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Our country's energy burns coal primarily, to have the nearly hundred million tons pulverized coal ash to discharge massively every year, not only takes the land, moreover causes the very big harm to the Because in the pulverized coal ash adding water pollutant has the strong adsorbability, not only may achieve with the pulverized coal ash processing waste water by governs the waste goal waste, moreover the disposal cost is this article takes the adsorption material with the pulverized coal ash, the methyl orange is an adsorbate, uses the pulverized coal ash to carry on the adsorption to For the better understanding pulverized coal ash's adsorption performance, has carried on the static adsorption experiment and the dynamic adsorption experiment In the static adsorption experiment, through a series of balanced experiments, the use spectrophotometric method track adsorption process density change, under the computation related condition's adsorptive capacity, the definite adsorptive capacity and the pulverized coal ash particle size, the time, the pulverized coal ash throws between the increment, the temperature, the pH value adsorption rule, then appraisal pulverized coal ash adsorption In the dynamic experiment, has carried on the different pulverized coal ash column high the experimental result indicated that in static experiment, above pulverized coal ash to methyl orange adsorption 40 minutes later, the adsorptive capacity increases the change along with the time not to be big, namely 40 minutes later adsorbs achieves balanced basically; Just started the methyl orange to increase to the pulverized coal ash allocated proportion, may make the adsorptive capacity to increase, but in the methyl orange is bigger than 8mg/10g after the pulverized coal ash allocated proportion, the adsorption basically achieves saturated, this explained increases the allocated proportion, its adsorption performance change is not big; In 250C, 280C, 310C, the 340C a series of balanced adsorption experiment sees, along with temperature elevation, the adsorptive capacity has the drop tendency, therefore determined that the optimum temperature is a normal temperature; The solution pH value in 3-11 scopes, is not remarkable to the adsorptive capacity influence, but adsorbs the effect under the neutral condition slightly many; The particle size in 80 items to 140 item of scopes, the adsorption effect obviously rises, after being bigger than 140 items, the adsorption effect increases obviously no longer; In the dynamic experiment, has done the preliminary study to the methyl orange solution in the pulverized coal ash packing column's adsorption, finally indicated the pulverized coal ash packing column tests the effect is friends with in the ordinary conical flask vibrates the
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另一种追逐

发表学术论文30余篇:[1]Guanjie Zhai, Yufen Yang, Della M Roy ,Research on the Whiteness and Properties of Modified Coal Fly Ash,2009Worldof Coal Ash[2]翟冠杰,姜侃 粉煤灰漂珠复合材料的实验研究【J】粉煤灰 2008,(5):30-31[3]王金山,翟冠杰 粉煤灰分选磁珠在污水处理方面的实验研究【J】粉煤灰2008,(3):33-34[4]翟冠杰,陈杰,娄永国 高掺量粉煤灰烧结陶粒的试制【J】粉煤灰 2008,(1):42-43[5]王素瑞,翟冠杰,高性能混凝土的性能机理研究【J】粉煤灰综合利用2005,(2):6-7[6]翟冠杰,漂珠阻热研究【J】粉煤灰2005,(1):28-30[7]翟冠杰等,造纸黑液在大掺量粉煤灰烧结材料中的作用机理研究【J】粉煤灰2003,(6):20-22[8]翟冠杰,漂珠纳米结构对阻热的贡献研究【J】粉煤灰综合利用2003,(4):8-10[9]翟冠杰,用造纸黑液和高掺量粉煤灰研制烧结砖【J】粉煤灰综合利用2003,(1):35-37[10]翟冠杰等,粉煤灰综合利用【J】德州学院学报2003,(2):8-9[11]翟冠杰,粉煤灰漂珠的纳米结构及其传热机理研究【J】新型建筑材料2003,(8):38-40[12]翟冠杰,粉煤灰纳米空心球的发现及其性能的研究【J】粉煤灰综合利用2002,(2):10-11[13]翟冠杰等,粉煤灰烧结砖原料处理与烧结反应机理的研究【J】德州学院学报2002,(2):34-37[14]翟冠杰,高掺量造纸黑液粉煤灰烧结砖的研制【J】新型建筑材料2002,(9):13-15[15]张宪玺,翟冠杰,碱式碳酸锌煅烧制备纳米氧化锌【J】无机化学学报2002,(10):1037-1041

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蚂蚁在fei

杂志《粉煤灰》刊名: 粉煤灰 Coal Ash China主办: 中国城乡建设粉煤灰利用技术开发中心;上海市建筑科学研究院周期: 双月出版地:上海市语种: 中文;开本: 大16开ISSN: 1007-046XCN: 31-1715/TQ邮发代号: 4-639创刊时间:1989 《粉煤灰》创建于1989年,由国家住房和城乡建设部主管,中国城乡建设粉煤灰利用技术开发中心承办。是中国核心期刊遴选数据库收录期刊,中国学术期刊综合评价数据库统计源期刊,中国期刊全文数据库全文收录期刊。主要刊登:粉煤灰、脱硫灰渣、矿渣及其它固体废弃物综合利用的新成果、技术论文,同时及时报道国家最新制定的规程与标准、政策与法规等。读者面向:电力、化工、建筑、工业、环保、交通、农业等企事业单位的技术人员、管理人员及与之相关的科研院所科研人员和师生。主要栏目:科学研究、应用技术、专题论述、规范标准、学术讨论、技术革新、调查研究、测试技术、信息报道。

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