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Syngas Technologies

International Petroleum Technology Conference, 2014
Abstract This paper will discuss the comparison between the three leading Syngas manufacturing technologies; Partial Oxidation (POX), Autothermal Reforming (ATR) and the Steam Methane Reformer (SMR) technology. Also, this paper will discuss the development of the Catalytic Partial Oxidation COPox syngas technology ...
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Syngas from lignin

2023
Gasification of solid fuels has been an established process for over a century and found new interests in recent years as a pathway to more efficient and effective energy productions routes as well as chemical synthesis. The possibility to exploit unconventional feedstocks is the key feature of this flexible chemical synthesis pathway that makes ...
Manenti F.   +3 more
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Homogeneous syngas conversion

Coordination Chemistry Reviews, 2011
Recent approaches to the homogeneous conversion of synthesis gas to organic chemicals and fuels are reviewed. Progress in this field is placed in the context of important industrially practiced transformations, such as the Fischer–Tropsch process for conversion of synthesis gas to higher alkanes, as well as previous attempts to produce a viable ...
West, Nathan M.   +3 more
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Cobalt Carbide Nanocatalysts for Efficient Syngas Conversion to Value-Added Chemicals with High Selectivity.

Accounts of Chemical Research, 2021
ConspectusSyngas conversion is a key platform for efficient utilization of various carbon-containing resources including coal, natural gas, biomass, organic wastes, and even CO2.
Tiejun Lin   +7 more
semanticscholar   +1 more source

Designing Undercoordinated Ni-Nx and Fe-Nx on Holey Graphene for Electrochemical CO2 Conversion to Syngas.

ACS Nano, 2021
In this study, we propose a top-down approach for the controlled preparation of undercoordinated Ni-Nx (Ni-hG) and Fe-Nx (Fe-hG) catalysts within a holey graphene framework, for the electrochemical CO2 reduction reaction (CO2RR) to synthesis gas (syngas).
Joshua Leverett   +14 more
semanticscholar   +1 more source

Syngas Dual-Fuelling

2018
Biomass can be converted into a useful source of energy through gasification. The gasification product, which is a mixture of different gases, is known as synthesis gas or syngas. The composition of syngas may fluctuate due to many factors such as operational errors of the gasifier as well as the type of feedstock used or may be due to the feeding rate
Bahaaddein K. M. Mahgoub   +2 more
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Cooperative Syngas Production and C-N Bond Formation in One Photoredox Cycle.

Angewandte Chemie, 2020
Solar-driven syngas production by CO 2 reduction provides a sustainable strategy to produce renewable feedstocks. However, this promising reaction often suffers from tough CO 2 activation, sluggish oxidative half-reaction kinetics and undesired by ...
Chuang Han   +5 more
semanticscholar   +1 more source

Syngas composition study

Frontiers of Energy and Power Engineering in China, 2009
The syngas composition characteristic was investigated in the real slurry-feed gasifier using a detailed gas phase reaction mechanism. The results show that the time for syngas to reach equilibrium is much shorter than the residence time for slurry feed entrained-flow gasifiers, indicating a gas phase species partial equilibrium state.
Zhe Wang   +3 more
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Syngas in perspective

Catalysis Today, 2002
Abstract Syngas manufacture is an important part of a Fischer–Tropsch (FT) plant as it is responsible for ca. 60% of the investments. The developments of syngas technologies are summarized in Section 1 . The present choice for large-scale FT plants based on natural gas is autothermal reforming. The requirements to the syngas and the state of art are
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Syngas Oxidation Mechanism

Combustion, Explosion, and Shock Waves, 2010
A comprehensive analysis of synthesis gas (syngas) oxidation kinetics in wide ranges of temperature, pressure, fuel-to-air equivalence ratio, and fuel composition is performed on the basis of the reaction mechanism of syngas ignition and combustion in air.
A. M. Starik   +3 more
openaire   +1 more source

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