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| 1 | Celulose Paper-based Strapping Products for Green/Sustainable Packaging Needs显示文摘Paper products such as corrugated paperboards are the most common green packaging materials, which are renewable, sustainable, recyclable and biodegradable. However, the plastic or metal straps used to secure the carton boxes are not so green. At the end of packaging, the carton boxes can be recycled, but the plastic/metal straps have to be sorted out for disposal separately. This review focuses on: 1) the global trend of green packaging;2) conventional plastic/metal strapping materials for carton boxes;3) conventional market pulp baling with steel wire as the tying materials;4) cellulose fiber-based materials for strapping market pulp bales and carton boxes. New generation of cellulose paper straps are being developed for more challenging applications with superior strength properties and repulpability. | Zhibin He Amit Chowdhury Li Tong Mike Reynolds Yonghao Ni | 2019 | Paper And Biomaterials2019,4,3: | 11 |
| 2 | Flexible N-Doped reduced graphene oxide/carbon Nanotube-MnO_(2) film as a Multifunctional Material for High-Performance supercapacitors, catalysts and sensors显示文摘A flexible 3D N-doped reduced graphene oxide(N-RGO)/carbon nanotube(CNT)eMnO_(2) hybrid film was constructed with outstanding supercapacitor,excellent oxygen reduction reaction(ORR)and good sensing performances.The resultant hybrid film possessed large specific capacitances of 418 F g^(-1) and 209 mF cm^(-2) in aqueous and solid electrolytes,and outstanding capacitance retentions of 95% and 94% were obtained for both electrolytes after experiencing 5000 cycles.A simple supercapacitor based on the resultant flexible hybrid film was further fabricated with a much smaller time constant τ0(0.38 s)than that of typical activated-carbon supercapacitors,suggesting a quick response frequency.Moreover,the assembled supercapacitor device showed high energy densities of 45.72 and 92.13 Wh kg^(-1) and simultaneously sustained large power densities of 12,526 and 15873 W kg^(-1) under a scan rate of 50 mV s^(-1) in aqueous and solid electrolytes,respectively.Furthermore,the resultant flexible film showed excellent performance in the ORR and can also be used to assemble a strain sensor with an excellent sensing performance for bending strain. | Chuanyin Xiong Mengrui Li Wei Zhao Chao Duan Yonghao Ni | 2020 | Journal of Materiomics2020,6,3: | 6 |
| 3 | Integrated Forest Biorefinery:Value-added Utilization of Dissolved Organics in the Prehydrolysis Liquor of Prehydrolysis Kraft (PHK) Dissolving Pulp Production Process显示文摘The concept of integrated forest biorefineries(IFBRs) has gained significant interest.The prehydrolysis kraft(PHK) dissolving pulp production process is a suitable example of IFBR concept for the production of dissolving pulp and utilization of dissolved hemicelluloses,acetic acid,and lignin in the prehydrolysis liquor(PHL).This review paper highlights recent progress related to the recovery and utilization of dissolved organics(e.g.,hemicelluloses,acetic acid,and lignin) in the PHL of the PHK dissolving pulp production process.Integrated multi-step recovery and separation processes have been developed for this purpose to accommodate the complex nature of the PHL.Potential products,including xylan-based compounds,acetic acid,and lignin,are also discussed in detail. | Bo Yang BaoBin Wang GuanHua Wang ZhiBin He YongHao Ni | 2018 | Paper And Biomaterials2018,3,3: | 6 |
| 4 | Upgrading Paper-grade Softwood Kraft Pulp to Dissolving Pulp by Cold Caustic Extraction显示文摘Cold caustic extraction has potential applications in the production of dissolving-grade pulps due to its ability to selectively remove hemicellulose from lignocellulosic materials. In this study,we demonstrate the conversion of paper-grade kraft pulp into dissolving pulp by a single-stage cold caustic extraction. Under the extraction conditions of 12 wt% NaOH lye,11% pulp consistency,a temperature of 35℃,and 2 h,a paper-grade softwood kraft pulp was purified to high-grade dissolving pulp with 97. 1% α-cellulose content,1. 2% pentosane content,and narrowed molecular weight distribution. The resulting extraction filtrate was concentrated by nano-filtration to obtain the hemicellulose content of 59. 0 g / L,while the permeate was a clear Na OH solution with 10. 9 wt% concentration. A process configuration was also proposed,integrating this cold caustic extraction process with existing pulp and paper production and multi-purpose utilization of the extraction filtrate. | Chao Tian QingXian Miao LinQiang Zheng YongHao Ni | 2016 | Paper And Biomaterials2016,1,1: | 5 |
