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污水厂污泥低温热化学转化过程机理研究 被引量:45
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作者 何品晶 邵立明 +1 位作者 陈正夫 顾国维 《中国环境科学》 EI CAS CSSCI CSCD 北大核心 1998年第1期39-42,共4页
污水厂污泥低温热化学转化是可望达到能量平衡的污泥处理新技术。借助污泥与其转化产物的元素分析、污泥的热重分析和衍生油的GC/MS分析等手段,对该转化反应过程的元素转移、转化特征温度和反应机理进行了研究。认为过程的主要反... 污水厂污泥低温热化学转化是可望达到能量平衡的污泥处理新技术。借助污泥与其转化产物的元素分析、污泥的热重分析和衍生油的GC/MS分析等手段,对该转化反应过程的元素转移、转化特征温度和反应机理进行了研究。认为过程的主要反应是脂肪族化合物的蒸发、蛋白质肽键断裂和基团转移反应,参与反应的主要成份是脂肪族化合物和蛋白质,其中前者参与反应的温度低于后者,而糖类化合物参与反应的温度最高。 展开更多
关键词 污泥 低温热化学转化 污水厂 综合利用
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化学气相沉积、热化学和热反应扩散处理用的流态床反应器在铁和有色合金上的应用
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作者 阎承沛 《国外金属热处理》 2002年第5期37-42,共6页
根据流态床用于传统(碳基和氮基)表面热处理和高温CVD镀覆的评述,R.W.Reynoldson对金属元素沉积和扩散的热反应过程进行了验证,提出了低温热化学和热反应工艺作为传统CVD和PVD技术的另一种选择.
关键词 化学气相沉积 热反应扩散处理 有色合金 流态床反应器 低温热化学 PVD CVD
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Mechanical properties of Mg-6Gd-1Y-0.5Zr alloy processed by low temperature thermo-mechanical treatment 被引量:1
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作者 李德江 曾小勤 +3 位作者 谢艳才 吴玉娟 丁文江 陈彬 《Transactions of Nonferrous Metals Society of China》 SCIE EI CAS CSCD 2012年第10期2351-2356,共6页
An as-solution treated Mg-6Gd-1Y-0.4Zr alloy was processed by low temperature thermo-mechanical treatments (LT-TMT), including cold tension with various strains followed by aging at 200 °C to peak hardness. The... An as-solution treated Mg-6Gd-1Y-0.4Zr alloy was processed by low temperature thermo-mechanical treatments (LT-TMT), including cold tension with various strains followed by aging at 200 °C to peak hardness. The results show that the precipitation kinetics of the alloy experienced LT-TMT is greatly accelerated and the aging time to peak hardness is greatly decreased with increasing tensile strain. The tensile yield strength, ultimate tensile strength and elongation at room temperature of the alloy after cold tension with strain of 10% and peak aging at 200 °C are 251 MPa, 296 MPa and 8%, respectively, which are superior to the commercial heat-resistant WE54 alloy, although the latter has a higher rare earth element content. 展开更多
关键词 Mg-Gd-Y-Zr alloy low temperature thermo-mechanical treatment precipitation hardening mechanical properties
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Investigation into the surface active groups of coal 被引量:1
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作者 徐精彩 薛韩玲 +2 位作者 邓军 文虎 张辛亥 《Journal of Coal Science & Engineering(China)》 2001年第1期88-96,共9页
The oxidation heat of coal is the direct reason leading to coal spontaneous combustion. When coal is exposed in oxygen atmosphere, the physical adsorption and chemisorption happened, and then which resulting chemical ... The oxidation heat of coal is the direct reason leading to coal spontaneous combustion. When coal is exposed in oxygen atmosphere, the physical adsorption and chemisorption happened, and then which resulting chemical reaction followed heat between coal and oxygen. Owing to the complexity and uncertain of molecular structure of coal,it was only reduced that bridge bonds, side chains and O 2 containing functional groups in coal may be prone to oxidation in last year, but not to deeply investigate into the structures and the type of the active radicals. In this paper, according to the last achievements in coal structure research, the hypomethylether bond, hypoalkyl bond of α carbon atom with hydroxyl and α carbon atom with hypomethy side chain and hypomethyl bonds linking up two aromatic hydrocarbon in bridge bonds, and methoxy,aldehyde and alkyls of α carbon atom with hydroxy in side bonds are inferred to be free radical easily to lead to oxidize coal under the ambient temperature and pressure. The order from strong to weak of oxide activation of the seven surface active groups is aldehyde side chains, hypomethylether bonds, hypoalkyl bonds of α carbon atom with hydroxyl, hypoalkyl bonds of α carbon atom with