非金属矿
非金屬礦
비금속광
NON-METALLIC MINES
2013年
4期
69-72
,共4页
赵田甜%谭伟%李彬%穆凯艳%方朝%龚健康%王红斌
趙田甜%譚偉%李彬%穆凱豔%方朝%龔健康%王紅斌
조전첨%담위%리빈%목개염%방조%공건강%왕홍빈
硅藻土%氧氯化锆%吸附剂%磷%Langmuir等温模型
硅藻土%氧氯化鋯%吸附劑%燐%Langmuir等溫模型
규조토%양록화고%흡부제%린%Langmuir등온모형
diatomite%zirconium oxychloride%adsorbent%phosphorus%Langmuir isotherm adsorption
以氧氯化锆为改性剂,用共沉淀法制备硅藻土基锆吸附剂。考察了改性剂用量、固液比、改性时间及焙烧温度等制备条件的影响,探讨吸附剂投加量、pH值、时间、温度、废水的初始质量浓度对吸附性能的影响,并用XRD、FTIR对硅藻土基吸附剂进行了表征。结果表明,将钠化后的硅藻土按固液比1∶15(g/mL)与20 g/L氧氯化锆混合,共沉淀10 h,100℃下焙烧,此条件下制得的吸附剂除磷效果较好。在室温条件下,当硅藻土基吸附剂用量为0.3 g,吸附时间为90 min时,对废水中磷的吸附效果最佳,吸附较符合Langmuir等温模型。
以氧氯化鋯為改性劑,用共沉澱法製備硅藻土基鋯吸附劑。攷察瞭改性劑用量、固液比、改性時間及焙燒溫度等製備條件的影響,探討吸附劑投加量、pH值、時間、溫度、廢水的初始質量濃度對吸附性能的影響,併用XRD、FTIR對硅藻土基吸附劑進行瞭錶徵。結果錶明,將鈉化後的硅藻土按固液比1∶15(g/mL)與20 g/L氧氯化鋯混閤,共沉澱10 h,100℃下焙燒,此條件下製得的吸附劑除燐效果較好。在室溫條件下,噹硅藻土基吸附劑用量為0.3 g,吸附時間為90 min時,對廢水中燐的吸附效果最佳,吸附較符閤Langmuir等溫模型。
이양록화고위개성제,용공침정법제비규조토기고흡부제。고찰료개성제용량、고액비、개성시간급배소온도등제비조건적영향,탐토흡부제투가량、pH치、시간、온도、폐수적초시질량농도대흡부성능적영향,병용XRD、FTIR대규조토기흡부제진행료표정。결과표명,장납화후적규조토안고액비1∶15(g/mL)여20 g/L양록화고혼합,공침정10 h,100℃하배소,차조건하제득적흡부제제린효과교호。재실온조건하,당규조토기흡부제용량위0.3 g,흡부시간위90 min시,대폐수중린적흡부효과최가,흡부교부합Langmuir등온모형。
This paper adopted coprecipitation method to prepare the zirconium adsorbent based on diatomite with zirconium oxychloride as modifier. The influence of preparation conditions on the dosage of modifier, solid-to-liquid ratio, modified time and calcination temperature was investigated. The influence of adsorption performance on the adsorbent dosage, pH value,time, temperature, initial concentration of wastewater was discussed. And the zirconium adsorbent based on diatomite were characterized by XRD and FTIR. The results showed that under the condition of Na-diatomite in the ratio of 1:15 mixing with 20 g/L zirconium oxychloride, modifying 10 h,100℃calcination with co-precipitation method, the adsorbent possesses higher removal rate for phosphorus. At room temperature, the zirconium adsorbent based on diatomite has good adsorption effect on phosphorus on the condition of 0.3 g of adsorbent, 90 min of adsorption time. The adsorption process corresponds with Langmuir isotherm adsorption.