农业环境科学学报
農業環境科學學報
농업배경과학학보
Journal of Agro-Environment Science
2009年
11期
2270-2276
,共7页
贾琳%杨林生%欧阳竹%王五一%李海蓉%李永华%虞江萍
賈琳%楊林生%歐暘竹%王五一%李海蓉%李永華%虞江萍
가림%양림생%구양죽%왕오일%리해용%리영화%우강평
山东省禹城市%农田土壤%重金属%潜在生态风险
山東省禹城市%農田土壤%重金屬%潛在生態風險
산동성우성시%농전토양%중금속%잠재생태풍험
Yucheng City%farmland soil%heavy metals%potential ecological risk
采用野外采样和室内分析相结合的方法,以典型农业区山东禹城的农田表层土壤(0-20 cm)为研究对象,分析了土壤中重金属Cr、Ni、Pb、As、Hg、Cd、Cu和Zn的含量,探讨了土壤中重金属的含量与不同人类活动的关系并进行了潜在生态风险评估.结果显示,8种重金属的含量均超过黄河下游潮土区的背景值.潜在生态风险评估表明,当地的农田土壤Cr、Ni、Pb、As、Cu、zn有轻度的生态风险,Hg和Cd存在较大的生态风险.城市化进程、畜禽养殖和污灌是造成十壤Cd高生态风险的主要因素,城市化进程和污灌也是造成土壤Hg高生态风险的主要因素.禹城各区域土壤受8种重金属的综合潜在生态风险程度大小依次为城郊农田>污灌农田>典型施肥农田>井灌农田>引黄灌农田,不同人类活动区域土壤Cd生态风险和8种重金属的综合潜在生态风险存在显著差异.
採用野外採樣和室內分析相結閤的方法,以典型農業區山東禹城的農田錶層土壤(0-20 cm)為研究對象,分析瞭土壤中重金屬Cr、Ni、Pb、As、Hg、Cd、Cu和Zn的含量,探討瞭土壤中重金屬的含量與不同人類活動的關繫併進行瞭潛在生態風險評估.結果顯示,8種重金屬的含量均超過黃河下遊潮土區的揹景值.潛在生態風險評估錶明,噹地的農田土壤Cr、Ni、Pb、As、Cu、zn有輕度的生態風險,Hg和Cd存在較大的生態風險.城市化進程、畜禽養殖和汙灌是造成十壤Cd高生態風險的主要因素,城市化進程和汙灌也是造成土壤Hg高生態風險的主要因素.禹城各區域土壤受8種重金屬的綜閤潛在生態風險程度大小依次為城郊農田>汙灌農田>典型施肥農田>井灌農田>引黃灌農田,不同人類活動區域土壤Cd生態風險和8種重金屬的綜閤潛在生態風險存在顯著差異.
채용야외채양화실내분석상결합적방법,이전형농업구산동우성적농전표층토양(0-20 cm)위연구대상,분석료토양중중금속Cr、Ni、Pb、As、Hg、Cd、Cu화Zn적함량,탐토료토양중중금속적함량여불동인류활동적관계병진행료잠재생태풍험평고.결과현시,8충중금속적함량균초과황하하유조토구적배경치.잠재생태풍험평고표명,당지적농전토양Cr、Ni、Pb、As、Cu、zn유경도적생태풍험,Hg화Cd존재교대적생태풍험.성시화진정、축금양식화오관시조성십양Cd고생태풍험적주요인소,성시화진정화오관야시조성토양Hg고생태풍험적주요인소.우성각구역토양수8충중금속적종합잠재생태풍험정도대소의차위성교농전>오관농전>전형시비농전>정관농전>인황관농전,불동인류활동구역토양Cd생태풍험화8충중금속적종합잠재생태풍험존재현저차이.
Heavy metal pollutions in the soil of farmland are regarded as serious threats to rural environment in China. Human activities, such as intensive livestock, sewage irrigation, large amounts of agrochemicals input and the rapid urbanization are proved to be the main sources of the heavy metals. Yucheng City is located in Huang-Huai-Hai plain, the largest alluvial plain and important agricultural area in China. The concentrations of Cr, Ni, Pb, As, Hg, Cd, Cu and Zn in the topsoil(0~20 cm) of the farmland in Yucheng City were analyzed, and their relations with different human activities were discussed. The potential ecological risks of these heavy metals were assessed. Furthermore, the heavy metal concentrations in wheat grown in the sampled soils were also collected and analyzed to compare those in soils. The results showed that the concentrations of the eight heavy metals in all of the soil samples were far lower than those critical values of the National Soil Quality Standard (Grade Ⅱ) except Cd, while they were all higher than that of the backgrounds in the soils of the alluvial plain of the lower Yellow River. The rapid urbanization, sewage irrigation and long-time typical manure usage were responsible for the high value of heavy metals in soils. The potential ecological risks of Cr、Ni、Pb、As、Cu、Zn were at a lower level while that of Hg and Cd were at a higher level. The higher e-cological risk of soil Cd was mainly derived from the rapid urbanization, intensive livestock and sewage irrigation. And that of soil Hg was located in the suburb of Yucheng City and the area irrigated with sewage from Tuhai River. The potential ecological hazard index of the eight heavy metals in soils followed the sequence as suburban farmland>farmland irrigated with sewage>farmland with typical manure used>farm-land irrigated with groundwater>farmland irrigated with the Yellow River. Hg and Cd concentrations in some wheat samples were as high as or even higher than that of critical values of the National Standard (GB2715-2005).