Abdullah Rose Fadzilah, Rashid Umer, Taufiq-Yap Yun Hin, Ibrahim Mohd Lokman, Ngamcharussrivichai Chawalit, Azam Muhammad
Institute of Advanced Technology, Universiti Putra Malaysia 43400 UPM Serdang Selangor Malaysia
Chancellery Office, Universiti Malaysia Sabah 88400 Kota Kinabalu Sabah Malaysia.
RSC Adv. 2020 Jul 21;10(45):27183-27193. doi: 10.1039/d0ra04306k. eCollection 2020 Jul 15.
The potential of bifunctional nanocatalysts obtained from waste palm kernel shell (PKS) was investigated for one-step transesterification-esterification under mild conditions. State-of-the-art characterization illustrated that the synthesized catalyst has high stability through the thermal test, high BET surface area of 438.08 m g, pore volume of 0.367 cm g and pore width of 3.8 nm. The high amount of basicity (8.866 mmol g) and acidity (27.016 mmol g) promoted the successfulness of simultaneous transesterification-esterification. The investigation revealed that the combination of potassium and copper on activated carbon surface showed good catalytic activity by giving 95.0% FAME yield and 97.3% FFA conversion at a relatively mild condition of 5 wt% catalyst loading, 12 : 1 methanol to oil molar ratio at 80 °C for 4 hours with FAME yield > 80% after 5 reaction cycles. Characterization of the spent catalyst showed that the amount of basicity was reduced to 3.106 mmol g, which validated the reduction of the catalytic performance. The usage of waste material was successfully discovered in producing an effective bifunctional catalyst for biodiesel production from waste cooking oil (WCO) and has high potential for commercialization in the future.
研究了由废弃棕榈仁壳(PKS)制备的双功能纳米催化剂在温和条件下一步法进行酯交换-酯化反应的潜力。先进的表征表明,通过热测试,合成的催化剂具有高稳定性,其BET表面积高达438.08 m²/g,孔体积为0.367 cm³/g,孔径为3.8 nm。高碱量(8.866 mmol/g)和酸量(27.016 mmol/g)促进了同时进行酯交换-酯化反应的成功。研究表明,在活性炭表面负载钾和铜的组合在相对温和的条件下表现出良好的催化活性,即催化剂负载量为5 wt%、甲醇与油的摩尔比为12∶1、在80℃下反应4小时,脂肪酸甲酯(FAME)产率为95.0%,游离脂肪酸(FFA)转化率为97.3%,经过5次反应循环后FAME产率>80%。对失活催化剂的表征表明,碱量降至3.106 mmol/g,这证实了催化性能的降低。成功发现利用废料制备一种用于从废食用油(WCO)生产生物柴油的有效双功能催化剂,并且在未来具有很高的商业化潜力。