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低碳生物基塑料研究进展 被引量:9
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作者 扈蓉 陈丽琼 +3 位作者 黄开胜 李思源 索彦彦 宋申华 《塑料科技》 CAS 北大核心 2012年第2期94-98,共5页
综述了近年来各类生物基塑料的研究现状与发展趋势。重点介绍了以工农业副产品、生活垃圾、活性污泥等有机废弃物为原料制备生物基塑料的研究现状,并指出测定生物基塑料中生物质碳含量的重要性。
关键词 低碳 生物基 生物质碳含量 降解 塑料
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Efficient removal of Cr(Ⅲ)-carboxyl complex from neutral and high-salinity wastewater by nitrogen doped biomass-based composites 被引量:3
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作者 Li Song Shichao Jing +2 位作者 Yixing Qiu Fuqiang Liu Aimin Li 《Chinese Chemical Letters》 SCIE CAS CSCD 2023年第1期397-402,共6页
Heavy metals usually exist stably as the species of organic complexes in high-salinity wastewater.Therefore,their effective removal is challenging,especially when the initial p H is neutral.Herein,a novel nitrogen dop... Heavy metals usually exist stably as the species of organic complexes in high-salinity wastewater.Therefore,their effective removal is challenging,especially when the initial p H is neutral.Herein,a novel nitrogen doped biomass-based composite(N-CMCS)was synthesized to remove the complexed heavy metal of Cr(Ⅲ)-carboxyl.The maximum adsorption capacity of Cr(Ⅲ)-Citrate(Cr-Cit)by N-CMCS under neutral p H(7.0)and high-salinity(200 mmol/L NaCl)condition was up to 2.50 mmol/g.And the removal performance remained stable after 6 times of regeneration.Combined with species and characterizations analysis,electrostatic attraction and hydrogen bonding were the main mechanisms for N-CMCS to remove Cr(Ⅲ)-carboxyl complexes.Dynamic adsorption indicated N-CMCS column could treat about 1300BV simulated wastewater and 350 BV actual wastewater with the concentration of effluent lower than1.0 mg/L.Furthermore,N-CMCS could remove a variety of complexed heavy metal ions under neutral p H,indicating the great potential in practical application. 展开更多
关键词 biomass-based Nitrogen doping Adsorption Complexed heavy metals High-salinity wastewater
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生物质基厚朴酚和糠醛对酚醛树脂的改性研究
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作者 葛铁军 潘天奇 +1 位作者 唐恺鸿 灵芝 《化工新型材料》 CAS CSCD 北大核心 2024年第6期103-107,共5页
为了减少化石能源的使用,选取生物质基厚朴酚和糠醛取代部分苯酚和甲醛,制备了改性酚醛树脂。通过傅里叶变换红外光谱仪,核磁共振波谱仪对改性酚醛树脂进行表征,考察了改性酚醛树脂的基础性能及固化后的力学性能。结果表明:厚朴酚和糠... 为了减少化石能源的使用,选取生物质基厚朴酚和糠醛取代部分苯酚和甲醛,制备了改性酚醛树脂。通过傅里叶变换红外光谱仪,核磁共振波谱仪对改性酚醛树脂进行表征,考察了改性酚醛树脂的基础性能及固化后的力学性能。结果表明:厚朴酚和糠醛改变了酚醛树脂的分子结构,改性酚醛树脂的黏度和游离酚含量明显降低;经过固化后的改性酚醛树脂拉伸强度、冲击强度、弯曲强度分别提高18.6%、20.4%和24.9%。 展开更多
关键词 生物质基 厚朴酚 酚醛树脂 改性
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生物质碳点用于细菌成像和检测研究进展
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作者 邱婷 《分析科学学报》 CAS CSCD 北大核心 2024年第3期356-363,共8页
随着细菌感染和抗生素耐药性形势越来越严峻,对开发快速、简单、灵敏的细菌检测和成像技术的需求越来越迫切。使用天然原料或者将低价值废弃物为原料得到的生物质碳点,不仅保留了传统半导体量子点优异的光电特性,还具有更好的生物相容... 随着细菌感染和抗生素耐药性形势越来越严峻,对开发快速、简单、灵敏的细菌检测和成像技术的需求越来越迫切。使用天然原料或者将低价值废弃物为原料得到的生物质碳点,不仅保留了传统半导体量子点优异的光电特性,还具有更好的生物相容性、更低的制备成本以及绿色环保的合成方法,符合未来能源可持续发展的趋势。生物质碳点已在细菌成像和检测上表现出极大的潜力,但面对如此丰富的生物质来源,如何选择合适的碳源并结合生物质碳点的优点构建效果更好的细菌成像和检测方法仍存在问题。本篇综述梳理了生物质碳点的种类,概述了生物质碳点在细菌成像和检测中的应用,对生物质碳点作为成像和检测传感器的不足进行了分析,希望为开发出更符合需求的成像探针和更有效的检测方法提供参考。 展开更多
关键词 生物质 碳点 细菌检测 细菌成像
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生物质基油水分离膜的应用现状及前景展望
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作者 房少康 李慧荣 +2 位作者 王鹏祥 冯世达 于跃 《高分子通报》 CAS CSCD 北大核心 2024年第2期150-161,共12页
