[1] 中华人民共和国国家统计局. 中国统计年鉴2005[M]. 北京:中国统计出版社,2005. [2] 中华人民共和国国家统计局. 中国统计年鉴2014[M]. 北京:中国统计出版社,2014. [3] 纪丹风,夏训峰,刘骏. 北京市生活垃圾处理的环境影响评价[J]. 环境工程学报,2011,5(9):2101-2107. [4] 聂永丰,刘建国,金宜英,等. 焚烧飞灰煅烧制轻骨料资源化技术及工程应用研究[J]. 中国城市环境卫生,2007(4):20-24. [5] 郭晓潞,施惠生. 垃圾焚烧飞灰制硫铝酸钙复合水泥基材料的耐久性[J]. 非金属矿,2013,36(2):68-71. [6] 廖钰娴. 全国飞灰处理乱象调查:六省成盲区,企业乱填埋,利用难安全[N]. 南方周末,2013-11-07. [7] Shi H S,Kanb L L. Leaching behavior of heavy metals from municipal solid wastes incineration (MSWI) fly ash used in concrete[J]. Journal of Hazardous Materials,2009,164:750-754. [8] Zhao Y,Song L,Li G. Chemical stabilization of MSW incinerator fly ashes[J]. Journal of Hazardous Materials,2002,B95:47-63. [9] 罗忠涛,肖宇领,杨久俊,等. 垃圾焚烧飞灰有毒重金属固化稳定技术研究综述[J]. 环境污染与防治,2012,34(8):58-62,68. [10] 丁世敏,封享华,王里奥,等. 垃圾焚烧飞灰处理处置研究进展[J]. 工业安全与环保,2009,35(5):26-27,53. [11] 董绍兵. 城市生活垃圾焚烧飞灰的固化/稳定化处理技术[J]. 广西轻工业,2009(9):104-105. [12] 熊祖鸿,范根育,鲁敏,等. 垃圾焚烧飞灰处置技术研究进展[J]. 化工进展,2013,32(7):1678-1684. [13] 陆瑞良. 垃圾焚烧飞灰的固化技术综述[J]. 江苏建筑,2012(1):104-106. [14] 姚刚. 垃圾焚烧飞灰处理技术现状与展望[J]. 化工时刊,2014,28(7):45-48. [15] 徐颖,陈玉,冯岳阳. 重金属螯合剂处理垃圾焚烧飞灰的稳定化技术[J]. 化工学报,2013,64(5):1833-1839. [16] 薛军,王伟,汪群慧. 微波加热在重金属浸出中的应用[J]. 有色金属,2008,60(2):75-80. [17] 薛军,王伟,汪群慧. 微波作用下的垃圾焚烧飞灰湿法稳定化研究[J]. 金属矿山,2007(1):74-76. [18] 牟群英,李贤军. 微波加热技术的应用与研究进展[J]. 物理学和高新技术,2004,33(6):438-442. [19] Chandrasekaran S,Ramanathan S,Basak T. Microwave food processing——A review[J]. Food Research International,2013(52):243-261. [20] 王雷,金宜英,李润东,等. 生活垃圾焚烧飞灰的污染特性[J]. 环境科学与技术,2010,33(7):21-26,51. [21] 李成刚,姚毅,孙峰. 飞灰含碳量的微波检测方法研究[J]. 中国西部科技,2010,9(21):8-9,90. [22] 李里特,马莉. 微波在食品加工中应用的问题和特殊效果[J]. 食品工业科技,1992(2):3-6. [23] 金耀民,陈建孟. 微波在环境污染治理工程中的应用[J]. 环境污染治理技术与设备,2002,3(12):64-69. [24] 薛军,王伟,汪群慧. 传统酸浸和微波酸浸处理飞灰重金属的效果及重金属的形态变化特征[J]. 环境科学,2008,29(2):535-539. [25] Querol X,Alastuey A,Soler A L,et al. A fast method for recycling fly ash:Microwave-assisted zeolite synthesis[J]. Environmental Science & Technology,1997,31(9):2527-2533. [26] Xue J,Wang W,Wang Q. Removal of heavymetals from municipal solid waste incineration (MSWI) fly ash by traditional and microwave acid extraction[J]. Journal of Chemical Technology and Biotechnology,2010,85(9):1268-1277. [27] Huang K,Katsutoshi I,Hiroyuki H,et al. Leaching behavior of heavy metals with hydrochloric acid from fly ash generated in municipal waste incineration plants[J]. Transaction of Nonferrous Metals Society of China,2011(21):1422-1427. [28] 马晓军. 水热法处理生活垃圾焚烧飞灰中重金属和二 英的研究[D]. 