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典型文献
Industrial-Scale Polypropylene-Polyethylene Physical Alloying Toward Recycling
文献摘要:
Polypropylene(PP)and polyethylene(PE)play central roles in our daily life.However,their immiscibility presents a major hurdle in both industry and academia when recycling them into alloys with favorable mechanical properties.Moreover,typical compatibilizer-enabled approaches are limited due to increased environmental concerns.Herein,inspired by a traditional Chinese technique,we report a facile,industry-scale methodology that produces a PP/PE binary blend with a highly ordered honeycomb nanostructure without any additives.Due to its nanostructure,the blend exhibits enhanced tensile properties in com-parison with the parent components or with a sample prepared using an internal mixer.This approach has potential for applications not only in immiscible polymer blending,but also in non-sorting,compatibilizer-free waste plastics recycling.Through this technique,we expect that an environmentally friendly and sustainable plastic wastes recycling avenue can be found,and great economic benefits can be gained.
文献关键词:
作者姓名:
Jinping Qu;Zhaoxia Huang;Zhitao Yang;Guizhen Zhang;Xiaochun Yin;Yanhong Feng;Hezhi He;Gang Jin;Ting Wu;Guangjian He;Xianwu Cao
作者机构:
National Engineering Research Center of Novel Equipment for Polymer Processing&Key Laboratory of Polymer Processing Engineering of the Ministry of Education&Guangdong Key Laboratory of Technique and Equipment for Macromolecular Advanced Manufacturing,School of Mechanical and Automotive Engineering,South China University of Technology,Guangzhou 510640,China
文献出处:
引用格式:
[1]Jinping Qu;Zhaoxia Huang;Zhitao Yang;Guizhen Zhang;Xiaochun Yin;Yanhong Feng;Hezhi He;Gang Jin;Ting Wu;Guangjian He;Xianwu Cao-.Industrial-Scale Polypropylene-Polyethylene Physical Alloying Toward Recycling)[J].工程(英文),2022(02):95-100
A类:
compatibilizer
B类:
Industrial,Scale,Polypropylene,Polyethylene,Physical,Alloying,Toward,Recycling,PP,polyethylene,PE,play,central,roles,our,daily,life,However,their,immiscibility,presents,major,hurdle,both,industry,academia,when,recycling,them,into,alloys,favorable,mechanical,properties,Moreover,typical,enabled,approaches,limited,due,increased,concerns,Herein,inspired,by,traditional,Chinese,technique,report,facile,scale,methodology,that,produces,binary,highly,ordered,honeycomb,nanostructure,without,any,additives,Due,exhibits,enhanced,tensile,parison,parent,components,sample,prepared,using,internal,mixer,This,has,potential,applications,not,only,immiscible,polymer,blending,but,also,sorting,free,plastics,Through,this,expect,environmentally,friendly,sustainable,wastes,avenue,can,found,great,economic,benefits,gained
AB值:
0.729096
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