MMIJ 2025, Sapporo

Presentation information (2025/08/07 Ver.)

Special session

(Theme session) Academic exchange session in English

Tue. Sep 2, 2025 9:00 AM - 11:55 AM Room-3 (214, 2Fl, C Block)

Chairperson: パク イルファン(北海道大学)、芳賀 一寿(秋田大学)

●国籍、分野、年齢を問わず、研究者、学生、実務者が英語で自身の研究成果を発表・議論できる、開かれたインクルーシブな場を提供することを目的とする。 英語を共通言語とすることで、多様な背景を持つ参加者同士の相互理解と学術的交流を促進する。

(Presentation: 15 minutes allotted for lecture and 5 minutes for Q&A out of 20 minutes per presentation)

11:15 AM - 11:35 AM

[1301-08-07] A Short Review of Recent Gold Purification and Recovery Techniques from Thiosulfate Leaching of Waste Printed Circuit Boards

○Melito Salvador Oculares1[Student presentation: Doctoral course], Ilhwan Park1, Ryoei Watanabe1, Mayumi Ito1 (1. Hokkaido University)

司会:芳賀 一寿(秋田大学)

Keywords:waste printed circuit boards, gold leaching, thiosulfate, gold purification, gold recovery

Urban mining has gained increasing attention as a sustainable approach for recovering valuable metals from electronic waste, particularly waste printed circuit boards (WPCBs). These materials are rich in precious metals such as gold (Au), making them an attractive secondary resource. Among various leaching methods, thiosulfate leaching has emerged as an environmentally safer alternative to conventional cyanide leaching. This review summarizes recent studies on gold extraction from waste PCBs using thiosulfate and evaluates current purification and recovery strategies for gold-thiosulfate complexes. Key purification techniques include ion exchange, adsorption, and solvent extraction, while recovery methods such as cementation and electrowinning are assessed for their effectiveness. The review also highlights challenges associated with the separation of gold from thiosulfate solutions. This paper aims to identify effective and environmentally compatible methods for selectively purifying and recovering gold from thiosulfate leachates, considering both technical feasibility and sustainability. By compiling and evaluating recent advancements, this review provides insights into the development of more efficient and sustainable hydrometallurgical processes for gold recovery from electronic waste.

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