Zhongxiu Rao
Chinese Academy of Sciences
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Featured researches published by Zhongxiu Rao.
Environmental Pollution | 2018
Zhongxiu Rao; Daoyou Huang; Jinshui Wu; Qihong Zhu; Hanhua Zhu; Chao Xu; Jie Xiong; Hui Wang; Ming-Meng Duan
The research was conducted to investigate the accumulation, distribution and availability of Cd in paddy soil and their relation to Cd in rice plants under 30-year fertilization regimes. Six treatments were involved in the study: control without fertilization (CK), chemical fertilizer (NPK), high nitrogen chemical fertilizer (HN), rice straw incorporation (ST), low and high dosage of manure fertilizer (LM and HM). Total and DTPA extractable concentration of Cd (T-Cd and DTPA-Cd) in bulk soils (20 cm topsoil), profiles (0-60 cm) and aggregates (>2, 1-2, 0.5-1, 0.25-0.5, 0.053-0.25 and < 0.053 mm) were investigated. The Cd concentration in relevant rice plant (roots, stems, leaves, husks and grains) were also analyzed. Manure fertilizers caused T-Cd accumulation in bulk soil with a significant increase of 36.2% in LM and 81.2% in HM. Similar impacts of manure fertilizers were observed in DTPA-Cd in the bulk soil. Further, the HM generated a further accumulation in deeper soil layers, presenting a remarkable increase of T-Cd (28.3%-225%) in 10-40 cm and DTPA-Cd (116%-158%) in 10-30 cm profiles. Moreover, the continuous application of manure fertilizers enhanced the availability of Cd in all aggregate size classes with an increase of 17.3%-87.8% in DTPA-Cd. Organic fertilizers (LM, HM and ST) heightened the content of Cd (38.0%-152%) in all parts of rice plant. The accumulation of Cd in rice plants was directly affected by fertilization regimes and Cd availability in the 10-20 cm soil layers and 0.25-0.5 mm aggregates. In conclusion, long-term application of manures resulted in increasing availability of Cd in aggregates and in topsoil and subsoil layers, which accordingly enhanced the accumulation of Cd in rice plants.
Archive | 2011
Qihong Zhu; Daoyou Huang; Weigang Zeng; Shoulong Liu; Zunchang Luo; Nan Sun; Bin Zhou; Changyu Zhu; Min Lei; Zhongxiu Rao; Xiaoling Cao
Archive | 2011
Daoyou Huang; Shoulong Liu; Qihong Zhu; Zunchang Luo; Nan Sun; Zhongxiu Rao; Min Lei; Xiaoling Cao; Changyu Zhu; Bin Zhou
Archive | 2012
Daoyou Huang; Qihong Zhu; Zunchang Luo; Shoulong Liu; Yanguo Chen; Min Lei; Bin Zhou; Zhongxiu Rao; Xiaoling Cao; Changyu Zhu
Archive | 2011
Daoyou Huang; Qihong Zhu; Shoulong Liu; Zunchang Luo; Nan Sun; Zhongxiu Rao; Changyu Zhu; Min Lei; Xiaoling Cao; Bin Zhou
Environmental Science and Pollution Research | 2015
Shuai Wang; Daoyou Huang; Qihong Zhu; Hanhua Zhu; Shoulong Liu; Zunchang Luo; Xiaoling Cao; Ji-Yu Wang; Zhongxiu Rao; Xin Shen
Archive | 2012
Daoyou Huang; Zunchang Luo; Shoulong Liu; Qihong Zhu; Liangxue Sheng; Yanguo Chen; Zhongxiu Rao; Xiaoling Cao; Min Lei; Changyu Zhu; Bin Zhou
Archive | 2014
Zhongxiu Rao; Daoyou Huang; Qihong Zhu; Shoulong Liu; Zunchang Luo; Xiaoling Cao; Xue-Fei Ren; Ji-Yu Wang; Shuai Wang
Archive | 2011
Daoyou Huang; Qihong Zhu; Shoulong Liu; Zunchang Luo; Changyu Zhu; Zhongxiu Rao; Xiaoling Cao; Min Lei; Bin Zhou
Journal of Soils and Sediments | 2016
Zhongxiu Rao; Daoyou Huang; Hanhua Zhu; Qihong Zhu; Ji-Yu Wang; Zunchang Luo; Chao Xu; Xin Shen; Yan-Bing He