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1)  leaching behavior
浸出行为
1.
The leaching behavior of HLW glass by simulated groundwater and deionized water are studied by MCC-1 static method under both atmospheric and anaerobic conditions at 150 ℃ and 90 ℃ for 546 d.
采用MCC-1静态浸出法研究了在低氧条件下,两种温度(150℃和90℃)和两种浸出剂(模拟地下水和去离子水)在浸泡546 d后对玻璃固化体浸出行为的影响。
2.
The leaching behavior of pyrochlore-rich synroc incorporated with 46.
研究了包容46 8%模拟锕系废物的富烧绿石在5种模拟处置介质:纯花岗岩,花岗岩+水泥,花岗岩+Fe3O4,纯膨润土,膨润土+Fe3O4中的浸出行为
3.
5Cu/Cu solder joint in aqueous solutions of H2SO4, NaOH, HNO3, and NaCl, aiming at revealing the leaching behavior of heavy metals from electronic wastes in different environments and exploring the pollution of electronic wastes to soils and ground water as well.
5%Cu/Cu焊接接头在H2SO4、NaOH、HNO3和NaC l溶液中进行了元素浸出试验,研究电子产品中重金属元素在不同环境中的浸出行为,从而分析电子产品的掩埋对土壤和地下水污染情况及如何合理选择填埋场所。
2)  exosmosis [英][,eksəs'məusis]  [美][,ɛksəs'mosɪs]
浸出行为
1.
Study the selenium′s exosmosis in the soil of Huaibei by analysing the samples with the system of HNO3-HClO4-HCl,and survey micro selenium with reducible fluorescence spectrophotometry.
本文利用HNO3-HClO4 -HCl体系处理试样 ,采用差减荧光法测定微量硒 ,对淮北各类土壤中硒的浸出行为进行研究 。
2.
In this paper, a systematic research had been made on the exosmosis of multiple elements in the soil of Huaibei district by virtue of the advanced analytical technology of electrothermal coupling plasmasphere eradiating spectrum.
本文利用先进的电感耦合等离子体发射光谱分析技术,对淮北地区土壤中多种元素的浸出行为作了系统研究。
3)  infiltration behavior
浸渗行为
4)  immer-sion behavior
浸水行为
5)  pickle behavior
浸渍行为
1.
Liquid pickle behavior of several kinds of local wood in Yunnan was studied.
研究了几种云南木材在水和有机液体中的浸渍行为 ,探讨了浸渍液体的溶解度参数、木材种类和密度、助浸剂、浸渍时间和压力以及电子束辐射 (EBI)等因素对木材的液体浸渍行为的影
6)  wetting behavior
浸润行为
1.
The effect of Si content in Al alloy on the wetting behavior of SiC with Al was evaluated by the sessile drop technique in vacuum.
用液滴技术(The Sessile Drop Technique)、SEM、EDS等研究了Si对SiC-Al系统浸润行为的影响,结果表明,在较低温度下,Si在熔融Al合金中的含量不明显影响Al对SiC的浸润行为,然而,在高温下SiC和Al的接触角θ值随时间而减小的速率随Si含量的增加而增大;SiC-Al系统从非浸润到浸润的转变温度随Si含量的增加而降低;Si的添加引起Al合金在SiC表面扩展和向SiC基体渗透,而且扩展和渗透的程度随Si含量增加而增大。
补充资料:汗浸浸
1.汗水浸湿貌。
说明:补充资料仅用于学习参考,请勿用于其它任何用途。
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