The effects of calcium combined with chitosan amendment on the bioavailability of exogenous Pb in calcareous soil
文献类型: 外文期刊
第一作者: Chang Hui-qing
作者: Chang Hui-qing;Wang Qi-zhen;Wu Jie;Xu Xiao-feng;Shi Zhao-yong;Li Zhao-jun
作者机构:
关键词: exogenous Pb; maize; calcareous soil; speciation transformation; amendments
期刊名称:JOURNAL OF INTEGRATIVE AGRICULTURE ( 影响因子:2.848; 五年影响因子:2.979 )
ISSN: 2095-3119
年卷期: 2020 年 19 卷 5 期
页码:
收录情况: SCI
摘要: Lead (Pb) in soil may accumulate in crops and enter the human body. This study aimed to understand the speciation transformation and accumulation characteristics of exogenous Pb in calcareous soil with or without the application of soil amendments. Field experiments with continuous maize cultivation have been carried out for two years. The results showed that the contents of total Pb were slightly lower in 2016 than in 2015 for the same treatments; however, no significant difference between the years was observed. Soil Pb existed mainly in the residual fraction without exogenous Pb addition, and its proportion was more than 33% of the total soil Pb in the control and Ca treatments. When Pb was added to calcareous soil, Pb existed largely in the oxidizable and reducible fractions during the two-year experimental period, and those fractions made up over 83% of the total Pb. The proportion of the water-soluble Pb, regardless of the addition of Pb, was the lowest and was less than 0.0019% in all treatments, but the addition of Ca and chitosan amendments reduced the water-soluble and exchangeable Pb contents. The Pb content in different parts of maize followed the order root>leaf>stem>grain during the experimental period. Although maize had low transfer and enrichment factors in calcareous soil, which make the Pb content in the grain show no significant difference among the five treatments in the same year, adding Ca and chitosan to calcareous soil can reduce the Pb contents of maize, especially reduce the Pb contents of root, stem and leaf. Therefore, the addition of calcium and chitosan is an effective strategy for reducing Pb availability in calcareous soils.
分类号:
- 相关文献
作者其他论文 更多>>
-
The impacts of oxytetracycline on humification during manure composting can be alleviated by adjusting initial moisture contents as illustrated by NMR
作者:Feng Yao;Wang Gui-zhen;Liu Yuan-wang;Cheng Deng-miao;Zhao Quan-sheng;Zhang Shu-qing;Li Zhao-jun;Fan Shuang-hu;Xue, Jianming;Xue, Jianming
关键词:oxytetracycline degradation; humification; moisture content; composting; physico-chemical property
-
Microbial community dynamics during composting of animal manures contaminated with arsenic, copper, and oxytetracycline
作者:Shehata, Ebrahim;Ma Qian-qian;Li Yan-li;Liu Yuan-wang;Feng Yao;Ji Zhen-yu;Li Zhao-jun;Shehata, Ebrahim;Cheng Deng-miao
关键词:composting; heavy metal and metalloid; oxytetracycline; microbial community; principle component analysis; redundancy analysis
-
Dynamics of microbial diversity during the composting of agricultural straw
作者:Chang Hui-qing;Zhu Xiao-hui;Wu Jie;Guo Da-yong;Zhang Lian-he;Feng Yao
关键词:crop straws; microbial diversity; community composition; dynamic characteristics; high-throughput sequencing
-
Screening and degradation characteristics of a tylosin-degrading strain
作者:Feng Chang-qing;Jia Zhen-hu;Feng Chang-qing;Cheng Deng-miao;Feng Yao;Qi Wei-ning;Liu Yuan-wang;Li Zhao-jun;Weaver, Louise;Liu Yuan-wang
关键词:antibiotics; tylosin; screening; degrading strain; B. borstelensis; degradation characteristic
-
Degradation mechanisms of oxytetracycline in the environment
作者:Li Zhao-jun;Qi Wei-ning;Feng Yao;Liu Yuan-wang;Shehata, Ebrahim;Qi Wei-ning;Long Jiang
关键词:oxytetracycline; degradation pathways; biotoxicity; degradation products
-
Removal of Cd and Pb with biochar made from dairy manure at low temperature
作者:Chen Zhi-liang;Zhang Jian-qiang;Huang Ling;Yuan Zhi-hui;Liu Min-chao;Li Zhao-jun
关键词:biochar; kinetics; isotherms; Pb; Cd
-
Uptake and translocation of organic pollutants in plants: A review
作者:Zhang Chang;Feng Yao;Liu Yuan-wang;Li Zhao-jun;Chang Hui-qing;Xue Jian-ming
关键词:organic pollutants;plant;uptake;cytotoxicity