2019
DOI: 10.1088/1757-899x/509/1/012079
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Microfibrillated cellulose (MFC) isolation based on stalk sweet sorghum through alkalinization-bleaching treatment: effect of soaking temperature

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Cited by 8 publications
(5 citation statements)
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“…The surface was improved by the enhancement of the susceptible cellulose area; therefore, the modified material can be used for various industrial green packaging applications (Dixit & Yadav, 2019). The effect of alkali-bleach treatment has successfully obtained microfibrillated cellulose from stalk sweet sorghum waste fibers (Ismojo et al, 2019). Almost complete biomass saccharification was achieved with 4% NaOH at 50 C (Alam et al, 2019).…”
Section: Mechanical Physico-chemical and Biotechnological Modificatimentioning
confidence: 99%
“…The surface was improved by the enhancement of the susceptible cellulose area; therefore, the modified material can be used for various industrial green packaging applications (Dixit & Yadav, 2019). The effect of alkali-bleach treatment has successfully obtained microfibrillated cellulose from stalk sweet sorghum waste fibers (Ismojo et al, 2019). Almost complete biomass saccharification was achieved with 4% NaOH at 50 C (Alam et al, 2019).…”
Section: Mechanical Physico-chemical and Biotechnological Modificatimentioning
confidence: 99%
“…The surface was improved by the enhancement of the susceptible cellulose area; therefore, the modified material can be used for various industrial green packaging applications (Dixit & Yadav, 2019). The effect of alkalibleach treatment has successfully obtained microfibrillated cellulose from stalk sweet sorghum waste fibers (Ismojo et al, 2019). Almost complete biomass saccharification was achieved with 4% NaOH at 50 °C.…”
Section: Mechanical Physico-chemical and Biotechnological Modificatimentioning
confidence: 99%
“…Oleh karena itu diperlukan perlakuan tertentu pada permukaan serat untuk meningkatkan kompatibilitas MFC dengan matrik. Beberapa metode untuk meningkatkan kompatibilas MFC antara lain dengan asetilasi (Lepetit et al, 2017), proses alkalinisasi dilanjutkan dengan asetilasi dengan penambahan H 2 SO 4 (Ismojo et al, 2017), metode multistages (alkalinisasi, oksidasi, dan hidrolisis asam sulfat) (Yuanita et al, 2015), hidrolisis asam sulfat parsial (Saputro et al, 2017), alkalinisasi dilanjutkan dengan bleaching (Ismojo et al, 2019), dan Fenton pretreatment (Hellström et al, 2014). Alkalinisasi adalah proses untuk melarutkan lignin dan pengotor yang terdapat pada permukaan serat, oksidasi adalah proses penghilangan lapisan pengikat antara selulosa untuk membentuk mikrofibril, sedangkan hidrolisis asam digunakan untuk mendegradasi selulosa amorph dan menurunkan konsentrasi -OH (Ching and Ng, 2014;Lismeri and Darni, 2017;Mustafa et al, 2015;Nasution et al, 2017;Pradana et al, 2017;Tristantini et al, 2017).…”
Section: Pendahuluanunclassified