随着当前全球石化行业的快速发展,水资源的短缺和工业废水排放的增长已经极大地阻碍了社会和环境的可持续性发展。含油废水是其中占比最大也是比较难处理的一种废水,膜分离法是目前处理含油废水的有效方法之一。而目前市场上主流的油水... 随着当前全球石化行业的快速发展,水资源的短缺和工业废水排放的增长已经极大地阻碍了社会和环境的可持续性发展。含油废水是其中占比最大也是比较难处理的一种废水,膜分离法是目前处理含油废水的有效方法之一。而目前市场上主流的油水分离膜部分或全部使用了不可再生和非降解性原料,会对环境造成二次污染。以生物质材料为主要原材料的生物质基油水分离膜以其绿色、可持续、高效、可降解等优势得到了极大地关注。本文从生物质基油水分离膜的生物质来源、种类、相应的制备及改性方法、应用研究现状及主要问题进行论述,对未来生物质基油水分离膜的前景进行展望。 展开更多
关键词 生物质 油水分离膜 可再生 绿色 可降解
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Preparation of crab-shell-based N,O co-doped graded porous carbon for supercapacitors using the confined nanospace deposition
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作者 Yiming Li Zhihao Yu +5 位作者 Mengyan Guo Ming Zhang Jian Xiong Yina Qiao Rui Zhang Xuebin Lu 《Waste Disposal and Sustainable Energy》 EI CSCD 2024年第2期173-183,共11页
Biomass-based carbon materials with hierarchical porous structures have attracted attention for their ability to provide more channels and shorten ion transport paths.Here,we developed a simple method based on confine... Biomass-based carbon materials with hierarchical porous structures have attracted attention for their ability to provide more channels and shorten ion transport paths.Here,we developed a simple method based on confined nanospace deposition.Dur-ing high-temperature treatment,the mesoporous silica layer wrapped around the outside of the crab shells acted as a closed nanospace and effectively suppressed the severe deformation of the crab shell structure by shrinking inward.The prepared carbon material has a layered porous structure with abundant and stable N and O co-doping(N 7.32%,O 3.69%).The specific capacitance of the three-electrode system was 134.3 F/g at a current density of 0.5 A/g in a 6 mol/L KOH electrolyte,and the assembled aqueous symmetric supercapacitors exhibited an excellent cycling stability of 98.81%even after 5000 cycles. 展开更多
关键词 SUPERCAPACITOR Confined nanospace deposition biomass-based carbon materials Crab shell
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Sustainable production of high-energy-density jet fuel via cycloaddition reactions
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作者 Yan-Cheng Hu Yingying Zhao +1 位作者 Ning Li Jing-Pei Cao 《Journal of Energy Chemistry》 SCIE EI CAS CSCD 2024年第8期712-722,I0016,共12页
Developing an energy supply-chain based on renewable biomass holds great potential to build a low carbon society.High-energy-density(HED)jet fuel,featuring unique fused/strained cycloalkanes,is of great significance f... Developing an energy supply-chain based on renewable biomass holds great potential to build a low carbon society.High-energy-density(HED)jet fuel,featuring unique fused/strained cycloalkanes,is of great significance for volume-limited military aircrafts,as their high density and combustion heat can extend flight duration and increase the payload.Therefore,the exploration of biomass-based routes towards HED fuel has drawn much attention over the past decade.Cycloaddition reaction features rapid construction of various carbocycles in an atom-and step-economical fashion.This elegant strategy has been widely applied in the manufacture of sustainable HED fuel.Here we carefully summarize the progress achieved in this fascinating area and the review is categorized by the cycloaddition patterns including[4+2],[2+2],[4+4],and[2+1]cycloadditions.Besides,the energy densities of the as-prepared biofuels and petroleumbased fuels(conventional Jet-A and advanced JP-10)are also compared.This review will provide important insights into rational design of new HED fuel with different ring-types/sizes and inspire the chemists to turn those literature studies into practical applications in military field. 展开更多
