Entrained flow gasification of biomass provides the opportunity to convert low-grade biogenic feedstocks to high-grade synthetic fuels. For a top-fired entrained flow slagging biomass gasifier, the thermophysical properties of the ash and slag limit process operation and affect process energy efficiency. The biomass ash has to be molten and slag viscosity has to be in a certain range for it to flow out of the gasifier. However, direct sampling, analysis, and evaluation of slag formation and behaviors are often challenging as entrained flow biomass gasification operates at high temperatures (i.e., 1200-1500°C) continuously. One alternative is to study synthetic ash's melting and sintering behaviors at elevated temperatures, which represent t...
Eight different pellets (one woody and seven blends of woody and herbaceous biomass) produced by an ...
International audienceMixing biomasses has a good potential to solve operational problems in thermoc...
Biomass is considered to be CO2 neutral, and to be able to reduce the dependency on fossil fuels the...
Entrained flow gasification of biomass provides the opportunity to convert low-grade biogenic feedst...
Pressurised entrained-flow gasification (PEFG) of woody biomass has the potential to produce high pu...
To handle a great demand for biomass, alternative biomasses beyond stem wood are being introduced in...
Pressurized entrained-flow gasification (PEFG) of straw biomass is currently being studied as a pote...
Pressurised entrained‐flow gasification (PEFG) of sustainable woody biomass offers the opportunity f...
Observations from recent campaigns of the pilot-scale pressurised entrained-flow biomass gasifier (P...
The continuously growing demand for fuels in the transportation sector has led to the increased use ...
Pressurized entrained-flow gasification (PEFG) of bark and a bark/peat mixture (BPM) was carried out...
In thermochemical utilization of biomass, ash produced during the process is a major problem that ca...
The bioliq® process, developed at the Karlsruhe Institute for Technology, aims at the production of ...
Eight different pellets (one woody and seven blends of woody and herbaceous biomass) produced by an ...
International audienceMixing biomasses has a good potential to solve operational problems in thermoc...
Biomass is considered to be CO2 neutral, and to be able to reduce the dependency on fossil fuels the...
Entrained flow gasification of biomass provides the opportunity to convert low-grade biogenic feedst...
Pressurised entrained-flow gasification (PEFG) of woody biomass has the potential to produce high pu...
To handle a great demand for biomass, alternative biomasses beyond stem wood are being introduced in...
Pressurized entrained-flow gasification (PEFG) of straw biomass is currently being studied as a pote...
Pressurised entrained‐flow gasification (PEFG) of sustainable woody biomass offers the opportunity f...
Observations from recent campaigns of the pilot-scale pressurised entrained-flow biomass gasifier (P...
The continuously growing demand for fuels in the transportation sector has led to the increased use ...
Pressurized entrained-flow gasification (PEFG) of bark and a bark/peat mixture (BPM) was carried out...
In thermochemical utilization of biomass, ash produced during the process is a major problem that ca...
The bioliq® process, developed at the Karlsruhe Institute for Technology, aims at the production of ...
Eight different pellets (one woody and seven blends of woody and herbaceous biomass) produced by an ...
International audienceMixing biomasses has a good potential to solve operational problems in thermoc...
Biomass is considered to be CO2 neutral, and to be able to reduce the dependency on fossil fuels the...