Bes C, Mench M
UMR BIOGECO INRA 1202, Ecology of Communities, University of Bordeaux 1, Bât B8 RdC Est, gate 002, Avenue des Facultés, F-33405 Talence, France.
Environ Pollut. 2008 Dec;156(3):1128-38. doi: 10.1016/j.envpol.2008.04.006. Epub 2008 May 19.
Five organic matters, three phosphate compounds, zerovalent iron grit (ZVIG, 2% by soil weight), two alkaline compounds, and two commercial formulations were incorporated, singly and some combined with ZVIG, into a highly Cu-contaminated topsoil (Soil P7, 2600 mg Cu kg(-1)) from a wood treatment facility. Formulations and two composts were also singly incorporated into a slightly Cu-contaminated topsoil (Soil P10, 118 mg Cu kg(-1)) from the facility surrounding. This aimed to reduce the labile pool of Cu and its accumulation in beans cultivated on potted soils in a climatic chamber. Lowest Cu concentration in soil solution occurred in P7 soils amended with activated carbon (5%) and ZVIG, singly and combined. Basic slag (3.9%) and compost of sewage sludge (5%) combined with ZVIG promoted shoot production and limited foliar Cu accumulation. For amended P10 soils, no changes occurred in soil solution and foliar Cu concentrations, but one compost increased shoot production.
将五种有机物、三种磷酸盐化合物、零价铁砂(ZVIG,占土壤重量的2%)、两种碱性化合物和两种商业配方单独或部分与ZVIG混合,添加到来自木材处理设施的高度铜污染表土(土壤P7,2600毫克铜/千克)中。还将配方和两种堆肥单独添加到该设施周边轻度铜污染的表土(土壤P10,118毫克铜/千克)中。这旨在减少盆栽土壤中铜的活性库及其在气候箱中种植的豆类中的积累。在单独或混合添加了活性炭(5%)和ZVIG的P7土壤中,土壤溶液中的铜浓度最低。碱性炉渣(3.9%)和污水污泥堆肥(5%)与ZVIG混合促进了枝条生长并限制了叶片中铜的积累。对于改良后的P10土壤,土壤溶液和叶片中的铜浓度没有变化,但一种堆肥增加了枝条生长。