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Recovery of Tungsten Surface with Fiber-Form Nanostructure by Plasmas Exposures
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作者 Takanori MIYAMOTO Shuichi TAKAMURA Hiroaki KURISHITA 《Plasma Science and Technology》 SCIE EI CAS CSCD 2013年第2期161-165,共5页
One of the serious concerns for tungsten materials in fusion devices is the radiation defects caused by helium plasma irradiation since helium is a fusion product. The fiber-formed nanostructure is thought to have a p... One of the serious concerns for tungsten materials in fusion devices is the radiation defects caused by helium plasma irradiation since helium is a fusion product. The fiber-formed nanostructure is thought to have a possible weakness against the plasma heat flux on the plasma- facing component and also may destroy the reflectivity of optical mirrors. In this paper an inter- esting method for the recovery of such tungsten surfaces is shown. The recovery process depends on the grade and manufacturing process of tungsten materials. 展开更多
关键词 helium defects TUNGSTEN plasma-surface interaction fiber-form nanostruc-ture surface recovery
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Optimal design of nanofiltration system for surface water treatment 被引量:2
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作者 Fei Bi Haiyang Zhao +3 位作者 Zhijun Zhou Lin Zhang Huanlin Chen Congjie Gao 《Chinese Journal of Chemical Engineering》 SCIE EI CAS CSCD 2016年第12期1674-1679,共6页
Both reverse osmosis(RO) and nanofiltration(NF) membranes have been increasingly used for water purification and desalination. However, the salt rejection of NF membranes is quite different from that of RO membranes,w... Both reverse osmosis(RO) and nanofiltration(NF) membranes have been increasingly used for water purification and desalination. However, the salt rejection of NF membranes is quite different from that of RO membranes,which makes a significant distinction in their process designs. This work started from the performance investigation of a single NF membrane element and then focused on the process design of the NF system for surface water treatment. In experimental tests, it was found that the observed rejection of the NF element becomes nearly constant when the concentrate flow is large enough, while the membrane flux of the NF element is quite stable regardless of the water flow across the membrane surface. These findings can be used to instruct the process design of the NF system for surface water treatment. In process design, a two-stage arrangement is sufficient for the NF system to reach the highest water recovery, while the RO system requires a three-stage arrangement. 展开更多
关键词 Nanofiltration System design Salt rejection surface water recovery
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