关键词 High-energy-density fuel biomass-based chemicals CYCLOADDITION CYCLOALKANES CATALYSIS
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Hierarchical CoFe@N-Doped Carbon Decorated Wood Carbon as Bifunctional Cathode in Wearable Zn-Air Battery
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作者 Kelong Ao Xiangyang Zhang +6 位作者 Renat R.Nazmutdinov Di Wang Jihong Shi Xian Yue Jianguo Sun Wolfgang Schmickler Walid A.Daoud 《Energy & Environmental Materials》 SCIE EI CAS CSCD 2024年第1期42-50,共9页
Rechargeable Zn-air batteries(ZAB)have drawn extensive attention due to their eco-friendliness and safety.However,the lack of high-performance and low-cost oxygen redox reactions(OER and ORR)catalysts has become one o... Rechargeable Zn-air batteries(ZAB)have drawn extensive attention due to their eco-friendliness and safety.However,the lack of high-performance and low-cost oxygen redox reactions(OER and ORR)catalysts has become one of the main stumbling blocks in their development.Herein,we successfully fabricate a CoFe nanobubble encapsulated in nitrogen-doped carbon nanocage on wood carbon support(CoFe@NC/WC)via pyrolysis of a novel Prussian blue analog(PBA)/spruce precursor.The hierarchical CoFe@NC/WC catalyst exhibits an excellent potential difference of 0.74 V between the OER potential at 10 mA cm^(-2)and half-wave potential of ORR in 0.1 M KOH,comparable to recently reported preeminent electrocatalysts.Further,CoFe@NC/WC shows outstanding electrochemical performance in liquid ZAB,with a peak power density of 138.9 mW cm^(-2)and a specific capacity of 763.5 mAh g^(-1).More importantly,a bacterial cellulose nanofiber reinforced polyacrylic acid(BC-PAA)hydrogel electrolyte shows ultrahigh tensile-breaking stress of 1.58 MPa.In conjunction with the as-prepared CoFe@NC/WC catalyst,BC-PAA-based wearable ZAB displays impressive rechargeability and foldability,and can power portable electronics,such as electronic timer and mobile phone,in bent states.This work provides a new approach toward high-activity and low-cost catalysts for ZAB. 展开更多
关键词 biomass-based catalyst DFT computation hydrogel electrolyte oxygen redox reactions wearable Zn-air battery
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生物质基硬碳储钠负极材料研究进展
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作者 周世晋 韩文佳 +3 位作者 陈安祥 张文浩 焦丹丹 李霞 《工程科学学报》 EI CSCD 北大核心 2024年第9期1685-1701,共17页
钠离子电池因其具有优异的低温性能、成本优势以及较高的安全性,有望逐渐成为锂离子电池在低速两轮车和大规模储能领域的补充者,开发低成本、高可逆容量和优异循环稳定性的钠离子电池负极材料成为行业难点,生物质基硬碳因其原料来源丰... 钠离子电池因其具有优异的低温性能、成本优势以及较高的安全性,有望逐渐成为锂离子电池在低速两轮车和大规模储能领域的补充者,开发低成本、高可逆容量和优异循环稳定性的钠离子电池负极材料成为行业难点,生物质基硬碳因其原料来源丰富、成本低廉、更易获得、碳产率高、环境友好且含有多种元素等优势而备受关注,其低廉的价格和独特的微观结构在众多钠离子电池负极材料中展现出明显的优势和巨大的商业潜力.为了寻找和开发性能优异的生物质基硬碳材料,本文首先对钠离子在硬碳表面活性位点的吸附行为和进入石墨片层的过程顺序进行了分析,讨论了有争议的四种钠离子存储机制.深入分析了钠离子在硬碳中的储存机理,并基于此进一步讨论了不同生物质基前驱体硬碳的差异,并通过硬碳负极的微观结构提出钠离子电池负极的优化策略,对钠离子电池的发展具有一定的指导意义. 展开更多
关键词 生物质基 钠离子电池 前驱体 硬碳 改进策略
