1 |
前瞻经济学人. 2021年全球及主要国家碳排放市场现状及分析[EB/OL]. [2021-07-13]..
|
|
Economist Qianzhan. Current situation and analysis of global and major national carbon emission markets in 2021[EB/OL]. [2021-07-13]. .
|
2 |
前瞻经济学人. 2021年全球新材料行业市场规模现状及发展趋势分析[EB/OL].[2021-10-23]..
|
|
Economist Qianzhan.Analysis on market scale status and development trend of global new material industry in 2021[EB/OL].[2021-10-23] .
|
3 |
杨玮圆. 2021年全球新材料行业市场规模及发展趋势分析:政策将助力产业规模突破6万亿美元[EB/OL]. [2021-06-15]. .
|
|
YANG Weiyuan. Analysis on the market scale and development trend of global new material industry in 2021: the policy will help the industrial scale exceed US $6 trillion[EB/OL]. [2021-06-15]. .
|
4 |
侯云龙. 工信部: 新材料产业预计到2025年产值将达10万亿元[EB/OL]. [2018-02-12]..
|
|
HOU Yunlong. Ministry of Industry and Information Technology: the output value of new material industry is expected to reach 10 trillion yuan by 2025[EB/OL]. [2018-02-12]. .
|
5 |
张梦然. 要实现“1.5℃”控温目标 六成以上化石能源2050年前须“留在地下”[N]. 科技日报, 2021-09-09.
|
|
ZHANG Mengran. To achieve the temperature control target of “1.5 ℃”, thanmore 60% of fossil energy must be “left underground” before 2050 [N]. Science and Technology Daily, 2021-09-09.
|
6 |
铁游夏.生物质能开启替代空间[EB/OL]. [2021-03-26]. .
|
|
Youxia TIE. Biomass energy opens alternative space[EB/OL]. [2021-03-26]. .
|
7 |
陈涛. 低碳生物塑料[M]. 北京: 机械工业出版社, 2010.
|
|
CHEN Tao. Low carbon bioplastics[M]. Beijing: Machinery Industry Press, 2010.
|
8 |
卢昊, 陶爱普. 圣泉集团(605589): 合成树脂国内龙头生物质化工前景远大[EB/OL]. .
|
|
LU Hao, TAO Aipu. Fengyun of new materials: Shengquan group (605589) is a domestic leader in synthetic resin and has great prospects for biomass chemical industry[EB/OL]. .
|
9 |
曹新, 宋新山. 生物质材料能为“双碳”做什么[N]. 中国科学报, 2021-07-05(003).
|
|
CAO Xin, SONG Xinshan. What can biomass materials do for “double carbon”[N]. China Science Daily,2021-07-05(003).
|
10 |
洞察热点:深度解析中国工业生物技术行业发展现状及前景[EB/OL]. [2018-01-18]..
|
|
Insight into hot spots: in-depth analysis of the development status and prospects of China’s industrial biotechnology industry[EB/OL]. [2018-01-18] .
|
11 |
影响生物基材料行业发展的有利和不利因素 [EB/OL].[2020-09-08]. .
|
|
Favorable and unfavorable factors affecting the development of bio based materials industry[EB/OL]. [2020-09-08]. .
|
12 |
2019国际生物基材料技术与应用论坛(宁波)[EB/OL]. [2019-04-18]. .
|
|
2019 International Biobased Materials Technology and Application Forum (Ningbo) [EB/OL]. [2019-04-18]. .
|
13 |
王鹏成, 董艳丽.国内二氧化碳的化工利用途径探讨[J].科技创新与应用, 2019(36): 182-183.
|
|
WANG Pengcheng, DONG Yanli. Discussion on chemical utilization of carbon dioxide in China[J]. Scientific and Technological Innovation and Application, 2019(36): 182-183.
|
14 |
张琪, 许武韬, 刘予宇, 等.二氧化碳电化学还原概述[J].自然杂志, 2017(4): 242-250.
|
|
ZHANG Qi, XU Wutao, LIU Yuyu, et al. Overview of carbon dioxide electrochemical reduction [J]. Journal of Nature, 2017(4): 242-250.
|
15 |
华亚妮, 冯少广, 党欣悦,等. CO2电催化还原产合成气研究进展[J/OL].化工进展..
|
|
HUA Yani, FENG Shaoguang, DANG Xinyue, et al. Research progress of CO2 electrocatalytic reduction to syngas [J/OL]. Chemical Industry and Engineering Progress..
|
16 |
KIM D, RESASCO J, YU Y,et al. Synergistic geometric and electronic effects for electrochemical reduction of carbon dioxide using gold-copper bimetallic nanoparticles[J]. Nature Communications, 2014(5): 4948.
|
17 |
王伟建, 郑小慧, 晁会霞, 等. 二氧化碳利用新途径的研究进展评述[J]. 钦州学院学报, 2018, 33(5): 16-22, 48.
|
|
WANG Weijian, ZHENG Xiaohui, CHAO Huixia, et al. A review of research progress on carbon dioxide utilization[J]. Journal of Qinzhou University, 2018, 33(5): 16-22, 48.
