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不同混种比例对白三叶和香根草锌镉富集的影响 被引量:14
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作者 杨远祥 朱雪梅 +2 位作者 邵继荣 杨占彪 程盼 《水土保持学报》 CSCD 北大核心 2014年第1期266-269,275,共5页
通过人工控制性盆栽试验研究在锌镉复合污染条件下,白三叶(Trifolium repens L.)和香根草(Vetiveria zizanioides)混种比例为白三叶单作(A),7∶1(B),3∶1(C),5∶3(D),1∶1(E),3∶5(F),1∶3(G),1∶7(H),香根草单作(I)时,2种植物对锌镉的... 通过人工控制性盆栽试验研究在锌镉复合污染条件下,白三叶(Trifolium repens L.)和香根草(Vetiveria zizanioides)混种比例为白三叶单作(A),7∶1(B),3∶1(C),5∶3(D),1∶1(E),3∶5(F),1∶3(G),1∶7(H),香根草单作(I)时,2种植物对锌镉的富集效果。结果表明,随着白三叶比例减小、香根草比例增加,2种植物的锌镉积累量、富集系数、转运系数均呈先增加后减小趋势,且受不同混种比例影响显著。当混种比例为白∶香=3∶5时,白三叶和香根草地上部分对锌积累量最高,分别达548.11,535.34mg/kg,对锌富集系数分别为2.19,2.30,转运系数为1.04,1.08。当混种比例为白∶香=5∶3时,白三叶和香根草地上部分对镉积累量最高,分别达42.14,47.52mg/kg,对镉富集系数分别为1.40,1.58,转运系数均为0.99。当混种比例为白∶香=1∶1时,香根草对锌、镉的转运系数达最大,分别为1.09,1.06;白三叶对锌、镉的转运系数也达最大,分别为1.08,1.01。由此认为,混种比例为D、E、F时,白三叶和香根草对锌镉复合污染土壤具有较好的修复效果,但富集特性有所不同,在运用中可根据需要选择这3种混种比例。 展开更多
关键词 白三叶 香根草 混种比例 锌镉复合污染 积累量 富集系数 转运系数
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Zn、Cd单一及复合污染对黑麦草根分泌物及根际Zn、Cd形态的影响 被引量:56
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作者 徐卫红 王宏信 +2 位作者 刘怀 熊治庭 Balwant Singh 《环境科学》 EI CAS CSCD 北大核心 2007年第9期2089-2095,共7页
采用根袋土培试验,研究了锌、镉单一及复合污染对重金属富集植物黑麦草生长、锌镉积累、根分泌物及根际Zn、Cd形态的影响.结果表明,锌镉共存下(8 mmol/kg Zn+2 mmol/kg Cd),黑麦草对锌、镉的吸收为协同效应;仅镉污染时(2 mmol/kg Cd),... 采用根袋土培试验,研究了锌、镉单一及复合污染对重金属富集植物黑麦草生长、锌镉积累、根分泌物及根际Zn、Cd形态的影响.结果表明,锌镉共存下(8 mmol/kg Zn+2 mmol/kg Cd),黑麦草对锌、镉的吸收为协同效应;仅镉污染时(2 mmol/kg Cd),镉对植株吸收锌为抑制效应.黑麦草吸收的锌、镉主要集中在地上部,以锌、镉复合污染时植株地上部对锌、镉的富集量最大,分别达到3 108.72、73.97 mg/kg,具有作为土壤重金属锌、镉污染植物修复材料的潜力.根际的松结合态锌、镉(交换态、碳酸盐结合态和铁锰结合态)含量大于其非根际的松结合态锌、镉含量.Cd污染和Zn、Cd复合污染的根际和非根际土壤镉形态均以交换态>碳酸盐结合态>铁锰结合态>残渣态>有机结合态.Zn污染及Zn、Cd复合污染根际和非根际土壤各锌形态以铁锰结合态>碳酸盐结合态>残渣态>有机结合态>交换态,而Cd污染的根际和非根际的锌形态则以残渣态>铁锰结合态>有机结合态>碳酸盐结合态>交换态.Zn、Cd污染促进了黑麦草根系氨基酸的分泌,降低了根际土壤的pH值,以Zn、Cd复合污染根际土壤氨基酸总量最大,分别为对照、Zn和Cd污染的1.95、1.54和1.40倍,根际土壤的pH值最低(5.18).根际氨基酸含量在重金属胁迫下明显增加,可能与黑麦草适应重金属胁迫有关.根际pH值高于非根际是根际Zn、Cd有效性大于非根际的重要原因. 展开更多
关键词 单一及复合污染 蓄积 根分泌物 形态 黑麦草
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Growth Response and Metal Accumulation of Sedum alfredii to Cd/Zn Complex-Polluted Ion Levels 被引量:22
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作者 叶海波 杨肖娥 +2 位作者 何冰 龙新宪 石伟勇 《Acta Botanica Sinica》 CSCD 2003年第9期1030-1036,共7页
Sedum alfredii Hance has been identified as a new Zn-hyperaccumulator native to China. In this study, responses and metal accumulation of S alfredii were examined under Zn/Cd complex polluted conditions. The results s... Sedum alfredii Hance has been identified as a new Zn-hyperaccumulator native to China. In this study, responses and metal accumulation of S alfredii were examined under Zn/Cd complex polluted conditions. The results showed that optimal growth of S alfredii in terms of the maximum dry matter yield was observed at Zn/Cd complex level of 500/100 mumol/L. Plant cadmium (Cd) or zinc (Zn) concentrations increased with increasing Cd or Zn supply. During the 20 d treatment, the highest Cd concentration in the leaves reached 12.1 g/kg at Zn/Cd level of 50/400 mumol/L and that of Zn in the stems was 23.2 g/kg at Zn/Cd level of 1000/50 mumol/L. The distribution of Cd in different plant parts decreased in the order: leaf > stem greater than or equal to root, whereas that of Zn was: stem > leaf greater than or equal to root. The accumulation of Cd and Zn in the shoots and roots of S. alfredii increased with the increasing of Zn/Cd supply levels, peaked at Zn/Cd levels of 250/400 and 500/100 mumol/L, respectively. The highest Cd and Zn uptake by the shoots was approximately 5 and 11 mg/plant, and was over 20 and 10 times higher than those in the roots, respectively. Zn supply at levels less than or equal to 500 mumol/L increased plant Cd concentrations, whereas high Zn supply decreased root Cd but did not affect leaf Cd concentrations in S alfredii Low Cd supply increased Zn concentration in the leaves, but Cd supply higher than 50 mumol/L considerably reduced root Zn concentrations, especially at low Zn level. These results indicate that S. alfredii can tolerate high Zn/Cd complex levels and has an extraordinary ability to hyperaccumulate not only Zn but also Cd. It could provide a new valuable plant material for understanding the mechanisms responsible for co-hyperaccumulation of Zn and Cd as well as for phytoremediation of the Cd/Zn complex polluted soils. 展开更多
关键词 complex pollution cadmium (Cd) zinc (Zn) HYPERACCUMULATION Sedum alfredii
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