Disposal of Mobile Communication Devices by Mechanical and Thermal Means

被引:2
|
作者
Nazarov, V., I [1 ]
Makarenkov, D. A. [1 ]
Popov, A. P. [1 ]
Klyushenkova, M., I [1 ]
机构
[1] Kurchatov Inst IREA, Moscow, Russia
关键词
product life cycle; mobile phones; smart phones; tablets; waste processing; valuable components; gold; silver; copper; pyrolysis; electrical melting; carbon black; fuel granules; pellets; pressing;
D O I
10.3103/S1068364X19030062
中图分类号
TQ [化学工业];
学科分类号
0817 ;
摘要
The disposal of mobile communication devices, which forms part of their life cycle, is considered in the present work. The valuable components present in various devices (mobile phones, smart phones, tablets, e-books) are noted. On that basis, the yield of basic components is plotted against the type of device. The gaseous emissions associated with the roasting of electronic waste are tabulated. Analysis of existing disposal methods permits the development of a system for the disposal of mobile communication devices based on a combination of mechanical and thermal methods. The reactor employed includes a retort that facilitates the charging of crushed components and their final discharge. The cycle for the continuous operation of two reactors is presented. By combining low-temperature pyrolysis and electrical melting, valuable products may be obtained: gold, silver, copper, and carbon black. The production of granulated fuel from such carbon is discussed. The use of a hydrodynamic scrubber minimizes the environmental impact of the system for disposal of mobile communication devices.
引用
收藏
页码:113 / 119
页数:7
相关论文
共 50 条
  • [21] Communication of musical expression by means of mobile robot gestures
    Burger, Birgitta
    Bresin, Roberto
    JOURNAL ON MULTIMODAL USER INTERFACES, 2010, 3 (1-2) : 109 - 118
  • [22] Fluidic and Mechanical Thermal Control Devices
    Klinar, Katja
    Swoboda, Timm
    Munoz Rojo, Miguel
    Kitanovski, Andrej
    ADVANCED ELECTRONIC MATERIALS, 2021, 7 (03)
  • [23] Thermal Test of Mobile Devices in Normal Use
    Varga, Peter Janos
    Kalecz, Andras
    Illesi, Zsolt
    2018 IEEE 12TH INTERNATIONAL SYMPOSIUM ON APPLIED COMPUTATIONAL INTELLIGENCE AND INFORMATICS (SACI), 2018, : 267 - 271
  • [24] Thermal Management in Mobile Devices: Challenges and Solutions
    Hang, Yin
    Kabbani, Hussameddine
    2015 31ST ANNUAL SEMICONDUCTOR THERMAL MEASUREMENT, MODELING & MANAGEMENT SYMPOSIUM (SEMI-THERM), 2015, : 46 - 49
  • [25] On the Impacts of Greedy Thermal Management in Mobile Devices
    Sahin, Onur
    Coskun, Ayse K.
    IEEE EMBEDDED SYSTEMS LETTERS, 2015, 7 (02) : 55 - 58
  • [26] An Architectural Model for Communication Between the iDTV and Mobile Devices
    Lima Junior, Eucassio Goncalves
    Lira Rabelo, Ricardo de Andrade
    2015 INTERNATIONAL CONFERENCE ON COMPUTING, NETWORKING AND COMMUNICATIONS (ICNC), 2015, : 1102 - 1105
  • [27] Dosimetric procedures for compliance tests of mobile communication devices
    Guelfi, M
    Apollonio, F
    Grazioli, N
    Nocentini, S
    Marrocco, G
    Lovisolo, GA
    PHYSICA MEDICA-EUROPEAN JOURNAL OF MEDICAL PHYSICS, 1997, 13 (01): : 11 - 16
  • [28] Information and Communication Technology, Mobile Devices, and Medical Education
    Andrea Rodríguez-Ríos
    Gerardo Espinoza-Téllez
    José Darío Martínez-Ezquerro
    Mario Enrique Rendón-Macías
    Journal of Medical Systems, 2020, 44
  • [29] Architectures for Small Mobile Communication Devices and Performance Analyses
    Guemueskaya, Haluk
    Guerel, Ahmet V.
    Nural, Mustafa V.
    2008 FIRST INTERNATIONAL CONFERENCE ON THE APPLICATIONS OF DIGITAL INFORMATION AND WEB TECHNOLOGIES, VOLS 1 AND 2, 2008, : 349 - 354
  • [30] Bacterial contamination of mobile communication devices in the operative environment
    Brady, R. R.
    Fraser, S. F.
    Dunlop, M. G.
    Paterson-Brown, S.
    Gibb, A. P.
    JOURNAL OF HOSPITAL INFECTION, 2007, 66 (04) : 397 - 398