Zhou L X, Wong J W
College of Resources and Environmental Sciences, Nanjing Agricultural Univ, PR China.
J Environ Qual. 2001 May-Jun;30(3):878-83. doi: 10.2134/jeq2001.303878x.
Interaction of Cu with dissolved organic matter (DOM) is an important physicochemical process affecting Cu mobility in soils. The aim of this study was to investigate the effects of DOM from anaerobically digested dewatered sludge and sludge compost on the sorption of Cu on an acidic sandy loam and a calcareous clay loam. In the presence of DOM, Cu sorption capacity decreased markedly for both soils, especially for the calcareous soil. The Cu sorption isotherms could be well described by the Freundlich equation (r2 = 0.99), and the binding intensity parameter of soils in the presence of sludge DOM was lower than compost DOM. An increase in DOM concentration significantly reduced the sorption of Cu by both soils. Within the Cu and DOM concentration range studied, the decrease in Cu sorption caused by sludge DOM was consistently greater than that of compost DOM. This might be attributed to the greater amount of hydrophobic fraction of DOM in the compost. Moreover, the reduction of Cu sorption caused by DOM was more obvious in the soil with higher pH. In addition, the sorption of Cu increased with an increase in pH for both soils without the addition of DOM, while Cu sorption in the presence of DOM was unexpectedly decreased with an increase in pH at a pH >6.8. This implied that DOM produced by sludge or other C-enriched organic wastes heavily applied on calcareous soils might facilitate the leaching loss of Cu because of the formation of soluble DOM-metal complexes.
铜与溶解有机物(DOM)的相互作用是影响土壤中铜迁移性的一个重要物理化学过程。本研究的目的是调查厌氧消化脱水污泥和污泥堆肥中的DOM对酸性砂壤土和石灰性粘壤土上铜吸附的影响。在DOM存在的情况下,两种土壤的铜吸附能力均显著下降,尤其是石灰性土壤。铜吸附等温线可用Freundlich方程很好地描述(r2 = 0.99),污泥DOM存在时土壤的结合强度参数低于堆肥DOM。DOM浓度的增加显著降低了两种土壤对铜的吸附。在所研究的铜和DOM浓度范围内,污泥DOM导致的铜吸附下降始终大于堆肥DOM。这可能归因于堆肥中DOM疏水部分的含量更高。此外,DOM导致的铜吸附减少在pH值较高的土壤中更为明显。此外,在不添加DOM的情况下,两种土壤的铜吸附均随pH值升高而增加,而在pH > 6.8时,DOM存在下的铜吸附却意外地随pH值升高而降低。这意味着大量施用于石灰性土壤的污泥或其他富含碳的有机废物产生的DOM可能会因形成可溶性DOM-金属络合物而促进铜的淋失。