Occurrence, Fate, and Implications of Heavy Metals during Anaerobic Digestion: A Review

Author:

Kadam Rahul,Khanthong Kamonwan,Jang Heewon,Lee Jonghwa,Park JungyuORCID

Abstract

Over the years, anaerobic digestion (AD) has evolved as a competent technology to retrieve energy potential from various organic substrates, including wastewater. However, the energy metabolisms of anaerobic microorganisms, biochemical reactions, and biogas production are affected by various parameters, including heavy metals. It is important to understand the interaction of heavy metals with anaerobes and their potential influence on the process to enhance energy potential. This review methodically outlines the occurrence and role of heavy metals in the AD process. Additionally, the repercussions of the most common heavy metals (i.e., Cu, Zn, Cd, Fe, and Ni) on each stage of AD (i.e., hydrolysis, acidogenesis, and methanogenesis) have been discussed. We found that traces of heavy metals can endorse anaerobic digestion, but inhibition increases with increasing concentration. Methanogenic archaea are more susceptible to heavy metal inhibition than hydrolytic and acidogenic archaea. An improved understanding and relevant intuition will help to promote biogas production along with heavy metal management.

Funder

Chosun University 2021

Basic Science Research Program

Ministry of Education

Publisher

MDPI AG

Subject

Energy (miscellaneous),Energy Engineering and Power Technology,Renewable Energy, Sustainability and the Environment,Electrical and Electronic Engineering,Control and Optimization,Engineering (miscellaneous),Building and Construction

Reference84 articles.

1. Inhibition of anaerobic digestion processes: Applications of molecular tools;Bioresour. Technol.,2018

2. Bioenergy and biofuels: History, status, and perspective;Renew. Sustain. Energy Rev.,2015

3. (2022, September 14). Enerdata. Global Energy Transition Statistics. Available online: https://yearbook.enerdata.net/.

4. Comparison of soil heavy metal pollution caused by e-waste recycling activities and traditional industrial operations;Environ. Sci. Pollut. Res.,2017

5. Evolution of heavy metals during thermal treatment of manure: A critical review and outlooks;Chemosphere,2020

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