Laboratory batch experiments were conducted to study arsenic (As) removal from a naturally contaminated soil using phosphoric acid (H3PO4) and potassium dihydrogen phosphate (KHEPO4). Both H3PO4 and KHEPO4 prove...Laboratory batch experiments were conducted to study arsenic (As) removal from a naturally contaminated soil using phosphoric acid (H3PO4) and potassium dihydrogen phosphate (KHEPO4). Both H3PO4 and KHEPO4 proved to reduce toxicity of the soil in terms of soil As content, attaining more than 20% As removal at a concentration of 200 mmol/L. At the same time, acidification of soil and dissolution of soil components (Ca, Mg, and Si) resulted from using these two extractants, especially H3PO4. The effectiveness of these two extractants could be attributed to the replacement of As by phosphate ions (PO4^3-). The function of H3PO4 as an acid to dissolve soil components had little effects on As removal. KH2PO4 almost removed as much As as H3PO4, but it did not result in serious damage to soils, indicating that it was a more promising extractant. The results of a kinetic study showed that As removal reached equilibrium after incubation for 360 rain, but dissolution of soil components, especially Mg and Ca, was very rapid. Therefore dissolution of soil components would be inevitable if As was further removed. Elovich model best described the kinetic data of As removal among the four models used in the kinetic study.展开更多
为了评价生物法浸取电解锰渣中锰的可行性,利用锰渣土壤中筛选出的2种锰抗性强的微生物Serratiasp.和Fusariumsp.浸取电解锰渣中的锰,并采用优化的BCR(European Commun ity Bureau of Reference)连续萃取方案对浸取前后的金属锰进行形...为了评价生物法浸取电解锰渣中锰的可行性,利用锰渣土壤中筛选出的2种锰抗性强的微生物Serratiasp.和Fusariumsp.浸取电解锰渣中的锰,并采用优化的BCR(European Commun ity Bureau of Reference)连续萃取方案对浸取前后的金属锰进行形态分析,研究其浸出率和浸取前后锰的形态变化特征。同时考察了3种萃取剂EDTA、HNO3和CaC l2对锰的萃取效率及萃取后金属锰的形态变化。研究结果表明,Serratiasp.和Fusariumsp.对锰都表现出一定的浸取能力,Fu-sariumsp.的浸取能力尤为显著,3 d后锰浸出率达到56.5%,为锰污染的微生物治理和资源化利用提供科学依据。3种萃取剂对锰的浸取效果为EDTA>HNO3>CaC l2,平均萃取效率依次为50.0%、28.8%和21.2%。浸取前后,酸溶解态锰所占比例变化较显著,说明酸溶解态锰是比较容易浸取的形态。展开更多
基金This work was supported by the National Natural Science Foundation of China(No.20677080,20477055).
文摘Laboratory batch experiments were conducted to study arsenic (As) removal from a naturally contaminated soil using phosphoric acid (H3PO4) and potassium dihydrogen phosphate (KHEPO4). Both H3PO4 and KHEPO4 proved to reduce toxicity of the soil in terms of soil As content, attaining more than 20% As removal at a concentration of 200 mmol/L. At the same time, acidification of soil and dissolution of soil components (Ca, Mg, and Si) resulted from using these two extractants, especially H3PO4. The effectiveness of these two extractants could be attributed to the replacement of As by phosphate ions (PO4^3-). The function of H3PO4 as an acid to dissolve soil components had little effects on As removal. KH2PO4 almost removed as much As as H3PO4, but it did not result in serious damage to soils, indicating that it was a more promising extractant. The results of a kinetic study showed that As removal reached equilibrium after incubation for 360 rain, but dissolution of soil components, especially Mg and Ca, was very rapid. Therefore dissolution of soil components would be inevitable if As was further removed. Elovich model best described the kinetic data of As removal among the four models used in the kinetic study.
文摘为了评价生物法浸取电解锰渣中锰的可行性,利用锰渣土壤中筛选出的2种锰抗性强的微生物Serratiasp.和Fusariumsp.浸取电解锰渣中的锰,并采用优化的BCR(European Commun ity Bureau of Reference)连续萃取方案对浸取前后的金属锰进行形态分析,研究其浸出率和浸取前后锰的形态变化特征。同时考察了3种萃取剂EDTA、HNO3和CaC l2对锰的萃取效率及萃取后金属锰的形态变化。研究结果表明,Serratiasp.和Fusariumsp.对锰都表现出一定的浸取能力,Fu-sariumsp.的浸取能力尤为显著,3 d后锰浸出率达到56.5%,为锰污染的微生物治理和资源化利用提供科学依据。3种萃取剂对锰的浸取效果为EDTA>HNO3>CaC l2,平均萃取效率依次为50.0%、28.8%和21.2%。浸取前后,酸溶解态锰所占比例变化较显著,说明酸溶解态锰是比较容易浸取的形态。