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									| 化学与生物工程、环境工程 |  |     |  |  
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    					| 污泥陶粒的性能特征与烧制工艺 |  
						| 翁焕新, 章金骏, 曹彦圣, 马学文 |  
					| 浙江大学 环境与生物地球化学研究所,浙江 杭州 310027 |  
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    					| Characteristics and sintering technology of haydite made of sewage sludge
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						| WENG Huan-xin, ZHANG Jin-jun, CAO Yan-sheng, MA Xue-wen |  
						| Institute of Environment & Biogeochemistry, Zhejiang University, Hangzhou 310027, China |  
					
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												引用本文:
																																翁焕新, 章金骏, 曹彦圣, 马学文. 污泥陶粒的性能特征与烧制工艺[J]. J4, 2011, 45(10): 1877-1883.	
																															 
																																WENG Huan-xin, ZHANG Jin-jun, CAO Yan-sheng, MA Xue-wen. Characteristics and sintering technology of haydite made of sewage sludge. J4, 2011, 45(10): 1877-1883.
 链接本文: 
																
																	
																	https://www.zjujournals.com/eng/CN/10.3785/j.issn.1008-973X.2011.10.029
																	   或   
																
																
																https://www.zjujournals.com/eng/CN/Y2011/V45/I10/1877
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																| [1] 翁焕新.污泥无害化、减量化、资源化处理新技术[M].北京:科学出版社,2009: 73-74.[2] MOHAMMED H A S, ISMAIL M M, RAHMAN A M B. Use of sewage sludge ash in asphaltic paving mixes in hot regions [J]. Construction and Building Materials, 1995, 9 (1): 19-23.
 [3] WANG Kuensheng, CHIOU Ingjia, CHEN Chingho, et al. Lightweight properties and pore structure of foamed material made from sewage sludge ash [J]. Construction and Building Materials, 2005, 19 (8): 627-633.
 [4] PAN Shihcheng, TSENG Dyihwa, LEE Chihchiang, et al. Influence of the fineness of sewage sludge ash on the mortar properties [J]. Cement and Concrete Research, 2003, 33 (11): 1749-1754.
 [5] NAKOUZI S.A novel approach to paint sludge recycling [J].Journal of Material Research,1998,13(1): 53-60.
 [6] 吴清仁,吴善淦.生物建材与环保[M].北京:化学工业出版社,2003: 215-225.
 [7] 吴清仁,吴善淦,邢益和,等.一种利用污水处理厂生物污泥烧制粘土陶粒的方法:中国,2114938.0 [P].2004-10-20.
 WU Qingren, WU Shangan, XING Yihe, et al. A method for sintering haydite by using sewage sludge: China, 2114938.0 [P]. 2004-10-20.
 [8] 中国大洋矿产资源研究开发协会,青岛海洋地质研究所,核工业北京地质研究院.GB/T 20260—2006.海底沉积物化学分析方法[S].北京:中国标准出版社,2006.
 China Ocean Mineral Resources R&D Association, Qingdao Institute of Marine Geology, CNNC Beijing Research Institute of Uranium Geology, et al. GB/T 20260—2006. Chemical analysis methods for marine sediment  [S]. Beijing: Standards Press of China, 2006.
 [9] 冶金工业部洛阳耐火材料研究所.GB 6900.2—1986.粘土、高铝质耐火材料化学分析方法重量:钼蓝光度法测定二氧化硅量[S].北京:中国标准出版社,1986.
 Ministry of Metallurgical Industry Luoyang Institute of Refractories. GB 6900.2—1986. Fireclay and highalumina refractories; Determination of silicon dioxide content; Gravimetricmolybdenum blue photometric method [S]. Beijing: Standards Press of China, 1986.
 [10] 中国轻工业陶瓷研究所,九江出入境检验检疫局.GB/T 6297—2002.陶瓷原料差热分析方法[S].北京:中国标准出版社,2002.
 Ceramic Research Institute of Light Industry of China, JiuJiang EntryExit Inspection and Quarantine Bureau. GB/T 6297—2002. Standard test method for differential thermal analysis of ceramic [S]. Beijing: Standards Press of China, 2002.
 [11] CHIOU Ingjia, WANG Kuensheng, CHEN Chingho, et al. Lightweight aggregate made from sewage sludge and incinerated ash [J]. Waste Management, 2006, 26(12): 1453-1461.
 [12] LIN Kaelong, CHIANG Kungyuh, LIN Dengfong. Effect of heating temperature on the sintering characteristics of sewage sludge ash [J]. Journal of Hazardous Materials, 2006, 128(2/3): 175-181.
 [13] 王兴润,金宜英,杜欣,等.城市污水厂污泥烧制制陶粒的可行性研究[J].中国给水排水,2007,23(7): 11-15.
 WANG Xingrun, JIN Yiying, DU Xin, et al. Feasibility research on sintering municipal sewage sludge for manufacturing haydite [J]. China Water and Wastewater, 2007, 23(7): 11-15.
 [14] IGNACIO M, LUIS F, ARVALO, et al. Preparation and characterization of ceramic products by thermal treatment of sewage sludge ashes mixed with different additives [J]. Waste Management, 2007, 27(12): 1829-1844.
 [15] 中国科学院上海硅酸盐研究所.陶瓷的力学性质[M].上海:上海科学技术文献出版社,1981:  323.
 [16] 王兴润,金宜英,聂永丰,等.污泥制陶粒技术可行性分析与烧结机理研究[J].环境科学研究,2008, 21(6): 80-84.
 WANG Xingrun, JIN Yiying, NIE Yongfeng, et al. Sintering characteristics and application research of sewage sludge in producing lightweight aggregate [J]. Research of Environmental Sciences, 2008, 21(6):  80-84.
 [17] 中国建筑材料工业协会.GB/T 17431.2—1998.轻集料及其试验方法第2部:轻集料试验方法[S].北京:中国标准出版社,1999.
 China Building Material Industry Association. GB/T 17431.2—1998. Lightweight aggregates and its test methodspart 2: test methods for lightweight aggregates [S]. Beijing: Standards Press of China, 1999.
 [18] 石油大学(华东),北京石油勘探开发科学研究院,胜利石油管理局地质科学研究院.SY/T 6210—1996. 沉积岩中粘土矿物总量和常见非粘土矿物X射线衍射定量分析方法[S].北京:中国标准出版社,1996.
 China University of Petroleum, Beijing Petroleum Exploration and Development Research, Shengli Petroleum Administrative Bureau Academy of Geological Sciences. SY/T 6210—1996. Total amount of cl
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