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湿地介质高炉矿渣磷吸附与再生能力研究
摘要点击 2419  全文点击 2579  投稿时间:2007-10-27  修订日期:2008-05-20
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中文关键词  高炉矿渣    吸附  再生  人工湿地  柱试验  批试验
英文关键词  electric arc furnace steel slag  phosphorus  adsorption  regeneration  constructed wetland  column experiment  batch experiment
作者单位
翟丽华 清华大学环境科学与工程系北京100084 
何连生 中国环境科学研究院北京100012 
席北斗 中国环境科学研究院北京100012 
陈月 北京化工大学环境工程系北京100029 
孟睿 北京化工大学环境工程系北京100029 
霍守亮 中国环境科学研究院北京100012 
刘鸿亮 中国环境科学研究院北京100012 
中文摘要
      通过批实验和长期动态柱实验评价了湿地介质高炉矿渣吸附和截留P能力,并利用水位落干操作提高P吸附再生能力.结果表明,长期柱实验可以精确评价矿渣吸附磷的能力,矿渣磷截留能力达到1.65 g/kg;湿地保持落干4周,磷吸附能力再生,吸附能力提高58%.矿渣磷吸附饱和后磷组分分析得到树脂提取磷(P1)占13%,Fe-P 39%,Al-P 21%,Ca-P 13%(1 mol/L HCl),Ca-P 14%(热浓HCl).吸附饱和前后X射线荧光衍射分析介质成分发现:K2O和P2O5分别提高3倍和1.7倍,Al2O3和FeO提高8%.高炉矿渣吸附特性的研究表明该材料能长期有效去除P,适当干湿交替操作可以延长人工湿地运行年限.
英文摘要
      The long-term phosphorus (P) adsorption and retention capacities of electric arc furnace (EAF) steel slag materials derived from one batch and a 278-d column experiments with a synthetic P solution were compared .The investigations of the regeneration of the P adsorption capacity by water level decrease was conducted. It was revealed column experiment on a long-term basis can determine P saturation of EAF accurately. And the results can be used for realistic estimations of constructed wetland systems (CWS) longevity. EAF slag showed a high affinity for P, reaching a saturation value of 1.65 g/kg. Regeneration experiment of the P adsorbing capacity by this material showed that, after 4 weeks of water level decrease, EAF steel slag was able to increase its initial P adsorption capacity to 2.65 g/kg. A sequential P fractionation experiment was performed to quantify the proportion of P bound to mineral compounds in EAF. From the most loosely bound to the most strongly bound P fraction, P1 was associated with resin extractable(13%), Fe extractable (0.5 mol/L Na2CO3, 39%), Al extractable (0.1 mol/L NaOH, 21%), Ca extractable (1 mol/L HCl, 13%), and Ca in a stable residual pool (concentrated hot HCl, 14%). X-ray fluorescence analyses of EAF steel slag chemical composition revealed that the continuous application of a P solution resulted in 300% and 170% increases in K2O and P2O5, respectively. Al2O3 and FeO increased by 8%,while the portion of CaO remained unchanged. The investigated properties (P retention potential, regeneration of P adsorption, P fractionation) provide useful data about the suitability of slag material as a media for longterm P removal and dry-wet operation can improve P retention capacity of EAF to prolong the longevity of full-scale CWS.

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