SoleFiori Invited to Participate in New Energy Exhibition, Injecting New Vitality into the Greater Bay Area's Photovoltaic Industry
On March 28, 2024, the 3rd Greater Bay Area New Energy Industry International Forum was held in Macau. Jiang Qingtang, Chairman and Chief Scientist of SoleFiori, represented the company and its council member units at the awarding ceremony.
The meeting aims to provide an industry resource docking platform for Chinese photovoltaic enterprises, overseas photovoltaic clients, investors from the Guangdong-Hong Kong-Macao Greater Bay Area, government agencies from Guangzhou and Hong Kong, and other institutions. Its goal is to promote the Greater Bay Area as a model city cluster for photovoltaic demonstration applications, becoming a global hub for transactions, exhibitions, and applications. Recently, the National Development and Reform Commission and other departments jointly issued the "Opinions on Accelerating the Establishment of Product Carbon Footprint Management System" (referred to as "Opinions"), encouraging Guangdong-Hong Kong-Macao Greater Bay Area to take the lead in promoting product carbon footprint certification. The meeting actively responded to the "Opinions" by issuing the "Macau Photovoltaic Declaration," demonstrating Macau's commitment and proactive actions to promote green and low-carbon development in the photovoltaic industry and achieve the dual carbon goals ahead of time.
The meeting also included a ceremony to award membership plaques to the inaugural 20 council members, all representing prominent enterprises in the new energy sector, research institutions, industry associations, and others. As a member of the council, SoleFiori will collaborate with these entities to collectively promote the development and advancement of the photovoltaic industry in the Guangdong-Hong Kong-Macao Greater Bay Area. Embracing the theme of "Gathering in Macau, Connecting with the World," SoleFiori shared its development concepts and strategic directions, discussed industry trends, technologies, and innovation achievements in the photovoltaic sector. It actively engaged with counterparts from both domestic and international arenas, seeking collaboration opportunities, and expanding its business in Portuguese-speaking countries. SoleFiori aims to introduce its HJT products known for high efficiency and low carbon emissions to customers in the Greater Bay Area and worldwide, thereby contributing to global efforts towards carbon neutrality.
SoleFiori was established through joint investment by Zhuhai FuSoleFiorinion Energy, Primavera Capital, and Gree Group, with a total investment of approximately 6.3 billion yuan. It focuses on manufacturing new high-efficiency heterojunction (HJT) solar cells and modules. The SoleFiori project is one of Zhuhai's key projects in 2023 and a key project in Guangdong Province for 2024. Upon reaching full production capacity, it will have an annual production capacity of 7.2 GW of solar cells and 5 GW of modules. SoleFiori is the first enterprise in Guangdong Province to achieve mass production of HJT products. The project commenced in April last year, and in December, it successfully rolled out its first batch of module products, followed by the release of cell products in January.
SoleFiorin's "Xihe" series HJT module products achieve a production power of 720W. The company's core technology, Heterojunction (HJT), is one of the most advanced technologies in the photovoltaic field, known for its high conversion efficiency (theoretical up to 28.9%), high bifaciality (theoretical up to 95%), excellent temperature coefficient, low-temperature production process, and advantages in green environmental protection and low carbon footprint.
SoleFiori will actively implement the "Macau Photovoltaic Declaration." As a leading enterprise in Guangdong Province's HJT sector, it will continue to deploy photovoltaic industries nationwide and overseas, contributing to the global advancement of the Greater Bay Area's new energy industry and stepping into new stages of development.