绿色科技
綠色科技
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LVSE DASHIJIU
2014年
12期
137-139
,共3页
李欣娟%薛红琴%陆莹%许俊
李訢娟%薛紅琴%陸瑩%許俊
리흔연%설홍금%륙형%허준
板栗壳%吸附%Pb2+
闆慄殼%吸附%Pb2+
판률각%흡부%Pb2+
chestnut shell%adsorption%Pb2+
以板栗壳作为吸附剂吸附废水中的P b2+,实验研究了吸附时间、吸附剂用量、P b2+初始浓度以及废水pH值对吸附过程的影响;采用扫描电镜(SEM )分析吸附剂的主要物理特性,对Pb2+吸附过程进行了动力学分析,通过等温吸附模型对实验结果进行了拟合,探讨了废水中P b2+的吸附性能。研究结果显示:板栗壳吸附Pb2+吸附平衡时间为80min ,Pb2+初始浓度为50mg/L时,吸附剂最佳投加量为3g/L ,最佳pH值为6,吸附平衡时Pb2+去除率可达到94.65%;吸附过程以准二级动力学方程拟合效果最好,吸附过程符合Langmuir等温吸附模型。
以闆慄殼作為吸附劑吸附廢水中的P b2+,實驗研究瞭吸附時間、吸附劑用量、P b2+初始濃度以及廢水pH值對吸附過程的影響;採用掃描電鏡(SEM )分析吸附劑的主要物理特性,對Pb2+吸附過程進行瞭動力學分析,通過等溫吸附模型對實驗結果進行瞭擬閤,探討瞭廢水中P b2+的吸附性能。研究結果顯示:闆慄殼吸附Pb2+吸附平衡時間為80min ,Pb2+初始濃度為50mg/L時,吸附劑最佳投加量為3g/L ,最佳pH值為6,吸附平衡時Pb2+去除率可達到94.65%;吸附過程以準二級動力學方程擬閤效果最好,吸附過程符閤Langmuir等溫吸附模型。
이판률각작위흡부제흡부폐수중적P b2+,실험연구료흡부시간、흡부제용량、P b2+초시농도이급폐수pH치대흡부과정적영향;채용소묘전경(SEM )분석흡부제적주요물리특성,대Pb2+흡부과정진행료동역학분석,통과등온흡부모형대실험결과진행료의합,탐토료폐수중P b2+적흡부성능。연구결과현시:판률각흡부Pb2+흡부평형시간위80min ,Pb2+초시농도위50mg/L시,흡부제최가투가량위3g/L ,최가pH치위6,흡부평형시Pb2+거제솔가체도94.65%;흡부과정이준이급동역학방정의합효과최호,흡부과정부합Langmuir등온흡부모형。
Using the chestnut shell as adsorbent to adsorb the Pb2+ in wastewater , the experiment studies the adsorption time ,the amount of adsorbent ,initial concentration of Pb2+ and the influence of wastewater's pH value on adsorption process .Scanning electron microscopy (SEM ) is adopted to analyze the physical properties of adsorbent and the kinetic analysis is adopted to analyze the adsorption process of Pb2+ .Matching the experimental results through isotherm models explores the adsorptive property for Pb2+ in wastewater .The results of experiment show that the time of equilibrium adsorption of chestnut shell for Pb2+ is 80 minutes .When initial concentration of Pb2+concentration is 50 mg/L ,the optimal dosage of chestnut shell is 3 g/L and optimal pH value of wastewater is 6 ,the removal rate of Pb2+ can reach 94 .65% .The imitative effect of adsorption process is the best when using pseudo -second order kinetic equation and the adsorption process conforms to Langmuir isotherm models .