• 首 页
  • 实验室简介
  • 科学研究
    • 实验室定位
    • 研究目标
    • 研究方向
    • 研究项目
    • 研究工作进展
  • 科研队伍
    • 队伍建设
    • 学科组
  • 研究生教育
    • 简介
    • 学科与学位点
    • 研究生导师
    • 在读研究生
    • 毕业研究生
  • 科研成果
    • 获奖
    • 专著
    • 学术论文
    • 专利
  • 联系我们
  • 首页
  • 实验室简介
  • 科学研究
    • 实验室定位
    • 研究目标
    • 研究方向
    • 研究项目
    • 研究工作进展
  • 科研队伍
    • 队伍建设
    • 学科组
  • 研究生教育
    • 简介
    • 学科与学位点
    • 研究生导师
    • 在读研究生
    • 毕业研究生
  • 科研成果
    • 获奖
    • 专著
    • 学术论文
    • 专利
  • 联系我们
  1. 当前位置:首页    新闻动态    最新成果
最新成果

Characterization of acetochlor degradation and role of microbial communities in biofilters with varied substrate types

来源:

来源:   |  发布时间:2023-09-25   |  【 大  中  小 】

 

第一作者:

Liu, Huiping

英文第一作者:

Liu, Huiping

联系作者:

Wang, Xinhong; Ou, Yang

英文联系作者:

Wang, Xinhong; Ou, Yang

发表年度:

2023

卷:

467

摘要:

 Northeast China has a large area of cultivated land, and the application of various chemical herbicides is very high. As a high-efficiency herbicide widely used in dry fields, its residue in the environment is also concern. Therefore, low-cost and high efficient control measures are urgently needed. Twelve Biofilter simulation devices were designed to investigate the efficiency and mechanism of removing acetochlor under low-temperature conditions. Biochar (Bio-BF), ceramsite (CER-BF), and gravel (GRA-BF) were chosen to be substrates to compare the effect of substrate type on the removal of acetochlor. The results showed that the biochar (Bio-BF) treatment had the shortest onset time (<1 h), The gravel (GRA-BF) treatment had the longest onset of action (more than 8 h), but the removal effect was essentially the same as the biochar treatment. The 16S rRNA gene sequencing results revealed that different bacterial communities are formed due to different substrates. Proteobacteria and Actinobacteria are the dominant phyla in the three biofilters. Four metabolites, 2-ethyl-6-methyl-N(ethoxymethyl) acetanilide, N-(2-ethyl-6-methyl phenyl) acetamide, N-(2-ethyl-6-methyl phenyl) formamide, and (2-ethyl-6-methyl phenyl) carbamic acid, were identified using gas phase mass spectrometry. The analysis and prediction of the degradation pathways of acetochlor revealed that Ferribacterium, Klebsiella, and Comamonadaceae belonging to the phylum Proteobacteria and Rhodococcus belonging to the phylum Actinobacteria were the key microorganisms involved in the degradation of acetochlor in the biofilter. Redundancy analysis (RDA) further indicates that dissolved oxygen and temperature are key environmental factors affecting the development of key microbial communities within the biofilter, and that future design of biofilters in Northeast China should focus on how to improve oxygen content and temperature.

刊物名称:

CHEMICAL ENGINEERING JOURNAL

参与作者:

Liu,HP(Liu,Huiping)[1];Wang,XH(Wang,Xinhong)[1];Ou,Y(Ou,Yang)[2],[3];Cheng,L(Cheng,Lei)[1];Hou,X(Hou,Xia)[1];Yan,LM(Yan,Liming)[1];Tian,LP(Tian,Liping)[2]


附件下载:

版权所有 © 中国科学院长春净月潭遥感实验站 吉ICP备05002032号-1 吉公网安备22017302000214号
地址:吉林省长春市高新北区盛北大街4888号 邮编:130102
电话:+86 431 85542227  Email:jyrs@iga.ac.cn