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Study on the Preparation Process Optimization of Plywood Based on a Full Biomass Tannin-Sucrose Wood Adhesive
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作者 Wen Gu Xinyue Ding +3 位作者 Min Tang Feiyan Gong Shuangshuang Yuan Jintao Duan 《Journal of Renewable Materials》 EI 2023年第8期3245-3259,共15页
Biomass adhesive is conducive to decreasing the dependence of the wood adhesive industry on synthetic resin based on fossil resources and improving the market competitiveness of adhesives.It is also a critical breakth... Biomass adhesive is conducive to decreasing the dependence of the wood adhesive industry on synthetic resin based on fossil resources and improving the market competitiveness of adhesives.It is also a critical breakthrough to realize the goal of carbon peaking and carbon neutrality in the wood industry.In this study,a full biomass wood adhesive composed of tannin and sucrose was developed and applied successfully to the preparation of ply-wood.The preparation technique of plywood was optimized,and the chemical structure,curing performance,crystallization property and thermal performance of the adhesive were investigated.Results showed that:(1)hot-pressing temperature played a decisive role in the performances of tannin-sucrose composite adhesives and it also had a very significant influence on the water resistance of plywood.(2)The preparation of tannin-sucrose composite adhesive was a process in which sucrose was transformed into furan aldehydes and then made cross-linking reaction with tannin.These composite adhesives could only get good bonding performances when the curing temperature was above 210℃.(3)The optimal plywood preparation technique was:hot-pressing tem-perature of 220℃,hot-pressing time of 1.2 min/mm,m(tannin):m(sucrose)of 60:40,and adhesive loading of 160 g/m^(2).The wet bonding strength in boiling water of the prepared plywood was 0.83 MPa,meeting the strength requirements of Type-I plywood in the standard of GB/T 17657-2013.(4)The curing temperature of tannin-sucrose composite adhesive was further decreased by lowering the temperature during the transformation of sucrose into 5-HMF,which was a key in subsequent research. 展开更多
关键词 Carbon peaking and carbon neutrality wood-based panel green manufacturing TANNIN SUCROSE fully biomass-based wood adhesives
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Revealing the GHG reduction potential of emerging biomass-based CO_(2) utilization with an iron cycle system
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作者 Jing Xu Jiong Cheng +4 位作者 Runtian He Jiaqi Lu Chunling Wang Heng Zhong Fangming Jin 《Frontiers of Environmental Science & Engineering》 SCIE EI CSCD 2023年第10期119-131,共13页
CO_(2) utilization becomes a promising solution for reducing anthropogenic greenhouse gas (GHG) emissions. Biomass-based CO_(2) utilization (BCU) even has the potential to generate negative emissions, but the correspo... CO_(2) utilization becomes a promising solution for reducing anthropogenic greenhouse gas (GHG) emissions. Biomass-based CO_(2) utilization (BCU) even has the potential to generate negative emissions, but the corresponding quantitative evaluation is limited. Herein, the biomass-based CO_(2) utilization with an iron cycle (BCU-Fe) system, which