[1] |
林奕明, 周少奇, 陈安安. 城市污水厂剩余活性污泥生产生态水泥 [J]. 化工学报, 2011, 62 (4): 1117-1123. LIN Y M, ZHOU S Q, CHEN A A. Wastewater treatment plant activated sludge for production of eco-cement [J]. CIESC Journal, 2011, 62 (4): 1117-1123.
|
[2] |
AHMARUZZAMAN M, SHARMA D K. Chemical reaction engineering studies on cocracking of petroleum vacuum residue with coal, plastics, and biomass (bagasse and petrocrop) [J]. Petroleum Science & Technology, 2007, 25 (25): 937-947.
|
[3] |
张强, 刘欢, 刘鹏, 等. 调理剂对深度脱水污泥热解特性的影响 [J]. 化工学报, 2014, 65 (4): 1396-1402. ZHAGN Q, LIU H, LIU P, et al. Pyrolysis characteristic of deep dewatered sludge [J]. CIESC Journal, 2014, 65 (4): 1396-1402.
|
[4] |
王建国, 赵晓红. 低阶煤清洁高效梯级利用关键技术与示范 [C]//可持续发展20年学术研讨会. 2012. WANG J G, ZHAO X H. Demonstration of key technologies for clean and efficient utilization of low-rank coal [C]//Symposium on Sustainable Development for 20 Years. 2012.
|
[5] |
范建勇. 准东煤结渣特性及其配煤灰熔融性试验研究 [D]. 杭州: 浙江大学, 2014. FAN J Y. Research on Zhundong Coal's slagging characteristic and its ash fusibility of blending coal [D]. Hangzhou: Zhejiang University, 2014.
|
[6] |
张守玉, 陈川, 施大钟, 等. 高钠煤燃烧利用现状 [J]. 中国电机工程学报, 2013, 33 (5): 1-12. ZHAGN S Y, CHEN C, SHI D Z, et al. Situation of combustion utilization of high sodium coal [J]. Journal of Chinese Electrical Engineering Science, 2013, 33 (5): 1-12.
|
[7] |
樊斌, 于敦喜, 曾宪鹏, 等. 准东煤燃烧中矿物质转化行为的CCSEM研究 [J]. 化工学报, 2016, 67 (5): 2117-2123. FAN B, YU D X, ZENG X P, et al. Mineral transformation during Zhundong coal combustion by CCSEM [J]. CIESC Journal, 2016, 67 (5): 2117-2123.
|
[8] |
王智化, 李谦, 刘敬, 等. 准东煤中碱金属的赋存形态及其在热解过程中的迁移规律 [J]. 中国电机工程学报, 2014, (S1): 130-135. WANG Z H, LI Q, LIU J, et al. Occurrence of alkali metals in zhundong coal and its migration during pyrolysis process [J]. Journal of Chinese Electrical Engineering Science, 2014, (S1): 130-135.
|
[9] |
THOMAS K M. The release of nitrogen oxides during char combustion [J]. Fuel, 1997, 76 (6): 45-473.
|
[10] |
FRIEBEL J, KÖPSEL R F W. The fate of nitrogen during pyrolysis of German low rank coals—a parameter study [J]. Fuel, 1999, 78 (8): 923-932.
|
[11] |
JARDE E, MANSUY L, FAURE P. Characterization of the macromolecular organic content of sewage sludges by thermally assisted hydrolysis and methylation-gas chromatography-mass spectrometer (THM-GC/MS) [J]. Journal of Analytical & Applied Pyrolysis, 2003, 68: 331-350.
|
[12] |
FULLANA A, CONESA J A, FONT R, et al. Pyrolysis of sewage sludge: nitrogenated compounds and pretreatment effects [J]. Journal of Analytical & Applied Pyrolysis, 2003, 68/69: 561-575.
|
[13] |
ZHANG J, TIAN Y, ZHU J, et al. Characterization of nitrogen transformation during microwave-induced pyrolysis of sewage sludge [J]. Journal of Analytical & Applied Pyrolysis, 2014, 105 (5): 335-341.
|
[14] |
CAO J P, ZHAO X Y, MORISHITA K, et al. Fractionation and identification of organic nitrogen species from bio-oil produced by fast pyrolysis of sewage sludge [J]. Bioresource Technology, 2010, 101 (19): 7648-7652.
|
[15] |
DEBONO O, VILLOT A. Nitrogen products and reaction pathway of nitrogen compounds during the pyrolysis of various organic wastes [J]. Journal of Analytical & Applied Pyrolysis, 2015, 114: 222-234.
|
[16] |
CAO J P, LI L Y, MORISHITA K, et al. Nitrogen transformations during fast pyrolysis of sewage sludge [J]. Fuel, 2013, 104 (2): 1-6.
