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Polycrystalline Silicon 553 Industrial Smelting
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Polycrystalline Silicon 553 Industrial Smelting

Polycrystalline Silicon 553 Industrial Smelting

Content: 553, 441, 2202, 3303
Granularity: 10-80mm or customized

Description

Products Description

Polycrystalline silicon 553 industrial smelting technology has revolutionized the solar industry by enabling the production of high-quality solar modules at affordable costs. This technology involves the production of polycrystalline silicon (also referred to as poly-Si) using a sophisticated smelting process that is capable of producing high-purity polysilicon suitable for the manufacture of solar modules.

 

Polysilicon is a key raw material used in the production of solar cells and modules. It is a highly pure form of silicon that is produced by purifying metallurgical-grade silicon (MG-Si) using a complex chemical process. The resulting polysilicon is then sliced into thin wafers, which are used to manufacture solar cells. Polysilicon is also used in the manufacture of other high-tech products such as semiconductors, LCD panels, and computer chips.

 

The production of high-quality polysilicon requires advanced industrial smelting technologies. The 553 industrial smelting process involves the use of advanced equipment such as arc furnaces, hydrogenation reactors, and ion implantation machines to produce high-purity polysilicon. The process involves several stages, including the production of MG-Si, purification of MG-Si to produce trichlorosilane, and then decomposition of trichlorosilane to produce high-purity polysilicon.

 

553 industrial smelting is a highly efficient process that enables the production of high-quality polysilicon at a low cost. The process is energy-efficient and produces very little waste, making it an eco-friendly method of polysilicon production. Additionally, the use of advanced technologies such as ion implantation and hydrogenation reactors ensures that the resulting polysilicon is of the highest quality, with minimal impurities.

 

The use of polycrystalline silicon 553 industrial smelting technology has had a transformative impact on the solar industry. This technology has enabled the production of high-quality solar modules at a low cost, making solar energy more accessible and affordable to people around the world. Additionally, the use of polysilicon produced using this technology has increased the efficiency of solar cells, resulting in higher power output and better performance.

 

The benefits of polycrystalline silicon 553 industrial smelting technology are not limited to the solar industry alone. The technology has also led to the production of high-purity polysilicon, which has several other applications in the high-tech industry. The use of this technology has enabled the production of advanced computer chips, semiconductors, and LCD panels, which are used in a wide range of electronic products.

 

In conclusion, polycrystalline silicon 553 industrial smelting technology is a game-changer in the solar industry, enabling the production of high-quality solar modules at a low cost. The technology is highly efficient, eco-friendly, and has several other applications in the high-tech industry. The use of this technology has transformed the solar industry and is expected to continue doing so in the future.

 

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Products Content
Garde Composition
Si Content(%) Impurities(%)
Fe Al Ca P
Silicon Metal 1501 99.69 0.15 0.15 0.01 ≤0.004%
Silicon Metal 1502 99.68 0.15 0.15 0.02 ≤0.004%
Silicon Metal 1101 99.79 0.1 0.1 0.01 ≤0.004%
Silicon Metal 2202 99.58 0.2 0.2 0.02 ≤0.004%
Silicon Metal 2502 99.48 0.25 0.25 0.02 ≤0.004%
Silicon Metal 3303 99.37 0.3 0.3 0.03 ≤0.005%
Silicon Metal 411 99.4 0.4 0.1 0.1 ≤0.005%
Silicon Metal 421 99.3 0.4 0.2 0.1
Silicon Metal 441 99.1 0.4 0.4 0.1
Silicon Metal 551 98.9 0.5 0.5 0.1
Silicon Metal 553 98.7 0.5 0.5 0.3
Off-Grade Silicon Metal 96 2 1 1

Remark:Other chemical composition and size can be supplied upon request.

 

FAQ

Q:Do you accept OEM?

A:Yes, we accept OEM. This is our specialty.

 

Q: How long is your delivery time?

A: Delivery time depending on your purchasing quantity and production season.

 

Q : What is your lead time?

A : It usually needs about 15- 20 days after receiving the PO.

Contact Us

ZHENAN INTERNATIOANL CO., LTD

 

 

Fax: +86-372-5055180

 

Email: kevin@zaferroalloy.com

 

Website: www.zaferroalloy.cn

 

Address: 1-2510,Huafu Office Building,Anyang,Henan,China.

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