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1)  nutrient solution temperature
液温
1.
Multifunctional hydroponics installations were composed of cultivation bed,closed nutrient solution circulating system,nutrient solution temperature control system,dissolved oxygen adding system and nutrient solution automatic check and control system.
多功能水耕栽培系统由栽培床、封闭式循环供液系统、液温调控、增氧设施以及营养液自动检测与控制系统组成。
2)  Solution temperature
溶液温度
1.
This article was about the determination of the same sample's absorbent on the condition of different solution temperature, different still time and different water bath temperature,From it we could prove that the result was relative to different experiment conditions.
本文通过对同一样品,在不同的溶液温度、不同的放置时间、不同的水浴加热温度下,测定其吸光度,以证明不同实验条件对测定结果的影响。
3)  epithermal [,epi'θə:məl]
低温热液
1.
The Lalab gold deposit is the most typical deposit in the Sibutad ore-concentrated area,and this area is regarded as the most promising economically feasible vein-type epithermal gold mineralization in the Western margin of the Luzon arc.
拉拉布脉状金矿床是西必塔矿集区最典型的矿床,而西必塔矿集区脉状浅成低温热液型金矿是近年来发现的最具经济潜力的金矿床之一。
4)  copper liquid temperature
铜液温度
1.
Soft-sensing model of copper liquid temperature in copper refining process and its application;
铜精炼过程铜液温度软测量模型及应用
2.
Soft-sensing model for copper liquid temperature of heat preservation phase in copper refining rotary anode furnace and its application;
铜精炼炉保温过程铜液温度软测量模型及应用
5)  immersed solution
温浸液
1.
The process of cycling use for smell-less crystal garlic immersed solution in practice was established by studying on composition and temperature of immersed solution,and time for immersing,it was:water∶garlic 1.
在实际生产中,通过对大蒜浸泡液成分改变及温浸温度和温浸时间的研究,确立了无臭水晶大蒜温浸液循环生产工艺为:水∶蒜米为1。
6)  Cryogenic liquefaction
低温液化
1.
Cryogenic liquefaction on reduction of CO_2 composition in airproof air;
降低空气中CO_2浓度的低温液化法
补充资料:玻璃液体温度计


玻璃液体温度计
liquid-in-glass thermometer

boli鸭tiwenduji玻玻液体通度计(li咖d一in刁翻the~ter)由感温泡、玻瑞毛细管和刻度标尺3部分组成的温度计。其侧温原理是基于物质的热膨胀特性。当温度计插人温度高于温度计初始温度的被测介质时,感温液受热膨胀,从而使感温液柱在毛细管内上升。常用的感沮液体有汞、汞蛇合金和有机液体。玻璃液体温度计按结构可分为棒式、内标式和外标式3种。玻璃液体沮度计在使用过程中,零位变化是最主要的一项误差来源。温度计的零位严格地讲不是一个定值,而是与最后一次受热状态有关。零位变化有两种形式:①由于玻瑞内部组织老化引起的感温泡体积收缩造成温度计零位永久上升;②温度计加热后感温泡膨胀,再急冷至室温,感温泡不能立即恢复原状,造成零位暂时性降低,必须通过退火来恢复。(王磊)
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