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EFFECT OF REACTION TIME ON PB REMOVAL FROM ALLOPHANIC VOLCANIC ASH SOIL BY ACID-WASHING

机译:反应时间对酸洗去除异戊二烯火山灰土壤中PB的影响

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References(20) Cited-By(1) To investigate the effects of reaction time on removal of heavy metals in acid-washing, we conducted acid-washing using hydrochloric acid on allophanic and smectitic soils contaminated with lead (Pb). The Pb removal percentage in the smectitic soil increased with reaction time. On the other hand, in the allophanic soil, it reached to a maximum at around 10 min, and then decreased monotonically. This suggests that effective removal of heavy metals from allophanic volcanic ash soils can be achieved by separating the washing solution from the soil as quickly as possible. The pH of the washing solutions of the two soils were similar just after the acid addition but it rose much more quickly in the allophanic soil than in the smectitic soil. Under comparable conditions, the pH of the washing solution and Al concentration were always far higher for the allophanic soil than for the smectitic soil, probably due to the higher solubility of allophane and related non-crystalline aluminum silicate in the former soil. These experimental results indicate that the Pb that was once released from allophane was re-adsorbed via surface complexation as a result of pH increase.
机译:参考文献(20)Cited-By(1)为了研究酸洗过程中反应时间对去除重金属的影响,我们使用盐酸对被铅(Pb)污染的同种异相和近生土壤进行了酸洗。钝化土壤中铅的去除率随反应时间的增加而增加。另一方面,在同素异形土壤中,它在10分钟左右达到最大值,然后单调下降。这表明,通过尽快从土壤中分离洗涤溶液,可以有效地去除同素异形火山灰土壤中的重金属。刚加入酸后,两种土壤的洗涤溶液的pH值相似,但在同色系土壤中的升高速度比近渗土壤中的升高。在可比的条件下,同种异体土壤的洗涤溶液的pH值和Al浓度始终远高于近石质土壤,这可能是由于原石土壤和相关的非晶态硅酸铝在原土壤中的溶解度更高。这些实验结果表明,由于pH升高,曾经从别铝烷中释放出来的Pb通过表面络合而重新吸附。

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