以巢湖沉积物为研究对象,利用BCR(European Communities Bureau of Reference)连续提取法分析了沉积物样品中Zn、Cu、Pb、Cd、Mn赋存特征,分为可交换态及碳酸盐结合态、铁锰氧化物结合态、有机物及硫化物结合态和残渣态。结果表明:南淝...以巢湖沉积物为研究对象,利用BCR(European Communities Bureau of Reference)连续提取法分析了沉积物样品中Zn、Cu、Pb、Cd、Mn赋存特征,分为可交换态及碳酸盐结合态、铁锰氧化物结合态、有机物及硫化物结合态和残渣态。结果表明:南淝河入湖区S1采样点五种金属总量都达到最高,兆河入湖区S2采样点金属总量浓度最低。五种金属中锌和锰的质量较高,重金属回收率分别为:锌(93%),铜(92%),铅(90%),镉(92%),锰(93%)。Cu以残渣态为主(54.7%),Zn以铁锰氧化物结合态为主(40.5%),Pb以有机物、硫化物结合态为主(35.3%),Cd和Mn以可交换态及碳酸盐结合态为主,所占比例分布为41.9%、58.6%。研究表明,应用BCR连续提取法有助于确定沉积物中重金属的污染状况和潜在释放能力。展开更多
Four minerals, agricultural limestone (AL), rock phosphate (RP), palygorskite (PG), and calcium magnesium phosphate (CMP), were evaluated by means of chemical fractions of heavy metals in soils and concentrati...Four minerals, agricultural limestone (AL), rock phosphate (RP), palygorskite (PG), and calcium magnesium phosphate (CMP), were evaluated by means of chemical fractions of heavy metals in soils and concentrations of heavy metals in leachates from columns to determine their ability to stabilize heavy metals in polluted urban soils. Two urban soils (calcareous soil and acidic soil) polluted with cadmium, copper, zinc and lead were selected and amended in the laboratory with the mineral materials) for 12 months. Results indicated that application of the mineral materials reduced exchangeable metals in the sequence of Pb, Cd Cu Zn. The reduction of exchangeable fraction of heavy metals in the soils amended with different mineral materials followed the sequence of CMP, PG AL RP. Reductions of heavy metals leached were based on comparison with cumulative totals of heavy metals eluted through 12 pore volumes from an untreated soil. The reductions of the metals eluted from the calcareous soil amended with the RP, AL, PG and CMP were 1.98%, 38.89%, 64.81% and 75.93% for Cd, 8.51%, 40.42%, 60.64% and 55.32% for Cu, 1.76%, 52.94%, 70.00% and 74.12% for Pb, and 28.42%, 52.74%, 64.38% and 49.66% for Zn. Those from the acidic soil amended with the CMP, PG, AL, and RP were 25.65%, 68.06%, 78.01% and 79.06% for Cd, 26.56%, 49.64%, 43.40% and 34.68% for Cu, 44.44%, 33.32%, 61.11% and 69.44% for Pb, and 18.46%, 43.77%, 41.98% and 40.68% for Zn. The CMP and PG treatments were superior to the AL and RP for stabilizing heavy metals in the polluted urban soils.展开更多
文摘以巢湖沉积物为研究对象,利用BCR(European Communities Bureau of Reference)连续提取法分析了沉积物样品中Zn、Cu、Pb、Cd、Mn赋存特征,分为可交换态及碳酸盐结合态、铁锰氧化物结合态、有机物及硫化物结合态和残渣态。结果表明:南淝河入湖区S1采样点五种金属总量都达到最高,兆河入湖区S2采样点金属总量浓度最低。五种金属中锌和锰的质量较高,重金属回收率分别为:锌(93%),铜(92%),铅(90%),镉(92%),锰(93%)。Cu以残渣态为主(54.7%),Zn以铁锰氧化物结合态为主(40.5%),Pb以有机物、硫化物结合态为主(35.3%),Cd和Mn以可交换态及碳酸盐结合态为主,所占比例分布为41.9%、58.6%。研究表明,应用BCR连续提取法有助于确定沉积物中重金属的污染状况和潜在释放能力。
基金supported by the National Natural Science Foundation of China(No.40771090,41071145)the National Basic Research Program(973)of China(No.2005CB121104)
文摘Four minerals, agricultural limestone (AL), rock phosphate (RP), palygorskite (PG), and calcium magnesium phosphate (CMP), were evaluated by means of chemical fractions of heavy metals in soils and concentrations of heavy metals in leachates from columns to determine their ability to stabilize heavy metals in polluted urban soils. Two urban soils (calcareous soil and acidic soil) polluted with cadmium, copper, zinc and lead were selected and amended in the laboratory with the mineral materials) for 12 months. Results indicated that application of the mineral materials reduced exchangeable metals in the sequence of Pb, Cd Cu Zn. The reduction of exchangeable fraction of heavy metals in the soils amended with different mineral materials followed the sequence of CMP, PG AL RP. Reductions of heavy metals leached were based on comparison with cumulative totals of heavy metals eluted through 12 pore volumes from an untreated soil. The reductions of the metals eluted from the calcareous soil amended with the RP, AL, PG and CMP were 1.98%, 38.89%, 64.81% and 75.93% for Cd, 8.51%, 40.42%, 60.64% and 55.32% for Cu, 1.76%, 52.94%, 70.00% and 74.12% for Pb, and 28.42%, 52.74%, 64.38% and 49.66% for Zn. Those from the acidic soil amended with the CMP, PG, AL, and RP were 25.65%, 68.06%, 78.01% and 79.06% for Cd, 26.56%, 49.64%, 43.40% and 34.68% for Cu, 44.44%, 33.32%, 61.11% and 69.44% for Pb, and 18.46%, 43.77%, 41.98% and 40.68% for Zn. The CMP and PG treatments were superior to the AL and RP for stabilizing heavy metals in the polluted urban soils.