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Sökning: WFRF:(Senoro D. B.)

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1.
  • Lybecker, Erik, et al. (författare)
  • Tool For Finding The Optimal Location Of Biorefinery For Seaweeds And Bamboos In The Philippines
  • 2018
  • Ingår i: 4th Electronic and Green Materials International Conference 2018 (EGM 2018). - : American Institute of Physics (AIP). - 9780735417717
  • Konferensbidrag (refereegranskat)abstract
    • This paper discusses the outputs of the exploration for the optimal location of a biorefinery within the Philippines using mixed-integer linear programming (MILP) in Matlab, stochastic analysis and modulating under "ceteris paribus" to put more emphasis on the seaweed supply. The biorefinery is part of a supply-chain involving farms, seaweed farms and international ports. It investigated the availability of seaweeds within the provinces and environmental risk factors on seaweed production using stochastic analysis. The capacity of the biorefinery considered to be dependent on the availability and out of stock risk. The result of the study showed that the integration of mixed-integer linear programming and stochastic analysis could locate a potential optimal location of a biorefinery in the Philippines. It was found out that Panay Island is the optimal location for a biorefinery for seaweeds and bamboo. The study was carried out to fulfill the long term ambition in order to develop infrastructure in order to produce high valued products of biocomposites that come from Philippines natural resources.
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2.
  • Custodio, C. L., et al. (författare)
  • Effect of a chemical treatment series on the structure and mechanical properties of abaca fiber (Musa textilis)
  • 2020
  • Ingår i: Materials Science Forum. - : Trans Tech Publications, Ltd.. ; , s. 64-69
  • Konferensbidrag (refereegranskat)abstract
    • This study investigates the relationships between the composition, cell wall microstructure, and mechanical properties of the abaca fiber. Raw abaca fibers have undergone a series of sequential chemical treatments (acetone/methanol, boiling water, EDTA, HCl, NaClO2, and NaOH) to selectively remove certain non-cellulosic components (NCCs) in the fiber, such as waxes, water-soluble fragments, pectin, and lignin in a step-by-step manner. Changes in composition, morphology, and mechanical properties were observed using FTIR spectroscopy and ion chromatography, digital microscope and SEM, and tensile tests, respectively. The raw fiber was composed of 23% NCCs, 18% hemicellulose, and 58% cellulose, and exhibited a 17.4 GPa Young’s modulus and a 444 MPa tensile strength. Furthermore, the raw abaca fibers demonstrated a linear tensile graph without yielding, and a planar fracture surface without fiber pull-outs, thus suggesting a highly elastic but brittle nature. At the end of the alkali treatment, the fibrillated fiber was 83% cellulose, yet the stiffness and strength dropped to 7.3 GPa and 55 MPa, respectively, as more components were removed, and microfibril relaxation and realignment have occurred. Load-bearing cellulose and hemicellulose accounted for 42% and 36% of the stiffness, respectively, due to –OH groups capable of hydrogen bonding. 63% of the strength was due to thenative NCC matrices, which contribute a significant role within the cell wall’s load-transfer activities.
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  • Resultat 1-2 av 2
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refereegranskat (2)
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Senoro, D. B. (2)
Berglund, Lars, 1956 ... (1)
Yang, Xuan (1)
Custodio, C. L. (1)
Wilsby, Astrid (1)
Waller, Viktor (1)
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Aquino, R. R. (1)
Tayo, L. L. (1)
Lybecker, Erik (1)
Magcuyao, D. A. (1)
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