Decoding the Valorization of Hydrothermal Carbonization Process Water: From Chemical Complexity to Circular Waste-Management Pathways
Декодирование вариантов использования технологической воды гидротермального карбонизации: от химической сложности к циркулярным путям обращения с отходами
2026-04-18
SCID: 54.1/6cq2rsts
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PW recirculationanaerobic digestion (AD)hydrothermal carbonizationprocess water (PW)soil amendment
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Abstract (AI)
Hydrothermal carbonization (HTC) is considered a promising thermochemical process for converting organic wastes into high-quality char and process water (PW), a carbon- and nutrient-rich stream often considered wastewater. This review systematically analyzes the impacts of HTC operating conditions (i.e., feedstock, time, and temperature) on PW composition and its subsequent valorization routes, including PW recirculation, anaerobic digestion (AD), and soil amendment. We demonstrate that moderate HTC conditions (180–200 °C for 2 to 4 h) using nitrogen-rich feedstocks generate PW with high biodegradability and low toxicity, making it favorable for biological valorization such as AD. In contrast, high-severity conditions with lignocellulosic feedstocks are preferable for recirculation, which enhances hydrochar yield and fuel properties through in situ catalysis. The novelty of this work, which proposed an integrated engineering HTC-PW framework, systematically links process parameters, PW chemistry, and optimal downstream application, including detoxification strategies and techno-economic feasibility. This integrated approach moves HTC towards a circular loop by enhancing energy and nutrient recycling efficiency, mitigating environmental impact through direct discharge, and contributing to achieving multiple Sustainable Development Goals (SDGs 6, 7, 12, 13, and 15).
Key Findings
1
High-severity HTC conditions applied to lignocellulosic feedstocks produce PW suitable for recirculation, which enhances hydrochar yield and fuel properties via in situ catalysis.
2
Hydrothermal carbonization (HTC) produces process water (PW) that is carbon- and nutrient-rich and often treated as wastewater.
3
Implementing the integrated HTC–PW approach can enhance energy and nutrient recycling, reduce environmental impact from PW discharge, and contribute to SDGs 6, 7, 12, 13, and 15.
4
Moderate HTC conditions (180–200 °C for 2–4 h) with nitrogen-rich feedstocks yield PW with high biodegradability and low toxicity, suitable for biological valorization such as anaerobic digestion (AD).
5
The authors propose an integrated engineering HTC–PW framework linking process parameters, PW chemistry, detoxification strategies, and optimal downstream applications.
Research Object
Hydrothermal carbonization process water (PW) from organic waste treatment
Research Subject
Composition-dependent valorization pathways and management strategies for HTC process water, linking HTC operating conditions (feedstock, time, temperature) to PW chemistry, biological/recirculation/soil-amendment uses, detoxification, and techno-economic feasibility for circular waste management
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2026-04-18
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References available in scid.ai3
Energy Recovery from Garden and Park Waste by Hydrothermal Carbonization with Process Water Recycling2024
Lignin Extraction and Condensation as a Function of Temperature, Residence Time, and Solvent System in Flow-through Reactors2025
Hydrothermal carbonization of sewage digestate at wastewater treatment works: Influence of solid loading on characteristics of hydrochar, process water and plant energetics2020