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Effect of amendments on chemical immobilization of heavy metals in sugar mill contaminated soils

机译:改良剂对糖厂污染土壤中重金属化学固定化的影响

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A bulk soil sample collected from the vicinity of PSM (Premier Sugar Mill) Mardan was amended with diammonium phosphate (DAP), triple super phosphate (TSP), Farm Yard Manure (FYM) and poultry manure (PM) in 1.5 kg soil in a 2 L plastic pot. Both DAP and TSP were added at 230 mg kg-1 (460 kg ha-1) soil whereas the organic amendments (FYM and PM) were added at the rate of 10% by weight of soil. The air dried samples in pots were brought to field moisture content (0.33 bar water content) by the addition of either HIE (Hayatabad Industrial Estate) or PSM in two separate sets of experiments. The experimental pots were arranged in randomized complete design with three replicates under laboratory conditions during March to May (Temperature varying between 25 to 30 °C). Treated and control pots were incubated for 90 days al 0.33 bar ca 25% moisture and the moisture deficit during the incubation time was adjusted by adding PSM and HIE effluents in their respective set of experimental pots. Soil samples were collected after 15, 30, 45 and 90 d to determine the effect of amendments on AB-DTPA extractable metals. The results showed that AB-DTPA extractable Cd, Or, Cu, Ni and Cd increased significantly with lime and the maximum values were noted after 90 days incubation whereas the Fe, Mn and Zn content in soil increased with time but the increase was not significant. It was further noted that the increase over time in metal was not pronounced when supplied with amendments indicating their ability to chemically stabilize it compared to unamended soils. Higher values of all the heavy metals were noted in unamended soil. By comparing the different amendments, it was observed that FYM was effective in reducing the extractability/phytoavailability of all the metals under study except Pb whereby DAP was most effective as a stabilizing agent in the soil. It was concluded that in calcareous soil, FYM and DAP can be used to reduce the risk of phytotoxicity of heavy metals in contaminated soil or using wastewater for irrigation.
机译:在PSM(Premier Sugar Mill)Mardan附近收集的大量土壤样品中,将磷酸二铵(DAP),三重超磷酸盐(TSP),农场围场粪便(FYM)和家禽粪便(PM)修改为1.5千克土壤2升塑料锅。 DAP和TSP均以230 mg kg-1(460 kg ha-1)的土壤添加,而有机改性剂(FYM和PM)的添加量为土壤重量的10%。通过在两组独立的实验中添加HIE(Hayatabad工业园区)或PSM,将花盆中风干的样品的水分含量提高至0.33 bar。在3月到5月(温度在25到30°C之间变化)下,在实验室条件下,将实验盆安排成随机完整设计,一式三份。将处理过的和对照的罐在0.33 bar(约25%)的水分中孵育90天,并通过在各自的实验罐中添加PSM和HIE流出物来调节孵育期间的水分亏缺。在15、30、45和90天后收集土壤样品,以确定改良剂对AB-DTPA可萃取金属的影响。结果表明,AB-DTPA提取的镉,或,铜,镍和镉随石灰的增加而显着增加,在培养90天后达到最大值,而土壤中的铁,锰和锌的含量随时间增加,但增加并不明显。 。还应注意的是,当提供修正剂时,金属的经时增加并不明显,这表明它们与未经改良的土壤相比具有化学稳定作用。在未改良的土壤中,所有重金属的含量较高。通过比较不同的修正,可以发现FYM可以有效地降低除Pb以外的所有被研究金属的可萃取性/植物利用率,其中DAP在土壤中最有效地作为稳定剂。结论是,在石灰质土壤中,FYM和DAP可用于减少污染土壤或使用废水灌溉中重金属的植物毒性风险。

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