2014
DOI: 10.1002/app.41040
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Compatibilization of kraft lignin‐polyethylene composites using unreactive compatibilizers

Abstract: This article presents a novel approach to compatibilize Kraft lignin with polyethylene that involves the use of modified poly (styrene‐co‐ethylene‐co‐butylene‐co‐styrene) (SEBS) as unreactive compatibilizers. As SEBS shows no compatibilizing effect on Kraft lignin‐polyethylene composites, SEBS was functionalized via nitration followed by amination to obtain nitrated (SEBS‐NO2) and aminated (SEBS‐NH2) SEBS. The compatibilizing effects of SEBS derivatives were studied by means of morphological and mechanical ana… Show more

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Cited by 92 publications
(35 citation statements)
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References 29 publications
(39 reference statements)
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“…The chemical incompatibility between hydrophilic bio‐materials and hydrophobic polyolefins is a major challenge for producing ductile composites because the bond between these components is weak . Therefore, the use of compatibilizers is beneficial to enhance interactions between polymers and fillers to make the product more flexible and processible . In the literature, compatibilizers, such as glycerol, maleic anhydride, or dimethyldiethoxysilane have been reported to improve the interfacial adhesion between soy flour and matrix, and hence the mechanical properties .…”
Section: Introductionmentioning
confidence: 99%
“…The chemical incompatibility between hydrophilic bio‐materials and hydrophobic polyolefins is a major challenge for producing ductile composites because the bond between these components is weak . Therefore, the use of compatibilizers is beneficial to enhance interactions between polymers and fillers to make the product more flexible and processible . In the literature, compatibilizers, such as glycerol, maleic anhydride, or dimethyldiethoxysilane have been reported to improve the interfacial adhesion between soy flour and matrix, and hence the mechanical properties .…”
Section: Introductionmentioning
confidence: 99%
“…From the spectra, integral areas of benzylic protons of polystyrene and PEO molecules were compared. Grafting efficiency was calculated using the 1 H NMR peak integration method and using the following formula: Grafting efficiency%=XnormalPEO×ZnormalPS×YnormalPS×MnormalMA×100YnormalPEO×ZnormalMA×MnormalS×normalDPnnormalPEO×XnormalPS …”
Section: Resultsmentioning
confidence: 99%
“…The cost of industrial scale Kraft lignin production has been estimated to be $70 to 182/ton, the current price of polypropylene (PP) being around $1210/ton . Therefore, partial replacement of PP by low‐cost lignin is economically and ecologically attractive . Furthermore, lignin possesses numerous attractive properties, such as high thermal stability, biodegradability, and stiffness, and may create dense networks structures .…”
Section: Introductionmentioning
confidence: 99%
“…Therefore, partial replacement of PP by low‐cost lignin is economically and ecologically attractive . Furthermore, lignin possesses numerous attractive properties, such as high thermal stability, biodegradability, and stiffness, and may create dense networks structures . However, even though lignin itself has a high modulus, it is highly brittle which restricts its application in several areas .…”
Section: Introductionmentioning
confidence: 99%
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