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[不同有机物料对污染温室土壤中镉、铅生物有效性的影响]

[Effects of Different Organic Materials on Bio-availability of Cd, Pb in a Contaminated Greenhouse Soil].

作者信息

Zhou Gui-Yu, Jiang Hui-Min, Yang Jun-Cheng, Zhang Jian-Feng, Zhang Shui-Qin, Liang Lei

机构信息

College of Environmental Sciences, Liaoning University, Shenyang 110036, China.

National Engineering Laboratory for Improving Quality of Arable Land, Institute of Agricultural Resources and Regional Planning, Chinese Academy of Agricultural Sciences, Beijing 100081, China.

出版信息

Huan Jing Ke Xue. 2016 Oct 8;37(10):4011-4019. doi: 10.13227/j.hjkx.2016.10.045.

Abstract

A two-season soil culture experiment was continually conducted to study the effects of three organic materials,namely Danty, Peat and Biochar,respectively,on combined forms and bio-availability of cadmium (Cd) and lead (Pb) under Cd and Pb in single and combined pollution during 2014-2015. This study aimed to provide a theoretical basis for remediating greenhouse soil contaminated with heavy metals Cd and Pb using organic materials. The main results were as follows: the content of DTPA-Cd decreased significantly by 11.9%(<0.05) in the soil of Cd and Pb combined pollution with the application of danty, the total of exchangeable Cd, carbonate-bound Cd and iron-manganese oxide bound Cd was reduced by 26.4% and 34.4% in the soil, and the accumulation of Cd in shoots was significantly cut down by 32.0% and 28.0% (<0.05) respectively in Cd single and Cd and Pb combined pollution after applying danty; the content of DTPA-Pb was significantly depleted by 83.5% and 83.8%(<0.05), the total of exchangeable Pb, carbonate-bound Pb and iron-manganese oxide bound Pb was decreased by 34.5% and 13.9% in the soil and the accumulation of Pb in shoots was significantly reduced by 32.0% and 30.0% (<0.05) in Pb single and Cd and Pb combined pollution respectively as the use of danty. The content of DTPA-Cd was significantly decreased by 18.9% (<0.05) in the soil of Cd and Pb combined pollution with the use of peat, the accumulation of Cd in shoots was reduced by 38.0% and 23.4%(<0.05) in Cd single and Cd-Pb combined pollution respectively after the application of peat; The content of DTPA-Pb was significantly decreased by 2.7% and 7.2%(<0.05), the total of exchangeable Pb, carbonate-bound Pb and iron-manganese oxide bound Pb was decreased by 15.8% and 14.6% in the soil and the accumulation of Pb in shoots was significantly reduced by 12.7% and 23.4% (<0.05) respectively in Pb single and Cd and Pb combined pollution due to the application of peat. The pH value of the soil was increased by the use of biochar, the content of DTPA-Cd was reduced by 4.7% and 15.0% respectively in the soil of Cd single and Cd and Pb combined pollution, and the accumulation of Cd in shoots was significantly minified by 38.0% and 23.4% respectively in Cd single and Cd and Pb combined pollution as the application of biochar. The content of DTPA-Pb was decreased by 6.8% and 1.0% and the total of exchangeable Pb, carbonate-bound Pb and iron-manganese oxide bound Pb was cut down by 11.9% and 30.0% in the soil of Pb single and Cd and Pb combined pollution respectively by the application of biochar. The content of Cd in plant was most significantly positively correlated with the content of exchangeable Cd in soil (<0.01). The content of Pb in plant was most significantly positively correlated with the total of exchangeable Pb, carbonate-bound Pb and iron-manganese oxide bound Pb (<0.01). In summary, after the application of danty, peat and biochar, the proportion of highly active content of Cd and Pb was minified through adjusting soil pH and immobilizing Cd and Pb by means of adsorption and complexation in greenhouse soil. With the analysis of input-output, the application of danty, peat and biochar costs 4050 yuan·hm, 11250 yuan·hm and 22500 yuan·hm, respectively. Thus danty, peat and biochar could be used as effective organic agents in the remediation of Cd and Pb contaminated greenhouse soil.

摘要

2014—2015年,进行了为期两季的土壤培养试验,分别研究了丹提、泥炭和生物炭3种有机物料对镉(Cd)、铅(Pb)单一及复合污染下Cd和Pb的结合形态及生物有效性的影响。本研究旨在为利用有机物料修复重金属Cd和Pb污染的温室土壤提供理论依据。主要结果如下:在Cd和Pb复合污染土壤中施加丹提后,DTPA-Cd含量显著降低11.9%(P<0.05),土壤中交换态Cd、碳酸盐结合态Cd和铁锰氧化物结合态Cd总量分别降低26.4%和34.4%,在Cd单一污染及Cd和Pb复合污染土壤中施加丹提后,地上部Cd积累量分别显著降低32.0%和28.0%(P<0.05);施加丹提后,DTPA-Pb含量显著降低83.5%和83.8%(P<0.05),土壤中交换态Pb、碳酸盐结合态Pb和铁锰氧化物结合态Pb总量分别降低34.5%和13.9%,在Pb单一污染及Cd和Pb复合污染土壤中,地上部Pb积累量分别显著降低32.0%和30.0%(P<0.05)。在Cd和Pb复合污染土壤中施加泥炭后,DTPA-Cd含量显著降低18.9%(P<0.05),在Cd单一污染及Cd-Pb复合污染土壤中施加泥炭后,地上部Cd积累量分别降低38.0%和23.4%(P<0.05);施加泥炭后,DTPA-Pb含量显著降低2.7%和7.2%(P<0.05),土壤中交换态Pb、碳酸盐结合态Pb和铁锰氧化物结合态Pb总量分别降低15.8%和14.6%,在Pb单一污染及Cd和Pb复合污染土壤中,地上部Pb积累量分别显著降低12.7%和23.4%(P<0.05)。施用生物炭提高了土壤pH值,在Cd单一污染及Cd和Pb复合污染土壤中,DTPA-Cd含量分别降低4.7%和15.0%,地上部Cd积累量分别显著降低38.0%和23.4%。在Pb单一污染及Cd和Pb复合污染土壤中,施用生物炭后DTPA-Pb含量分别降低6.8%和1.0%,交换态Pb、碳酸盐结合态Pb和铁锰氧化物结合态Pb总量分别降低11.9%和30.0%。植物中Cd含量与土壤中交换态Cd含量呈极显著正相关(P<0.01)。植物中Pb含量与交换态Pb、碳酸盐结合态Pb和铁锰氧化物结合态Pb总量呈极显著正相关(P<0.01)。综上所述,施加丹提、泥炭和生物炭后,通过调节土壤pH值及吸附、络合作用固定Cd和Pb,降低了温室土壤中Cd和Pb高活性含量的比例。通过投入产出分析,施用丹提、泥炭和生物炭的成本分别为4050元·hm、11250元·hm和22500元·hm。因此,丹提、泥炭和生物炭可作为修复Cd和Pb污染温室土壤的有效有机物料。

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