Methods for polyurethane and polyurethane composites, recycling and recovery: A review

被引:562
|
作者
Zia, Khalid Mahmood [1 ]
Bhatti, Haq Nawaz [1 ]
Bhatti, Ijaz Ahmad [1 ]
机构
[1] Univ Agr Faisalabad, Dept Chem, Faisalabad 38040, Pakistan
来源
REACTIVE & FUNCTIONAL POLYMERS | 2007年 / 67卷 / 08期
关键词
polyurethane; recycling; recovery; regrinding; glycolysis; energy recovery;
D O I
10.1016/j.reactfunctpolym.2007.05.004
中图分类号
O69 [应用化学];
学科分类号
081704 ;
摘要
Recent progress in the recycling and recovery of polyurethane and polyurethane composites is reviewed. The various types of polyurethane waste products, consisting of either old recycled parts or production waste, are generally reduced to a more usable form, such as flakes, powder or pellets, depending on the particular type of polyurethane that is being recycled. The various recycling technologies for material and chemical recycling of PU materials have greatly contributed to improve the overall image regarding the recyclability of polyurethanes in recent years, by far the most important being regrinding and glycolysis. These technologies open an emerging, effective and economic route for recycling polyurethane rigid foams and composite. Polyurethane foam in automotive seating has been successfully recycled using regrind technology. Glycolysis of polyurethanes can be economically acceptable, but still requires more development in order to tolerate more contamination in the post-consumer material. Current technologies can recover the inherent energy value of polyurethanes and reduce fossil fuel consumption. Energy recovery is considered the only suitable disposal method for recovered material for which no markets exist or can be created. Increasing waste-to-energy and other thermal processing activities involving gasification, pyrolysis and two-stage combustion has contributed for the disposal of significant amounts of scrap PU without many difficulties. It is concluded that many of the plastic feedstock recycling processes appear to be technically feasible and robust enough to warrant further development in the future. (c) 2007 Elsevier Ltd. All rights reserved.
引用
收藏
页码:675 / 692
页数:18
相关论文
共 50 条
  • [11] POLYURETHANE WASTE RECYCLING .2. POLYOL RECOVERY AND PURIFICATION
    BRASLAW, J
    GERLOCK, JL
    INDUSTRIAL & ENGINEERING CHEMISTRY PROCESS DESIGN AND DEVELOPMENT, 1984, 23 (03): : 552 - 557
  • [12] A review on conducting polymer reinforced polyurethane composites
    Khatoon, Halima
    Ahmad, Sharif
    JOURNAL OF INDUSTRIAL AND ENGINEERING CHEMISTRY, 2017, 53 : 1 - 22
  • [13] A review of solid lubrication based on polyurethane composites
    Wang, Shan
    Han, Xuhui
    Jiang, Shuai
    Huang, Yufei
    Yin, Xuan
    Chai, Chunpeng
    POLYMER COMPOSITES, 2023, 44 (08) : 4420 - 4432
  • [14] Waterborne polyurethane and modified polyurethane acrylate composites
    Qiu, F. X.
    Zhang, J. L.
    Wu, D. M.
    Yang, D. Y.
    PLASTICS RUBBER AND COMPOSITES, 2010, 39 (10) : 454 - 459
  • [15] Effect of pretreatment methods on performance of polyurethane recycling asphalt mixture
    Wu J.
    Wu Y.
    Liu Q.
    Lu G.
    Yin L.
    Dongnan Daxue Xuebao (Ziran Kexue Ban)/Journal of Southeast University (Natural Science Edition), 2021, 51 (03): : 489 - 495
  • [16] Recycling of rigid polyurethane articles and reformulation into a variety of polyurethane applications
    White, WR
    Durocher, DT
    JOURNAL OF CELLULAR PLASTICS, 1997, 33 (05) : 477 - 486
  • [17] Recycling of thermoset flexible polyurethane foams into solid polyurethane rubber
    James, O
    ANTEC'97 - PLASTICS SAVING PLANET EARTH, CONFERENCE PROCEEDINGS, VOLS 1 - 3, 1997, : 3076 - 3080
  • [18] Study of Waste Rigid Polyurethane Plastic Foam Insulation Recycling and Recovery
    Gao, Weijing
    Duan, Wubiao
    Zhang, Yanchao
    Zhu, Jiahui
    Liu, Bo
    Yang, Feihua
    Guo, Jianping
    BUILDING MATERIALS AND STRUCTURAL ENGINEERING II, 2013, 743 : 195 - +
  • [19] Team provides polyurethane recycling
    不详
    CHEMICAL ENGINEERING PROGRESS, 2001, 97 (06) : 24 - 24
  • [20] Recycling of integral polyurethane compounds
    Matveev, K.S.
    Soltovets, G.N.
    Burkin, A.N.
    Plasticheskie Massy: Sintez Svojstva Pererabotka Primenenie, 2002, (10): : 46 - 48