Life cycle benefits of enzymatic biodiesel co-produced in palm oil mills from sludge palm oil as renewable fuel for rural electrification
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E. Chan | Jully Tan | Cher Pin Song | Wail Gourich | Wei Zhe Ng | Aaron Anthony Obon | Chin Loong Lee | Yiguo H Ong | Kireshwen Maran
[1] P. E. Poh,et al. Life cycle assessment on alginate-based nanocomposite beads for the removal of lead(II) from aqueous solutions , 2022, Journal of Water Process Engineering.
[2] S. Leu,et al. Sustainability index accounting food and carbon benefits on circular 2,3-butanediol biorefinery with oil palm empty fruit bunches , 2021 .
[3] E. Chan,et al. Techno-economic analysis of enzymatic biodiesel co-produced in palm oil mills from sludge palm oil for improving renewable energy access in rural areas , 2021, Energy.
[4] P. Y. Liew,et al. Unlocking the environmental hotspots of palm biodiesel upstream production in Malaysia via life cycle assessment , 2021 .
[5] A. Shariff,et al. Comparative Study of a Life Cycle Assessment for Bio-Plastic Straws and Paper Straws: Malaysia’s Perspective , 2021 .
[6] C. L. Chew,et al. Improved biodiesel production from sludge palm oil catalyzed by a low-cost liquid lipase under low-input process conditions , 2021 .
[7] Md. Alam Hossain Mondal,et al. Solar or Diesel: A Comparison of Costs for Groundwater‐Fed Irrigation in Sub‐Saharan Africa Under Two Energy Solutions , 2021, Earth's Future.
[8] Á. Berenguer-Murcia,et al. Liquid lipase preparations designed for industrial production of biodiesel. Is it really an optimal solution? , 2021 .
[9] Chun Yong Ng,et al. Improving Sustainability of Palm Oil Production by Increasing Oil Extraction Rate: a Review , 2021, Food and Bioprocess Technology.
[10] Mun Yuen Chang,et al. Biodiesel production catalysed by low-cost liquid enzyme Eversa® Transform 2.0: Effect of free fatty acid content on lipase methanol tolerance and kinetic model , 2021, Fuel.
[11] A. Arora,et al. Biodiesel production from engineered sugarcane lipids under uncertain feedstock compositions: Process design and techno-economic analysis , 2020 .
[12] Hwai Chyuan Ong,et al. Recent advances in biodiesel production from agricultural products and microalgae using ionic liquids: Opportunities and challenges , 2020 .
[13] S. Klomklao,et al. Improvement of biodiesel production using waste cooking oil and applying single and mixed immobilised lipases on polyhydroxyalkanoate , 2020 .
[14] F. Kraxner,et al. Meeting the bioenergy targets from palm oil based biorefineries: An optimal configuration in Indonesia , 2020 .
[15] K. Jung,et al. Life Cycle Assessment of Alternative Ship Fuels for Coastal Ferry Operating in Republic of Korea , 2020, Journal of Marine Science and Engineering.
[16] Shangde Sun,et al. Conversion of waste frying palm oil into biodiesel using free lipase A from Candida antarctica as a novel catalyst , 2020 .
[17] M. Al-Shannag,et al. Biodiesel purification using biomass-based adsorbent manufactured from delignified olive cake residues , 2020 .
[18] V. M. Ortiz-Martínez,et al. Production of biodiesel under supercritical conditions: State of the art and bibliometric analysis , 2020 .
[19] Hu Li,et al. Direct production of biodiesel from waste oils with a strong solid base from alkalized industrial clay ash , 2020 .
[20] Wenming Yang,et al. Effects of the three dual-fuel strategies on performance and emissions of a biodiesel engine , 2020 .
[21] Pakawadee Kaewkannetra,et al. Combination of fatty acids extraction and enzymatic esterification for biodiesel production using sludge palm oil as a low-cost substrate , 2020 .
[22] L. Stringer,et al. Energy generation from palm oil mill effluent: A life cycle assessment of two biogas technologies , 2020, Energy.
[23] Hakan Temur,et al. Removal of water by using cationic resin during biodiesel purification , 2019 .
[24] S. Nur,et al. Processing technology POME-pond in Indonesia: A mini review , 2019, IOP Conference Series: Earth and Environmental Science.
[25] M. Yousefi,et al. Co-immobilization of Rhizomucor miehei lipase and Candida antarctica lipase B and optimization of biocatalytic biodiesel production from palm oil using response surface methodology , 2019, Renewable Energy.
[26] M. Abdullah,et al. Life cycle assessment of waste cooking oil for biodiesel production using waste chicken eggshell derived CaO as catalyst via transesterification , 2019, Biocatalysis and Agricultural Biotechnology.
[27] I. Chew,et al. Life Cycle Optimization for Synthetic Rubber Glove Manufacturing , 2019, Chemical Engineering & Technology.
