数字农科院2.0

Removal Of Dimethachlon From Soils U.sing Immobilized Cells And E nzymes Of A Novel Potential Degrader Providencia Stuartii Jd

文献类型: 外文期刊

作者: Dong, Fengshou;Pan, Xinglu;Li, Ming;Wu, Xiaomao;Zhang, Cheng;Liu, Xingang;Wu, Xiaohu;Zheng, Yongquan;Xu, Jun

作者机构:

关键词: Dimethachlon; Removal; Providencia smartii JD; Immobilized cells; Immobilized enzymes

期刊名称: JOURNAL OF HAZARDOUS MATERIALS

ISSN: 0304-3894

年卷期: 2019 年 378 卷

页码:

收录情况: JCR(2021版) ; EI(2021版)

摘要: The first potential degrader capable of detoxifying dimethachlon (NDPS) was isolated and identified as Providencia stuartii JD, whose free cells and freely crude enzymes degraded more than 80% and 90% of 50 mg L-1 NDPS in liquid culture within 7 d and 2 h, respectively. Strain JD metabolized NDPS through the typical pathway, in which NDPS was firstly transformed into succinic acid and 3, 5-dichloroanilin, and the latter was then converted to phenol, which was subsequently degraded to muconic acid further subjected to the mineralization. The immobilization obviously improved the stability and adaptability of cells and enzymes. In laboratory non-sterile soils treated by free or immobilized cells and enzymes, 50 mg kg(-1) NDPS decreased to 15.66 and 13.32 mg kg(-1), or 8.32 and 2.18 mg kg(-1) within 7 d, respectively. In field, immobilized cells and enzymes exhibited significantly higher efficiencies in removing 20.250 kg a.i. ha(-1) NDPS wettable powder from soils after 9 d (96.02% and 98.56%) than free cells and enzymes (79.35% and 66.45%). This study highlights that strain JD promises the great potential to remove hazardous NDPS residues and its immobilized cells and enzymes possess the more promising advantages in the bioremediation of NDPS-contaminated soils in situ.

分类号:

  • 相关文献

[1]Modification Of 13X Molecular Sieve B.y Chitosan For Adsorptive R emoval Of Cadmium From Simulated Wastewater. Li, Xiuxiu,Sun, Ken,Shi, Yan,Qi, Xuebin,Huo, Lixin,Li, Zhaohui. 2017

[2]Removal Of Combined Antibiotic (Florfenicol, T.ylosin And Tilmicosin) During A naerobic Digestion And Their Relative Effect. Yin, FB, Dong, HM, Zhang, WQ, Zhu, ZP, Shang, B, Wang, Y. 2019

[3]Enrichment Of Cd2+ From Water W.ith A Calcium Alginate H ydrogel Filtration Membrane. Zhao, YJ, Zhao, KY, Li, Y, Liu, L, Zhang, XX, Li, JG, Chen, M, Wang, XL. 2018

[4]Effects Of Pharmaceuticals On Microbial C.ommunities And Activity Of S oil Enzymes In Mesocosm-Scale Constructed Wetlands. Yan, Q, Xu, YF, Yu, YH, Zhu, ZW, Feng, GZ. 2018

[5]Microbial Community Response During The T.reatment Of Pharmaceutically Active C ompounds (Phacs) In Constructed Wetland Mesocosms. Yan, Q, Min, J, Yu, YH, Zhu, ZW, Feng, GZ. 2017

[6]Effects of pharmaceuticals on microbial communities and activity of soil enzymes in mesocosm-scale constructed wetlands. Qing Yan , Yufeng Xu , Yonghong Yu , Zhi Wei Zhu *, Guozhong Feng *. 2018

[7]Removal Of Diclofenac From Aqueous P.hase By Birnessite: Effects O f Ph And Common Ions. Zhao, Y, Liu, F, Qin, XP. 2019

[8]Synthesis And Adsorption Of Fe-Mn-La-Impregnated B.iochar Composite As An A dsorbent For As(Iii) Removal From Aqueous Solutions. Lin, LN, Zhang, GG, Liu, XW, Khan, ZH, Qiu, WW, Song, ZG. 2019

[9]Influence Of Two-Stage Combinations Of C.onstructed Wetlands On The R emoval Of Antibiotics, Antibiotic Resistance Genes And Nutrients From Goose Wastewater. Huang, XF, Luo, Y, Liu, ZL, Zhang, CL, Zhong, H, Xue, JJ, Wang, QG, Zhu, ZP, Wang, C. 2019

[10]Double Layer Mofs M-Zif-8@Zif-67: The Adsorption Capacity And Removal Mechanism Of Fipronil And Its Metabolites From Environmental Water And Cucumber Samples. Li, TF, Lu, M, Gao, YH, Huang, XD, Liu, GY, Xu, DH. 2020

[11]Temperature And Ph Sensitive Composite For Rapid And Effective Removal Of Sulfonylurea Herbicides In Aqueous Solution. Li, CS, Zhang, N, Chen, JX, Ji, JW, Liu, X, Wang, JL, Zhu, JH, Ma, YQ. 2019

[12]Enrichment of potential degrading bacteria accelerates removal of tetracyclines and their epimers from cow manure biochar amended soil. Yan Yue,Yong-Jun Liu,Jichen Wang,Raja Vukanti,Yuan Ge. 2021

作者其他论文 更多>>