converts CO_(2) into formate by Fe under hydrothermal conditions and recovers Fe with biomass-derived glycerin, was investigated. The GHG reduction potential under various process designs was quantified by a multidisciplinary method, including experiments, simulations, and an ex-ante life-cycle assessment. The results reveal that the BCU-Fe system could bring considerable GHG emission reduction. Significantly, the lowest value is −34.03 kg CO_(2)-eq/kg absorbed CO_(2) (−2.44 kg CO_(2)-eq/kg circulated Fe) with the optimal yield of formate (66%) and Fe (80%). The proposed ex-ante evaluation approach not only reveals the benefits of mitigating climate change by applying the BCU-Fe system, but also serves as a generic tool to guide the industrialization of emerging carbon-neutral technologies. 展开更多
关键词 Carbon dioxide utilization Hydrothermal reactions biomass-based CO_(2)reduction Simulation Ex-ante LCA
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一种纳米氧化锌复合生物基水性聚氨酯的合成和性能研究 被引量:4
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作者 徐徐 商士斌 刘鹤 《化学研究与应用》 CAS CSCD 北大核心 2012年第6期948-952,共5页
以自制的生物基水性聚氨酯(APU)及纳米氧化锌(ZnO)为原料制备了APU/ZnO复合材料,并通过红外光谱(FT-IR)、热重(TG)、紫外(UV)、透射电镜(TEM)和扫描电镜(SEM)等手段对复合材料的性能进行了表征。TEM和SEM照片显示,制得的新型纳米ZnO的... 以自制的生物基水性聚氨酯(APU)及纳米氧化锌(ZnO)为原料制备了APU/ZnO复合材料,并通过红外光谱(FT-IR)、热重(TG)、紫外(UV)、透射电镜(TEM)和扫描电镜(SEM)等手段对复合材料的性能进行了表征。TEM和SEM照片显示,制得的新型纳米ZnO的尺寸为200 nm左右,可较均匀地分散在APU体系中。TG测试结果表明添加了少量纳米ZnO的复合材料的耐热性有了明显提高。同时测试结果表明,少量纳米ZnO粒子的加入对APU有很好的增强和增韧效果,且具有一定的抗菌性和抗紫外性能。 展开更多
关键词 生物基 水性聚氨酯 纳米ZNO 抗菌性 抗紫外性
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Reversible aqueous zinc-ion battery based on ferric vanadate cathode
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作者 Wang Yang Wu Yang +3 位作者 Yongfeng Huang Chengjun Xu Liubing Dong Xinwen Peng 《Chinese Chemical Letters》 SCIE CAS CSCD 2022年第10期4628-4634,共7页
Rechargeable aqueous zinc-ion batteries have attracted extensive interest because of low cost and high safety.However,the relationship between structure change of cathode and the zinc ion storage mechanism is still co... Rechargeable aqueous zinc-ion batteries have attracted extensive interest because of low cost and high safety.However,the relationship between structure change of cathode and the zinc ion storage mechanism is still complex and challenging.Herein,open-structured ferric vanadate(Fe_(2)V_(4)O_(13))has been developed as cathode material for aqueous zinc-ion batteries.Intriguingly,two zinc ion storage mechanism can be observed simultaneously for the Fe2V4O13 electrode,i.e.,classical intercalation/deintercalation storage mechanism in the tunnel structure of Fe_(2)V_(4)O_(13),and reversible phase transformation from ferric vanadate to zinc vanadate,which is verified by combined studies using various in-situ and ex-situ techniques.As a result,the Fe_(2)V_(4)O_(13) cathode delivers a high discharge capacity of 380 mAh/g at 0.2 A/g,and stable cyclic performance up to 1000 cycles at 10 A/g in the operating window of 0.2-1.6 V with 2 mol/L Zn(CF_(3)SO_(3))_(2) aqueous solution.Moreover,the assembled Fe_(2)V_(4)O_(13)//Zn flexible quasi-solid-state battery also exhibits a relatively high mechanical strength and good cycling stability.The findings reveal a new perspective of zinc ion storage mechanism for Fe_(2)V_(4)O_(13),which may also be applicable to other vanadate cathodes,providing a new direction for the investigation and design of zinc-ion batteries. 展开更多
