Chemical Composition
- CaCO₃ ≥ 98.5%
- Fe₂O₃ ≤ 0.02%
Dr Lime Solaris Pure is crafted for applications that demand exceptional clarity and consistent performance. It is developed using ultra clear solar grade material sourced from low iron high calcium carbonate reserves within the Group Company Mine and selected partner deposits. The material undergoes selective bench development supported by strict quality control measures that preserve its purity from extraction to final preparation.
Each stage of processing is designed to remove unwanted elements that may compromise the performance of finished solar glass. Through scalping, washing and colour sorting, the material is freed from visible impurities. Fine grinding, precision classification and high intensity magnetic separation further work to reduce Fe₂O₃ to PPM levels.
Solaris Pure from Dr Lime offers a series of performance advantages that make it suitable for precision driven solar glass manufacturing.
The combination of high purity calcium carbonate and reduced iron content enables manufacturers to maintain high standards of clarity, efficiency and output across solar glass applications.
Dr Lime Solaris Pure is primarily designed to serve industries that depend on clarity, consistency and reliable raw material performance.
These uses highlight the role of Solaris Pure as a stable and efficient input material that supports enhanced performance across critical industrial processes.
The production of Dr Lime Solaris Pure follows a detailed and controlled process to ensure that the final material meets demanding industry standards. Beginning with the selection of low iron high calcium carbonate reserves, the material is evaluated and extracted from specific benches developed to maintain purity. Initial handling involves scalping to remove oversized and unwanted fragments followed by washing which clears surface impurities. Colour sorting further enhances purity by eliminating discoloured particles that may indicate mineral contamination.
Learn more about the industries Dr. Lime supports
High-grade lime sweetener corrects marginal lime, balances high-silica mixes, improves nodulization and kiln throughput and supports consistent strength development at grinding—stabilizing clinker and cement performance across plants.
As a fluxing agent, lime optimizes slag formation, reduces impurities and improves overall melt quality. In sintering, high-grade lime binds fines and lowers melt temperature for strong, reactive sinter—supporting efficient blast furnace and cleaner steel in secondary metallurgy.
Chemical-grade lime is a critical raw material for producing high-purity lime and calcium derivatives. Its consistent CaCO₃ content, low silica and minimal iron ensure predictable reactivity and clean conversion in calcination, hydration and chemical reaction processes. Whether in rotary kilns, PFR kilns, or shaft kilns, it supports reactive lime, PCC and specialty calcium compounds.
CFB and coal-based units rely on lime injection/FGD for SO₂ capture. High-reactivity lime improves capture efficiency in both retrofit and new builds—helping plants meet stringent air-quality norms.
High-calcium, low-iron lime lowers melting temperatures and stabilizes batch chemistry. Tight sizing ensures uniform melt flow; ultra-low iron is critical for solar, optical and premium architectural glass clarity.
High-purity CaCO₃ provides bioavailable calcium for bone mineralization, muscle function and eggshell formation. Controlled particle sizes enable uniform mixing, predictable release and consistent feed performance across growth stages.
To manage soil acidity, lime supplies calcium (and magnesium where dolomitic), improving structure, microbial activity and nutrient availability. Result: better root development, balanced uptake and improved yields.
GCC/lime powder is a cost-effective mineral extender for plastics, paints, rubber and more—improving bulk density, workability, rheology, dimensional stability and throughput with consistent sizing and low moisture.