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Competitive adsorption of trace elements in calcareous soils as affected by sewage sludge, poultry manure, and municipal waste compost

机译:在污水污泥,家禽粪便和城市垃圾堆肥的影响下,钙质土壤中微量元素的竞争性吸附

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The competitive adsorption of trace elements is a key issue in assessing the mobility of trace elements in calcareous soils and can be affected by disposal of sewage sludge, municipal waste, and poultry manure. The effect of municipal sewage sludge, poultry manure, and municipal waste compost on the sorption of cadmium (Cd), copper (Cu), zinc (Zn), and nickel (Ni) in surface samples of three calcareous soils was studied. As the applied concentrations increased, Cu and Cd adsorption increased, while Zn and Ni adsorption decreased in all treatments. Based on the distribution coefficient (K_d) values and proportion of increase or decrease in metal adsorption, the selectivity sequence in control and amended soils found was Cu » Cd » Ni > Zn and Cu » Cd » Zn > Ni, respectively. In general, among control and amended soils, control soils showed the highest K_d for Cd, Cu, and Ni, while sludge, poultry manure, and composted waste-amended soils had lowest K_d for Cd, Cu, and Ni, respectively. In the case of Zn, composted waste-amended and control soils had highest and lowest K_d respectively. The present experimental results indicated that the addition of organic amendments to these calcareous soils reduced the sorption of Cd, Cu, and Ni. Thus, the effects of preferential adsorption and organic matter should be considered in assessing the risk associated with applying sewage sludge, poultry manure, and composted material to calcareous soils.
机译:微量元素的竞争性吸附是评估钙质土壤中微量元素迁移率的关键问题,并可能受到污水污泥,城市废物和家禽粪便处置的影响。研究了三种钙质土壤表面样品中城市污水污泥,家禽粪便和城市垃圾堆肥对镉(Cd),铜(Cu),锌(Zn)和镍(Ni)吸附的影响。随着施用浓度的增加,在所有处理中,Cu和Cd的吸附增加,而Zn和Ni的吸附减少。根据分布系数(K_d)值和金属吸附增加或减少的比例,在对照土壤和改良土壤中的选择性顺序分别为Cu»Cd»Ni> Zn和Cu»Cd»Zn> Ni。一般而言,在对照土壤和改良土壤中,对照土壤的Cd,Cu和Ni的K_d最高,而污泥,家禽粪便和堆肥废弃物改良的土壤对Cd,Cu和Ni的K_d最低。就锌而言,堆肥改良土壤和对照土壤的K_d分别最高和最低。目前的实验结果表明,向这些钙质土壤中添加有机改性剂会降低Cd,Cu和Ni的吸附。因此,在评估与污水污泥,家禽粪便和堆肥材料施用到石灰质土壤相关的风险时,应考虑优先吸附和有机物的影响。

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