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咸水浸泡对珠江口滩涂围垦土壤重金属的去除效果 被引量:3

Heavy metal removal in reclaimed tidal flat soil from the Pearl River estuary by immersion in saline water
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摘要 利用浸泡离心的方法,通过室内模拟实验,研究了浸泡时间、NaCl溶液浓度对土壤中6种重金属去除效果的影响,同时测定了NaCl浸泡前后土壤中重金属的形态变化.结果表明,浸泡时间为60d时达到最大去除率,分别为Cd30.3%、Zn22.0%、Pb9.4%、Cu8.0%、Cr12.6%、Ni9.9%;NaCl浓度为16g/L时达到最大去除率,分别为Cd41.9%、Zn19.9%、Pb9.3%、Cu6.3%、Cr14.8%、Ni16.8%.重金属形态分析显示,NaCl浸泡能有效去除交换态、碳酸盐结合态和氧化物结合态的重金属,而对有机态和残渣态的重金属作用效果不明显. An experiment was conducted to remove heavy metals in reclaimed tidal flat soil from the Pearl River estuary by immersion in NaCl solution.The effects of immersion durations and NaCl concentrations on the removal of six heavy metals were examined.The chemical forms of heavy metals in soil before and after immersion were also determined.Removal rate of heavy metals was the maximum at 60d or NaCl 16g/L immersion,being 30.3% for Cd,9.4% for Pb,8.0% for Cu,22.0% for Zn,12.6% for Cr and 9.9% for Ni,and 41.9% for Cd,9.3% for Pb,6.3% for Cu,19.9% for Zn,14.8% for Cr and 16.8% for Ni,respectively.Speciation changes of heavy metals in the treated soil indicated that NaCl was effective in removing the exchangeable,carbonate and oxide forms of heavy metals,but ineffective for their organic and residual forms.
出处 《中国环境科学》 EI CAS CSCD 北大核心 2010年第2期246-250,共5页 China Environmental Science
基金 国家自然科学基金资助项目(40871154 U0833002) 广东省自然科学基金资助项目(07005931)
关键词 重金属去除 咸水 浸泡 化学形态 heavy metal removal saline water immerse chemical form
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参考文献17

  • 1崔伟中.珠江河口滩涂湿地的问题及其保护研究[J].湿地科学,2004,2(1):26-30. 被引量:35
  • 2刘岳峰,韩慕康,邬伦,三村信男.珠江三角洲口门区近期演变与围垦远景分析[J].地理学报,1998,53(6):492-500. 被引量:40
  • 3付红波,李取生,骆承程,陈连运.珠三角滩涂围垦农田土壤和农作物重金属污染[J].农业环境科学学报,2009,28(6):1142-1146. 被引量:27
  • 4Fitzgerald E J,Caffrey J M,Nesaratnam S T,et al.Copper and lead concentrations in salt marsh plants on the Suir Estuary,Ireland[J].Environmental Pollution,2003,123:67-74.
  • 5Manousaki E,Kadukova J,Papadantunakis N,et al.Phytoextraction and phytoexcretion of Cd by the leaves of Tamarix smymensis growing on contaminated non-saline and saline soils[J].Environmental Research,2008,106:326-332.
  • 6Muhling K H,Lauchli A.Interaction of NaCl and Cd stress on compartmentation pattern of cations,antioxidant enzymes and proteins in leaves of two wheat genotypes differing in salt tolerance[J].Plant and Soil,2003,253:219-231.
  • 7Comino E,Whiting S N,Neumann P M,et al.Salt (NaCI) tolerance in the Ni hyperaccumulator Alyssum murale and the Zn hyperaccumulator Thlaspi caerulescens[J].Plant and Soil,2005,270:91-99.
  • 8Speelmans M,Vanthuyne D R J,Lock K,et al.Influence of flooding,salinity and inundation time on the binavailability of metals in wetlands[J].Science of the Total Environment,2007,380:144-153.
  • 9杨林.珠三角咸潮的形成机制及防范措施[EB/OL].http://www.hwcc.com.cn.2005 06-04.
  • 10Tessier A,Campbell P G C,Bissun M.Sequential extraction procedure for the speciation of particulate trace metals[J].Analytical Chemistry,1979,51:844-851.

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