[28] Chanatip Samart,et al. Biodiesel production in an autoclave reactor using waste palm oil and coconut coir husk derived catalyst , 2019, Renewable Energy.
[29] Luis C. Dias,et al. Planning strategies to address operational and price uncertainty in biodiesel production , 2019, Applied Energy.
[30] M. Law,et al. A coupled electromagnetic-thermal-fluid-kinetic model for microwave-assisted production of Palm Fatty Acid Distillate biodiesel , 2019, Applied Energy.
[31] S. Silveira,et al. Cost competitiveness of palm oil biodiesel production in Indonesia , 2019, Energy.
[32] J. P. Bender,et al. Lab and pilot plant FAME production through enzyme-catalyzed reaction of low-cost feedstocks , 2019, Bioresource Technology Reports.
[33] M. Tišma,et al. Scale-up and economic analysis of biodiesel production from recycled grease trap waste , 2018, Applied Energy.
[34] H. Hamad,et al. Process intensification of the transesterification of palm oil to biodiesel in a batch agitated vessel provided with mesh screen extended baffles , 2018, Energy.
[35] He Xu,et al. Life-cycle assessment for coal-based methanol production in China , 2018 .
[36] Farnaz Zadehahmadi,et al. Efficient biodiesel production using a lipase@ZIF-67 nanobioreactor , 2018 .
[37] Yee Yaw Choong,et al. Strategies for improving biogas production of palm oil mill effluent (POME) anaerobic digestion: A critical review , 2018 .
[38] Chunfeng Song,et al. Process intensification of transesterification for biodiesel production from palm oil: Microwave irradiation on transesterification reaction catalyzed by acidic imidazolium ionic liquids , 2018 .
[39] Lew P. Christopher,et al. Optimization of enzyme-catalyzed biodiesel production from crude tall oil using Taguchi method , 2017 .
[40] J. Lema,et al. Life cycle assessment of β-Galactosidase enzyme production , 2017 .
[41] Junming Xu,et al. Thermochemical conversion of triglycerides for production of drop-in liquid fuels , 2016 .
[42] Debora L. Manuale,et al. Biodiesel purification in one single stage using silica as adsorbent , 2014 .
[43] Beng Ti Tey,et al. Biogas from palm oil mill effluent (POME): Opportunities and challenges from Malaysia's perspective , 2013 .
[44] Rao Y. Surampalli,et al. Energy balance and greenhouse gas emissions of biodiesel production from oil derived from wastewater and wastewater sludge , 2013 .
[45] Sumiani Yusoff,et al. Life Cycle Assessment of Sodium Hydroxide , 2013 .
[46] Withida Patthanaissaranukool,et al. Potential reduction of carbon emissions from Crude Palm Oil production based on energy and carbon balances , 2013 .
[47] P. Rogers,et al. Production of biodiesel via ethanolysis of waste cooking oil using immobilised lipase. , 2012 .
[48] Thapat Silalertruksa,et al. Environmental sustainability assessment of palm biodiesel production in Thailand , 2012 .
[49] S. Kent Hoekman,et al. Review of the effects of biodiesel on NOx emissions , 2012 .
[50] Shabbir H. Gheewala,et al. Life cycle assessment of gasoline in Indonesia , 2012, The International Journal of Life Cycle Assessment.
[51] Mohammad. Rasul,et al. Comparison of the performance and emissions of different biodiesel blends against petroleum diesel , 2011 .
[52] C. Muraleedharan,et al. A comparative study of vegetable oil methyl esters (biodiesels) , 2011 .
[53] I. M. Atadashi,et al. Biodiesel separation and purification: A review , 2011 .
[54] José Luz Silveira,et al. Biodiesel CO2 emissions: A comparison with the main fuels in the Brazilian market , 2009 .
[55] Z. Mao,et al. Preparation of Biodiesel Catalyzed by Solid Super Base of Calcium Oxide and Its Refining Process , 2006 .
[56] P. L. Spath,et al. Life cycle assessment of a biomass gasification combined-cycle power system , 1997 .
[57] K. Westberg,et al. Carbon Monoxide: Its Role in Photochemical Smog Formation , 1971, Science.
[58] D. L. Flumignan,et al. Production of biodiesel from crude palm oil by a sequential hydrolysis/esterification process using subcritical water , 2019, Renewable Energy.
[59] D. Yuliani. Is feed-in-tariff policy effective for increasing deployment of renewable energy in Indonesia? , 2016 .
[60] Chakrit Tongurai,et al. Life Cycle Assessment of Biodiesel Production from Palm Oil in Indonesia , 2014 .
[61] M. Lapuerta,et al. Fatty acid methyl esters (FAMEs) from castor oil: Production process assessment and synergistic effects in its properties , 2010 .
[62] Dong Yao-qing,et al. Life Cycle Emission Assessment of Diesel and Its Alternative Fuels , 2007 .
[63] K. Demerjian,et al. The effect of carbon monoxide on the chemistry of photochemical smog systems. , 1973, Environmental letters.