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Open AccessJournal ArticleDOI

An overall Solution to Cathode-Ray Tube (CRT) Glass Recycling☆

Yu Miao, +2 more
- 01 Jan 2016 - 
- Vol. 31, pp 887-896
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TLDR
In this paper, the authors summarized the overall solution of waste CRT glass, divided into three main procedures: the first step is CRT separation technology and equipment, including thermal-shock method with strong technical adaptation, simple operation and widely used nowadays; diamond-cutting method, efficiency and with high cutting speed; or ultrasonic-chemical separation method, using ultrasonic wave to promote the dissolution of low melting glass and reduce the concentration of acid solution.
Abstract
Cathode-ray tube (CRT) display has entered the peak period of elimination, therefore, the disposal of waste CRT glass is becoming an urgent problem to be solved. At present, there are already many scholars having done a lot of researches on this problem, but most of them are constrained in some details of the disposal process, lack of research and development on the complete technical route of waste CRT glass. This paper highly summarized the overall solution of waste CRT glass, divided into three main procedures: the first step is CRT glass separation technology and equipment, including thermal-shock method with strong technical adaptation, simple operation and widely-used nowadays; diamond-cutting method, efficiency and with high cutting speed; or ultrasonic-chemical separation method, using ultrasonic wave to promote the dissolution of low melting glass and reduce the concentration of acid solution. The second step is water-ball milling cleaning technology and equipment, high cleaning efficiency, reducing dust and saving water, combined the traditional wet and dry cleaning technology. The third step is resource re-utilization, in which the direct use of CRT glass containing the leaded glass produces crystal glass and low lead fluorescent tube, and lead-free panel glass manufactures foam glass and glass beads; and the indirect use, comprising lead fire-extraction divided into collaborative smelting and electric furnace smelting, and lead mechanical-activation hydrometallurgy extraction, reducing the concentration of acid and improving the recovery rate. According to the existing technologies and equipment from your factory, the selection of appropriate technologies to deal with CRT glass achieves effective resource recycling and environmentally sound management goals.

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Citations
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Journal ArticleDOI

Material flow analysis for management of waste TVs from households in urban areas of Vietnam

TL;DR: In this paper, the authors used material flow analysis to quantify and systematically analyze the flow of obsolete TVs from households in urban areas in Vietnam and found that 75% of total base metals contained in obsolete TVs was reused or recycled; the rest (25%) was exported or emitted, representing the loss of materials for the Vietnamese economy.
Journal ArticleDOI

An investigation on physical, mechanical, leaching and radiation shielding behaviors of barite concrete containing recycled cathode ray tube funnel glass aggregate

TL;DR: In this article, the feasibility of using hazardous waste cathode ray tube (CRT) funnel glass to replace high density mineral aggregates in the radiation shielding concrete, various barite concrete samples were prepared with portland cement, ground funnel glass sand as the substitute for barite aggregates, and fly ash as mineral admixtures, and the rates of funnel glass for fine and coarse (5-10mm) barite aggregate were 25, 50, 75, 100% and 10, 20, 30%, respectively.
Journal ArticleDOI

Synthesis and characterization of waste CRT glasses through physical, optical and structural properties: A comprehensive study on recycling

TL;DR: In this article, a new glass system based on Bi2O3 (100-x)CRT (x; 0, 1, 3, and 5%)) and to carry out a broad range characterization studies was proposed.
Journal ArticleDOI

E-waste: A Review of CRT (Cathode Ray Tube) Recycling

TL;DR: The use of liquid crystal display (LCD) and light emitting diode (LED) monitors has rapidly reduced the use of cathode ray tube (CRT) technology in computers and televisions (TVs) as discussed by the authors.
Journal ArticleDOI

Chemical-Electrochemical Process Concept for Lead Recovery from Waste Cathode Ray Tube Glass.

TL;DR: In this paper, a combined chemical-electrochemical process is proposed for the recovery of lead from waste cathode-ray tube (CRT) glass by applying a combined process which allows the simultaneous recovery of Pb from waste CRT glass and electrochemical regeneration of the leaching agent.
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Journal ArticleDOI

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