0
Article ? AI-assigned paper type based on the abstract. Classification may not be perfect — flag errors using the feedback button. Tier 2 ? Original research — experimental, observational, or case-control study. Direct primary evidence. Gut & Microbiome Human Health Effects Remediation Sign in to save

Research progress and perspective on sludge anaerobic digestion technology: A bibliometric analysis

Water Science & Technology 2024 2 citations ? Citation count from OpenAlex, updated daily. May differ slightly from the publisher's own count. Score: 40 ? 0–100 AI score estimating relevance to the microplastics field. Papers below 30 are filtered from public browse.
Denglong Lu, Denglong Lu, Haipu Li, Haipu Li, Yang Song Yang Song Haipu Li, Denglong Lu, Zhaoguang Yang, Denglong Lu, Haipu Li, Haipu Li, Haipu Li, Haipu Li, Yang Song Yang Song Haipu Li, Haipu Li, Haipu Li, Yang Song Yang Song Yang Song Yang Song Yang Song Yang Song

Summary

This paper is not about microplastics; it is a bibliometric analysis of three decades of research on anaerobic digestion as a wastewater sludge treatment technology, mapping publication trends and identifying key research themes.

Rational disposal of sludge is an ongoing concern. This work is the first attempt for in-depth statistical analysis of anaerobic digestion (AD) research in recent three decades (1986-2022) using both quantitative and qualitative approaches in bibliometrics to investigate the research progress, trends and hot spots. All publications in the Web of Science Core Collection database from 1986 to April 4, 2022 were analyzed. Results showed that the research on AD started in 1999 and the number of papers significantly increased since 2012. The research about the disposal of sewage sludge mainly focuses on energy recovery (e.g. methane and short chain volatile organic acids) by AD. Besides, different pretreatment technologies were studied in this study to eliminate the negative effects on the disposal of sludge caused by hydrolysis (rate-limiting step of AD), water content (increasing the costs) and heavy metal (toxic to the environment) of sludge. Of those, the treatment technologies related to direct interspecies electron transfer were worth further studied in the future. Towards that end, iron conductive material, iron-based advanced oxidation and biological treatment were concluded as the prospective technologies and worth to further study.

Sign in to start a discussion.

Share this paper