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Direct pyrolysis to convert biomass to versatile 3D carbon nanotubes/mesoporous carbon architecture:
《化学科学与工程前沿(英文)》 2023年 第17卷 第6期 页码 679-690 doi: 10.1007/s11705-022-2266-8
关键词: biomass direct pyrolysis 3D CNTs/MC hybrid lithium-ion batteries Zn-air batteries
Regulation of radicals by hydrogen-donor solvent in direct coal liquefaction
《化学科学与工程前沿(英文)》 2022年 第16卷 第12期 页码 1689-1699 doi: 10.1007/s11705-022-2186-7
关键词: direct coal liquefaction hydrogen-donor solvent induced pyrolysis radical mechanism density functional theory calculations
《化学科学与工程前沿(英文)》 2022年 第16卷 第12期 页码 1700-1712 doi: 10.1007/s11705-022-2207-6
关键词: naphtha catalytic pyrolysis reaction pathway equilibrium yield
Self-catalytic pyrolysis thermodynamics of waste printed circuit boards with co-existing metals
《环境科学与工程前沿(英文)》 2022年 第16卷 第11期 doi: 10.1007/s11783-022-1581-0
● The co-existing metals in WPCBs has positive catalytic influence in pyrolysis.
关键词: Waste printed circuit board Catalyst Pyrolysis Kinetics
Co-pyrolysis of sludge and kaolin/zeolite in a rotary kiln: Analysis of stabilizing heavy metals
《环境科学与工程前沿(英文)》 2022年 第16卷 第7期 doi: 10.1007/s11783-021-1488-1
• Adding kaolin/zeolite promotes the formation of stable heavy metals.
关键词: Co-pyrolysis Sewage sludge Heavy metals Rotary kiln Immobilization mechanism
Theoretical study on the mechanism of sulfur migration to gas in the pyrolysis of benzothiophene
《化学科学与工程前沿(英文)》 2023年 第17卷 第3期 页码 334-346 doi: 10.1007/s11705-022-2209-4
关键词: benzothiophene sulfur migration pyrolysis density functional theory
Xifeng ZHU, Qiang LU, Wenzhi LI, Dong ZHANG,
《能源前沿(英文)》 2010年 第4卷 第3期 页码 424-429 doi: 10.1007/s11708-010-0015-z
关键词: xylan fast pyrolysis catalytic pyrolysis Py-GC/MS HZSM-5
Mechanism insight into the formation of HS from thiophene pyrolysis: A theoretical study
《环境科学与工程前沿(英文)》 2021年 第15卷 第6期 doi: 10.1007/s11783-021-1404-8
• Possible formation pathways of H2S were revealed in thiophene pyrolysis.
关键词: Density functional theory Waste rubber Thiophene H2S Pyrolysis
《环境科学与工程前沿(英文)》 2022年 第16卷 第10期 doi: 10.1007/s11783-022-1570-3
● Collaborative treatment of plastics and OS was established to improve oil quality.
关键词: Oily sludge Pyrolysis Polyethylene H/Ceff ratio Oil quality
Quanyuan WEI, Yongshui QU, Tianwei TAN
《化学科学与工程前沿(英文)》 2011年 第5卷 第3期 页码 355-361 doi: 10.1007/s11705-010-0567-9
关键词: mass balance heat balance biomass pyrolysis economic benefit
Upgrading of derived pyrolysis vapors for the production of biofuels from corncobs
Liaoyuan Mao, Yanxin Li, Z. Conrad Zhang
《化学科学与工程前沿(英文)》 2018年 第12卷 第1期 页码 50-58 doi: 10.1007/s11705-017-1685-4
Hydro-pyrolysis of lignocellulosic biomass over alumina supported Platinum, Mo
Songbo He, Jeffrey Boom, Rolf van der Gaast, K. Seshan
《化学科学与工程前沿(英文)》 2018年 第12卷 第1期 页码 155-161 doi: 10.1007/s11705-017-1655-x
关键词: bio-oil pyrolysis hydro-deoxygenation (HDO) non-noble metal catalysts hydro-treatment
《环境科学与工程前沿(英文)》 2023年 第17卷 第1期 doi: 10.1007/s11783-023-1606-3
● Reducting the sampling frequency can enhance the modelling process.
