Javascript must be enabled to continue!
Utilizing Coconut Biochar as a Bio‐reinforcing Agent in Natural Rubber Composites
View through CrossRef
AbstractThis research investigates the pyrolysis of biochar from different parts of residual aromatic young coconut waste, namely coconut fruit, coconut bunch, and coconut leaf, to be used as fillers in natural rubber (NR). Scanning electron microscopy coupled with energy dispersive X‐ray spectroscopy reveals that biochar has a flake‐like structure with a high carbon content (67%–77%). The biochar is mixed with NR using a two‐roll mill at filler contents of 0, 10, 20, 30, and 40 phr (part per hundred of rubber). Adding coconut fruit biochar at 40 phr increases the Shore A hardness to 59.62, a remarkable 47% improvement compared with unfilled NR. The maximum tensile strength occurs at 20 phr, while the highest tensile modulus (4.53 MPa) and tear strength (17,344 N m−1) are observed at 40 phr. Moreover, the swelling index of composites in toluene decreases slightly as biochar content increases, and the crosslink density is higher for NR filled with coconut fruit biochar than for other biochar types. Based on these results, coconut fruit biochar is identified as the most effective reinforcement filler for NR among the biochar types studied. Consequently, it can be used as a bio‐reinforcing agent in NR composites, contributing to sustainability and eco‐friendliness.
Title: Utilizing Coconut Biochar as a Bio‐reinforcing Agent in Natural Rubber Composites
Description:
AbstractThis research investigates the pyrolysis of biochar from different parts of residual aromatic young coconut waste, namely coconut fruit, coconut bunch, and coconut leaf, to be used as fillers in natural rubber (NR).
Scanning electron microscopy coupled with energy dispersive X‐ray spectroscopy reveals that biochar has a flake‐like structure with a high carbon content (67%–77%).
The biochar is mixed with NR using a two‐roll mill at filler contents of 0, 10, 20, 30, and 40 phr (part per hundred of rubber).
Adding coconut fruit biochar at 40 phr increases the Shore A hardness to 59.
62, a remarkable 47% improvement compared with unfilled NR.
The maximum tensile strength occurs at 20 phr, while the highest tensile modulus (4.
53 MPa) and tear strength (17,344 N m−1) are observed at 40 phr.
Moreover, the swelling index of composites in toluene decreases slightly as biochar content increases, and the crosslink density is higher for NR filled with coconut fruit biochar than for other biochar types.
Based on these results, coconut fruit biochar is identified as the most effective reinforcement filler for NR among the biochar types studied.
Consequently, it can be used as a bio‐reinforcing agent in NR composites, contributing to sustainability and eco‐friendliness.
Related Results
Impact of biochar amendment on soil microbial biomass carbon enhancement under field experiments: a meta-analysis
Impact of biochar amendment on soil microbial biomass carbon enhancement under field experiments: a meta-analysis
Abstract
Biochar is well-accepted as a viable climate mitigation strategy to promote agricultural and environmental benefits such as soil carbon sequestration and crop pr...
Sustainable bio‐reinforcing mangosteen peel biochar filler in styrene‐butadiene rubber: Analysis of thermal, physical, mechanical, and dielectric properties
Sustainable bio‐reinforcing mangosteen peel biochar filler in styrene‐butadiene rubber: Analysis of thermal, physical, mechanical, and dielectric properties
AbstractMangosteen peel, an abundant agricultural waste from Chanthaburi, Thailand, was converted into biochar using a traditional furnace, offering a sustainable solution for wast...
A Fit-for-Purpose Biochar Index for Classifying Hard and Soft Biochars in Circular Carbon Storage Applications
A Fit-for-Purpose Biochar Index for Classifying Hard and Soft Biochars in Circular Carbon Storage Applications
As a multifunctional material for the circular bioeconomic applications and carbon storage, biochar is getting rapid attention. Addressing the lack of industrial application-orient...
What are the Implications for Public Policy in New Zealand regarding Biochar as a Climate Change Mitigation Tool?
What are the Implications for Public Policy in New Zealand regarding Biochar as a Climate Change Mitigation Tool?
<p>The past years have seen biochar appearing on the political radar as a potential greenhouse gas (GHG) mitigation tool. Biochar is a charcoal-like substance that is produce...
Use of biochar to enhance carbon sequestration in peatlands
Use of biochar to enhance carbon sequestration in peatlands
Although peatlands are a great store of terrestrial carbon they are only a small sink compared to other nature-based or technological approaches to carbon sequestration. So as to e...
Penampilan Bibit Kelapa Dalam Bido dan Hibrida Kelapa Genjah x Dalam Bido [Appearance Seed Bido Tall coconut and Hybrids Dwarf x Bido Tall Coconut]
Penampilan Bibit Kelapa Dalam Bido dan Hibrida Kelapa Genjah x Dalam Bido [Appearance Seed Bido Tall coconut and Hybrids Dwarf x Bido Tall Coconut]
<p>Coconut seedlings are growing well with an important role in supporting the success of planting coconut in the field. The higher seed viability are growing well, the more ...
Metals Incorporated Agricultural Waste Corn Cob-based Biochar Used as An Adsorbent for CO2 Capturing
Metals Incorporated Agricultural Waste Corn Cob-based Biochar Used as An Adsorbent for CO2 Capturing
Abstract
This research aims to use the agricultural waste corn cob-based biochar CO
2
adsorption capacity by ...
Effects of Biochar With Inorganic and Organic Fertilizers on Agronomic Traits and Nutrient Absorption of Soybean and Fertility and Microbes in Purple Soil
Effects of Biochar With Inorganic and Organic Fertilizers on Agronomic Traits and Nutrient Absorption of Soybean and Fertility and Microbes in Purple Soil
Biochar is a kind of organic matter that can be added into the soil as a soil amendment to improve its quality. What are the effects of using biochar on purple soil and soybeans? C...

