非金属矿
非金屬礦
비금속광
NON-METALLIC MINES
2009年
6期
64-66
,共3页
颜酉斌%叶艳华%张洪林%唐海
顏酉斌%葉豔華%張洪林%唐海
안유빈%협염화%장홍림%당해
海泡石%吸附%有机污染物%氯苯
海泡石%吸附%有機汙染物%氯苯
해포석%흡부%유궤오염물%록분
sepiolite%adsorption%organic contaminant%chlorobenzene
研究了经过酸热改性的海泡石对氟苯的吸附特性,在pH值为6~7,吸附1h条件下,氯苯去除率可达80%左右.同时探讨了改性海泡石对氯苯的吸附等温线,经过对吸附等温方程的拟舍可知,符合Freundlich吸附等温方程式,其改性海泡石吸附氯苯为表面不均匀吸附.其吸附动力学符合二级反应动力学模型.
研究瞭經過痠熱改性的海泡石對氟苯的吸附特性,在pH值為6~7,吸附1h條件下,氯苯去除率可達80%左右.同時探討瞭改性海泡石對氯苯的吸附等溫線,經過對吸附等溫方程的擬捨可知,符閤Freundlich吸附等溫方程式,其改性海泡石吸附氯苯為錶麵不均勻吸附.其吸附動力學符閤二級反應動力學模型.
연구료경과산열개성적해포석대불분적흡부특성,재pH치위6~7,흡부1h조건하,록분거제솔가체80%좌우.동시탐토료개성해포석대록분적흡부등온선,경과대흡부등온방정적의사가지,부합Freundlich흡부등온방정식,기개성해포석흡부록분위표면불균균흡부.기흡부동역학부합이급반응동역학모형.
The characteristic of absorption of the modified sepiolite to chlorobenzene after acid and heat modification was studied in this article. The removal ratio of chlorobenzene was about 80% while the pH value was 6~7 and the absorption time was 1 hour. Meanwhile, the isotherm of the absorption of absorption of modified sepiolite to chlorobenzene was discussed. By firing in with the isotherm equation of the adsorption, the equation fired in the freundlich isotherm. The adsorption of the modified sepiolite to chlorobenzene was uneven and on the surface of the modified sepiolite. The adsorption dynamics was in accord with the law of the second-order equation.