杭州:浙江大学,2013. [29] Zhang F S,Itoh H. Extraction of metals from municipal solid waste incinerator fly ash by hydrothermal process[J]. Journal of Hazardous Materials,2006(B136):663-670. [30] Zhang F S,Itoh H. Extraction of metals from municipal solid waste incinerator fly ash by hydrothermal process[J]. Journal of Hazardous Materials,2006,136(3):663-670. [31] Inada M,Tsujimoto H,Eguchi Y,et al. Microwave-assisted zeolite synthesis from coal fly ash in hydrothermal process[J]. Fuel,2005,84:1482-1486. [32] Ansari M,Aroujalian A,Raisi A,et al. Preparation and characterization of nano-NaX zeolite by microwave assisted hydrothermal method[J]. Advanced Powder Technology,2014,25:722-727. [33] Fukui K,Arai K,Kanayama K,et al. Phillipsite synthesis from fly ash prepared by hydrothermal treatment with microwave heating[J]. Advanced Powder Technol.,2006,17(4):369-382. [34] Bukhari S S,Behin J,Kazemian H,et al. Conversion of coal fly ash to zeolite utilizing microwave and ultrasound energies:A review[J]. Fuel,2015,140:250-266. [35] Fukui K,Katoh M,Yamamoto T,et al. Utilization of NaCl for phillipsite synthesis from fly ash by hydrothermal treatment with microwave heating[J]. Advanced Powder Technology,2009,20:35-40. [36] 马金龙,童学锋,彭虎. 烧结技术的革命——微波烧结技术的发展及现状[J]. 新材料产业,2001(11):30-32. [37] Zacco A,Borgese L,Gianoncelli A,et al. Review of fly ash inertisation treatments and recycling[J]. Environ. Chem. Lett.,2014(12):153-175. [38] 杨雪娇,李玉平,高朋召,等. 烧结方法对(Zr0.8Sn0.2)TiO4介质陶瓷性能的影响[J]. 稀有金属材料与工程,2009,38(s2):659-662. [39] Chou S Y,Lo S L,Hsieh C H,et al. Sintering of MSWI fly ash by microwave energy[J]. Journal of Hazardous Materials,2009, 163:357-362. [40] 王雷,金宜英,聂永丰,等. 添加剂和水洗对焚烧飞灰烧结过程中重金属迁移特性的影响[J]. 环境科学,2009,30(4):1232-1237. [41] Chou S Y,Lo S L. Effects of Microwave-absorbing additives on heavy metal immobilization[J]. Environmental Engineering Science,2013,30(6):317-323. [42] 晋勇,谢华锟. 微波烧结技术的应用与进展[J]. 工具技术,2005,39(1):19-23. [43] 易健宏,唐新文,罗述东,等. 微波烧结技术的进展及展望[J]. 粉末冶金技术,2003,21(6):351-354. [44] Pan Y,Yang L,Zhou J,et al. Characteristics of dioxins content in fly ash from municipal solid waste incinerators in China[J]. Chemosphere,2013,92:765-771. [45] Chang Y M,Dai W C,Tsai K S,et al. Reduction of PCDDs/PCDFs in MSWI fly ash using microwave peroxide oxidation in H2SO4/HNO3 solution[J]. Chemosphere,2013,91:864-868. [46] Shan C,Jing Z,Pan L,et al. Hydrothermal solidification of municipal solid waste incineration fly ash[J]. Research on Chemical Intermediates,2011,37:551-565. [47] Bayuseno A P,Schmahl W W,Müllejans T. Hydrothermal processing of MSWI fly ash-towards new stable minerals and fixation of heavy metals[J]. Journal of Hazardous Materials,2009,167:250-259. |