Effect of Cr(VI) on Fe(III) reduction in three paddy soils from the Hani terrace field at high altitude

文献类型: 外文期刊

第一作者: Li, Xiao-min

作者: Li, Xiao-min;Liu, Tong-xu;Li, Fang-bai;Zhang, Nai-ming;Ren, Guo;Li, Xiao-min;Li, Yong-tao

作者机构:

关键词: Fe(III) reduction;Cr(VI) effect;Interaction;Paddy soil;Terrace field;High altitude

期刊名称:APPLIED CLAY SCIENCE ( 影响因子:5.467; 五年影响因子:5.414 )

ISSN: 0169-1317

年卷期: 2012 年 64 卷

页码:

收录情况: SCI

摘要: Batch experiments were conducted to investigate the effect of Cr(VI) on Fe(III) reduction in typical paddy soils from the Hani terrace field at different high altitudes. Firstly, soils with and without autoclaving were used to evaluate abiotic and biotic contributions on Fe(III) reduction in different soils. The results showed biotic reaction mainly contributed to Fe(III) reduction in Bada soil. Both abiotic and biotic Fe(III) reductions were limited in Duoyishu soil, while Fe(III) reduction in Laohuzui soil was predominantly driven by abiotic reactions. The difference of Fe(III) reduction was related to organic matter and Fe availability in soils. In the presence of Cr(VI), Fe(III) reduction was evidently inhibited and delayed in all soils. Under anaerobic condition, adsorption and reduction of Cr(VI) occurred simultaneously in soils. The presence of Cr(VI) can influence Fe(III) reduction in several ways, e.g., competition of Fe(III) and Cr(VI) reductions, preferred reduction of Cr(VI), retard of biotic Fe(III) reduction, and consumption of Fe(II) by Cr(VI), all of which may coexist in natural paddy soil. However, the extent of influence exerted by different interaction varies from each other in different soils, which is strongly associated with the soil characteristics. (C) 2012 Elsevier B.V. All rights reserved.

分类号:

  • 相关文献

[1]Effect of nitrate addition on reductive transformation of pentachlorophenol in paddy soil in relation to iron(III) reduction. Yu, Huan-Yun,Chen, Peng-cheng,Li, Fang-bai,Chen, Man-jia,Hu, Min,Wang, Yong-kui,Ouyang, Xiaoguang. 2014

[2]Electrochemical Characterization of Tea-derived Dissolved Organic Matter: Implications for Electron Shuttling. Yuan, Yong,Tao, Ya,Zhou, Shungui,Lu, Qin,Tao, Ya,Tang, Hao. 2013

[3]Detecting signatures of selection within the Tibetan sheep mitochondrial genome. Niu, Lili,Xiao, Ping,Zhou, Jingxuan,Hu, Jiangtao,Guo, Jiazhong,Li, Li,Wang, Linjie,Zhang, Hongping,Zhong, Tao,Chen, Xiaoyong,Sun, Hongxin,Zhao, Qianjun.

[4]Effects of Coenzyme Q(10) on Growth Performance and Heart Mitochondrial Function of Broilers Under High Altitude Induced Hypoxia. Huang, Beiying,Guo, Yuming,Song, Yi,Hu, Xiaofei.

[5]Morphological and molecular evidence for a new species in Entoloma subgenus Claudopus from Sichuan Province, southwest China. Peng, Wei-Hong,Gan, Bing-Cheng,He, Xiao-Lan,Peng, Wei-Hong,Gan, Bing-Cheng.