|
[17] |
HANSSON K M, SAMUELSSON J, MAND L E, et al. The temperature's influence on the selectivity between HNCO and HCN from pyrolysis of 2,5-diketopiperazine and 2-pyridone [J]. Fuel, 2003, 82 (18): 2163-2172.
|
[18] |
崔燕妮, 张军, 田禹. 矿物质对污水污泥微波热解过程中NOx前驱物的影响研究 [J]. 环境工程, 2012, (S2): 481-485. CUI Y N, ZHANG J, TIAN Y. The effect of mineral matter on the formation of NOx precursors during microwave-induced pyrolysis of sewage sludge [J]. Environmental Engineering, 2012, (S2): 481-485.
|
[19] |
张军. 微波热解污水污泥过程中氮转化途径及调控策略[D]. 哈尔滨: 哈尔滨工业大学, 2013. ZHANG J. Nitrogen concersion and control of nitrogen-containing compounds during microwave pyrolysis of sewage sludge [D]. Harbin: Harbin Institute of Technology, 2013.
|
[20] |
LI C Z, LI L T. Formation of NOx and SOx precursors during the pyrolysis of coal and biomass(Part III): Further discussion on the formation of HCN and NH3 during pyrolysis [J]. Fuel, 2000, 79 (15): 1899-1906.
|
[21] |
TIAN F J, LI B Q, CHEN Y, et al. Formation of NOx precursors during the pyrolysis of coal and biomass(Part V): Pyrolysis of a sewage sludge [J]. Fuel, 2002, 81 (17): 2203-2208.
|
[22] |
徐秀峰, 顾永达, 陈诵英. 铁催化剂对煤热解过程中氮元素迁移的影响 [J]. 燃料化学学报, 1998, 26 (1): 18-23. XU X F, GU Y D. CHEN S Y. Effect of iron addition on transformation of nitrogen during coal pyrolysis [J]. Journal of Fuel Chemistry, 1998, 26 (1):18-23.
|
[23] |
DOUGHTY A, MACKIE J C. Kinetics of pyrolysis of a coal model compound, 2-picoline, the nitrogen heteroaromatic analogue of toluene (2): The 2-picolyl radical and kinetic modeling [J]. Journal of Physical Chemistry, 1992, 96: 25.
|
[24] |
HANSSON K M, SAMUELSSON J, TULLIN C, et al. Formation of HNCO, HCN, and NH3 from the pyrolysis of bark and nitrogen-containing model compounds [J]. Combustion & Flame, 2004, 137 (3): 265-277.
|
[25] |
HÄMÄLÄINEN J P, AHO M J. Effect of fuel composition on the conversion of volatile solid fuel-N to N2O and NO [J]. Fuel, 1995, 74 (12): 1922-1924.
|
[26] |
TSUBOUCHI N, OHTSUKA Y. Nitrogen chemistry in coal pyrolysis: Catalytic roles of metal cations in secondary reactions of volatile nitrogen and char nitrogen [J]. Fuel Processing Technology, 2008, 89 (4): 379-390.
|
[27] |
孙志向. 生物质热解过程中燃料氮转化及碱/碱土金属离子催化转化的实验研究 [D]. 北京: 华北电力大学, 2014. SUN Z X. Experimental study on the fuel-nitrogen transformation and the alkali/alkali-earth metal ions catalysis during the biomass pyrolysis [D]. Beijing: North China Electric Power University, 2014.
|
[28] |
翁诗甫. 傅里叶变换红外光谱分析 [M]. 2版. 北京: 化学工业出版社, 2010. WENG S F. Fourier Transform Infrared Spectrum Analysis [M]. 2nd ed. Beijing: Chemical Industry Press, 2010.
|
[29] |
GRUBE M, LIN J G, LEE P H, et al. Evaluation of sewage sludge-based compost by FT-IR spectroscopy [J]. Geoderma, 2006, 130 (3/4): 324-333.
|
[30] |
DOMÍNGUEZ A, MENÉNDEZ J A, INGUANZO M, et al. Production of bio-fuels by high temperature pyrolysis of sewage sludge using conventional and microwave heating [J]. Bioresource Technology, 2006, 97 (10): 1185-1193.
|
[31] |
辛善志. 基于组分的生物质热分解及交互作用机制研究 [D]. 武汉: 华中科技大学, 2014. XIN S Z. Study on the mechanism of biomass pyrolysis and the interactions based on its components [D]. Wuhan: Huazhong University of Science and Technology, 2014.
|
[32] |
LI L T, LI C Z. Formation of NOx and SOx precursors during the pyrolysis of coal and biomass (Part Ⅱ): Effects of experimental conditions on the yields of NOx and SOx precursors from the pyrolysis of a Victorian brown coal [J]. Fuel, 2000, 79 (15): 1891-1897.
|