INFLUENCES OF SOIL PROPERTIES AND LEACHING ON COPPER TOXICITY TO BARLEY ROOT ELONGATION

文献类型: 外文期刊

第一作者: Li, Bo

作者: Li, Bo;Ma, Yibing;Liu, Jifang;Ma, Yibing;Mclaughlin, Mike J.;Kirby, Jason K.;Cozens, Gill;Mclaughlin, Mike J.

作者机构:

关键词: copper;leaching;phytotoxicity;risk assessment

期刊名称:ENVIRONMENTAL TOXICOLOGY AND CHEMISTRY ( 影响因子:3.742; 五年影响因子:3.866 )

ISSN:

年卷期:

页码:

收录情况: SCI

摘要: The relationships developed between soil properties and phytotoxicity threshold values for copper require validation in a wide range of soils with different properties and climate characteristics before they can be applied for regulatory purposes in countries throughout the world. Seventeen soils, which are representative of the major soil types and properties in China, were spiked with Cu chloride. A subset of the Cu-spiked soils was leached with artificial rain water to compare toxicity with that in unleached soils. Barley root elongation tests were performed under controlled environmental conditions. The concentrations of added Cu causing a 50% inhibitory effect (EC50) ranged from 67 to 1,129 mg/kg in unleached soils and from 88 to 1,255 mg/kg in leached soil. Compared with the unleached toxicity thresholds, the leached EC10 (10% inhibition) and EC50 were higher by an average of 1.43- and 1.15-fold, respectively. Soil leaching significantly (p ≤ 0.05) decreased the toxicity of Cu in approximately 35% of the soils. In this study, no single soil property was found to explain over 35% of the variance in (log transformed) EC50. However, stepwise multiple regressions using soil pH, organic carbon (OC) content, and effective cation exchange capacity (eCEC) were found to explain over 80% of the variance in Cu toxicity across soils. The model developed for Chinese soils based on these factors was found to predict significantly (r~2, 0.90) the phytotoxicity of Cu in European soils. These quantitative relationships between Cu toxicity and soil properties are helpful for developing soil-specific guidance on Cu toxicity thresholds.

分类号: NULL

  • 相关文献

[1]The importance of soil solution chemistry to nickel toxicity on barley root elongation. Zhang, Xiaoqing,Huang, Zhanbin,Wei, Dongpu,Li, Bo,Ma, Yibing. 2013

[2]Influences of soil properties and leaching on nickel toxicity to barley root elongation. Li, Bo,Zhang, Hongtao,Ma, Yibing,Ma, Yibing,McLaughlin, Mike J.,McLaughlin, Mike J..

[3]RELATIONSHIPS BETWEEN SOIL PROPERTIES AND TOXICITY OF COPPER AND NICKEL TO BOK CHOY AND TOMATO IN CHINESE SOILS. Li, Bo,Zhang, Hongtao,Ma, Yibing,Li, Bo,McLaughlin, Mike J..

[4]The influence of soil solution properties on phytotoxicity of soil soluble copper in a wide range of soils. Zhang, Xiaoqing,Wei, Dongpu,Li, Bo,Ma, Yibing,Wang, Xuedong,Huang, Zhanbin. 2013

[5]Evaluation the influence of soil solution chemistry on soluble nickel toxicity to bok choy. Zhang, Xiaoqing,Huang, Zhanbin,Li Jumei,Li Bo,Ma Yibing. 2013

[6]Comparison of phytotoxicity of copper and nickel in soils with different Chinese plant species. Li Bo,Li Bo,Liu Ji-fang,Ma Yi-bing,Chen Shi-bao,Yang Jun-xing. 2015

[7]Kinetics and Modeling of Chemical Leaching of Sphalerite Concentrate Using Ferric Iron in a Redox-controlled Reactor. Song Jian,Lin Jianqun,Lin Jianqiang,Song Jian,Gao Ling,Wu Hongbin. 2013

[8]Extraction of Metals from Boiler Slag by Sintering. Li Jinping,Hou Haobo,Li Jinping,Gan Jinhua. 2009

[9]Production of a Sulfate-based Complex Coagulant from Boiler Slag. Li Jinping,Gan Jinhua. 2010

[10]Influence of a heavy rainfall event on the leaching of [C-14]isoproturon and its degradation products in outdoor lysimeters. Doerfler, Ulrike,Cao, Guoyin,Grundmann, Sabine,Schroll, Reiner.

[11]1,3-Dichloropropene Distribution and Emission after Gelatin Capsule Formulation Application. Wang, Qiuxia,Tang, Jueting,Wei, Shouhui,Wang, Fangyan,Yan, Dongdong,Mao, Liangang,Guo, Meixia,Cao, Aocheng.

[12]Influence of nitrogen loading and plant nitrogen assimilation on nitrogen leaching and N2O emission in forage rice paddy fields fertilized with liquid cattle waste. Riya, Shohei,Terada, Akihiko,Hosomi, Masaaki,Zhou, Sheng,Kobara, Yuso,Sagehashi, Masaki.

[13]Leaching impacts Ni toxicity differently among soils but increases its predictability according to nitrification assay. Li, Xiaofang,Cui, Haojie,Li, Xiaofang,Huang, Yizong,Cui, Haojie,Ma, Yibing,Sun, Jinwei.

[14]Assessing impacts of alternative fertilizer management practices on both nitrogen loading and greenhouse gas emissions in rice cultivation. Zhao, Zheng,Yue, Yubo,Sha, Zhimin,Cao, Linkui,Li, Changsheng,Deng, Jia,Zhang, Hanlin,Gao, Maofang. 2015

[15]Leaching behavior of chlorpyrifos and its main metabolite TCP through 5 types of soil columns in laboratory conditions. Sun, Baoli,Shan, Hong,Dong, Yiwei,Huang, Jinli,Tong, Chengfeng. 2014

[16]Influence of Long-Term Fertilizer Treatments on the Fluorescence Spectroscopic Characterization of DOM Leached by Acid Rain From Red Soil. Zhang, Jianchao,Xun, Weibing,Zhu, Zhen,Shen, Qirong,Ran, Wei,Li, Dongchu. 2013

[17]Leaching of aluminum and iron from boiler slag generated from a typical Chinese Steel Plant. Li, Jinping,Gan, Jinhua,Li, Xianwang.

[18]Salt Dynamics in Rhizosphere of Puccinellia ciliata Bor. in a Loamy Soil. Zhang, ZH,Tang, C,Rengel, Z.

[19]Release of cadmium, copper and lead from urban soils of Copenhagen. Li, Lijun,Holm, Peter E.,Marcussen, Helle,Hansen, Hans Christian Bruun,Li, Lijun.

[20]The fate of urea nitrogen applied to a vegetable crop rotation system. Ding, Hong,Zhang, Yushu,Hu, Xiaoxia,Zheng, Xiangzhou,Zhang, Jing,Weng, Boqi,Ding, Hong,Li, Shiqing,Ding, Hong,Chen, Deli.

作者其他论文 更多>>