• Title/Summary/Keyword: Glass recycling

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Some Strategies to Improve Recycling of Glass Bottles (유리용기의 재활용 증진을 위한 제도 개선 방안)

  • Chung, Jae-Chun;Chung, Won-Tae
    • Journal of the Korea Organic Resources Recycling Association
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    • v.4 no.1
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    • pp.83-98
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    • 1996
  • Recently, signigicant interest is given to the recycling of glass bottles. This is because the importance of glass bottle recycling is growing in terms of resource conservation and waste minimization. In this paper, authors analyzed the present situation and problems in glass bottle recycling, summarized the recycling activity in foreign countries and suggested legal and institutional strategies based upon citizen's attitude survey to improve glass bottle recycling activity

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Overview and Future Concerns for Recycling Glass Wastes (폐(廢)스마트 유리제품(琉璃製品) 재활용(再活用) 현황(現況)과 기술(技術) 전망(展望))

  • Hong, Hyun Seon;Cho, Bong-Gyoo
    • Resources Recycling
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    • v.22 no.4
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    • pp.22-32
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    • 2013
  • Glass materials possess unique functional characteristics of ceramics different from those of metals, which has marked glass as one of the mainstay materials in the history of mankind. Nowadays, industrial sophistication necessitates comparable "smart" attributes of glass materials as a significantly advanced form of sophistication. Smart glasses are increasingly applied in many state-of-the-art digital appliances such as displays and semiconductors and waste is also expected to accumulate therefrom in the near future: More than 60,000 tons of smart glass wastes were reported as of 2012, for example. In the present paper, current status of domestic Korean smart glass industry and related recycling enterprise have been comprehensively investigated. Finally, Korean domestic smart glass recycling technology and its future prospect are also briefly presented.

Dissolution Technology Development of E-Glass Fiber for Recycling Waste of Glass Fiber Reinforced Polymer

  • Lee, Suyeon;Kim, Woo Sik
    • Journal of the Korean Ceramic Society
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    • v.56 no.6
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    • pp.577-582
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    • 2019
  • Recently, E-glass fiber is the one of most widely used ceramic fiber for aerospace fields. Recycling technology for waste of wind power blades is arising issue for reasons of low manageability and high cost of wastes. Though glass fiber is perfectly dissolved in hydrofluoric acid, low cost for recycling and harmless to human is important for recycling of blades. Chemically melted glass fiber will be used as different purpose like accelerator of hardening for shotcrete. In this study, dissolution process of glass fiber is tested in NaOH solution at low temperatures. In addition, difference in diameter reduction of glass fiber is observed by various alkali concentration and reaction times, treatment temperatures using FE-SEM.

The Performance and Evaluation for Recycling of Waste Glass

  • Chang, Tein-Chin;Huang, Jian-Er;Yen, Jia-Huei
    • Proceedings of the IEEK Conference
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    • 2001.10a
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    • pp.80-83
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    • 2001
  • According to the EPA in Taiwan report, 9.05 million metric tons of solid wastes were generated in 1999, and the waste glass was accounted of 4.95 percent. However, with the increasing tonnage of disposal cost and existing disposal sites are reaching full capacity, recycling is currently accepted as a sustainable approach to waste management. Therefore, it's essential and urgent that the government in Taiwan establish the recycling and recovery framework for the minimization of the solid waste, reduction of materials and energy consumption, and the encouragement for the reuse, recycle and recovery development. To achieve this Boal, Taiwan has been strived for a long period of time in waste glass recovery and recycle. Waste glass, unlike other kinds of resource waste, is 100% recyclable. The EPA in Taiwan now center on a lot of different kinds of waste glass, such as glass container, flat glass, CRT glass, windshields glass, fluorescent lamps, and waste pesticide glass container. This article will focus on the framework of the recycling market access, and also try to provide some strategies to improve waste glass recycling efficiently.

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Overview and Recycling of Waste Automobile Glass (폐자동차 유리의 재활용 현황)

  • Yoon, Jin-Ho;Hong, Myung Hwan;Park, Kyung-Soo;Park, Jae Layng;Lee, Chan Gi
    • Resources Recycling
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    • v.24 no.1
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    • pp.51-57
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    • 2015
  • The glass has been used continuously since ancient period up to the present day. The smart glass industry in which the advanced technology is added is developing. The life cycle of the smart glass is faster than traditional glass. Therefore, the basic and core technology development is needed for recycling of smart glass according to the replace period. Among the smart glass the recycling development of the automobile industry is the most needed areas. At the end of life of the automobile, the amount of the smart glass is expected to be over 23,000 tons per year. In this paper, the current status of domestic Korean automobile glass has been comprehensively investigated. Finally, Korean domestic smart glass recycling technology is also briefly introduced.

