Company Filing History:
Years Active: 2018
Title: Innovations of Xiangwen Liao in Mineral Resource Utilization
Introduction
Xiangwen Liao is a notable inventor based in Sichuan, China. He has made significant contributions to the field of mineral resource utilization, particularly through his innovative methods for ore enrichment. His work focuses on improving the efficiency and environmental sustainability of mineral processing.
Latest Patents
Xiangwen Liao holds a patent for a method of enriching monazite and apatite paragenetic ores. The patent describes a process that includes ore grinding, flotation, magnetic separation, and low-acid advanced leaching treatment followed by re-flotation. This method allows for the production of high-grade and high-recovery-rate monazite concentrate. The process is characterized by a wide applicable range of ore pulp temperature, a short process flow, mild ore dressing conditions, and low energy consumption. Additionally, the diluted acid used in the process can be cyclically regenerated, resulting in minimal pollution and environmental stress. This innovative approach significantly improves the recovery rate of low-grade monazite and apatite paragenetic ores.
Career Highlights
Xiangwen Liao is affiliated with the Institute of Multipurpose Utilization of Mineral Resources. His work at this institute has been pivotal in advancing techniques for mineral resource processing. His dedication to innovation in this field has garnered attention and respect from his peers.
Collaborations
Xiangwen Liao collaborates with esteemed colleagues such as Wenliang Xiong and Yaohui Yang. Their combined expertise contributes to the advancement of mineral resource utilization techniques.
Conclusion
Xiangwen Liao's contributions to the field of mineral resource utilization through his innovative patent demonstrate his commitment to enhancing efficiency and sustainability in mineral processing. His work not only benefits the industry but also addresses environmental concerns associated with mineral extraction.