关键词 Aqueous zinc-ion battery Ferric vanadate cathode Reversible phase transformation Zinc ion storage mechanism biomass-based flexible quasi-solid-state battery
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Biomass-based biomimetic-oriented Janus nanoarchitecture for efficient heavy-metal enrichment and interfacial solar water sanitation
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作者 Hao-Yu Zhao Wei-Xu Dong +8 位作者 Yu Deng Li-Feng Chen Chen-Fan Zhao Chuan-Ling Zhang Jie Zhou Yi-Fan Qu Yan-Song Li Dong-Jun Li Shu-Hong Yu 《Interdisciplinary Materials》 2022年第4期537-547,共11页
Interfacial solar steam generation(ISSG),involving the use of solar energy to evaporate water at the water-to-vapor interface,has presented prospects for the desalination and purification of water due to high energy c... Interfacial solar steam generation(ISSG),involving the use of solar energy to evaporate water at the water-to-vapor interface,has presented prospects for the desalination and purification of water due to high energy conversion efficiency and low-cost freshwater generation.Herein,inspired by the aligned nanostructure of plants for efficiently transporting nutrient ions,we optimally design and construct a biomass-based Janus architecture evaporator with an oriented nanostructure for ISSG,using the ice template method,followed by biomimetic mineralization with the resource-abundant and low-cost biomass of the carboxymethyl cellulose and sodium alginate as the raw materials.Taking advantage of the oriented nanostructure allowing efficient transportation of water and coordination capacity of sodium alginate for effective enrichment of heavy-metal ions,the biomass-based Janus architecture shows much lower thermal conductivity and an ultrahigh steam regeneration rate of 2.3 kg m−2 h−1,considerably surpassing those of previously reported oriented biomass-based evaporators.Moreover,the biomass precursor materials are used for this Janus evaporator,guaranteeing minimum impact on the water ecology and environment during the regeneration process of clean drinking water.This study presents an efficient,green,and sustainable pathway for ISSG to effectively achieve heavy-metal-free drinking water. 展开更多
关键词 biomass-based nanomaterials biomimetic-oriented nanostructure heavy-metal enrichment interfacial solar water sanitation Janus nanoarchitecture
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Chitosan foam reinforced by SiC whisker for building insulation with high mechanical strength and vapor permeability
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作者 LI DongSheng GAO Gang HUANG CongLiang 《Science China(Technological Sciences)》 SCIE EI CAS CSCD 2022年第12期2874-2882,共9页
