At Yulink, we are committed to advancing clean energy development in Myanmar. Despite being a resource-rich country, Myanmar faces challenges such as power shortages, energy scarcity, and environmental pollution caused by traditional energy use. We provide sustainable energy solutions that are economically viable, highly efficient, and environmentally friendly, tailored to the local resource conditions.
Our Service Areas
Power Generation
We provide various clean energy generation methods, including wind power, solar power, biomass power, and small hydropower. These solutions are tailored for regions in Myanmar rich in natural resources.
Energy Storage
Our advanced energy storage solutions include battery storage, compressed air storage, flywheel storage, and pumped hydro storage, ensuring stable power supply and efficient utilization.
Fuel
We focus on the production and application of biomass fuels, converting agricultural by-products such as rice husks and bark into efficient and environmentally friendly fuels, reducing reliance on traditional fossil fuels.
Cooling and Heating
We offer cooling and heating solutions for various buildings, including geothermal cooling, biogas heating, and solar power combined with heat pumps. These solutions help maintain a comfortable indoor environment in hot climates while saving energy.
Our Solutions
Biomass power generation converts agricultural waste, wood chips, and other biomass resources into electricity through combustion or gasification. This method is suitable across Myanmar, especially in regions rich in biomass resources. For instance, rice husks generated by the numerous rice mills in the Ayeyarwady region can be used for power generation. This method effectively utilizes biomass resources, reduces waste, and offers significant environmental and economic benefits.
Wind power combined with pumped hydro storage provides a sustainable power supply in areas with abundant wind resources and significant elevation differences. Regions such as the coastal areas of Rakhine, Tanintharyi, Shan State, and Kachin State in Myanmar are well-suited for this setup. Though the system is complex, it offers highly efficient and stable power output, making it ideal for areas with large power demands requiring consistent electricity supply.
Biomass power generation converts agricultural waste, wood chips, and other biomass resources into electricity through combustion or gasification. This method is suitable across Myanmar, especially in regions rich in biomass resources. For instance, rice husks generated by the numerous rice mills in the Ayeyarwady region can be used for power generation. This method effectively utilizes biomass resources, reduces waste, and offers significant environmental and economic benefits.
Waste-to-energy plants convert urban and industrial waste into electricity through incineration or gasification, making it a highly effective way to repurpose waste. Cities like Yangon and Mandalay, which generate large amounts of waste, are ideal locations for these plants. This method not only alleviates the pressure on landfills but also provides clean energy for the cities, delivering significant environmental and societal benefits.
Biogas power generation uses organic waste from farms and other sources to produce methane through anaerobic digestion, which is then converted into electricity. This method is simple, low-cost, and well-suited for agricultural regions with medium to small-scale livestock farms. Biogas power generation offers a stable energy supply while reducing greenhouse gas emissions, making it an effective way to utilize agricultural waste.
Small hydropower systems harness natural water flow to generate electricity without requiring large dams, making them suitable for mountainous and river-abundant regions. The system is relatively simple with low initial investment, especially when combined with solar power to ensure continuous and stable electricity supply during both dry and rainy seasons. This method is both environmentally friendly and economically viable, serving as an effective solution for developing clean energy in remote mountainous areas.
Geothermal cooling systems leverage deep underground geothermal resources for cooling, making them suitable for various applications, including large venues, residential complexes, and small standalone houses. These systems are particularly effective in areas with accessible geothermal energy. Although the setup is complex and requires a high initial investment, the operating costs are low, and the energy efficiency is high. This method offers a sustainable and energy-efficient alternative to traditional air conditioning systems, making it ideal for regions that demand long-term cooling solutions.
Biomass fuel is produced by drying, crushing, and compressing biomass materials like rice husks and bark into high-efficiency, easy-to-transport fuel. This type of fuel can effectively reduce air pollution during combustion and is especially suitable for regions rich in agricultural and forestry resources. Biomass fuel not only improves combustion efficiency but also provides clean energy for industrial boilers and small power plants, making it a key initiative in promoting resource recycling and clean energy development.
Why Choose Us
Extensive Industry Experience
With years of experience in the clean energy sector, we have a deep understanding of various energy technologies and their applications, enabling us to provide the most suitable solutions for our clients.
Localized Service
We focus on the Myanmar market, offering customized clean energy solutions that are tailored to the local resources and needs, ensuring that our technology and services are well-adapted to the region.
Advanced Technology
We utilize internationally leading technologies and equipment, ensuring that our clean energy systems achieve the highest standards in efficiency, reliability, and stability.
Economic Feasibility
We are dedicated to offering competitive pricing and ensuring long-term energy cost savings for our clients through optimized design and efficient operations.