[6]Exome sequencing reveals genetic differentiation due to high-altitude adaptation in the Tibetan cashmere goat (Capra hircus). Song, Shen,Yao, Na,Yang, Min,Liu, Xuexue,Dong, Kunzhe,Zhao, Qianjun,Pu, Yabin,He, Xiaohong,Guan, Weijun,Ma, Yuehui,Jiang, Lin,Song, Shen,Yang, Ning. 2016

[7]DISTRIBUTION CHARACTERISTICS, BIOACCUMULATION, AND SOURCES OF MERCURY IN RICE AT NANSI LAKE AREA, SHANDONG PROVINCE, CHNIA. Liu, H.,Zhang, J.,Dai, J. L.,Wang, L. H.,Zhang, J.,Li, G. X.. 2015

[8]Phosphorus Adsorption and Bioavailability in a Paddy Soil Amended with Pig Manure Compost and Decaying Rice Straw. Liang, Yongchao,Guo, Bin,Liang, Yongchao,Li, Zhaojun,Han, Fengxiang. 2009

[9]Oxidation of elemental sulfur in paddy soils as influenced by flooded condition and plant growth in pot experiment. Zhou, W,Wan, M,He, P,Li, ST,Lin, B. 2002

[10]Effect of long-term application of manure and mineral fertilizers on nitrogen mineralization and microbial biomass in paddy soil during rice growth stages. Zhang, J.,Qin, J.,Yao, W.,Bi, L.,Zhang, J.,Yao, W.,Bi, L.,Lai, T.,Yu, X.. 2009

[11]Sorption of Atrazine in Tropical Soil by Biochar Prepared from Cassava Waste. Deng, Hui,Ge, Chengjun,Deng, Hui,Ge, Chengjun,Yu, Huamei,Chen, Miao. 2014

[12]Effects of rice straw incorporation and tillage depth on soil puddlability and mechanical properties during rice growth period. Yao, Shuihong,Teng, Xiaolong,Zhang, Bin.

[13]Heavy metal contaminations in soil-rice system: source identification in relation to a sulfur-rich coal burning power plant in Northern Guangdong Province, China. Wang, Xiangqin,Liu Chuanping,Li, Fangbai,Xu, Xianghua,Lv, Yahui,Zeng, Xiaoduo.

[14]Abundance and Community Composition of Ammonia-Oxidizers in Paddy Soil at Different Nitrogen Fertilizer Rates. Song Ya-na,Lin Zhi-min. 2014

[15]Effects of different fertilizer application methods on the community of nitrifiers and denitrifiers in a paddy soil. Duan, Ran,Su, Shiming,Bai, Lingyu,Zeng, Xibai,Long, Xi-En,Tang, Yue-feng,Wen, Jiong,Liu, Rongle. 2018

[16]The bioaccumulation of Cd in rice grains in paddy soils as affected and predicted by soil properties. Ye, Xinxin,Wu, Liang,Sun, Bo,Ye, Xinxin,Li, Hongying,Ma, Yibing,Wu, Liang. 2014

[17]Testing the modified Rothamsted Carbon Model for paddy soils against the results from long-term experiments in southern China. Xu, Minggang,Jiang, Guiying,Shirato, Yasuhito,Yagasaki, Yasumi,Huang, Qinghai,Li, Zuzhang,Nie, Jun,Shi, Xiaojun. 2013

[18]Cropping systems affect paddy soil organic carbon and total nitrogen stocks (in rice-garlic and rice-fava systems) in temperate region of southern China. Zhang, Tao,Liu, Hongbin,Zhai, Limei,Zhang, Dan,Wang, Hongyuan,Chen, Anqiang,Lei, Baokun,Liu, Jian.

[19]Fertilization increases paddy soil organic carbon density. Wang, Shao-xian,Liang, Xin-qiang,Chen, Ying-xu,Wang, Shao-xian,Luo, Qi-xiang,Fan, Fang,Li, Zu-zhang,Sun, Huo-xi,Dai, Tian-fang,Wan, Jun-nan,Li, Xiao-jun. 2012

[20]Effects of organic amendments on soil carbon sequestration in paddy fields of subtropical China. Xu, Minggang,Wang, Xiujun,Wang, Xiujun,Huang, Qinhai,Nie, Jun,Li, Zuzhang,Li, Shuanglai,Hwang, Seon Woong,Lee, Kyeong Bo. 2012

作者其他论文 更多>>