关键词: HDPE Pyrolysis Kinetics Thermogravimetric ANOVA Artificial neural network
Additive direct-write microfabrication for MEMS: A review
Kwok Siong TEH
《机械工程前沿(英文)》 2017年 第12卷 第4期 页码 490-509 doi: 10.1007/s11465-017-0484-4
Direct-write additive manufacturing refers to a rich and growing repertoire of well-established fabrication techniques that builds solid objects directly from computer-generated solid models without elaborate intermediate fabrication steps. At the macroscale, direct-write techniques such as stereolithography, selective laser sintering, fused deposition modeling ink-jet printing, and laminated object manufacturing have significantly reduced concept-to-product lead time, enabled complex geometries, and importantly, has led to the renaissance in fabrication known as the . The technological premises of all direct-write additive manufacturing are identical—converting computer generated three-dimensional models into layers of two-dimensional planes or slices, which are then reconstructed sequentially into three-dimensional solid objects in a layer-by-layer format. The key differences between the various additive manufacturing techniques are the means of creating the finished layers and the ancillary processes that accompany them. While still at its infancy, direct-write additive manufacturing techniques at the microscale have the potential to significantly lower the barrier-of-entry—in terms of cost, time and training—for the prototyping and fabrication of MEMS parts that have larger dimensions, high aspect ratios, and complex shapes. In recent years, significant advancements in materials chemistry, laser technology, heat and fluid modeling, and control systems have enabled additive manufacturing to achieve higher resolutions at the micrometer and nanometer length scales to be a viable technology for MEMS fabrication. Compared to traditional MEMS processes that rely heavily on expensive equipment and time-consuming steps, direct-write additive manufacturing techniques allow for rapid design-to-prototype realization by limiting or circumventing the need for cleanrooms, photolithography and extensive training. With current direct-write additive manufacturing technologies, it is possible to fabricate unsophisticated micrometer scale structures at adequate resolutions and precisions using materials that range from polymers, metals, ceramics, to composites. In both academia and industry, direct-write additive manufacturing offers extraordinary promises to revolutionize research and development in microfabrication and MEMS technologies. Importantly, direct-write additive manufacturing could appreciably augment current MEMS fabrication technologies, enable faster design-to-product cycle, empower new paradigms in MEMS designs, and critically, encourage wider participation in MEMS research at institutions or for individuals with limited or no access to cleanroom facilities. This article aims to provide a limited review of the current landscape of direct-write additive manufacturing techniques that are potentially applicable for MEMS microfabrication.
关键词: direct-write additive manufacturing microfabrication MEMS
《化学科学与工程前沿(英文)》 页码 1141-1161 doi: 10.1007/s11705-022-2230-7
标题 作者 时间 类型 操作
Direct pyrolysis to convert biomass to versatile 3D carbon nanotubes/mesoporous carbon architecture:
期刊论文
Thermodynamic analysis of reaction pathways and equilibrium yields for catalytic pyrolysis of naphtha
期刊论文
Self-catalytic pyrolysis thermodynamics of waste printed circuit boards with co-existing metals
期刊论文
Co-pyrolysis of sludge and kaolin/zeolite in a rotary kiln: Analysis of stabilizing heavy metals
期刊论文
Theoretical study on the mechanism of sulfur migration to gas in the pyrolysis of benzothiophene
期刊论文
Fast and catalytic pyrolysis of xylan: Effects of temperature and M/HZSM-5 (M= Fe, Zn) catalysts on pyrolytic
Xifeng ZHU, Qiang LU, Wenzhi LI, Dong ZHANG,
期刊论文
Co-pyrolysis of oil sludge with hydrogen-rich plastics in a vertical stirring reactor: Kinetic analysis
期刊论文
Mass and heat balance calculations and economic evaluation of an innovative biomass pyrolysis project
Quanyuan WEI, Yongshui QU, Tianwei TAN
期刊论文
Upgrading of derived pyrolysis vapors for the production of biofuels from corncobs
Liaoyuan Mao, Yanxin Li, Z. Conrad Zhang
期刊论文
Hydro-pyrolysis of lignocellulosic biomass over alumina supported Platinum, Mo
Songbo He, Jeffrey Boom, Rolf van der Gaast, K. Seshan
期刊论文
Prediction of high-density polyethylene pyrolysis using kinetic parameters based on thermogravimetric
期刊论文