TY - JOUR
T1 - Hydrothermal treatment of sewage sludge in sub- and supercritical water
T2 - Fundamentals, mechanisms, and sustainable valorization
AU - Yang, Chuang
AU - Xu, Donghai
AU - Zhang, Jie
AU - Qian, Li Li
AU - Li, Guoxing
AU - Chen, Hao
N1 - Publisher Copyright:
© 2026 The Energy Institute. Published by Elsevier Ltd. All rights are reserved, including those for text and data mining, AI training, and similar technologies.
PY - 2026/10
Y1 - 2026/10
N2 - Hydrothermal treatment (HT) technologies offer a promising route for the sustainable and efficient management of sewage sludge by enabling harmless disposal, volume reduction, energy recovery, and resource valorization in subcritical and supercritical water conditions. This review systematically summarizes the principles, operating conditions, and product characteristics of key HT pathways, including thermal hydrolysis, hydrothermal carbonization, wet oxidation, hydrothermal liquefaction, supercritical water gasification, and supercritical water oxidation. Several aspects are comprehensively discussed, including the degradation mechanisms of organic matter, the transformation behaviors of pollutants such as heavy metals and microplastics, as well as the formation pathways of value-added products. Comparative analysis highlights the advantages, limitations, and application potential of each technology. Finally, key challenges including cross-component reaction networks, emerging contaminant fates, catalyst deactivation, and nutrient partitioning are identified. Future research directions are proposed to support the advancement and large-scale implementation of HT technologies for sewage sludge treatment.
AB - Hydrothermal treatment (HT) technologies offer a promising route for the sustainable and efficient management of sewage sludge by enabling harmless disposal, volume reduction, energy recovery, and resource valorization in subcritical and supercritical water conditions. This review systematically summarizes the principles, operating conditions, and product characteristics of key HT pathways, including thermal hydrolysis, hydrothermal carbonization, wet oxidation, hydrothermal liquefaction, supercritical water gasification, and supercritical water oxidation. Several aspects are comprehensively discussed, including the degradation mechanisms of organic matter, the transformation behaviors of pollutants such as heavy metals and microplastics, as well as the formation pathways of value-added products. Comparative analysis highlights the advantages, limitations, and application potential of each technology. Finally, key challenges including cross-component reaction networks, emerging contaminant fates, catalyst deactivation, and nutrient partitioning are identified. Future research directions are proposed to support the advancement and large-scale implementation of HT technologies for sewage sludge treatment.
KW - Hydrothermal treatment
KW - Pollution mitigation
KW - Process integration
KW - Resource recovery
KW - Sewage sludge
UR - https://www.scopus.com/pages/publications/105044401034
U2 - 10.1016/j.joei.2026.102662
DO - 10.1016/j.joei.2026.102662
M3 - 文献综述
AN - SCOPUS:105044401034
SN - 1743-9671
VL - 128
JO - Journal of the Energy Institute
JF - Journal of the Energy Institute
M1 - 102662
ER -