| ชื่อเรื่อง | : | Hydrogen production via sorption enhanced biogas steam reforming using nickel-based catalysts |
| นักวิจัย | : | Janewit Phromprasit |
| คำค้น | : | Hydrogen , Catalytic reforming , Biogas , Nickel catalysts , Adsorption , Methane , Carbon dioxide , ไฮโดรเจน , รีฟอร์มมิงด้วยตัวเร่งปฏิกิริยา , ก๊าซชีวภาพ , ตัวเร่งปฏิกิริยานิเกิล , การดูดซับ , มีเธน , คาร์บอนไดออกไซด์ |
| หน่วยงาน | : | จุฬาลงกรณ์มหาวิทยาลัย |
| ผู้ร่วมงาน | : | Suttichai Assabumrungrat , Chulalongkorn University. Faculty of Engineering |
| ปีพิมพ์ | : | 2554 |
| อ้างอิง | : | http://cuir.car.chula.ac.th/handle/123456789/27396 |
| ที่มา | : | - |
| ความเชี่ยวชาญ | : | - |
| ความสัมพันธ์ | : | - |
| ขอบเขตของเนื้อหา | : | - |
| บทคัดย่อ/คำอธิบาย | : | Thesis (M.Eng.)--Chulalongkorn University, 2011 Hydrogen production via sorption enhanced biogas steam reforming is a process that combines CO₂ adsorption and hydrogen production in one unit operation. CaO is selected as an adsorbent because it has the highest stoichiometric adsorption capacity (78.6%) when compared with Li₂ZrO₃, K-Li₂ZrO₃, Na₂ZrO₃ and Li4SiO₄. CO₂ adsorption tests of CaO were carried out at different temperatures (450, 500, 550 and 600°C). The CO₂ sorption results showed the highest adsorption capacity at 600°C (0.2849 gCO₂/gCaO). In addition, the effect of steam in the feed of the CO₂ sorption process was considered. The results indicated that CO₂ sorption with the presence of steam (0.6724 gCO₂/gCaO) was higher than that without steam effect because steam can increase adsorption capacity by increasing CaO porosity. Four types of bed arrangement for sorption enhanced biogas steam reforming at S/C of 3, CH4/CO₂ of 1.5, reaction temperature of 600 °C and atmospheric pressure were performed. The results exhibited that bed arrangement type II (12.5 wt.% Ni/Al₂O₃ mixed with CaO) offered the highest improvement of CH₄ conversion (93% with CO₂ sorption effect and 80% without CO₂ sorption effect) and of purity of hydrogen product (97.3% with CO₂ sorption effect and 60% without CO₂ sorption effect). It was clear that when a lower reaction temperature of 500 °C was tested, the higher improvement of CH₄ conversion was increased (91.2% with CO₂ sorption effect and 27% without CO₂ sorption effect). Furthermore, when the catalyst was loaded on adsorbent as support (12.5 wt.% Ni/CaO and 5.4 wt.% Ni/CaO), the deactivation was observed. |
| บรรณานุกรม | : |
Janewit Phromprasit . (2554). Hydrogen production via sorption enhanced biogas steam reforming using nickel-based catalysts.
กรุงเทพมหานคร : จุฬาลงกรณ์มหาวิทยาลัย. Janewit Phromprasit . 2554. "Hydrogen production via sorption enhanced biogas steam reforming using nickel-based catalysts".
กรุงเทพมหานคร : จุฬาลงกรณ์มหาวิทยาลัย. Janewit Phromprasit . "Hydrogen production via sorption enhanced biogas steam reforming using nickel-based catalysts."
กรุงเทพมหานคร : จุฬาลงกรณ์มหาวิทยาลัย, 2554. Print. Janewit Phromprasit . Hydrogen production via sorption enhanced biogas steam reforming using nickel-based catalysts. กรุงเทพมหานคร : จุฬาลงกรณ์มหาวิทยาลัย; 2554.
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