数字农科院2.0

Ecological Risk Of Copper And Zinc And Their Different Bioavailability Change In Soil-Rice System As Affected By Biowaste Application

文献类型: 外文期刊

作者: Wan, YN; Huang, QQ; Wang, Q; Ma, YB; Su, DC; Qiao, YH; Jiang, RF; Li, HF

作者机构:

关键词: Organic Fertilizer; Cu; Zn; Rice; Accumulation; Bioavailability

期刊名称: ECOTOXICOLOGY AND ENVIRONMENTAL SAFETY

ISSN: 0147-6513

年卷期: 2020 年 192 卷

页码:

收录情况: JCR(2021版)

摘要: A large amount of organic fertilizer application could be accompanied by soil contamination caused by trace heavy metals. A field experiment was carried out in this study to examine the accumulation and availability of copper (Cu) and zinc (Zn) in soil, and their uptake by rice under continuous application of chicken manure, pig manure and sewage sludge. Results showed that after four years of chicken manure, pig manure and sewage sludge application, the soil Cu accumulation rates were 0.15-1.17 mg kg(-1) yr(-1), 1.01-4.22 mg kg(-1) yr(-1) and 0.13-1.15 mg kg(-1) yr(-1), respectively; Zn accumulation rates were 0.54-5.46 mg kg(-1) yr(-1), 1.51-9.65 mg kg(-1) yr(-1)1 and 1.13-10.47 mg kg(-1) yr(-1), respectively. Compared to the control, the chicken- and pig manure treatments significantly decreased the DTPA-extractable Cu, but increased the DTPA-extractable Zn in soils; thus decreased the Cu contents in rice grain by 2.2-40.6% and increased the grain Zn by 2.6-30.9%, respectively, with increasing application rates and number of years. The addition of sewage sludge significantly increased bioavailability of Zn in soil and its accumulation in rice, while had limited effect on Cu bioavailability. Results suggested that the continuous application of organic fertilizer with elevated Cu and Zn contents at high application rates can induce their accumulation in soil and affect their bioavailability differently.

分类号:

  • 相关文献

[1]Selenium Application Alters Soil Cadmium B.ioavailability And Reduces Its A ccumulation In Rice Grown In Cd-Contaminated Soil. Huang, QQ, Xu, YM, Liu, YY, Qin, X, Huang, R, Liang, XF. 2018

[2]Effects Of Continuous Fertilization On B.ioavailability And Fractionation Of C admium In Soil And Its Uptake By Rice (Oryza Sativa L.). Huang, QQ, Yu, Y, Wan, YA, Wang, Q, Luo, Z, Qiao, YH, Su, DC, Li, HF. 2018

[3]Effects of optimized water management on the uptake and translocation of cadmium and arsenic in Oryza sativa L. in two contaminated soils. Bao Q., Bao W., Ding Y., Huang Y.. 2022

[4]Accumulation And Bioavailability Of Heavy Metals In An Acid Soil And Their Uptake By Paddy Rice Under Continuous Application Of Chicken And Swine Manure. Wan, YN, Huang, QQ, Wang, Q, Yu, Y, Su, DC, Qiao, YH, Li, HF. 2020

[5]Hematite Enhances The Immobilization Of Copper, Cadmium And Phosphorus In Soil Amended With Hydroxyapatite Under Flooded Conditions. Cui, HB, Zhang, X, Wu, QG, Zhang, SW, Xu, L, Zhou, J, Zheng, XB, Zhou, J. 2020

[6]Predicting Cadmium And Lead Toxicities I.n Zebrafish (Danio Rerio) L arvae By Using A Toxicokinetic-Toxicodynamic Model That Considers The Effects Of Cations. Feng, JF, Gao, YF, Chen, M, Xu, X, Huang, MD, Yang, T, Chen, N, Zhu, L. 2018

[7]Selenite Mitigates Cadmium-Induced Oxidative Stress A.nd Affects Cd Uptake I n Rice Seedlings Under Different Water Management Systems. Huang, QQ, Liu, YY, Qin, X, Zhao, LJ, Liang, XF, Xu, YM. 2019

[8]Reduced Arsenic Accumulation In Indica R.ice (Oryza Sativa L.) C ultivar With Ferromanganese Oxide Impregnated Biochar Composites Amendments. Lin, LN, Gao, ML, Qiu, WW, Wang, D, Huang, Q, Song, ZG. 2017