|
18 |
钱鑫, 邓丽芳, 王鲁丰, 等. 二氧化碳电化学还原技术研究进展[J]. 材料导报, 2019, 33(S1): 102-107.
|
|
QIAN Xin, DENG Lifang, WANG Lufeng, et al. Recent progress in the electrochemical reduction technology of carbon dioxide[J]. Materials Reports, 2019, 33(S1): 102-107.
|
19 |
SADAT W I AL, ARCHER L A. The O 2 - assisted Al/CO2 electrochemical cell: a system for CO2 capture/conversion and electric power generation[J]. Science Advances, 2016, 2(7): e1600968.
|
20 |
用于CO2可逆利用的可再充Al-CO 2电池[EB/OL]. [2018-06-05]. .
|
|
Rechargeable al CO 2 battery for reversible utilization of CO2 [EB/OL]. [2018-06-05]. .
|
21 |
HU Xiaofei, LI Zifan, ZHAO Yaran, et al. Quasi-solid state rechargeable Na-CO2 batteries with reduced graphene oxide Na anodes[J]. Science Advances, 2017, 3(2): e1602396.
|
22 |
宁汇, 王路海, 何盛宝, 等. 石油沥青基碳材料的电化学应用研究进展[J]. 石油炼制与化工, 2021, 52(10): 38-45.
|
|
NING Hui, WANG Luhai, HE Shengbao, et al. Research process of petroleum pitch-based carbon materials in electrochemical applications[J]. Petroleum Processing and Petrochemicals, 2021, 52(10): 38-45.
|
23 |
莫荣生. 浅谈轻量化树脂材料在汽车饰件上的应用[C]//广东省汽车行业协会. “广汽传祺杯”广东省汽车行业第八期学术会议, 2015.
|
|
MO Rongsheng. Talking about the application of lightweight resin materials in automobile trim [C]// Guangdong Automobile Industry Association. Proceedings of the eighth academic conference of Guangdong automobile industry on “GAC trumpchi Cup”, 2015.
|
24 |
赵治, 郝志莉. 纯电动汽车车身材料轻量化应用现状浅谈[J]. 汽车实用技术, 2020(7): 22-24.
|
|
ZHAO Zhi, HAO Zhili. On the current status of lightweight applications of battery electric car-body materials[J]. Automobile Applied Technology, 2020(7): 22-24.
|
25 |
丁伟, 张艳. 汽车轻量化中的化工材料的运用分析[J]. 化工管理, 2021(9): 68-69.
|
|
DING Wei, ZHANG Yan. Application analysis of chemical materials in automobile light weight[J]. Chemical Enterprise Management, 2021(9): 68-69.
|
26 |
王明菊, 王辉. 太阳能光伏发电技术现状与发展探讨[J]. 能源与节能, 2021(7): 37-38, 49.
|
|
WANG Mingju, WANG Hui. Discussion on status and development of solar photovoltaic power generation technology[J]. Energy and Energy Conservation, 2021(7): 37-38, 49.
|
27 |
EVA料生产企业将持续受益[EB/OL]. [2021-11-01]. .
|
|
EVA material manufacturers will continue to benefit[EB/OL].[2021-11-01]. .
|
28 |
风电站上爆发风口!核心材料“叶片”迎巨大机遇[EB/OL]. [2021-10-19]. .
|
|
There is an air outlet on the wind power plant! Core material “blade” meets great opportunities[EB/OL]. [2021-10-19]. .
|
29 |
中国复合材料学会.2020年全球碳纤维复合材料市场报告[EB/OL]. [2021-04-18]. .
|
|
China Composite Society. 2020 Global carbon fiber composite market report[EB/OL]. [2021-04-18]. .
|
30 |
ABD A A, NAJI S Z, HASHIM A S, et al. Carbon dioxide removal through physical adsorption using carbonaceous and non-carbonaceous adsorbents: a review[J]. Journal of Environmental Chemical Engineering, 2020, 8(5): 104142.
|
31 |
徐永辉, 肖宝华, 冯艳艳, 等. 二氧化碳捕集材料的研究进展[J]. 精细化工, 2021, 38(8): 1513-1521.
|
|
XU Yonghui, XIAO Baohua, FENG Yanyan, et al. Research progress of carbon dioxide capture materials[J]. Fine Chemicals, 2021, 38(8): 1513-1521.
|
32 |
废塑料化学回收系列报告之技术篇: 回收五大工艺详解[EB/OL]. [2021-09-25]. .
|
|
Technical part of a series of reports on chemical recycling of waste plastics: detailed explanation of five recycling processes[EB/OL]. [2021-09-25]. .
|
33 |
环塑视界. 2020年中国废塑料回收市场和再生塑料产业综述[EB/OL]. [2021-05-06]. .
|
|
Environmental Plastics Perspective. Overview of China’s waste plastics recycling market and recycled plastics industry in 2020[EB/OL]. [2021-05-06]. .
|