hypomethyl, hypomethyl bonds linking up two aromatic hydrocarbon,methoxy, alkyls side chains of α carbon atom with hydroxyl. Because of the two unsaturated molecular tracks of O 2, unpaired electron clouds of the part of surface active groups of coal enter molecular tracks of O 2 to lead to chemisorb on the conjugate effect and induced effect of surface active groups, and then chemical reaction followed heat happens in them. On the basis of change of bond energy, weighted average method is adopted to count the reaction heat value of each mol CO,CO 2 and H 2O. The property of coal spontaneous combustion is different for the different number and oxidability of the active structure in the coal resulting in the different oxidation heat. 展开更多
关键词 coal spontaneous combustion surface active group oxidation reaction reactive heat
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Low Temperature Plasma CVD Grown Graphene by Microwave Surface-Wave Plasma CVD Using Camphor Precursor 被引量:1
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作者 Hideo Uchida Hare Ram Aryal +1 位作者 Sudip Adhikari Masayoshi Umeno 《Journal of Physical Science and Application》 2016年第2期34-38,共5页
Hydrocarbon precursor such as methane has been widely used to grow graphene films and the methods of growing quality graphene films are dominated by thermal CVD (chemical vapor deposition) system. Graphene films gro... Hydrocarbon precursor such as methane has been widely used to grow graphene films and the methods of growing quality graphene films are dominated by thermal CVD (chemical vapor deposition) system. Graphene films grown by plasma process are generally highly defective which in turns degrade the quality of the films. Here, using a green precursor, camphor we demonstrate a simple and economical method to get high-quality graphene film on copper substrate by micro wave surface-wave plasma CVD at relatively low temperature 550℃. Graphene film grown using camphor shows superior quality than that of the film grown using methane. Results revealed that camphor precursor is a good alternative to hydrocarbon precursors for graphene research. 展开更多
关键词 CAMPHOR plasma CVD quality graphene plasma induced defects.
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Low Temperature Growth of SWNTs on a Nickel Catalyst by Thermal Chemical Vapor Deposition 被引量:1
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作者 Maoshuai He Alexander I. Chernov +9 位作者 Elena D. Obraztsova Jani Sainio Emma Rikkinen Hua Jiang Zhen Zhu Antti Kaskela Albert G. Nasibulin Esko I. Kauppinen Marita Niemela Outi Krause 《Nano Research》 SCIE EI CAS CSCD 2011年第4期334-342,共9页
Single-walled carbon nanotubes (SWNTs) have been grown on a silica-supported monometallic nickel (Ni) catalyst at temperatures ranging from as low as 450℃to 800℃. Different spectroscopic techniques, such as Rama... Single-walled carbon nanotubes (SWNTs) have been grown on a silica-supported monometallic nickel (Ni) catalyst at temperatures ranging from as low as 450℃to 800℃. Different spectroscopic techniques, such as Raman, photoluminescence emission (PLE), and ultra violet-visible-near infrared (UV-vis-NIR) absorption spectroscopy were used to evaluate file diameter and quality of the SWNTs grown over the Ni catalyst at different temperatures. The analysis revealed that high quality SWNTs with a very narrow diameter distribution were obtained at a growth temperature of 500 ℃. In the PLE and absorption spectra, differences were observed between the SWNTs grown oil Ni and those grown on cobalt (Co). This result expands the potential of growing a specific (n, m) tube species with relatively high abundance by tuning the catalyst composition. Furthermore, the prerequisites for the low temperature growth of SWNTs over a monometallic transition metal catalyst have been elucidated. 展开更多
关键词 Single-walled carbon nanotubes SYNTHESIS low temperature nickel catalyst
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