Brief Dataset on produced handsheet from oil palm residue lignocellulose treated with Bacillus cereus on mechanical and physical characterization
Autor: | Waluyo Adi Siswanto, Muhd Hafeez Zainulabidin, Chee-Ming Chan, Ashuvila Mohd Aripin, Angzzas Sari Mohd Kassim, Sharfina Mutia Syarifah, Nadiah Ishak |
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Jazyk: | angličtina |
Rok vydání: | 2021 |
Předmět: |
Science (General)
Materials science Oil palm lignocellulose Biomass waste Computer applications to medicine. Medical informatics R858-859.7 Biomass engineering.material Q1-390 03 medical and health sciences chemistry.chemical_compound 0302 clinical medicine Lignin Lignin removal Hemicellulose Biodelignification Fiber Chemical composition Handsheet formation 030304 developmental biology Data Article 0303 health sciences Residue (complex analysis) Multidisciplinary Pulp (paper) Pulp and paper industry chemistry engineering Composition (visual arts) Biopulping 030217 neurology & neurosurgery |
Zdroj: | Data in Brief Data in Brief, Vol 36, Iss, Pp 107030-(2021) |
ISSN: | 2352-3409 |
Popis: | This article presents experimental data on oil palm biomass (oil palm leaves, oil palm trunk and empty fruit bunch) handsheet production characterization by biodelignification treatment using Bacillus cereus extracted from termite gut (Coptotermus curvignathus). It associates the lignocellulose chemical composition obtained via technical association pulp and paper industry TAPPI T 222 om-02 testing on lignin content reduction determination, holocellulose and hemicellulose content determination (Kurscher-Hoffner method). Several data obtained for handsheet characterization presents brightness, opacity, contrast ratio, din transparency, thickness, bursting and tearing indexes are collected. Handsheet surface morphology was also observed on ratio of gaps differences between fiber bonding conducted using scanning electron microscope (SEM) and ImageJ software. The raw data findings supplement chemical composition analysis for both untreated and treated substrates on handsheet quality performance check as presented in the research article “Bio-Mechanical Pulping of Bacteria Pre-Treatment on Oil Palm Biomass for Handsheet Production” [1]. For understanding correlations into the difference among lignocellulose content composition which affect the handsheet formation and mechanical strength refer to article from this research [1]. This dataset is made publicly available for optimizing alternative waste material reuse in the pulp and paper industrial section. |
Databáze: | OpenAIRE |
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