工业水处理
工業水處理
공업수처리
INDUSTRIAL WATER TREATMENT
2015年
1期
62-64
,共3页
刘国%李军%杨衔%韩国睿
劉國%李軍%楊銜%韓國睿
류국%리군%양함%한국예
铁镁铝%水滑石%磷%吸附
鐵鎂鋁%水滑石%燐%吸附
철미려%수활석%린%흡부
Fe-Mg-Al%hydrotalcite%phosphorus%adsorption
采用低饱和共沉淀的方法合成了n(Fe)∶n(Mg)∶n(Al)=1∶1∶1的铁镁铝三元类水滑石。研究其对磷的吸附特性,考察了吸附时间、投加量、温度、pH等因素对吸附效果的影响。结果表明:此类水滑石对磷的吸附在前20 min吸附量急剧增加,40 min之后趋于稳定;当投加量为1.0 g/L时,吸附率和吸附容量都相对较高;初始pH为3~10时,对吸附效果无明显影响;温度对吸附效果影响较大,温度升高吸附量增加,表明此吸附过程是吸热过程。此类水滑石对磷的等温吸附数据与Langmuir方程的相关系数很高,45℃时饱和吸附量高达13.15 mg/g,同时吸附过程符合二级动力学模型。
採用低飽和共沉澱的方法閤成瞭n(Fe)∶n(Mg)∶n(Al)=1∶1∶1的鐵鎂鋁三元類水滑石。研究其對燐的吸附特性,攷察瞭吸附時間、投加量、溫度、pH等因素對吸附效果的影響。結果錶明:此類水滑石對燐的吸附在前20 min吸附量急劇增加,40 min之後趨于穩定;噹投加量為1.0 g/L時,吸附率和吸附容量都相對較高;初始pH為3~10時,對吸附效果無明顯影響;溫度對吸附效果影響較大,溫度升高吸附量增加,錶明此吸附過程是吸熱過程。此類水滑石對燐的等溫吸附數據與Langmuir方程的相關繫數很高,45℃時飽和吸附量高達13.15 mg/g,同時吸附過程符閤二級動力學模型。
채용저포화공침정적방법합성료n(Fe)∶n(Mg)∶n(Al)=1∶1∶1적철미려삼원류수활석。연구기대린적흡부특성,고찰료흡부시간、투가량、온도、pH등인소대흡부효과적영향。결과표명:차류수활석대린적흡부재전20 min흡부량급극증가,40 min지후추우은정;당투가량위1.0 g/L시,흡부솔화흡부용량도상대교고;초시pH위3~10시,대흡부효과무명현영향;온도대흡부효과영향교대,온도승고흡부량증가,표명차흡부과정시흡열과정。차류수활석대린적등온흡부수거여Langmuir방정적상관계수흔고,45℃시포화흡부량고체13.15 mg/g,동시흡부과정부합이급동역학모형。
Ternary(Fe-Mg-Al) layered hydroxides,n (Fe)∶n (Mg)∶n(Al)=1∶1∶1 has been synthesized by coprecipita-tion method. Its adsorption capacity for phosphorus is studied,and the influences of adsorption time,temperature,pH and other factors on the adsorption effect are investigated. The results show that its adsorption capacity for phosphorus increases dramatically in the first 20 min,but 40 min later becomes stable. When its dosage is 1.0 g/L, both of the adsorbing rate and adsorption capacity are relatively high. Its initial pH value is in the range of 3 to 10 , having no significant influence on the adsorption effect. Temperature has greater effect on the adsorption effect. The adsorption capacity increases with the increase of temperature. It indicates that the adsorption process is an endothermic process. The correlation coefficient of isothermal adsorption data of such hydrotalcite and Langmuir equation is very high. When the temperature is 45℃,the maximum adsorption capacity can reach 13.15 mg/g,while the adsorption process is in line with second order kinetics mod.