Life cycle assessment of biodiesel production by using impregnated magnetic biochar derived from waste palm kernel shell

被引:29
作者
Erison, Arson Edberg anak [1 ]
Tan, Yie Hua [1 ]
Mubarak, N. M. [2 ]
Kansedo, Jibrail [1 ]
Khalid, Mohammad [3 ]
Abdullah, Mohammad Omar [4 ]
Ghasemi, Mostafa [5 ]
机构
[1] Curtin Univ Malaysia, Fac Engn & Sci, Dept Chem & Energy Engn, CDT 250, Miri 98009, Sarawak, Malaysia
[2] Univ Teknol Brunei, Fac Engn, Petr & Chem Engn, Bandar Seri Begawan BE-1410, Brunei
[3] Sunway Univ, Sch Engn & Technol, Graphene & Adv 2D Mat Res Grp GAMRG, 5 Jalan Univ, Subang Jaya 47500, Selangor, Malaysia
[4] Univ Malaysia Sarawak, Fac Engn, Dept Chem Engn & Energy Sustainabil, Kota Samarahan 94300, Sarawak, Malaysia
[5] Sohar Univ, Fac Engn, Chem Engn Sect, Sohar 311, Oman
关键词
Magnetic biochar catalyst; Biodiesel; Life cycle analysis; Transesterification; COOKING-OIL; CATALYST; TRANSESTERIFICATION; BIOMASS; ENERGY; SIMULATION;
D O I
10.1016/j.envres.2022.114149
中图分类号
X [环境科学、安全科学];
学科分类号
08 ; 0830 ;
摘要
Biodiesel is renewable, biodegradable, biocompatible (non-toxic) and environmentally friendly, which emits less pollution than traditional fossil-based diesel, making it the most promising and ideal option. However, biodiesel is facing many current issues, mostly related to the utilisation of homogeneous catalytic technology, and this circumstance obstructs its potential development and advancement. Therefore, new pathways for biodiesel production need to be explored, and the aforementioned issues need to be addressed. Recently, a study was conducted on the impregnated magnetic biochar derived from a waste palm kernel shell (PKS) catalyst that can replace conventional catalysts due to its reusability property. Nevertheless, the environmental impacts of impregnated magnetic biochar derived from waste PKS catalyst for biodiesel production are yet to be studied. This study focuses on the evaluation of the life cycle assessment (LCA) of palm-based cooking oil for biodiesel production catalysed by impregnated magnetic biochar derived from waste PKS. Simapro was used in this study to evaluate the impact assessment methodologies. Case 1 (6.64 x 102 Pt) has contributed less to environmental impacts than Case 2 (1.83 x 103 Pt). This indicates purchasing refined palm oil for biodiesel production may reduce environmental impacts by 64% compared to producing biodiesel from raw fruit bunches. In the midpoint assessment, the transesterification process was identified as the hotspot and marine aquatic ecotoxicity as the highest impact category with a value of 1.00 x 106 kg 1,4-DB eq for 1 tonne of biodiesel produced. The endpoint results showed that Case 1 revealed the greatest impact on the transesterification process, with cumulative damage of 461 Pt. Scenario without processing the raw palm fruit bunches to obtained palm oil was better than Case 2. Further research should be conducted on life cycle cost and sensitivity analysis to evaluate the economic feasibility and promote sustainable biodiesel production.
引用
收藏
页数:14
相关论文
共 67 条
[51]   Process development of two-step esterification plus catalyst solution recycling on waste vegetable oil possessing high free fatty acid [J].
Photaworn, Songtham ;
Tongurai, Chakrit ;
Kungsanunt, Suratsawadee .
CHEMICAL ENGINEERING AND PROCESSING-PROCESS INTENSIFICATION, 2017, 118 :1-8
[52]   Magnetic biochar derived from waste palm kernel shell for biodiesel production via sulfonation [J].
Quah, Ray Vern ;
Tan, Yie Hua ;
Mubarak, N. M. ;
Kansedo, Jibrail ;
Khalid, Mohammad ;
Abdullah, E. C. ;
Abdullah, Mohammad Omar .
WASTE MANAGEMENT, 2020, 118 (118) :626-636
[53]   Life cycle assessment of biodiesel production using alkali, soluble and immobilized enzyme catalyst processes [J].
Raman, Jegannathan Kenthorai ;
Ting, Vanessa Foo Wang ;
Pogaku, Ravindra .
BIOMASS & BIOENERGY, 2011, 35 (10) :4221-4229
[54]   Biomass Energy in Malaysia: Current Scenario, Policies, and Implementation Challenges [J].
Rashidi, Nor Adilla ;
Chai, Yee Ho ;
Yusup, Suzana .
BIOENERGY RESEARCH, 2022, 15 (03) :1371-1386
[55]   A cleaner route of biodiesel production from waste frying oil using novel potassium tin oxide catalyst: A smart liquid-waste management [J].
Roy, Tania ;
Agarwal, Avinash Kumar ;
Sharma, Yogesh Chandra .
WASTE MANAGEMENT, 2021, 135 :243-255
[56]   Process simulation and life cycle analysis of biodiesel production [J].
Sajid, Zaman ;
Khan, Faisal ;
Zhang, Yan .
RENEWABLE ENERGY, 2016, 85 :945-952
[57]   Stability of biodiesel - A review [J].
Saluja, Rajesh Kumar ;
Kumar, Vineet ;
Sham, Radhey .
RENEWABLE & SUSTAINABLE ENERGY REVIEWS, 2016, 62 :866-881
[58]   Life cycle assessment of biodiesel from estuarine microalgae [J].
Saranya, G. ;
Ramachandra, T., V .
ENERGY CONVERSION AND MANAGEMENT-X, 2020, 8
[59]   Life cycle assessment of municipal waste management options [J].
Sarigiannis, D. A. ;
Handakas, E. J. ;
Karakitsios, S. P. ;
Gotti, A. .
ENVIRONMENTAL RESEARCH, 2021, 193
[60]   Evaluation of various waste cooking oils for biodiesel production: A comprehensive analysis of feedstock [J].
Sharma, Priyanka ;
Usman, Muhammad ;
Salama, El-Sayed ;
Redina, Margarita ;
Thakur, Nandini ;
Li, Xiangkai .
WASTE MANAGEMENT, 2021, 136 :219-229