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Gigantea Fiber sentence examples within Calotropi Gigantea Fiber
Here, Calotropis gigantea fiber (CGF) from plant fibers and polylactic acid (PLA) from renewable resources were utilized to construct a biodegradable foam-like oil sorbent (marked as PCF), by using a tandem freezing-solvent replacement method.
Here, Calotropis gigantea fiber (CGF) from plant fibers and polylactic acid (PLA) from renewable resources were utilized to construct a biodegradable foam-like oil sorbent (marked as PCF), by using a tandem freezing-solvent replacement method.
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Here, the open hollow structured Calotropis gigantea fiber (CGF) was developed using a facile pyrolysis and subsequent magnetization method, and the resulting magnetic carbonized fiber (MC-CGF) was applied as an efficient catalyst for PFOA decomposition at room temperature in persulfate-based oxidation process.
Here, the open hollow structured Calotropis gigantea fiber (CGF) was developed using a facile pyrolysis and subsequent magnetization method, and the resulting magnetic carbonized fiber (MC-CGF) was applied as an efficient catalyst for PFOA decomposition at room temperature in persulfate-based oxidation process.
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10.1016/j.jclepro.2020.123507
Here, Calotropis gigantea fiber (CGF) from plant fibers and polylactic acid (PLA) from renewable resources were utilized to construct a biodegradable foam-like oil sorbent (marked as PCF), by using a tandem freezing-solvent replacement method.
Here, Calotropis gigantea fiber (CGF) from plant fibers and polylactic acid (PLA) from renewable resources were utilized to construct a biodegradable foam-like oil sorbent (marked as PCF), by using a tandem freezing-solvent replacement method.
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10.1016/J.SEPPUR.2020.118200
Here, the open hollow structured Calotropis gigantea fiber (CGF) was developed using a facile pyrolysis and subsequent magnetization method, and the resulting magnetic carbonized fiber (MC-CGF) was applied as an efficient catalyst for PFOA decomposition at room temperature in persulfate-based oxidation process.
Here, the open hollow structured Calotropis gigantea fiber (CGF) was developed using a facile pyrolysis and subsequent magnetization method, and the resulting magnetic carbonized fiber (MC-CGF) was applied as an efficient catalyst for PFOA decomposition at room temperature in persulfate-based oxidation process.
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10.1016/J.VACUUM.2019.04.022
The present investigation is carried out to understand the effects of addition of Areca Fine Fibers (AFFs) with the Calotropis Gigantea Fiber (CGF)/Phenol formaldehyde (PF) biocomposite.
The present investigation is carried out to understand the effects of addition of Areca Fine Fibers (AFFs) with the Calotropis Gigantea Fiber (CGF)/Phenol formaldehyde (PF) biocomposite.
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10.1080/15440478.2018.1455618
ABSTRACT A facile route was used for improving the oil-absorbing performance of Calotropis gigantea fiber (CGF) via a convenient oxidative polymerization of dopamine in the presence of attapulgite (APT) and subsequent instant immersion in an ethanolic solution of 1H,1H,2H,2H-perfluorooctyltriethoxysilane (PFS).
ABSTRACT A facile route was used for improving the oil-absorbing performance of Calotropis gigantea fiber (CGF) via a convenient oxidative polymerization of dopamine in the presence of attapulgite (APT) and subsequent instant immersion in an ethanolic solution of 1H,1H,2H,2H-perfluorooctyltriethoxysilane (PFS).
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10.1177/1528083718763778
This work deals with the investigation of mechanical properties and water absorption behavior of Calotropis Gigantea fiber reinforced epoxy composites prepared by using compression molding technique.
This work deals with the investigation of mechanical properties and water absorption behavior of Calotropis Gigantea fiber reinforced epoxy composites prepared by using compression molding technique.
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10.1007/s10570-019-02943-7
A facile dipping strategy was performed for roughening the surface of two plant fibers (CGF, Calotropis gigantea fiber; KF, kapok fiber) via nano-sized MoS2 to obtain eco-friendly oil-absorbing materials, MoS2-CGF and MoS2-KF.
A facile dipping strategy was performed for roughening the surface of two plant fibers (CGF, Calotropis gigantea fiber; KF, kapok fiber) via nano-sized MoS2 to obtain eco-friendly oil-absorbing materials, MoS2-CGF and MoS2-KF.
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10.1007/s10570-019-02356-6
Calotropis gigantea fiber (CGF) is obtained from the fruit of C.
Calotropis gigantea fiber (CGF) is obtained from the fruit of C.
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10.1016/J.COLSURFA.2019.04.068
Calotropis gigantea fiber (CGF) comes from the seeds of C.
Calotropis gigantea fiber (CGF) comes from the seeds of C.
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