News
Phase One Adsorption Equipment for Sunresin’s Argentina DLE project on the way to South Amercia
The Phase One adsorption equipment for the 25,000 ton per annum Angeles salt lake Lithium Extraction project in Argentina have been shipped from the System Engineering Park of Sunresin, in Gaoling, Shaanxi Province of China.
The contract of this Lithium Extraction Project from salt lakes in Argentina was signed in March 2022. According to the contract, the production and delivery of the adsorbents and equipment will be completed by the end of 2022.
Sunresin participated at 2nd China International Vaccine Innovation Summit
Vaccines matter, and the purification process matters for vaccine manufacturing. The 2nd China International Vaccine Innovation Summit (HVIS) took place in Beijing, From 8-9 August.
Sunresin – Argentina Angeles Salt Lake 25KT/A DLE Project, (Phase I) well Accepted
In this week at Sunresin’s headquarter in Xi’an, there has been successfully held the acceptance meeting of the Sunresin (SZ.300487) -Argentina Angeles Salt lake 25KT/A DLE project which was contracted by Tibet Everest(SH. 600338) in Mar. 2022. The Phase I acceptance inspection of this Lithium carbonate extraction project is smoothly passed. The quality of SR’s systemic equipment and strictly scheduled manufacture process are highly evaluated by the proprietor together with the third party experts.
Promotional video of the SMB system in the sugar alcohol industry
Erythritol, as the main glycogen in sparkling water, has seen a rapid increase in demand in the past two years. However, while the production scale has expanded year by year, market competition has become increasingly fierce. Therefore, product quality control and operation cost have become the key to success.
This is a Simulated Moving Bed system for the erythritol purification process. It is designed, manufactured, installed and implemented by Sunresin. Thanks to this SMB system, a steady output of quality product is ensured at a reduced operation cost.
Sepsolut®, the Go-To Expert in Separation Solutions
As a leading separation solution provider in China, Sunresin has built its own and unique technical expertise both on Simulated Moving Bed (SMB) and fixed bed basis, thanks to years of researches and developments carried out over a period of 20 years. With the combination of cutting-edge resin technologies and automation control systems, Sunresin has successfully designed and delivered numerous systems for customers in applications such as metallurgy, (Lithium, Nickel, Cobalt) environment protection (waste water, VOCs) and food industry. (juice, sugar, etc)
Sunresin’s Chairwoman Listed in Forbes China’s 50 Women In Tech
Forbes China released its list of "Women in Tech 2022" last week, featuring 50 Chinese women. Sunresin’s Chairwoman, Gao Yuejing, is on the list in recognition of her leadership in continuously breaking through the bottleneck of innovation in the adsorption and separation industry, and bringing the industry to a wider, deeper, and more cutting-edge level.
Sunresin-Minmetal’s lithium carbonate project passes project acceptance
Recently, the performance acceptance of the transformation and expansion project of the Minmetals Salt Lake’s 4,000 t/a lithium carbonate production line implemented by Sunresin has been successfully completed, marking the successful conclusion of this benchmark project of Lithium Extraction from salt lake brine.
Vanadium Recovery from Stone Coal with Sunresin’s SMB Solution
Its extraction section adopts Sunresin’s proprietary SMB (Simulated Moving Bed) system. This system integrates adsorption, water washing, desorption, regeneration and other processes. Compared with the traditional fixed bed system, Sunresin’s SMB system significantly saves resin consumption and requires less floor space. It also leads to a higher level of intelligence, lower consumption of energy and higher concentration of the desorption solution, reducing the CAPEX and OPEX by about 50%. Through the implementation of the automatic system, the complex adsorption-regeneration process can be completed within the system with reduced manual intervention and therefore less risks and errors, thus making the production more stable.
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