Effects of Organic Nano Calcium Carbonate on Aging Resistance of Bio-Asphalt

To improve the aging resistance of bioasphalt and explore the impact of organic nano calcium carbonate (CaCO3) on the aging resistance of bioasphalt, the thin-film oven test (TFOT), basic property test, rheological test, four components test, and infrared spectrum test were used to study the bioasph...

Full description

Saved in:
Bibliographic Details
Main Authors: Nianting Xiao, Yongyi Zhang, Hongbo Xia, Yu Lei, Yamin Luo
Format: Article
Language:English
Published: Wiley 2022-01-01
Series:Advances in Materials Science and Engineering
Online Access:http://dx.doi.org/10.1155/2022/6043030
Tags: Add Tag
No Tags, Be the first to tag this record!
_version_ 1832564912830808064
author Nianting Xiao
Yongyi Zhang
Hongbo Xia
Yu Lei
Yamin Luo
author_facet Nianting Xiao
Yongyi Zhang
Hongbo Xia
Yu Lei
Yamin Luo
author_sort Nianting Xiao
collection DOAJ
description To improve the aging resistance of bioasphalt and explore the impact of organic nano calcium carbonate (CaCO3) on the aging resistance of bioasphalt, the thin-film oven test (TFOT), basic property test, rheological test, four components test, and infrared spectrum test were used to study the bioasphalt with different organic nano-CaCO3 contents. The results show that the addition of organic nano-CaCO3 increases the residual penetration, residual ductility, and residual softening point of bioasphalt. Within the range of test dosage, the greater the dosage, the more significant the effect is. With the increase of organic nano-CaCO3 content, the complex modulus aging index (GAI) of bioasphalt gradually decreases, and the colloidal instability index (IC) gradually decreases. When the content is 6%, the GAI of organic nano-CaCO3 modified bioasphalt is less than that of matrix asphalt. The nanoscale super large specific surface area of organic nano-CaCO3 has an adsorption effect on the light components in bioasphalt, which slows down the volatilization loss of light components and the oxidation process of asphalt. The addition of organic nano-CaCO3 helps to reduce the change rate of the carbonyl index and sulfoxide index.
format Article
id doaj-art-c1a382d932a54d24ab3483eff22a292b
institution Kabale University
issn 1687-8442
language English
publishDate 2022-01-01
publisher Wiley
record_format Article
series Advances in Materials Science and Engineering
spelling doaj-art-c1a382d932a54d24ab3483eff22a292b2025-02-03T01:09:52ZengWileyAdvances in Materials Science and Engineering1687-84422022-01-01202210.1155/2022/6043030Effects of Organic Nano Calcium Carbonate on Aging Resistance of Bio-AsphaltNianting Xiao0Yongyi Zhang1Hongbo Xia2Yu Lei3Yamin Luo4Chongqing Vocational Institute of EngineeringChongqing College of Architecture and TechnologyChongqing College of Architecture and TechnologyChongqing College of Architecture and TechnologyChongqing College of Architecture and TechnologyTo improve the aging resistance of bioasphalt and explore the impact of organic nano calcium carbonate (CaCO3) on the aging resistance of bioasphalt, the thin-film oven test (TFOT), basic property test, rheological test, four components test, and infrared spectrum test were used to study the bioasphalt with different organic nano-CaCO3 contents. The results show that the addition of organic nano-CaCO3 increases the residual penetration, residual ductility, and residual softening point of bioasphalt. Within the range of test dosage, the greater the dosage, the more significant the effect is. With the increase of organic nano-CaCO3 content, the complex modulus aging index (GAI) of bioasphalt gradually decreases, and the colloidal instability index (IC) gradually decreases. When the content is 6%, the GAI of organic nano-CaCO3 modified bioasphalt is less than that of matrix asphalt. The nanoscale super large specific surface area of organic nano-CaCO3 has an adsorption effect on the light components in bioasphalt, which slows down the volatilization loss of light components and the oxidation process of asphalt. The addition of organic nano-CaCO3 helps to reduce the change rate of the carbonyl index and sulfoxide index.http://dx.doi.org/10.1155/2022/6043030
spellingShingle Nianting Xiao
Yongyi Zhang
Hongbo Xia
Yu Lei
Yamin Luo
Effects of Organic Nano Calcium Carbonate on Aging Resistance of Bio-Asphalt
Advances in Materials Science and Engineering
title Effects of Organic Nano Calcium Carbonate on Aging Resistance of Bio-Asphalt
title_full Effects of Organic Nano Calcium Carbonate on Aging Resistance of Bio-Asphalt
title_fullStr Effects of Organic Nano Calcium Carbonate on Aging Resistance of Bio-Asphalt
title_full_unstemmed Effects of Organic Nano Calcium Carbonate on Aging Resistance of Bio-Asphalt
title_short Effects of Organic Nano Calcium Carbonate on Aging Resistance of Bio-Asphalt
title_sort effects of organic nano calcium carbonate on aging resistance of bio asphalt
url http://dx.doi.org/10.1155/2022/6043030
work_keys_str_mv AT niantingxiao effectsoforganicnanocalciumcarbonateonagingresistanceofbioasphalt
AT yongyizhang effectsoforganicnanocalciumcarbonateonagingresistanceofbioasphalt
AT hongboxia effectsoforganicnanocalciumcarbonateonagingresistanceofbioasphalt
AT yulei effectsoforganicnanocalciumcarbonateonagingresistanceofbioasphalt
AT yaminluo effectsoforganicnanocalciumcarbonateonagingresistanceofbioasphalt