Hydrogenated liquid natural rubber for compatibility enhancement of poly (lactic acid) and natural rubber blends

Non-catalytic hydrogenation of liquid natural rubber (LNR) via thermal decomposition of 2,4,6-trimethylbenzenesulfonylhydrazide (MSH) is reported in this study. Parameter studies of the hydrogenation reaction were performed by utilizing the combination of response surface methodology and central com...

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Main Authors: Mohamad Shahrul Fizree Idris, Nurfarhana Mohd Mustaffarizan, Siti Fairus M. Yusoff
Format: Article
Language:English
Published: Penerbit Universiti Kebangsaan Malaysia 2021
Online Access:http://journalarticle.ukm.my/18172/1/14.pdf
http://journalarticle.ukm.my/18172/
https://www.ukm.my/jsm/malay_journals/jilid50bil10_2021/KandunganJilid50Bil10_2021.html
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Institution: Universiti Kebangsaan Malaysia
Language: English
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spelling my-ukm.journal.181722022-03-07T03:23:55Z http://journalarticle.ukm.my/18172/ Hydrogenated liquid natural rubber for compatibility enhancement of poly (lactic acid) and natural rubber blends Mohamad Shahrul Fizree Idris, Nurfarhana Mohd Mustaffarizan, Siti Fairus M. Yusoff, Non-catalytic hydrogenation of liquid natural rubber (LNR) via thermal decomposition of 2,4,6-trimethylbenzenesulfonylhydrazide (MSH) is reported in this study. Parameter studies of the hydrogenation reaction were performed by utilizing the combination of response surface methodology and central composite rotatable design (RSM/CCRD). The effects of each variable and the interaction between two variables (i.e. the MSH:LNR weight ratio and reaction time) were studied. Statistical analysis showed that the reaction time had significantly affected the hydrogenation percentage. A reduced quadratic model equation with the coefficient of determination (R2) value of 0.9875 was developed. The optimized condition as predicted by the software was compared with the experimental data, which deviated in only 0.67, hence indicating that this model was reliable and able to predict the hydrogenation percentage accurately. Fourier-transform infrared (FTIR) and nuclear magnetic resonance (NMR) spectroscopies were used to characterize the microstructure of LNR and hydrogenated liquid natural rubber (HLNR). HLNR was then used as compatibilizer to improve the miscibility of poly(lactic acid)/natural rubber blends. With an addition of 4% HLNR, the tensile strength and impact strength of the blends were slightly improved. Penerbit Universiti Kebangsaan Malaysia 2021-10 Article PeerReviewed application/pdf en http://journalarticle.ukm.my/18172/1/14.pdf Mohamad Shahrul Fizree Idris, and Nurfarhana Mohd Mustaffarizan, and Siti Fairus M. Yusoff, (2021) Hydrogenated liquid natural rubber for compatibility enhancement of poly (lactic acid) and natural rubber blends. Sains Malaysiana, 50 (10). pp. 3003-3014. ISSN 0126-6039 https://www.ukm.my/jsm/malay_journals/jilid50bil10_2021/KandunganJilid50Bil10_2021.html
institution Universiti Kebangsaan Malaysia
building Tun Sri Lanang Library
collection Institutional Repository
continent Asia
country Malaysia
content_provider Universiti Kebangsaan Malaysia
content_source UKM Journal Article Repository
url_provider http://journalarticle.ukm.my/
language English
description Non-catalytic hydrogenation of liquid natural rubber (LNR) via thermal decomposition of 2,4,6-trimethylbenzenesulfonylhydrazide (MSH) is reported in this study. Parameter studies of the hydrogenation reaction were performed by utilizing the combination of response surface methodology and central composite rotatable design (RSM/CCRD). The effects of each variable and the interaction between two variables (i.e. the MSH:LNR weight ratio and reaction time) were studied. Statistical analysis showed that the reaction time had significantly affected the hydrogenation percentage. A reduced quadratic model equation with the coefficient of determination (R2) value of 0.9875 was developed. The optimized condition as predicted by the software was compared with the experimental data, which deviated in only 0.67, hence indicating that this model was reliable and able to predict the hydrogenation percentage accurately. Fourier-transform infrared (FTIR) and nuclear magnetic resonance (NMR) spectroscopies were used to characterize the microstructure of LNR and hydrogenated liquid natural rubber (HLNR). HLNR was then used as compatibilizer to improve the miscibility of poly(lactic acid)/natural rubber blends. With an addition of 4% HLNR, the tensile strength and impact strength of the blends were slightly improved.
format Article
author Mohamad Shahrul Fizree Idris,
Nurfarhana Mohd Mustaffarizan,
Siti Fairus M. Yusoff,
spellingShingle Mohamad Shahrul Fizree Idris,
Nurfarhana Mohd Mustaffarizan,
Siti Fairus M. Yusoff,
Hydrogenated liquid natural rubber for compatibility enhancement of poly (lactic acid) and natural rubber blends
author_facet Mohamad Shahrul Fizree Idris,
Nurfarhana Mohd Mustaffarizan,
Siti Fairus M. Yusoff,
author_sort Mohamad Shahrul Fizree Idris,
title Hydrogenated liquid natural rubber for compatibility enhancement of poly (lactic acid) and natural rubber blends
title_short Hydrogenated liquid natural rubber for compatibility enhancement of poly (lactic acid) and natural rubber blends
title_full Hydrogenated liquid natural rubber for compatibility enhancement of poly (lactic acid) and natural rubber blends
title_fullStr Hydrogenated liquid natural rubber for compatibility enhancement of poly (lactic acid) and natural rubber blends
title_full_unstemmed Hydrogenated liquid natural rubber for compatibility enhancement of poly (lactic acid) and natural rubber blends
title_sort hydrogenated liquid natural rubber for compatibility enhancement of poly (lactic acid) and natural rubber blends
publisher Penerbit Universiti Kebangsaan Malaysia
publishDate 2021
url http://journalarticle.ukm.my/18172/1/14.pdf
http://journalarticle.ukm.my/18172/
https://www.ukm.my/jsm/malay_journals/jilid50bil10_2021/KandunganJilid50Bil10_2021.html
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