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ID:22792716
大小:828.85 KB
页数:36页
时间:2018-10-31
《改性粉煤灰基lindetypef(k)沸石对水中磷酸根吸附研究-毕业设计》由会员上传分享,免费在线阅读,更多相关内容在工程资料-天天文库。
1、改性粉煤灰基LindetypeF(K)沸石对水中磷酸根吸附研究AdsorptionofPhosphateinWaterbyModifiedFlyAshBaseLindeTypeF(K)Zeolite摘要随着工农业生产及城市生活污水中的贪磷量升高,江河湖泊水库的污染及富营养化也成为我国其至全球的重大问题之一。本文以氢氧化钠和HDTMA(十六烷基三甲基溴化铵)为改性剂,对粉煤灰进行改性,以SEM表征粉煤灰改性前后的微观形貌。研究含磷废水的pH值、改性粉煤灰沸石吸附剂的投加量和系统温度对改性沸石吸附性能的影响。根据实验数据,拟合等温吸附模型和吸附动力学模型。主要研宂结果如下:(1)从SE
2、M图屮可以看出,粉煤灰沸石的表面拥有人量的空隙,这有利于改性粉煤灰沸石对水中磷酸根的吸附。(2)吸附过程中,随着改性粉煤灰沸石的投加量的增大,磷酸根的去除率逐渐增大。该有具体的量化数值(3)吸附过程中,溶液的pH值对改性粉煤灰沸石吸附率的影响很大。随着溶液pH值的增人,磷酸根的去除率有着明显的增大。那一直到14??(4)吸附过程中,温度对磷酸根离子的吸附效果影响较大,随着温度的增高,改性粉煤灰沸石对水中磷酸根的吸附效率变高,吸附率也变高。那1000°C??(5)改性粉煤灰沸石对水中磷酸根的吸附过程符合Frcundlich吸附等温模型和准二级吸附动力学。关键词:粉煤灰;改性;沸石;H
3、DTMA;PO?-;吸附AbstractWiththeindustrialandagriculturalproductionandurbansewageinthephosphoruscontentincreased,riversandlakesreservoirpollutionandeutrophicationhasbecomeChinaandevenoneofthemajorglobalproblems.Inthispaper,flyashwasmodifiedbysodiumhydroxideandHDTMA(cetyltrimethylammoniumbromide)asm
4、odifier.ThemicrostructureofflyashwasmodifiedbySEM.TheeffectsofthepHvalueofphosphorus-containingwastewater,thedosageofmodifiedflyashzeoliteadsorbentandtheeffectofsystemtemperatureontheadsorptionperformanceofmodifiedflyashwerestudied.Accordingtotheexperimentaldata,theisothermaladsorptionmodelwas
5、fitted.Themainfindingsareasfollows:(1)ItcanbeseenfromtheSEMdiagramthatthesurfaceoftheflyashzeolitehasalargeamountofvoids,whichfacilitatestheadsorptionofphosphateinthemodifiedflyashzeolite.(2)Intheprocessofadsorption,theremovalrateofphosphateincreasedwiththeincreaseofthedosageofmodifiedflyashze
6、olite.(3)Duringtheadsorptionprocess,thepHvalueofthesolutionhasagreatinfluenceontheadsorptionrateofmodifiedflyashzeolite.AsthepHofthesolutionincreases,theremovalrateofphosphateissignificantlyincreased.(4)Intheprocessofadsorption,theadsorptioneffectofphosphateionsonthephosphatewashigherandtheads
7、orptionrateofthemodifiedflyashzeoliteincreasedwiththeincreaseoftemperature.(5)TheadsorptionprocessofthemodifiedflyashzeolitetothephosphateisinaccordancewiththeFreundlichadsorptionisothermalmodelandthequasi•secondaryadsorptionkinetics.Ke
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