Porous foam based on renewable materials has attracted extensive attention in green energy conservation and sustainable development.However,there is still a requisite for biomass-based porous foam that could meet the ... Porous foam based on renewable materials has attracted extensive attention in green energy conservation and sustainable development.However,there is still a requisite for biomass-based porous foam that could meet the demand for excellent mechanical and high thermal insulation performances for building insulation.Herein,we demonstrated a facile strategy to prepare a porous foam made from a chitosan matrix reinforced by SiC whisker,which shows good performance in building insulation and mechanical strength.The prepared porous foam has a low density(20.1–54.4 kg m^(-3))and high porosity(>97.0%).The density of the chitosan-SiC porous foam can be controlled by varying the suspension solid and SiC whisker content in the preparation process.Furthermore,the influences of SiC whisker content on the mechanical properties and thermal conductivity of the porous foams were also investigated.When the content of SiC whisker is 30 wt%,the prepared porous foam has the highest compression modulus of about 89.8 kPa and also low thermal conductivity of 0.0354 W m^(-1)K^(-1).Moreover,the prepared porous foam shows excellent water vapor permeability with a vapor resistance factor of 2.94,which is beneficial for moisture transfer in buildings.This work provides a facile way to manufacture biomass-based porous foam,which is potential for energy saving in buildings. 展开更多
关键词 porous foam biomass-based material thermal insulation mechanical property vapor permeability
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How will tradable green certificates affect electricity trading markets under renewable portfolio standards?A China perspective
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作者 Kaiqiang Leng Zhongzhong Li Zihao Tong 《Clean Energy》 EI 2022年第4期585-598,共14页
Renewable portfolio standards(RPS)are important guarantees to promote renewable energy(RE)consumption.The tradable green certificate(TGC)trading mechanism is a supporting mechanism of RPS,but the rate of TGC trading i... Renewable portfolio standards(RPS)are important guarantees to promote renewable energy(RE)consumption.The tradable green certificate(TGC)trading mechanism is a supporting mechanism of RPS,but the rate of TGC trading is low and there is a double-metering problem of RE consumption.With the introduction of new policies in China,we innovatively take the electricity-selling side as the subject of RE consumption responsibility and biomass-based electricity-generation(BEG)projects are considered to participate in TGC trading.To explore the interaction between the TGC market and the electricity market,this paper sets up a day-ahead spot market-trading structure combining both markets under RPS and establishes a market equilibrium model.The established model is solved and validated based on the particle swarm optimization algorithm and the profits of each market player under different influencing factors are analysed.The main conclusions are as follows.(i)The established market structure and model effectively solve the double-metering problem of RE consumption,making the TGC turnover rate reach 82.97%,greatly improving the market efficiency.(ii)Increased demand for TGC will increase demand for RE electricity.The participation of BEG projects in the TGC market can effectively improve the profit of biomass-based electricity producers(BEPs),reduce the burden of government financial subsidies and will not affect the consumption of wind-based electricity and photovoltaic-based electricity.This will help promote the rapid development of China’s RE,especially the BEG industry.(iii)Among the influencing factors,the increase in renewable-energy consumption responsibility weight and the decrease in electricity-generation cost can increase the profit of BEPs.The decline in TGC price and subsidy price will reduce the profit of BEPs.Finally,we put forward policy recommendations for China’s RPS and TGC trading mechanism.This study can provide a reference for the construction of China’s TGC market and electricity market and the de 展开更多
