宗 超,张 莹,李 英,高 峰,吕 芳,姚丽燕,赵春晖,孙 煊,隋福顺.北京地区池塘底泥中重金属分布及其污染评价[J].食品安全质量检测学报,2016,7(3):1056-1062
北京地区池塘底泥中重金属分布及其污染评价
Distribution and pollution assessment of heavy metals in sediments of aquaculture ponds in Beijing area
投稿时间:2016-02-29  修订日期:2016-03-09
DOI:
中文关键词:  底泥  重金属  养殖池塘  污染评价
英文关键词:sediments  heavy metal  aquaculture ponds  pollution assessment
基金项目:
作者单位
宗 超 北京市水产技术推广站 
张 莹 北京市水产技术推广站 
李 英 北京市水产技术推广站 
高 峰 北京市水产技术推广站 
吕 芳 北京市水产技术推广站 
姚丽燕 北京市水产技术推广站 
赵春晖 北京市水产技术推广站 
孙 煊 北京市水产技术推广站 
隋福顺 北京市水产技术推广站 
AuthorInstitution
ZONG Chao Aquatic Product Technology Promotion Department of BJ,Beijing 
ZHANG Ying Aquatic Product Technology Promotion Department of BJ,Beijing 
LI Ying Aquatic Product Technology Promotion Department of BJ,Beijing 
GAO Feng Aquatic Product Technology Promotion Department of BJ,Beijing 
LV Fang Aquatic Product Technology Promotion Department of BJ,Beijing 
YAO Li-yan Aquatic Product Technology Promotion Department of BJ,Beijing 
ZHAO Chun-hui Aquatic Product Technology Promotion Department of BJ,Beijing 
SUN Xuan Aquatic Product Technology Promotion Department of BJ,Beijing 
SUI Fu-shun Aquatic Product Technology Promotion Department of BJ,Beijing 
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中文摘要:
      目的 针对北京地区17家养殖池塘底泥中重金属污染状况进行调查及评价重金属生态风险, 为水产养殖环境提供理论依据并指导生产。方法 使用原子吸收分光光度法测定底泥中Cu、Zn、Cr、Pb、Cd含量, 用原子荧光分光光度法测定底泥中Hg、As含量; 采用单项污染指数、综合污染指数法及Hakanson潜在生态风险评价方法对养殖池塘底泥中重金属的污染状况分别进行评价。结果 17家池塘底泥中重金属Cu、Zn、Cr、Pb、Cd、As的平均含量分别为17.85、50.27、33.09、14.50、0.06和1.98 mg/kg(均以湿基计), Hg未检出; Zn、Pb、Cd、Hg和As处于安全等级, Cu污染处于警戒线, Cr污染处于轻度污染; 底泥中重金属的潜在生态风险顺序依次Cd>Cu>Pb>As>Cr>Zn, 潜在生态风险危害程度轻微。结论 北京地区17家养殖场池塘底泥中重金属含量的蓄积对养殖水产品质量影响较小, 适宜水产养殖。
英文摘要:
      Objective To investigate 7 kinds of representative heavy metals distribution and analyze the potential ecological risk of heavy metals in the sediments of aquaculture ponds in Beijing area in order to provide references for aquaculture environment rationally. Methods The contents of Cu, Zn, Cr, Pb, and Cd were determined by atomic absorption spectroscopy in sediments, and the contents of Hg and As were determined by atomic fluorescence spectrum. The ecological risk assessment was evaluated using single pollution index, Nemerow integrated index and Hakanson potential ecological risk analysis. Results The average content results of Cu, Zn, Cr, Pb, Cd, and As were 17.85, 50.27, 33.09, 14.50, 0.06 and 1.98 mg/kg, respectively, and Hg was not detected. Zn, Pb, Cd, Hg, and As in the sediments of aquaculture ponds were at the safe and clean level, while Cu was at alert level and Cr was at slightly polluted level. The potential ecological risk of heavy metals ranked as Cd>Cu>Pb>As>Cr>Zn, and all of the heavy metals in sediments indicated a mild polluting level. Conclusion The accumulation of heavy metals content have little impact on the quality of aquaculture products in the 17 representative sediments of aquaculture ponds and they are suitable for aquaculture.
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