| 5 | Potential of cellulose-based materials for lithium-ion batteries(LIB)separator membranes显示文摘Lithium-ion batteries(LIB)are the dominant power sources for many consumer electronics,and they can also be large-scale power sources/energy storage devices,which can be credited to their advantages:high efficiency,high energy density,long cycling life.The separator membrane is a critical component of LIB.It is an electron insulator between the cathode and anode electrodes in order to prevent electrical short circuits,and it also functions as an ionic conductor to let ions pass freely in the charging and discharging cycles.The critical parameters to meet high quality separator membranes include:high dimensional/thermal/chemical stability,good wettability towards electrolyte,high mechanical strength,appropriate porosity and pore size distribution.Conventionally,plastic materials,such as polyolefin,are the main materials for manufacturing LIB separator membrane.However,polyolefin separator s have a number of drawbacks such as poor thermal stability and wettability.Cellulosic materials have unique properties,and can meet the quality specifications of LIB separator membranes;in addition,they are abundant,low cost,biodegradable,renewable and sustainable.Therefore,cellulose and its related materials can be promising alternatives to replace polyolefin for LIB separator membranes.In this short review,relevant literature on the topic was reviewed and further development/improvement of cellulose-based LIB separator membrane will be discussed. | Dong Cheng Xue Yang Zhibin He Yonghao Ni | 2016 | Journal of Bioresources and Bioproducts2016,1,1: | 2 |
| 6 | Molded fiber and pulp products as green and sustainable alternatives to plastics:A mini review显示文摘There are significant incentives/pressures on decreasing the use of plastics and their related prod-ucts in the packaging industry,correspondingly,strong demands are emerging for clean,renew-able,recyclable/biodegradable packaging products.In this context,molded fiber/pulp products have attracted increasing attention,due to their green/sustainable advantages,simply because the raw materials used are plant-based and/or recycled fibers.Many companies have switched their packing practices from plastics to more environmentally friendly products,such as molded fiber products,which already have had and will continue to have obvious effect on packaging industries.This paper initially provides an overview on the general concept of molded pulp prod-ucts,and further summarizes the different types of molded fiber products in terms of natural fiber sources,manufacturing processes,current and emerging applications as well as the environmental sustainability of molded products. | Yanling Zhang Chao Duan Swetha Kumari Bokka Zhibin He Yonghao Ni | 2022 | Journal of Bioresources and Bioproducts2022,7,1: | 2 |
| 7 | Screen printing fabricating patterned and customized full paper-based energy storage devices with excellent photothermal,self-healing,high energy density and good electromagnetic shielding performances显示文摘Supercapacitors are favored by researchers because of their high power density,especially with the acceleration of people’s life rhythm.However,their energy density,especially from the point of view of the whole energy storage device,is far lower than that of commercial batteries.In this work,a kind of customizable full paper-based supercapacitor device with excellent self-healing ability is fabricated by simple and low-cost screen printing,electropolymerization and dip coating methods.The resultant separatorfree supercapacitor device exhibits both ultrahigh gravimetric and areal specific energy(power)densities of 39 Wh kg^(-1)(69 k W kg^(-1))and 692μWh cm^(-2)(236 m W cm^(-2)),achieving excellent supercapacitor performance.Notably,the addition of vitrimers endows the whole device with outstanding self-healing properties,which is helpful for enhancing the adaptability of the device to the environment.In addition,this kind of paper-based device also displays good photothermal and electromagnetic shielding performances.These striking features make paper matrix composites attractive in the fields of supercapacitors,medical photothermal treatment and electromagnetic shielding. | Chuanyin Xiong Mengrui Li Qing Han Wei Zhao Lei Dai Yonghao Ni | 2022 | Journal of Materials Science & Technology2022,,2: | 2 |
