Impact of Climate Change on Agricultural Yield: A Meta-Analysis

Agricultural composites are the focus of this investigation, which takes a microscopic look at their composition, fiber alignment, mechanical properties, and capacity to interact with live creatures. Sample 3’s elemental distribution analysis reveals a 6% increase in polymer content, among other min...

Full description

Saved in:
Bibliographic Details
Published in:E3S web of conferences Vol. 581; p. 1008
Main Authors: Duklan, Nitin, Depally, Srinivas, Raj, Nimesh, Alsalami, Zaid, Singla, Atul Kumar, Bhalla, Anubhav, Shukla, Aasheesh, Soujanya, Rajireddy
Format: Journal Article
Language:English
Published: EDP Sciences 2024
Subjects:
Online Access:Get full text
Tags: Add Tag
No Tags, Be the first to tag this record!
Description
Summary:Agricultural composites are the focus of this investigation, which takes a microscopic look at their composition, fiber alignment, mechanical properties, and capacity to interact with live creatures. Sample 3’s elemental distribution analysis reveals a 6% increase in polymer content, among other minor variations. Sample 4 shows a 0.7% increase in porosity and Sample 2 shows a 3-degree elevation in fiber alignment, both of which are shown by microstructural examinations. Sample 4’s 5% increase in tensile strength and Sample 3’s 8% increase in Young’s Modulus demonstrate, respectively, the microstructure-specific impact of mechanical testing. According to the bioactivity tests, Sample 3 showed a 2.7% increase in cellular adhesion, whereas Sample 2 showed a 0.3% decrease in disintegration rate. The intricate web of relationships among agricultural composites is the subject of this research, which could pave the way for the creation of tailor-made materials with adaptable characteristics and many potential applications.
ISSN:2267-1242
2267-1242
DOI:10.1051/e3sconf/202458101008