[9]Uptake, Translocation And Distribution Of T.hree Veterinary Antibiotics In Z ea Mays L.. Zhang, C, Xue, JM, Cheng, DM, Feng, Y, Liu, YW, Aly, HM, Li, ZJ. 2019

[10]Bioactivities And Medicinal Value Of S.olanesol And Its Accumulation, E xtraction Technology, And Determination Methods. Yan, N, Liu, YH, Liu, LQ, Du, YM, Liu, XM, Zhang, HB, Zhang, ZF. 2019

[11]HAG1 Regulates Arsenic Allocation and Accumulation in Rice Grains. Yang Huan,Yu Jing,Xie Manyi,Xu Ping,Cao Zhenzhen,Chen Mingxue,Cao Zhaoyun. 2025

[12]Green And Black Tea Phenolics: B.ioavailability, Transformation By Colonic M icrobiota, And Modulation Of Colonic Microbiota. Liu, Zhibin,Bruins, Marieke Elisabeth,Liu, Zhibin,Liu, Zhibin,Ni, Li,Vincken, Jean-Paul. 2018

[13]Bioavailability Of Tea Catechins And I.ts Improvement. Cai, Zhuo-Yu,Li, Xu-Min,Xiang, Li-Ping,Shi, Yun-Long,Liang, Jin-Pei,Shi, Meng,Ye, Jian-Hui,Zheng, Xin-Qiang,Yang, Rui,Wang, Kai-Rong,Liang, Yue-Rong,Lu, Jian-Liang. 2018

[14]Using Polysaccharides For The Enhancement O.f Functionality Of Foods: A Review. Zheng, Yafeng,Zheng, Yafeng,Rea, Mary C.,Miao, Song,Miao, Song,Miao, Song,Zheng, Yafeng,Lu, Xu,Lu, Xu,Lu, Xu,Lu, Xu,Guo, Zebin,Guo, Zebin,Guo, Zebin,Chen, Jinghao,Chen, Jinghao,Zheng, Xiuhua,Zheng, Baodong,Su, Han,Zheng, Baodong,Zheng, Baodong,Zheng, Baodong,Su, Han,Lu, Xu. 2019

[15]Nano- And Micro-Particles For Delivery O.f Catechins: Physical And B iological Performance. Ye, Jian-Hui,Ye, Jian-Hui,Ye, Jian-Hui,Augustin, Mary Ann,Ye, Jian-Hui. 2019

[16]Cryptic Footprints Of Rare Earth E.lements On Natural Resources A nd Living Organisms. Nawab, Aamir,Rui, Yukui,Jilani, Ghulam,Lee, Jie Yinn,Shafiq, Muhammad,Yi, Hao,Zain, Muhammad,Tsang, Daniel C. W.,Xing, Baoshan,Adeel, Muhammad,Rizwan, Muhammad,Ahmad, M. A.,Javed, Rabia,Horton, R.. 2019

[17]Impact Of Lipid Phase On T.he Bioavailability Of Vitamin E In Emulsion-Based Delivery Systems: Relative Importance Of Bioaccessibility, Absorption, And Transformation. Yang, Y, Xiao, H, McClements, DJ. 2017

[18]Sorption, Degradation And Bioavailability Of O.xyfluorfen In Biochar-Amended Soils. Dong, Fengshou,Wu, Chi,Liu, Xingang,Liu, Xingang,Wu, Chi,Zheng, Yongquan,Xu, Jun,Wu, Xiaohu. 2019

[19]Metabolic Profile, Bioavailability And Toxicokinetics Of Zearalenone-14-Glucoside In Rats After Oral And Intravenous Administration By Liquid Chromatography High-Resolution Mass Spectrometry And Tandem Mass Spectrometry. Sun, FF, Tan, HG, Li, YS, De Boevre, M, De Saeger, S, Zhou, JH, Li, Y, Rao, ZH, Yang, SP, Zhang, HY. 2019

[20]Changes In Arsenic And Copper Bioavailability And Oxytetracycline Degradation During The Composting Process. Shehata, E, Liu, YW, Feng, Y, Cheng, DM, Li, ZJ. 2019

作者其他论文 更多>>