[1] |
晁夫奎,王玉.我国废旧轮胎资源化技术应用现状及研究方向[J].再生资源与循环经济,2021,14(9):27-29. |
[2] |
曹婷雨,黄烨,左明波,等.“黑色污染”及其防治对策探析[J].环保科技,2020,26(3):61-64. |
[3] |
刘丽莎,田锋.废旧轮胎的回收处理及资源化现状研究[J].新型工业化,2021,11(5):58-59. ,83. |
[4] |
张兴.废轮胎资源化利用现状及发展趋势[J].山东化工,2019,48(14):105-108. |
[5] |
LI X G,MA B G,XU L,et al.Thermogravimetric analysis of the co-combustion of the blends with high ash coal and waste tyres[J].Thermochimica Acta,2006,441(1):79-83. |
[6] |
YASAR A,RANA S,MONIRUZZAMAN M,et al.Quality and environmental impacts of oil production through pyrolysis of waste tyres[J].Environmental Technology & Innovation,2021,23:101565. |
[7] |
屈搏宇.废轮胎热解表观动力学[D].大连:大连理工大学,2021. |
[8] |
蒋智慧,刘洋,宋永猛,等.废旧轮胎热解及热解产物研究展望[J].化工进展,2021,40(1):515-525. |
[9] |
ZHONG R,XU J,HUI D,BHOSALE S S,et al.Pyrolytic preparation and modification of carbon black recovered from waste tyres[J].Waste Management & Research.2020,38(1):35-43. |
[10] |
李丰超,薛永兵,苏深,等.废轮胎热解行为的研究进展[J].橡胶工业,2014,61:569-575. |
[11] |
吴晓羽,李硕,王仕峰.废旧轮胎热裂解技术的研究进展[J].特种橡胶制品,2015,36(6):71-75. ,81. |
[12] |
张义烽,薛勇,蒋东燕.粒径、升温速率及催化剂对废轮胎胶粉热解特性的影响[J].西南科技大学学报,2013,28(1):65-69. |
[13] |
吴挺培.废轮胎热解生产炭黑综述[J].中国轮胎资源综合利用,2017 (9):41-48. |
[14] |
董根全,崔洪,杨建丽,等.废轮胎热解过程及产物的研究[J].石油化工,1999(11):756-760. |
[15] |
KEBRITCHI A,FIROOZIFAR H,SHAMS K,et al.Effect of pre-devulcanization and temperature on physical and chemical properties of waste tire pyrolytic oil residue[J].Fuel,2013,112:319-325. |
[16] |
SUI H Q,WANG X H,WU Z S,et al.Influence of temperature and residence time of gas on property of waste tyre pyrolysis[J].Journal of Biobased Materials and Bioenergy,2020,14:98-107. |
[17] |
WANG H,HU H Y,YANG Y H,et al.Effect of high heating rates on products distribution and sulfur transformation during the pyrolysis of waste tires[J].Waste Management,2020,118:9-17. |
[18] |
ROY C,DARMSTADT H,BENALLAL B,et al.Characterization of naphtha and carbon black obtained by vacuum pyrolysis of polyisoprene rubber[J].Fuel Processing Technology,1997,50(1):87-103. |
[19] |
MA S J,LEONG H N,HE L M,et al.Effects of pressure and residence time on limonene production in waste tires pyrolysis process[J].Journal of Analytical and Applied Pyrolysis,2020,151:104899. |
[20] |
金晶.废轮胎热解炭脱味降灰研究[D].上海:华东理工大学,2011. |
[21] |
肖国良,彭小芹,盖国胜,等.深加工对废轮胎裂解炭黑表面性能的影响[J].材料科学与工程学报,2004,22(2):276-279. |
[22] |
MARTINEZ J D,PUY N,MURILLO R,et al.Waste tyre pyrolysis:A review[J].Renewable and Sustainable Energy Reviews,2013,23:179-213. |
[23] |
王增斌.未经活化处理的废轮胎热解炭性质及其吸附性能研究[D].苏州:苏州科技学院,2014. |
[24] |
黄国涛.废轮胎热解炭的水蒸气气化理论与实验研究[D].青岛:青岛理工大学,2015. |
[25] |
ZHANG J,JONES I,ZHU M M,et al.Pore development during CO2 and steam activation of a spent tyre pyrolysis char[J].Waste and Biomass Valorization,2021,12(1):2097-2108. |
[26] |
杨殿才,潘宇涵,黄群星,等.废轮胎热解炭低温催化焦油重整制备富氢气体的研究[J].化工学报,2020,71(2):642-650. |
