PENGARUH PENAMBAHAN FILLER NANO PCC (PRECIPITATED CALCIUM CARBONATE) DAN GLISEROL TERHADAP SIFAT MEKANIK DAN BIODEGRADASI PADA BIOPLASTIK PATI JAGUNG

Damayanti, Resa (2024) PENGARUH PENAMBAHAN FILLER NANO PCC (PRECIPITATED CALCIUM CARBONATE) DAN GLISEROL TERHADAP SIFAT MEKANIK DAN BIODEGRADASI PADA BIOPLASTIK PATI JAGUNG. Undergraduate thesis, UPN VETERAN JAWA TIMUR.

[img] Text (COVER)
18031010002-COVER.pdf

Download (1MB)
[img] Text (BAB 1)
18031010002-BAB 1.pdf

Download (416kB)
[img] Text (BAB 2)
18031010002-BAB 2.pdf
Restricted to Repository staff only until 16 January 2027.

Download (803kB)
[img] Text (BAB 3)
18031010002-BAB 3.pdf
Restricted to Repository staff only until 16 January 2027.

Download (655kB)
[img] Text (BAB 4)
18031010002-BAB 4.pdf
Restricted to Repository staff only until 16 January 2027.

Download (876kB)
[img] Text (BAB 5)
18031010002-BAB 5.pdf

Download (401kB)
[img] Text (DAFPUS)
18031010002-DAFTAR PUSTAKA.pdf

Download (343kB)
[img] Text (LAMPIRAN)
18031010002-LAMPIRAN.pdf
Restricted to Repository staff only

Download (2MB)

Abstract

Precipitated Calcium Carbonate (PCC) with a size less than 100 nm has been proven to improve the hardness and strength of a material, making it suitable as a filler in the production of bioplastics. Biodegradable plastic is plastic that can be used like conventional plastic but can decompose by microorganisms after use, making it environmentally friendly. The aim of this study is to examine the effect of adding Nano Precipitated Calcium Carbonate (PCC) filler and glycerol on the mechanical properties and biodegradation of corn starch-based bioplastics, as well as to produce biodegradable plastic that meets the Indonesian National Standard (SNI). The method used is melt intercalation to make bioplastic from corn starch with the addition of Nano-PCC and glycerol. The best results were obtained with 12% Nano-PCC and 20% glycerol, which gave a tensile strength of 3.54 MPa, 12% Nano-PCC and 50% glycerol, which resulted in an elongation percentage of 23.7%, and 4% Nano-PCC and 60% glycerol, which resulted in 100% biodegradation within 30 days. A higher concentration of Nano-PCC filler increases tensile strength, improves elongation percentage, and decreases the plastic's degradation rate. A higher concentration of glycerol decreases tensile strength, increases elongation percentage, and enhances the plastic's degradation rate.

Item Type: Thesis (Undergraduate)
Contributors:
ContributionContributorsNIDN/NIDKEmail
Thesis advisorSusilowati, Titi0001086018UNSPECIFIED
Subjects: T Technology > TP Chemical technology
T Technology > TP Chemical technology > TP155 Chemical engineering
Divisions: Faculty of Engineering > Departement of Chemical Engineering
Depositing User: Resa Damayanti Damayanti
Date Deposited: 20 Jan 2025 02:10
Last Modified: 20 Jan 2025 02:10
URI: https://repository.upnjatim.ac.id/id/eprint/33936

Actions (login required)

View Item View Item