Li Yang

Associate Professor   Supervisor of Master's Candidates

Main positions:Assistant Professor

Gender:Female

Alma Mater:Dalian University of Technology

Degree:Doctoral Degree

School/Department:School of Ocean Science and Technology

Discipline:Environmental Engineering

Business Address:D06-309

Contact Information:liyang1989@dlut.edu.cn

E-Mail:liyang1989@dlut.edu.cn


Paper Publications

Towards engineering application: Potential mechanism for enhancing anaerobic digestion of complex organic waste with different types of conductive materials

Hits:

Indexed by:期刊论文

Date of Publication:2017-05-15

Journal:WATER RESEARCH

Included Journals:SCIE、EI、PubMed、ESI高被引论文、Scopus

Volume:115

Page Number:266-277

ISSN No.:0043-1354

Key Words:Anaerobic digestion (AD); Granular activated carbon (GAC); Magnetite; Direct interspecies electron transfer (DIET)

Abstract:Conductive materials have been widely investigated to accelerate and stabilize the conversion of organic wastes to methane. However, the potential mechanisms involved with different types of conductive materials are still unclear. In this study, magnetite (Fe3O4) and granular activated carbon (GAC), as the two typical conductive materials, were respectively supplemented to acidogenesis and methanogenesis of a two-phase anaerobic digestion (AD) system in an attempt to explore their different mechanisms. The results showed that, magnetite supplemented to the acidogenic phase could enhance the decomposition of complex organics into simples, but significantly raise the hydrogen partial pressure as well as enrich the hydrogen-utilizing methanogens, which were not expected for aceticlastic methanogenesis known as a mainstream of methanogenesis in most of traditional digesters. GAC supplemented to the methanogenic phase had less influences on syntrophic metabolism of alcohols and fatty acids when acidogenesis was ineffective or out of work. Microbial community analysis suggested that direct interspecies electron transfer (DIET) had been established on the GAC, though the insignificant improvement of performances. Once magnetite was supplemented to the acidogenesis to improve the acidification efficiency, the syntrophic conversion of alcohols and fatty acids to methane in the GAC-supplemented methanogenic phase was significantly improved. These results suggested that, DIET was unlikely to participate in the direct decomposition of complex organics, even in the presence of GAC, but it could work effectively once acidogenesis functioned well. (C) 2017 Elsevier Ltd. All rights reserved.

Pre One:Scaling-up of a zero valent iron packed anaerobic reactor for textile dye wastewater treatment: a potential technology for on-site upgrading and rebuilding of traditional anaerobic wastewater treatment plant

Next One:Potentially shifting from interspecies hydrogen transfer to direct interspecies electron transfer for syntrophic metabolism to resist acidic impact with conductive carbon cloth

Profile

副教授,硕士生指导教师。主要从事污染物的厌氧生物处理及资源化利用研究。2018年以来,作为项目负责人主持国家自然科学基金-青年基金项目1项,国家农业农村部重点研发计划项目子课题1项,教育部重点实验室开放基金项目1项,大连理工大学交叉探索课题1项;作为项目骨干参与“固废资源化”国家重大专项1项、辽宁省科技重大专项2项、国家自然科学基金-面上项目4项。目前,以第一作者或通讯作者身份在Environ Sci Technol、Water Res、J. Hazard Mater、Bioresour. Technol等SCI杂志上发表 JCR一区论文21篇,以其他作者身份参与发表SCI论文30余篇,授权5项中国发明专利, 1项国际发明专利。