关键词 tradable green certificate market electricity market renewable portfolio standards biomass-based electricity generation particle swarm optimization algorithm
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生物质基柔性气凝胶的制备及应用
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作者 郑昊 李尧 《黑龙江造纸》 2021年第3期10-16,共7页
气凝胶是一种新型多孔材料,具有许多优异的性能。无论是有机的、无机的还是混合的气凝胶,都被证明具有生物相容性。基于独特的三维网状结构和优异的力学性能,以气凝胶为基础合成的材料在建筑学和医学等领域引起了广泛的关注。本文综述... 气凝胶是一种新型多孔材料,具有许多优异的性能。无论是有机的、无机的还是混合的气凝胶,都被证明具有生物相容性。基于独特的三维网状结构和优异的力学性能,以气凝胶为基础合成的材料在建筑学和医学等领域引起了广泛的关注。本文综述了气凝胶材料的一般特性及合成方法,重点介绍了生物质基柔性气凝胶的制备及应用。 展开更多
关键词 气凝胶 生物质基 多孔材料
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花生壳与花生壳生物炭对镉离子吸附性能研究 被引量:50
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作者 程启明 黄青 +1 位作者 刘英杰 廖祯妮 《农业环境科学学报》 CAS CSCD 北大核心 2014年第10期2022-2029,共8页
将花生壳(PS)改性制备成花生壳生物炭(PSB),研究了吸附时间(10~5760 min)、吸附剂用量(0.1~5 g)、镉离子溶液初始 pH值(1~8)和浓度(10~800 mg·L-1)等因素对 Cd2+去除效率的影响;利用场发射扫描电镜(SEM)、傅... 将花生壳(PS)改性制备成花生壳生物炭(PSB),研究了吸附时间(10~5760 min)、吸附剂用量(0.1~5 g)、镉离子溶液初始 pH值(1~8)和浓度(10~800 mg·L-1)等因素对 Cd2+去除效率的影响;利用场发射扫描电镜(SEM)、傅里叶红外光谱(FTIR)与模型拟合分析,探讨了 PS 和 PSB 的吸附性能与机理。实验结果表明,PS 和 PSB 是优良的生物质基吸附材料;pH 为5.0、Cd2+溶液浓度为10 mg· L-1、吸附剂添加量为4 mg·mL-1时,PS 的去除效率为93.33豫,PSB 的去除效率为99.51豫;吸附容量分别可达26.88 mg·g-1、28.99 mg·g-1;Freundlich 与 Langmuir 吸附模型均能较好地描述 PS 和 PSB 对 Cd2+的等温吸附过程,以 Freundlich 模型略优。SEM 电镜扫描和 FTIR 图谱分析表明 PS 和 PSB 对镉的吸附主要为多分子层的表层络合吸附:SEM 分析表明 PS 和 PSB 在吸附 Cd2+以后表面具有大量的颗粒附着物;FTIR 分析表明 PS 与 PSB 吸附镉的主要机理为络合反应,PS 参与络合反应的主要官能团为-CHO、-C=O、-OH和-P=O,PSB 参与络合反应的主要官能团为-C=C-、-C以C-、-C以N 和-OH 等官能团。 展开更多
关键词 花生壳 花生壳生物炭 傅里叶红外 等温吸附模型 生物质基材料
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高比表面生物质炭的制备、表征及吸附性能 被引量:33
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作者 李坤权 李烨 +1 位作者 郑正 桑大志 《环境科学》 EI CAS CSCD 北大核心 2013年第1期328-335,共8页
以废弃生物质互花米草与棉秆为原料,采用KOH活化制备了高比表面积微孔生物质活性炭.研究了原料类别、浸渍比、炭化温度及保温时间对炭组成与吸附性能的影响,利用氮气吸附、X-射线衍射、红外光谱FT-IR、扫描电子显微镜SEM等技术对活性炭... 以废弃生物质互花米草与棉秆为原料,采用KOH活化制备了高比表面积微孔生物质活性炭.研究了原料类别、浸渍比、炭化温度及保温时间对炭组成与吸附性能的影响,利用氮气吸附、X-射线衍射、红外光谱FT-IR、扫描电子显微镜SEM等技术对活性炭表面物化性质进行了分析,并通过BET方程、DFT密度函数理论及Horvath-Kawazoe方程对比表面积与孔分布进行了表征测定.结果表明,氢氧化钾活化制备互花米草与棉秆活性炭的适宜条件为浸渍比3:1、活化温度800℃、活化时间1.5 h.在此条件下制得的互花米草活性炭与棉秆活性炭的得率为16.36%和11.22%,BET比表面积高达2 825 m2.g-1和2 135 m2·g-1,孔容积分别为1.374 mg·g-1和1.038 cm3·g-1;孔径分布狭窄,95%的孔集中在3 nm以内.该条件下制备的互花米草与棉秆活性炭吸附性能好,对碘的吸附值分别为1 797 mg·g-1和1 251 mg·g-1,亚甲基蓝吸附值为495 mg·g-1和478mg·g-1,均超过了国家水处理用活性炭一级品标准;2种生物质炭样品对水中2,4-二硝基苯酚的Langmuir最大吸附量分别为932 mg.g-1、747 mg·g-1,均优于普通活性炭与活性炭纤维. 展开更多
关键词 生物质炭 氢氧化钾活化 高比表面积 表征 吸附
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GC/MS法分析生物质焦油的化学组成 被引量:24
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作者 李继红 雷廷宙 +3 位作者 宋华民 冯宗昱 胡建军 张全国 《河南科学》 2005年第1期41-43,共3页
采用GC/MS法从生物质焦油中分离并确认出48种化合物,用峰面积归一化法得出各化合物在生物质焦油中的百分含量,48种化合物的相对百分含量为78.27%。生物质焦油的GC/MS法分析结果为其在化工和能源方面的综合利用提供了基础资料。
关键词 生物质焦油 干馏炭化 化学组成 气相色谱-质谱(GC/MS)
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