| [ 1 ] 国土资源部土地整治中心. 土地整治蓝皮书: 中国土地整治发展研究报告( No.1 )[M]. 北京:社会科学文献出版社,2014.
[ 2 ] 刘汉桥,武振华,徐 仙,等. 医疗垃圾焚烧飞灰的酸浸及硫化[ J ]. 环境科学与技术,2015,38( 9 ):88-92.
[ 3 ] 魏国侠,王承智,孙 磊,等. 污染底泥与焚烧飞灰混烧陶粒实验研究[ J ]. 环境科学与技术,2015( 2 ):134-138.
[ 4 ] Wu D, Tian Y, Wen X W, et al. Studies on the use of microwave
for enhanced properties of glass-ceramics produced from sewage sludge pyrolysis residues ( SSPR ) [ J ]. Journal of the Taiwan Institute of Chemical Engineers, 2015, 48: 81-86.
[ 5 ] Ková ová M, Lovás M, Jakabsk . Glassceramics from indust
-rial waste prepared in a microwave furnace[ J ]. Acta Montanistica Slovaca, 2012, 17 ( 1 ):51-56.
[ 6 ] Oghbaei M, Mirzaee O. Microwave versus conventional sintering: a review of fundamentals, advantages and applications[ J ]. Journal of Alloys and Compounds, 2010, 494( 1-2 ):175-189.
[ 7 ] Lee Y C, Lo S L, Kuo J, et al. Promoted degradation of perfluorooc
-tanic acid by persulfate when adding activated carbon[ J ]. Journal of Hazardous Materials, 2013, 261( 15 ):463-469.
[ 8 ] Tyagi V K, Lo S L. Microwave irradiation: a sustainable way for sludge treatment and resource recovery[ J ]. Renewable and Sustainable Energy Reviews, 2013, 18:288-305.
[ 9 ] Chang C J, Tyagi V K, Lo S L. Effects of microwave and alkali induc
-ed pretreatment on sludge solubilization and subsequent aerobic digestion[ J ]. Bioresource Technology, 2011, 102( 17 ):7633-7640.
[ 10 ] Robinson J P, Kingman S W, Lester E H, et al. Microwave remedia
-tion of hydrocarbon-contaminated soils-scale-up using batch reactors[ J ]. Separation and Purification Technology, 2012, 96( 21 ): 12-19.
[ 11 ] Gan Q. A case study of microwave processing of metal hydroxide sediment sludge from printed circuit board manufacturing wash water[ J ]. Waste Management, 2000, 20( 8 ):695-701.
[ 12 ] Menéndez J A, Dominguez A, Inguanzo M, et al. Microwave-
induced drying, pyrolysis and gasification ( MWDPG ) of sewage sludge: Vitrification of the solid residue [ J ]. Journal of Analytical and Applied Pyrolysis, 2005, 74( 1-2):406-412.
[ 13 ] Chen C L, Lo S L, Kuan W H, et al. Stabilization of Cu in acid-
extracted industrial sludge using a microwave process[ J ]. Journal of Hazardous Materials, 2005, 123( 1 ):256-261.
[ 14 ] Hsieh C H, Lo S L, Chiueh P T, et al. Microwave enhanced stabili
-zation of heavy metal sludge[ J ]. Journal of Hazardous Materials, 2007, 139( 1 ):160-166.
[ 15 ] Chan W I, Wong W T, Liao P H, et al. Sewage sludge nutrient solubilization using a single-stage microwave treatment[ J ]. Journal of Environmental Science and Health, Part A: Toxic / Hazardous Substances and Environmental Engineering, 2007, 42( 1 ):59-63.
[ 16 ] Chen C L, Lo S L, Kuan W H, et al. Stabilization of copper-conta
-minated sludge using the MW sintering[ J ]. Journal of Hazardous Materials, 2009, 168( 2 ):857-861.
[ 17 ] Wu C H, Kuo C Y, Lo S L. From waste to resource: a case study of heavy-metal sludge by microwave treatment[ J ]. Journal of Environmental Engineering and Management, 2009, 19( 3 ):119-125.
[ 18 ] Jothiramalingam R, Lo S L, Phanthi L A. Chitosan-type bioaddi-
tive-modified electronic industry waste sludge for heavy metal stabilization with assistance of microwave heating[ J ]. Industrial and Engineering Chemistry Research, 2010, 49( 6 ):2557-2561.
[ 19 ] Abramovitch R. A., Huang B. Z., Davis M., et al. Decomposition of PCBs and other polychlorinated aromatics in soil using microwave energy[ J ]. Chemosphere, 1998, 37( 8 ):1427-1436.
[ 20 ] Abramovitch R. A., Huang B. Z., Abramovitch D. A., et al. In situ decomposition of PCBs in soil using microwave energy[ J ]. Chemosphere, 1999, 38( 10 ):2227-2236.
[ 21 ] Abramovitch R. A., Huang B. Z., Abramovitch D. A., et al. In situ decomposition of PAHs in soil and desorption of organic solvents using microwave energy[ J ]. Chemosphere, 1999, 39( 1 ):81-87.
[ 22 ] Yuan S Y, Tian M, Lu X H. Microwave remediation of soil contami
-nated with hexachlorobenzene[ J ]. Journal of Hazardous Materials, 2006, 137( 2 ):878-885.
[ 23 ] Liu X T, Yu G. Combined effect of microwave and activated carbon on the remediation of polychlorinated biphenyl-contaminated soil[ J ]. Chemosphere, 2006, 63( 2 ):228-235.
[ 24 ] Liu X T, Zhang Q, Zhang G X, et al. Application of microwave irra
-diation in the removal of polychlorinated biphenyls from soil contaminated by capacitor oil[ J ]. Chemosphere, 2008, 72( 11 ): 1655-1658.
[ 25 ] Lin L, Yuan S H, Chen J, et al. Treatment of chloramphenicol-
contaminated soil by microwave radiation[ J ]. Chemosphere, 2010, 78( 1 ):66-71.
[ 26 ] Liu X T, Quan X, Bo L L, et al. Temperature measurement of GAC and decomposition of PCP loaded on GAC and GAC-supported copper catalyst in microwave irradiation[ J ]. Applied Catalysis A:General, 2004, 264( 1 ):53-58.
[ 27 ] Zhang Z H, Shan Y B, Wang J, et al. Investigation on the rapid degradation of congo red catalyzed by activated carbon powder under microwave irradiation[ J ]. Journal of Hazardous Materials, 2007, 147( 1-2 ):325-333.
[ 28 ] Chou S Y, Lo S L, Li N H. International Conference on Electric Technology and Civil Engineering[ C ]. Lushan:IEEE, 2011.
[ 29 ] Chou S Y, Lo S L. Effects of microwave-absorbing additives on heavy metal immobilization[ J ]. Environmental Engineering Science, 2013, 30( 6 ):317-323.
[ 30 ] Chen C L, Lo S L, Kuan W H, et al. A case study of the microwave sintering for the stabilization of MSWI fly ash[ J ]. Sustain. Environ. Res., 2010, 20( 6 ):381-385.
[ 31 ] 郝 辉. 微波加热解毒垃圾焚烧飞灰的方法:中国,200710
057560.0 [ P ]. 2013-04-10.
[ 32 ] 刘汉桥,魏国侠,孙 磊,等. 一种医疗垃圾焚烧飞灰微波烧制多孔陶粒的方法:中国,201310642646.5[ P ]. 2015 - 12 - 02.
[ 33 ] 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( 1 ): 357-362. |