The Effect of Oxygen Content on the Glass Forming Ability and Mechanical Properties of the Zr-based Amorphous Alloy Return Scrap (Zr기지 비정질 합금 스크랩의 비정질 형성능 및 기계적 성질에 미치는 산소함량의 영향)

  • Kim, Sung-Gyoo;Lee, Byung-Chul;Park, Heung-Il
    • Journal of Korea Foundry Society
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    • v.35 no.4
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    • pp.75-79
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    • 2015
  • Commercial Zr-based amorphous alloy was recycled and oxygen was introduced during the recycling process. The oxygen content can have a great effect on the glass forming ability and the mechanical properties of the alloy. Therefore, it was closely examined. The initial oxygen content in the raw material was 1,244 ppm. It was increased to 3,789 ppm in the alloy after ten recycling processes. As the recycling processes were repeated, the oxygen content increased. Specifically, after four recycling processes, it increased sharply as compared to that after three recycling processes. After ten recycling processes, the glass transition temperature (Tg) increased from 613 K to 634 K and the crystallization temperature (Tx) increased from 696 K to 706 K. On the other hand, the super-cooled liquid region (${\Delta}T=Tx-Tg$) decreased slightly from 83 K to 72 K while the reduced glass transition temperature (Trg = Tg/Tm) was 0.63, remaining constant even when the oxygen content was increased. These results indicated that the increased oxygen content deteriorated the glass forming ability. The bending strength as determined in a three-point bending test showed a sharp decrease from 3,055 to 2,062 MPa as the oxygen content was increased from 1,244 ppm to 3,789 ppm; the extension was also decreased from 3.02 to 1.74 mm. These findings meant that the alloy became brittle.

Current Research Trend on Recycling of Waste Flat Panel Display Panel Glass (폐 평판디스플레이 패널유리의 재활용 연구 동향)

  • Shin, Dongyoon;Kang, Leeseung;Park, Jae Layng;Lee, Chan Gi;Yoon, Jin-Ho;Hong, Hyun Seon
    • Resources Recycling
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    • v.24 no.1
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    • pp.58-65
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    • 2015
  • Although Korea is a top market sharing and world leading producer and developer of flat panel display devices, relevant recycling technology is not up to her prestigious status. Besides, most of the waste glass arising from flat panel displays is currently land-filled. The present paper mainly reviews on development of recycling systems for waste TFT-LCD glass from end-of-life LCD TVs and monitors and TFT-LCD process waste of crushed glass particles with target end uses of raw material for high strength concrete pile and glass fibers, respectively. Waste LCD glass was recycled to fabricate ingredients for high strength concrete piles with enhanced physical properties and spherical foam products. The waste LCD glass recycling technology is already developed to fabricate long and short fibers at commercial level. In view of these, future R & D on waste LCD glass materials is to be directed toward implementation of commercial materials recycling system therefrom.

Foaming Process of Waste LCD Glass for the Recovery of Valuable Materials from Waste LCD Pannel (폐 LCD판넬의 유가성분 회수를 위한 폐 LCD유리의 발포공정)

  • Lee, Chul-Tae;Park, Tae-Moon;Kim, Jung-Min
    • Applied Chemistry for Engineering
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    • v.23 no.2
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    • pp.195-203
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    • 2012
  • Recycling method of waste LCD glass is the essential process for developing the total recycling process of LCD pannel. Pulverizing of LCD glass, determination of proper carbonacious foaming agent, the properties of residue from the recovery of valuable materials through an acid leaching process and the feasibility for the foaming of the residue obtained from leaching for indium and tin recovery were investigated for the developing of recycling method of waste LCD glass as industrial feed materials, such as heat insulation materials, sound absorbing materials, carrier of water treatment. Waste LCD glass could be pulverized finely for foaming process. Natural graphite was proper agent for foaming of the residue and the foaming technology of LCD glass would be effective recycling alternatives.

Disposal Behaviors of College Students in Recycling Resources (대학생들의 재활용자원 분리배출행동에 관한 연구)

  • Bu, Mar-Sook;Kim, Jeong-Sook
    • Journal of the Korean Home Economics Association
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    • v.44 no.4 s.218
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    • pp.145-157
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    • 2006
  • The purpose this study was to analyze the factors related to the disposal behavior of college students in recycling resources. Recycling resources were classified into four categories: paper, glass, cans and plastic. The data used this study were collected through questionnaire on 420 college students living in Jeju island. The data were analyzed by using SPSS WIN program and the methods of frequency, average, standard deviation, percentage, internal consistency method, t-test, one-way ANOVA, and Scheffe's multiple range tests. The study results can be summarized as follows. Disposal behavior of paper was influenced by pocket money, of glass by sex and housing type, and of cans by housing type. Mother's education level was related to the disposal behavior of college students in recycling resources. In addition, the results showed that environment-friendly conscious and purchasing behaviors affected the disposal behavior of college students in recycling the resources of paper, glass, cans and plastic. The environment-friendly consciousness of college students was the most influential factor in the disposal behavior in recycling resources.