294
J. Ma et al.
Fig. 10.1 Phylogenetic analysis of the strain based on 16S rRNA sequence and its antagonistic
effect against the pathogenic fungi
≤ 15%) can promote the producing mechanism of hydrogen bond and “solid bridge”
in the process of ligneous biomass compound modulating. A drying reaction device
for stabilizing the fluidization of ligneous biomass bed under the conditions of low
oxygen and none-fluidization additives has been invented. A preparation technology
of biomass compound briquette with wide material adaptability where steps of materials such as multi-modulating, fluidized bed drying, and molding are integrated and
linked has been structured. High-quality solid-formed granule fuel has been developed with the extrusion of energy consumption reduced by 18% but water absorption,
calorific value, and Meyer intensity of the formed granule increased by 20%, 16%,
and 15%, respectively (Fig. 10.2) [38].
Fig. 10.2 Mechanism of the composite fuel production using processed residues of industrial oil
J. Ma et al.
Fig. 10.1 Phylogenetic analysis of the strain based on 16S rRNA sequence and its antagonistic
effect against the pathogenic fungi
≤ 15%) can promote the producing mechanism of hydrogen bond and “solid bridge”
in the process of ligneous biomass compound modulating. A drying reaction device
for stabilizing the fluidization of ligneous biomass bed under the conditions of low
oxygen and none-fluidization additives has been invented. A preparation technology
of biomass compound briquette with wide material adaptability where steps of materials such as multi-modulating, fluidized bed drying, and molding are integrated and
linked has been structured. High-quality solid-formed granule fuel has been developed with the extrusion of energy consumption reduced by 18% but water absorption,
calorific value, and Meyer intensity of the formed granule increased by 20%, 16%,
and 15%, respectively (Fig. 10.2) [38].
Fig. 10.2 Mechanism of the composite fuel production using processed residues of industrial oil
