Two methods for refining metallurgical grade silicon to solar grade silicon have been investigated. The first method involved the reduction of impurities from metallurgical grade silicon by high temperature vacuum refining. The concentrations of analyzed elements were reduced several times. The main steps in the second refining method include alloying with copper, solidification, grinding and heavy media separation. A metallographic study of the Si-Cu alloy showed the presence of only two microconstituents, mainly pure silicon dendrites and the Cu3Si intermetallic. SEM analysis showed a distinct boundary between the silicon and the Cu3Si phases, with a large concentration of microcracks along the boundary, which allowed for efficient s...
The removal of B and P consumes most of heat energy in Si metallurgical purification process for sol...
In this work we reported the production of upgraded metallurgical grade silicon using a combination ...
Widespread use of solar energy has not been realized to date because its cost is not competitive wit...
Two methods for refining metallurgical grade silicon to solar grade silicon have been investigated. ...
Current methods of solar-grade silicon (SG-Si) production are energy intensive and costly. The possi...
To develop a new method of refining silicon for use in solar cell materials, liquation refining with...
Currently the cost of solar grade silicon accounts for approximately one third of the total solar ce...
Production of 99.9999% pure silicon from 98% pure metallurgical grade (MG) silicon by a vapor transp...
Purification of metallurgical grade silicon (MG–Si) by using iron as the impurity getter has been in...
The purification of metallurgical-grade silicon (MG-Si) by combined solvent refining processes has b...
Research on manufacturing high quality multi-crystalline silicon ingot is carried out with metallurg...
In this study, synchrotron-based x-ray absorption microspectroscopy (mu-XAS) is applied to identifyi...
There is a strong need for low-cost silicon for solar cells and accordingly, there is an on-going de...
Refining of metallurgical-grade silicon was studied using a process sequence of slag treatment, cont...
In this study, synchrotron-based x-ray absorption microspectroscopy (mu-XAS) is applied to identify...
The removal of B and P consumes most of heat energy in Si metallurgical purification process for sol...
In this work we reported the production of upgraded metallurgical grade silicon using a combination ...
Widespread use of solar energy has not been realized to date because its cost is not competitive wit...
Two methods for refining metallurgical grade silicon to solar grade silicon have been investigated. ...
Current methods of solar-grade silicon (SG-Si) production are energy intensive and costly. The possi...
To develop a new method of refining silicon for use in solar cell materials, liquation refining with...
Currently the cost of solar grade silicon accounts for approximately one third of the total solar ce...
Production of 99.9999% pure silicon from 98% pure metallurgical grade (MG) silicon by a vapor transp...
Purification of metallurgical grade silicon (MG–Si) by using iron as the impurity getter has been in...
The purification of metallurgical-grade silicon (MG-Si) by combined solvent refining processes has b...
Research on manufacturing high quality multi-crystalline silicon ingot is carried out with metallurg...
In this study, synchrotron-based x-ray absorption microspectroscopy (mu-XAS) is applied to identifyi...
There is a strong need for low-cost silicon for solar cells and accordingly, there is an on-going de...
Refining of metallurgical-grade silicon was studied using a process sequence of slag treatment, cont...
In this study, synchrotron-based x-ray absorption microspectroscopy (mu-XAS) is applied to identify...
The removal of B and P consumes most of heat energy in Si metallurgical purification process for sol...
In this work we reported the production of upgraded metallurgical grade silicon using a combination ...
Widespread use of solar energy has not been realized to date because its cost is not competitive wit...