent transport systems. “Korea can draw on its technological expertise by addressing regulatory and institutional barriers in its energy markets and by fostering more active consumer engagement,” Dr Birol said.
Recently, the SMG announced the “City of the Sun: Seoul,” a very aggressive plan to deploy 1 GW of solar PVs, equivalent to the capacity of a nuclear power plant, by 2022 ( SMG, 2017a ).
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