碳吸收的英文
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"碳吸收"怎么读用"碳吸收"造句
英文翻译手机版
- carbon sequestration
- "碳"英文翻译 carbon
- "吸收"英文翻译 absorb; suck up; soak up; as ...
- "活性碳吸收" 英文翻译 : activated charcoal absorption
- "碳吸收法" 英文翻译 : cam carbon absorb method
- "碳吸收剂" 英文翻译 : absorbent carbon
- "碳吸收法,碳吸附法" 英文翻译 : carbon absorption method
- "二氧化碳吸收" 英文翻译 : carbon-dioxide absorption
- "活性碳吸收剂" 英文翻译 : carbo absorbent
- "二氧化碳吸收袋" 英文翻译 : absorption canisters
- "二氧化碳吸收度" 英文翻译 : carbon dioxide absorbency; carbon dioxide traps
- "二氧化碳吸收管" 英文翻译 : carbon dioxide absorption tube
- "二氧化碳吸收罐" 英文翻译 : carbon dioxide canister
- "二氧化碳吸收剂" 英文翻译 : baralyme; carbon dioxide absorbent; carbon-dioxide absorbent
- "二氧化碳吸收麻醉" 英文翻译 : carbon-dioxide absorption anesthesia
- "二氧化碳吸收器" 英文翻译 : absorption unit of dioxide carbon; carbon dioxide a orber; carbon dioxide absorber unit; carbon dioxide extractor; carbon-dioxide absorber
- "二氧化碳吸收器盖" 英文翻译 : cover of carbon dioxide absorber unit
- "二氧化碳吸收曲线" 英文翻译 : carbon dioxide absorption curve
- "二氧化碳吸收塔" 英文翻译 : carbon dioxide absorbing tower
- "二氧化碳吸收筒" 英文翻译 : carbon dioxide absorption cartridge
- "二氧化碳吸收装置" 英文翻译 : carbon dioxide scrubber
- "二氧化碳吸收作用" 英文翻译 : carbondioxide absorption
- "二养化碳吸收器" 英文翻译 : carnon-dioxide absorber
- "一氧化碳吸收剂" 英文翻译 : absorbents of carbon monoxide
- "潜艇二氧化碳吸收装置" 英文翻译 : submarine carbon dioxide absorber
- "再生式二氧化碳吸收剂" 英文翻译 : regenerative type carbon dioxide absorbent
例句与用法
- Carbon sequestration is a last resort to mitigating climate change
碳吸收是减缓气候变化的最后手段。 - The total carbon absorption increased from 1981 to the end of 1990 ' s and decreased afterwards , but the total carbon emission increased constantly from 1981
碳吸收从20世纪90年代末以来呈下降趋势,而碳排放则持续增加,其中各省份的碳吸收排放差别显著。 - Both total carbon absorption and emission of costal farmland ecosystems were increased from 1981 to 2001 , but the increasing rate of carbon emission exceeded that of carbon absorption
总碳吸收和碳排放从1981年以来都呈增加的趋势,但碳排放的增长超过了碳吸收的增长速度。 - It meant that carbon emission was obviously less than carbon absorption in costal regions . for example , carbon absorption was about 3 times more than emission in 2001
就目前来说,农田生态系统碳排放明显低于碳吸收,如2001年的沿海地区农田生态系统碳吸收为碳排放的4倍左右。 - In details , the increasing rate of carbon absorption in guangxi province was the highest , which in tianjin and shanghai city was about zero and was negative in fujian and zhejiang . carbon emission was increasing in all the provinces , among which the increasing rate of shanghai was the highest
就碳吸收来说,广西、山东增长最快,天津、上海基本上持平,而福建、浙江等省份则基本上逐年下降;就碳排放来说,各省份都呈逐年增加的趋势,其中上海增幅最大。 - The total carbon absorption of china costal farmland ecosystems was 15644 . 2 x 104t in 1981 and increased to 22482 . 4 x 104t in 2001 with increasing rate of 44 % . but the total carbon emission was 1512 . 86 x 104t in 1981 and increased to 5559 . 31 x 104t in 2001 with increasing rate of 265 %
其中,沿海十省区农田生态系统碳吸收总量从1981年的15644 . 2万吨上升到2001年的22482 . 4万吨,上升了近44 ;而碳排放总量从1981年的1512 . 86万吨上升到2001年的5559 . 31万吨,增长了265 。 - Further , the trend of per area carbon absorption and emission was similar to that of total respectively . in general , per area carbon absorption was about 2 - 7t / ha , which in guangxi was the highest among the ten regions . per area carbon emission was about 0 - 3t / ha , which in shanghai was the highest
就单位面积而言,单位面积碳吸收和碳排放趋势分别与总碳吸收及排放相近,大部分地区保持在2 - 7吨公顷之间,其中广西的单位面积碳吸收最大;单位面积碳排放逐年增加,基本上保持在0 - 3吨公顷之间,其中上海增幅最大。 - Firstly , this dissertation estimated the size of carbon source ; sink and net carbon sink of farmland ecosystems in china costal regions ( including ten provinces ) with statistic data from 1981 to 2001 , which include data of crop yield and agricultural consumptions . then analyzed the temporal - spatial differences of carbon source , sink and net carbon sink of china costal farmland ecosystems . secondly , estimated npp ( net primary productivity ) of farmland ecosystems in china costal regions with per month noaa - avhrr ndvi ( normalized difference vegetation index ) data and estimation model
本文首先运用1981 - 2001年的统计资料(作物产量和各种途径的农业投入数据) ,对沿海十省区农田生态系统碳源汇及净碳汇进行了估算,并分析了其时空差异;然后运用1998年逐月ndvi数据通过建模对沿海地区农田生态系统npp进行了估算,并分析了npp分布与农田生态系统碳吸收的相关性;最后通过对农田生态系统碳源汇的影响因素分析,提出了不同的农田生态系统碳增汇减排技术。
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