2023年職稱英語理工類A級完形填空模擬練習

雕龍文庫 分享 時間: 收藏本文

2023年職稱英語理工類A級完形填空模擬練習

  Obtaining Drinking Water from Air Humidity

  Not a plant to be seen, the desert ground is too 1 . But the air contains water, and research scientists have found a 2 of obtaining drinking water from air humidity. The system is based completely on renewable energy and is therefore autonomous.

  Cracks permeate the dried-out desert ground and the landscape bears testimony to the lack of water. But even here, where there are no lakes, rivers or groundwater, considerable quantities of water are stored in the air. In the Negev desert in Israel, for example, annual average relative air humidity is 64 percent -- in every cubic meter of air there are 11.5 milliliters of water.

  German research scientists have found a way of converting this air humidity autonomously into drinkable water. The process we have developed is based exclusively on renewable energy sources such as thermal 3 collectors and photovoltaic cells, which makes this method completely energy-autonomous. It will therefore function in regions 4 there is no electrical infrastructure, says Siegfried Egner, head of the research team. The principle of the 5 is as follows: hygroscopic brine saline solution which absorbs moisture runs down a tower-shaped unit and absorbs water from the air. It is then sucked into a tank a few meters 6 the ground in which a vacuum prevails. Energy from solar collectors heats up the brine,, which is diluted by the water it has 7

  Because of the vacuum, the boiling point of the liquid is 8 than it would be under normal atmospheric pressure. This effect is known from the mountains: as the atmospheric pressure 9 is lower than in the valley, water boils at temperatures 10 below 100℃. The evaporated, non-saline water is condensed and runs down through a completely filled tube in a controlled manner. The gravity of this water column continuously produces the vacuum and so a vacuum pump is not needed. The reconcentrated brine runs down the tower surface 11 to absorb moisture from the air.

  The concept is suitable for various water 12 Single-person units and plants 13 water to entire hotels are conceivable, says Egner. Prototypes have been built for both system components-air moisture absorption and vacuum evaporation-and the research scientists have already 14 their interplay on a laboratory scale. In a further step the researchers in-tend to develop a demonstration 15.

  練習:

  1. A dry

  B dirty

  C sandy

  D clean

  2. A path

  B way

  C channel

  D road

  3. A oil

  B wood

  C coal

  D solar

  4. A when

  B what

  C where

  D who

  5. A promise

  B progress

  C prospect

  D process

  6. A of

  B with

  C off

  D below

  7. A absorbed

  B attracted

  C allowed

  D affected

  8. A wetter

  B hotter

  C lighter

  D lower

  9. A close

  B there

  C beyond

  D nearby

  10. A gradually

  B distinctly

  C necessarily

  D possibly

  11. A again

  B too

  C either

  D more

  12. A users

  B owners

  C providers

  D producers

  13. A using

  B obtaining

  C supplying

  D cleaning

  14. A repaired

  B sold

  C copied

  D tested

  15. A tank

  B method

  C facility

  D tool

  參考答案

  ABDCD CADBB AACDC

  

  Obtaining Drinking Water from Air Humidity

  Not a plant to be seen, the desert ground is too 1 . But the air contains water, and research scientists have found a 2 of obtaining drinking water from air humidity. The system is based completely on renewable energy and is therefore autonomous.

  Cracks permeate the dried-out desert ground and the landscape bears testimony to the lack of water. But even here, where there are no lakes, rivers or groundwater, considerable quantities of water are stored in the air. In the Negev desert in Israel, for example, annual average relative air humidity is 64 percent -- in every cubic meter of air there are 11.5 milliliters of water.

  German research scientists have found a way of converting this air humidity autonomously into drinkable water. The process we have developed is based exclusively on renewable energy sources such as thermal 3 collectors and photovoltaic cells, which makes this method completely energy-autonomous. It will therefore function in regions 4 there is no electrical infrastructure, says Siegfried Egner, head of the research team. The principle of the 5 is as follows: hygroscopic brine saline solution which absorbs moisture runs down a tower-shaped unit and absorbs water from the air. It is then sucked into a tank a few meters 6 the ground in which a vacuum prevails. Energy from solar collectors heats up the brine,, which is diluted by the water it has 7

  Because of the vacuum, the boiling point of the liquid is 8 than it would be under normal atmospheric pressure. This effect is known from the mountains: as the atmospheric pressure 9 is lower than in the valley, water boils at temperatures 10 below 100℃. The evaporated, non-saline water is condensed and runs down through a completely filled tube in a controlled manner. The gravity of this water column continuously produces the vacuum and so a vacuum pump is not needed. The reconcentrated brine runs down the tower surface 11 to absorb moisture from the air.

  The concept is suitable for various water 12 Single-person units and plants 13 water to entire hotels are conceivable, says Egner. Prototypes have been built for both system components-air moisture absorption and vacuum evaporation-and the research scientists have already 14 their interplay on a laboratory scale. In a further step the researchers in-tend to develop a demonstration 15.

  練習:

  1. A dry

  B dirty

  C sandy

  D clean

  2. A path

  B way

  C channel

  D road

  3. A oil

  B wood

  C coal

  D solar

  4. A when

  B what

  C where

  D who

  5. A promise

  B progress

  C prospect

  D process

  6. A of

  B with

  C off

  D below

  7. A absorbed

  B attracted

  C allowed

  D affected

  8. A wetter

  B hotter

  C lighter

  D lower

  9. A close

  B there

  C beyond

  D nearby

  10. A gradually

  B distinctly

  C necessarily

  D possibly

  11. A again

  B too

  C either

  D more

  12. A users

  B owners

  C providers

  D producers

  13. A using

  B obtaining

  C supplying

  D cleaning

  14. A repaired

  B sold

  C copied

  D tested

  15. A tank

  B method

  C facility

  D tool

  參考答案

  ABDCD CADBB AACDC

  

主站蜘蛛池模板: 波多野结衣免费视频观看| 一级毛片私人影院| 麻豆国产高清在线播放| 欧美性a欧美在线| 国产精品国色综合久久| 亚洲日本香蕉视频观看视频| 99久久国语露脸精品国产| 狠狠色狠狠色综合伊人| 天天操天天摸天天舔| 人人澡人人澡人人澡| hkpic比思特区东方美人| 男人天堂视频网站| 在线观看特色大片免费网站| 亚洲色欲久久久综合网东京热| a级毛片免费网站| 永久看一二三四线| 国内自产一区c区| 亚洲欧美成aⅴ人在线观看| 91精品国产一区| 男人边吃奶边激烈摸下面的视频| 性放荡日记高h| 全彩口工彩漫画无遮漫画| 中文综合在线观| 精品国产日韩亚洲一区| 希崎杰西卡一二三区中文字幕| 和阿同居的日子hd中字| 中国老熟妇xxxxx| 美国艳星janacova| 尤物永久免费AV无码网站| 别揉我的胸~啊~嗯~的视频| yellow2019电影在线高清观看| 精品久久久久久久久午夜福利| 小猪视频app下载版最新忘忧草b站| 全免费A级毛片免费看网站| julia无码人妻中文字幕在线| 狠狠做五月深爱婷婷天天综合 | 国产123区在线视频观看| 中文字幕人成乱码中国| 精品国产欧美sv在线观看| 好男人www在线视频高清视频| 免费一看一级毛片|