[27] |
HERAS F,JIMENEZ-CORDERO D,GILARRANZ M A,et al.Activation of waste tire char by cyclic liquid-phase oxidation[J].Fuel Processing Technology,2014,127:157-162. |
[28] |
刘英俊,刘涛,刘东,等.酸洗改性废轮胎热解炭黑对天然橡胶/顺丁橡胶性能的影响[J].青岛科技大学学报(自然科学版),2016,37(4):433-439. |
[29] |
张波,仲兆平.废轮胎热解炭吸附脱汞实验研究[J].东南大学学报(自然科学版),2017,47(3):521-527. |
[30] |
王建功,黄义钢,王静,等.废旧轮胎裂解炭黑在半钢子午线轮胎胎面胶中的应用[J].轮胎工业,2019,39(4):214-217. |
[31] |
任夫云,张世鑫,张玉芬,等.裂解炭黑在半钢子午线轮胎胎侧胶中的应用[J].轮胎工业,2020,40(3):160-162. |
[32] |
高晗,陈帅,马振国,等.废轮胎热解炭黑的研磨改性及其在丁苯橡胶中应用[J].橡胶工业,2018,65(12):1379-1382. |
[33] |
周作艳,夏琳,王军晓,等.废轮胎热解炭黑在天然橡胶中的应用研究[J].橡胶工业,2018,65(1):56-59. |
[34] |
边慧光,王红.不同种类裂解炭黑的橡胶分散性及补强性能[J].弹性体,2019,29(6):12-16. |
[35] |
XU J Q,YU J X,XU J L,et al.High-value utilization of waste tires:A review with focus on modifified carbon black from pyrolysis[J].Science of the Total Environment,2020,742:140235. |
[36] |
IRAOLA-ARREGUI I,VAN DER GRYP P,GORGENS J F.A review on the demineralisation of pre-and post-pyrolysis biomass and tyre wastes[J].Waste Management,2018,79:667-688. |
[37] |
宋伟.废旧轮胎热解炭黑改性沥青及其混合料性能研究[D].长沙:长沙理工大学,2019. |
[38] |
李因翔,陈洪庆,李闯民,等.废旧轮胎热解炭黑改性沥青性能室内试验研究[J].中外公路,2021,41(2):296-301. |
[39] |
田泉.废旧轮胎热解炭黑改性沥青制备及其混合料性能研究[D].长沙:长沙理工大学,2015. |
[40] |
李睿,杨帆.掺废轮胎热解再生炭黑的沥青制备工艺及技术性能探讨[J].石油沥青,2018,32(5):59-66. |
[41] |
宋伟,甘有为.热解炭黑及其偶联产物改性沥青PG分级研究[J].交通技术,2019,8(4):271-280. |
[42] |
ZHONG K Z,LI Z,FAN J W,et al.Effect of carbon black on rutting and fatigue performance of asphalt[J].Materials,2021,14:2383. |
[43] |
曲锴鑫,李雪,白延群,等.废旧橡胶轮胎热裂解产物用作锂(离子)电池碳阳极材料性能研究[J].分子科学学报,2019,35(5):411-416. |
[44] |
KUMAR R,BHUVANA T,SHARMA A.Tire waste derived turbostratic carbon as an electrode for a vanadium redox flow battery[J].ACS Sustainable Chemistry & Engineering,2018,6(7):8238-8246. |
[45] |
DJUANDHI L,GAIKWAD V,COWIE B C C,et al.Repurposing waste tires as tunable frameworks for use in sodium-ion and lithium-sulfur batteries[J].ACS Sustainable Chemistry & Engineering,2021,9(20):6972-6990. |
[46] |
SHILPA K R, KUMAR R,SHARMA A.Morphologically tailored activated carbon derived from waste tires as high-performance anode for Li-ion battery[J].Journal of Applied Electrochemistry,2018,48:1-13. |
[47] |
LI Y,ADAMS R A,ARORA A,et al.Sustainable potassium-ion battery anodes derived from waste-tire rubber[J].Journal of The Electrochemical Society,2017,164(6):A1234-A1238. |
[48] |
吕杰.废轮胎热解炭黑性能分析与资源利用[D].杭州:浙江大学,2002. |
[49] |
ZHOU J,WANG J D,REN X H,et al.Surface modification of pyrolytic carbon black from waste tires and its use as pigment for offset printing ink[J].Chinese Journal of Chemical Engineering,2006,14(5):654-659. |
[50] |
WU I F,LIAO Y C.A chemical milling process to produce water-based inkjet printing ink from waste tire carbon blacks[J].Waste Management,2021,122:64-70. |