This inventor holds 2 USPTO granted patents and 1 published patent application. Top assignees: Xiangguang Copper Co., Ltd., Yanggu Xiangguang Copper Co., Ltd. Active years: 2014-2020.
Company Filing History:
Years Active: 2014-2020
Title: Zheling Ge: Innovator in Copper Smelting Technology
Introduction
Zheling Ge is a notable inventor based in Shandong, China. He has made significant contributions to the field of copper smelting, holding 2 patents that showcase his innovative approaches to the process.
Latest Patents
His latest patents include a "Copper rotation-suspension smelting process" and a "Copper rotation-suspension smelting device." The copper rotation-suspension smelting process involves mixing a flux and/or fume with dried copper-containing mineral powders to create a mixed material that enters a smelting furnace. A reaction gas forms a swirling flow under the action of a swirler, which guides it into the smelting furnace through a Venturi channel. The process also includes replenishing the reaction gas and/or fuel through auxiliary channels, allowing for a contact reaction with the mixed material. The resulting melt is separated into a residue layer and a copper-containing product layer. Additionally, his method for producing blister copper directly from copper concentrate outlines a systematic approach involving the addition of various materials to a reaction furnace, leading to the generation of copper matte and electric furnace slag.
Career Highlights
Zheling Ge has worked with prominent companies in the copper industry, including Xiangguang Copper Co., Ltd. and Yanggu Xiangguang Copper Co., Ltd. His experience in these organizations has contributed to his expertise in copper smelting technologies.
Collaborations
He has collaborated with notable coworkers, including Songlin Zhou and Weidong Liu, who have also contributed to advancements in the field.
Conclusion
Zheling Ge's innovative patents and career in the copper industry highlight his significant contributions to smelting technology. His work continues to influence the methods used in copper production today.