| 8 | Chitosan as A Preservative for Fruits and Vegetables:A Review on Chemistry and Antimicrobial Properties显示文摘Chitosan,derived from chitin,a major constituent(in quantity)of crustaceans,is a unique aminopolysaccharide with emerging commercial potential in agriculture,food,pharmaceuticals and nutraceuticals due to its nontoxic,biodegradable and biocompatable properties.Chitosan coating on fruits and vegetables has been found to be effective for the reduction of a variety of harmful micro-organims and extend the shelf-life of these products.In this review,our focus is on the antimicrobial properties of chitosan and its application as a natural preservative for fresh products.We detailed the key properties that are related to food preservation,the molecular mechanism of the antimicrobial activity of chitosan on fungi,gram-positive and gram-negative bacteria,coating methods for using chitosan and its formulation for preserving fruits and vegetables,as well as the radiation method of producing chitosan from chitin.Understanding the economic and scientific factors of chitosan’s production and efficiency as a preservative will open its practical application for fruits and vegetable preservation. | Chao DUAN Xin MENG Jingru MENG MdIqbal Hassan KHAN Lei DAI Avik KHAN Xingye AN Junhua ZHANG Tanzina HUQ Yonghao NI | 2019 | Journal of Bioresources and Bioproducts2019,4,1: | 1 |
| 9 | Impro- ving TMP rejects refining through alkaline peroxide pre-treatment for value-added mechanical papers显示文摘 | BIAN Yuzhou NI Yonghao YUAN Zhirun | 2007 | Tappi Journal2007,6,3: | 1 |
| 10 | Substitution of aspen highyield pulp for hardwood kraft pulp in fine papers and its effect on AKD sizing显示文摘 | Hu Kaitang Ni Yonghao Zou Xuejun | 2004 | Tappi Journal2004,,8: | 1 |
| 11 | Montmorillonite intercalated with polyaminoamide-epichlorohydrin:preparation,characterization,and sorption behavior显示文摘 | Liu Wenxia Ni Yonghao Xiao Huining | 2004 | Journal of Colloid and Interface Science2004,275,: | 1 |
| 12 | Applying dyes to HYP- containing paper grades 显示文摘 | Hongbin Liu Yonghao Ni Shuhui yang | 2008 | Appita Journal2008,61,2: | 1 |
| 13 | Lignin removal from Acell pulp by washing with ethanol and water显示文摘 | Yonghao Ni Adriaan R P Van Heinining | 1996 | Tappi J1996,79,3: | 1 |
| 14 | Montmorillonite mtercalated with polyammoam-ide-epichlorohydrin: preparation characterizahon, and sorption behavior显示文摘 | Wenxia Liu Yonghao Ni Huining Xiao | 2004 | Journal of Colloid and Interface Science2004,,275: | 1 |
| 15 | A combined process of activated carbon adsorption, ion exchange resin treatment and membrane concentration for recovery of dissolved organics in prehydrolysis liquor of the kraft-based dissolving pulp production process 显示文摘 | Shen Jing Kaur I Ni Yonghao | 2013 | Bioresource Technology2013,127,1: | 1 |
| 16 | Im proving TMP rejects refining through alkaline per- oxide pre-treatment for value-added mechanical pa- pers显示文摘 | Bian Yuzhou Ni Yonghao Yuan Zhirun | 2007 | Tappi J2007,6,3: | 1 |
| 17 | Montmorillonite intercala- ted with polyaminoamide- epichlorohydrin: preparation, charac- terization, and sorption behavior 显示文摘 | Liu Wenxia Ni Yonghao Xiao Huining | 2004 | Journal of Colloid and In- terface Science2004,,275: | 1 |
| 18 | A combined acidification /PEO flocculation process to improve the lignin removal from the pre-hydrolysis liquor of kraft-based dissolving pulp production process 显示文摘 | Shi Haiqiang Fatehi Pedram Xiao Huining Ni Yonghao | 2011 | Bioresource Technology2011,102,1: | 1 |
| 19 | Recent progress on green electromagnetic shielding materials based on macro wood and micro cellulose components from natural agricultural and forestry resources显示文摘Recent research efforts in the field of electromagnetic interference shielding(EMI)materials have focused on biomass as a green and sustainable resource.More specifically,wood and cellulose nano fiber(CNF)have many advantages,some of which include lightweight,porosity,widespread availability,low cost,and easy processing.These favorable properties have led researchers to consider these types of biomass as an EMI shielding material with great potential.At present,while many excellent published works in EMI shielding materials have investigated wood and CNF,this research area is still new,compared with non-biomass EMI shielding materials.More specifically,there is still a lack of in-depth research and summary on the preparation process,pore structure regulation,component optimization,and other factors affecting the EMI shielding of wood and CNF based EMI shielding materials.Thus,this review paper presents a comprehensive summary of recent research on wood and CNF based EMI shielding materials in recent three years in terms of the preparation methods,material structure design,component synergy,and EMI mechanism,and a forward future perspective for existing problems,challenges,and development trend.The ultimate goal is to provide a comprehensive and informative reference for the further development and exploration of biomass EMI shielding materials. | Chuanyin Xiong Tianxu Wang Yongkang Zhang Meng Zhu Yonghao Ni | 2022 | Nano Research2022,15,8: | 1 |
| 20 | Stability of cross-linked acetic acid lignin-containing polyurethane显示文摘 | WANG HAIHUA NI YONGHAO JAHAN M SARWAR | 2011 | Journal of Thermal Analysis and Calorimetry2011,103,29: | 1 |