[brief comment on tin in SMM period] the downward movement of tin center of gravity in Shanghai period has not changed.

Published: Jul 22, 2019 17:57

SMM7 22 July news:

Shanghai tin main 1909 contract Friday night after the opening of 135030 yuan / ton, the initial rush to the night high 135750 yuan / ton was blocked, and then until the closing of night trading, Shanghai tin overall showed a downward trend of shock. After opening 134800 yuan / ton in early trading this morning, it quickly fell to an intraday low of 133580 yuan / ton at the beginning of the day and rose again after hitting a low of 133580 yuan / ton. It fell back again after hitting 135400 yuan / ton, and fell rapidly at the end of the day, closing at 134210 yuan / ton, down 740 yuan / ton, down 0.55 per cent. The turnover of 19696 hands increased by 2898 hands. The position was reduced by 28214 hands. Today, Shanghai tin closed with a negative line, with the physical part near the 5-10 EMA. It is estimated that the lower support of tin in Shanghai will be around 132000 yuan / ton, and the upper resistance will be around 137500 yuan / ton.

 

"after the collapse of Shanghai and tin, the metal rose sharply and plummeted, and after the collapse, we need to study the fundamentals calmly.

"Click to view SMM historical price data

 

"Click to sign up for SMM Tin Industry chain Summit

 

Data Source Statement: Except for publicly available information, all other data are processed by SMM based on publicly available information, market communication, and relying on SMM‘s internal database model. They are for reference only and do not constitute decision-making recommendations.

For any inquiries or to learn more information, please contact: lemonzhao@smm.cn
For more information on how to access our research reports, please contact:service.en@smm.cn
Related News
CAAM, EU Automobile Body Sign MOU on Cross-Border Automotive Data Flows
Mar 27, 2026 18:31
CAAM, EU Automobile Body Sign MOU on Cross-Border Automotive Data Flows
Read More
CAAM, EU Automobile Body Sign MOU on Cross-Border Automotive Data Flows
CAAM, EU Automobile Body Sign MOU on Cross-Border Automotive Data Flows
On March 27, at the “Forum on Innovative Development of Cross-Border Data Flows” of the 2026 Zhongguancun Forum Annual Conference, CAAM and the Beijing Representative Office of the European Automobile Manufacturers’ Association signed the Memorandum of Understanding on Promoting Cross-Border Automotive Data Flows and Advancing High-Quality Industry Development. Upholding the principles of complementary advantages, resource sharing, mutually reinforcing development, and win-win cooperation, the two sides will strengthen policy exchanges in the field of cross-border automotive data flows, promote innovative applications of digital technologies to empower cross-border automotive data flows, facilitate positive interaction between regulatory authorities and industry stakeholders, and provide automakers with more opportunities for cooperation and development.
Mar 27, 2026 18:31
Data: SHFE, DCE market movement (Mar 27)
Mar 27, 2026 15:55
Data: SHFE, DCE market movement (Mar 27)
Read More
Data: SHFE, DCE market movement (Mar 27)
Data: SHFE, DCE market movement (Mar 27)
The following table shows the ferrous and nonferrous metals movement on the SHFE and DCE on 27 Mar , 2026
Mar 27, 2026 15:55
Chinese Team Sets New Record in CZTSSe Thin-Film PV Tech, Hits 16.6% Efficiency
Mar 27, 2026 15:19
Chinese Team Sets New Record in CZTSSe Thin-Film PV Tech, Hits 16.6% Efficiency
Read More
Chinese Team Sets New Record in CZTSSe Thin-Film PV Tech, Hits 16.6% Efficiency
Chinese Team Sets New Record in CZTSSe Thin-Film PV Tech, Hits 16.6% Efficiency
Recently, the team led by Meng Qingbo at the Institute of Physics, Chinese Academy of Sciences, once again set a new record in new-type thin-film PV copper-zinc-tin-sulfur-selenium (CZTSSe) technology, raising the battery’s certified efficiency to 16.6%, marking the technology’s official crossing of the critical threshold for industrialisation from 15 to 16. Composed of common, low-cost elements such as copper, zinc, and tin, CZTSSe materials not only avoid reliance on rare metals but also offer strong resistance to space radiation. At present, the team has also completed the development of high performance flexible batteries and modules, and this technology is expected to achieve large-scale application in fields such as low-Earth-orbit satellite internet, space-based energy bases, and aerospace equipment in the future. This progress not only established China’s internationally leading position in this field, but also opened up strategic, high-value-added application prospects for tin metal in new energy and deep-space exploration.
Mar 27, 2026 15:19