Hydrothermal Organic Transformations

Hydrothermal organic transformations are chemical reactions that alter organic compounds in hot, pressurized water, providing a framework for understanding how carbon changes in subsurface and aquatic environments. Under elevated temperature and pressure, water acts as both solvent and reactant, promoting processes such as hydrolysis, oxidation-reduction reactions, decarboxylation, and rearrangement without requiring conventional organic solvents. These transformations influence the breakdown, mobility, and persistence of natural and contaminant-derived molecules in geothermal systems, hydrothermal vents, and deep sediments. Studying them supports environmental geochemistry, pollutant remediation, biomass conversion, and predictions of carbon cycling under extreme conditions.

Hydrothermal Organic Transformations - Related Videos

Research

JoVE Journal - Environment

An Experimental Protocol for Studying Mineral Effects on Organic Hydrothermal Transformations

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Cited by 9 •

2018

Earth-abundant minerals play important roles in the natural hydrothermal systems. Here, we describe a reliable and cost-effective method for the experimental investigation of organic-mineral interactions under hydrothermal conditions.

Chemical Gardens as Flow-through Reactors Simulating Natural Hydrothermal Systems

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Cited by 30 •

2015

We describe chemical garden formation via injection experiments that allow for laboratory simulations of natural chemical garden systems that form at submarine hydrothermal vents.

Research

JoVE Journal - Environment
Free Sample

Evaluation of Integrated Anaerobic Digestion and Hydrothermal Carbonization for Bioenergy Production

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Cited by 41 •

2014

A novel Upflow Anaerobic Solid State (UASS) reactor was used for biogas production from fibrous feedstock. Digestate from UASS reactor was hydrothermally carbonized into HTC biochar in a pressurized batch reactor. The integration of the two bioenergy concepts was applied in this study to increase overall bioenergy production.

Research

JoVE Journal - Chemistry
Free Sample

Transformation of Organic Household Leftovers into a Peat Substitute

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Cited by 3 •

2019

A protocol for hydrothermal carbonization of vegetable food waste in an autoclave is presented, with subsequent dry thermal treatment at 275 °C in a continuous flow reactor desorbing volatile organic substances. The aim is to produce a carbon material suitable as soil amendment product or substrate component.

Preparation of ZnO Nanorod/Graphene/ZnO Nanorod Epitaxial Double Heterostructure for Piezoelectrical Nanogenerator by Using Preheating Hydrothermal

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Cited by 4 •

2016

One-step fabrication method for obtaining freestanding epitaxial double heterostructure is presented. This approach could achieve ZnO coverage with a higher number density than that of the epitaxial single heterostructure, leading to a piezoelectric nanogenerator with an increased output electrical performance.

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