木質バイオマスガス化ガスからのバイオジメチルエーテル連続合成の検討
スポンサーリンク
概要
- 論文の詳細を見る
For the synthesis of bio-dimethyl ether (DME) from woody biomass via gasification, we have developed and promoted the biomass-to-liquid (BTL) process. This process consisted of oxygen-enrichment gasification of woody biomass by a bench-scale fixed-bed gasifier, wet gas cleaning, gas compression, desulfurization, removal of CO<SUB>2</SUB>, DME synthesis reaction by a fixed-bed reactor. The composition obtained at gasification step was as follows: 25.6 vol% of H<SUB>2</SUB>, 31.2 vol% of CO, 2.7 vol% of CH<SUB>4</SUB>, 0.4 vol% of CO<SUB>2</SUB>, 40.1 vol% of N<SUB>2</SUB>, <5 ppb of H<SUB>2</SUB>S, and <5 ppb of COS. In the DME synthesis step, DME was synthesized via methanol synthesis and following dehydration reaction in a fixed-bed reactor using the Cu-Zn catalyst for methanol synthesis and γ-Al<SUB>2</SUB>O<SUB>3</SUB> catalyst for dehydration. It was found that the Cu-Zn and γ-Al<SUB>2</SUB>O<SUB>3</SUB> catalysts exhibited higher activity when used as mixed powder form than used as separated pellet form. DME concentration 5.2 vol% in the product gas was obtained under the following conditions: 0.98 MPa, 230 °C, W/F=37.9 cat.-kg h/m<SUP>3</SUP>. It was possible to recover the almost all DME in the gas phase by using the activated carbon trap with dry ice. Finally, we succeeded in the continuous synthesis of DME over 200 h and recovery of approximately 120 g of liquefied bio-DME.
- 一般社団法人 日本エネルギー学会の論文
一般社団法人 日本エネルギー学会 | 論文
- Modifying Optical Texture of the Coke from Miike Coal
- Development of Petrochemical Industry with the Background of Iron Manufacturing Industry
- タイトル無し
- Study on Development of Waste Oil Combustion Burner for Energy Saving and Low-Pollution (II): Combustion of Waste Oil and Exhaust Emission Characteristics by Internal Mixing Twin-Fluid Atomizer:Combustion of Waste Oil and Exhaust Emission Characteristics
- Study on Development of Waste Oil Combustion Burner for Energy Saving and Low-Pollution (I): Atomization of High-Viscous Liquid Jet by Internal Mixing Twin-Fluid Atomizer:Atomization of High-Viscous Liquid Jet by Internal Mixing Twin-Fluid Atomizer