Scopes
(The following topics include but are not limited to)
Track 1: Environmental Microbiomics
Analysis of environmental microbial community diversity and structure
Metagenomics, metatranscriptomics and metaproteomics technologies
Microbiomics of soil, water bodies and atmosphere
Microbiomics of extreme environments
Microbiome and host interactions
The role of microbiome in the cycling of elements such as carbon, nitrogen, phosphorus and sulfur
Functional gene mining and metabolic pathway analysis of microbiome
Microbiome and ecosystem stability
Synthetic microbiome and construction of artificial microbial communities
Big data analysis of microbiome and artificial intelligence modeling
Microbiome and responses to global changes (climate change, land use, etc.)
Single-cell microbiomics technology
Track 2: Ecological Pollution Remediation Technologies
Bioremediation technologies
Plant-microbe combined remediation technologies
Remediation of heavy metal contaminated soil
Degradation and transformation of organic pollutants
Remediation of water environmental pollution (wastewater treatment, water body purification)
Removal of atmospheric pollutants by microorganisms
Removal of emerging pollutants (microplastics, antibiotics, persistent organic pollutants)
In-situ and ex-situ remediation engineering practices
Nanomaterial-assisted bioremediation
Electrochemical remediation and microbial electrochemical systems
Evaluation of remediation efficiency and ecological risk assessment
Case studies and sustainable management of contaminated sites
Track 3: Frontiers of Microbiome and Remediation Intersections
Analysis of degradation mechanisms driven by microbiome
Development and application of functional microbial agents
Construction of microbiome-pollutant interaction networks
Joint analysis of multi-omics in the dynamic changes of the remediation process
Strategies for enhancing remediation efficiency through microbial community regulation
Synergistic effect of microbial remediation and carbon sequestration
Pollution warning based on microbiome and biological indicators
Engineering microbial design for targeted degradation of pollution
Ecological interactions and competition in microbial remediation processes
Maintenance mechanisms of microbiome stability in pollution remediation
Sustainable bioremediation strategies and circular economy
...
Track 1: Environmental Microbiomics
Analysis of environmental microbial community diversity and structure
Metagenomics, metatranscriptomics and metaproteomics technologies
Microbiomics of soil, water bodies and atmosphere
Microbiomics of extreme environments
Microbiome and host interactions
The role of microbiome in the cycling of elements such as carbon, nitrogen, phosphorus and sulfur
Functional gene mining and metabolic pathway analysis of microbiome
Microbiome and ecosystem stability
Synthetic microbiome and construction of artificial microbial communities
Big data analysis of microbiome and artificial intelligence modeling
Microbiome and responses to global changes (climate change, land use, etc.)
Single-cell microbiomics technology
Track 2: Ecological Pollution Remediation Technologies
Bioremediation technologies
Plant-microbe combined remediation technologies
Remediation of heavy metal contaminated soil
Degradation and transformation of organic pollutants
Remediation of water environmental pollution (wastewater treatment, water body purification)
Removal of atmospheric pollutants by microorganisms
Removal of emerging pollutants (microplastics, antibiotics, persistent organic pollutants)
In-situ and ex-situ remediation engineering practices
Nanomaterial-assisted bioremediation
Electrochemical remediation and microbial electrochemical systems
Evaluation of remediation efficiency and ecological risk assessment
Case studies and sustainable management of contaminated sites
Track 3: Frontiers of Microbiome and Remediation Intersections
Analysis of degradation mechanisms driven by microbiome
Development and application of functional microbial agents
Construction of microbiome-pollutant interaction networks
Joint analysis of multi-omics in the dynamic changes of the remediation process
Strategies for enhancing remediation efficiency through microbial community regulation
Synergistic effect of microbial remediation and carbon sequestration
Pollution warning based on microbiome and biological indicators
Engineering microbial design for targeted degradation of pollution
Ecological interactions and competition in microbial remediation processes
Maintenance mechanisms of microbiome stability in pollution remediation
Sustainable bioremediation strategies and circular economy
...
Important Dates/重要日期
- Submission Deadline: 2026.10.14
- Registration Deadline: 2026.10.21
- Conference Date: 2026.10.29
- Notification Date: About a week after the submission
Submission Portal/投稿方式
Mail Address: icconf_paper@163.com
If you have any question or need any assistance regarding the conference, please feel free to contact our conference specialists:
蒋老师
+86-15680824672(微信同号)
3761629232
--
+86---(微信同号)
--
