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节能减排技术 the technology of energy-saving and emission reduction英语短句 例句大全

时间:2022-06-23 15:54:45

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节能减排技术 the technology of energy-saving and emission reduction英语短句 例句大全

节能减排技术,the technology of energy-saving and emission reduction

1)the technology of energy-saving and emission reduction节能减排技术

英文短句/例句

1.Technology for Energy Saving and Emission Reduction in DAP Plant磷酸二铵装置的节能减排技术——磷复肥装置节能减排技术之二

2.Energy Saving and Emission Reduction Technology for MAP Plant磷酸一铵装置的节能减排技术——磷复肥装置节能减排技术之三

3.Prospects of Energy Conservation and Emissions Reduction Technology for Shanghai Water Supply Industry;上海水务行业节能减排技术发展展望

4.Popularized technology of energy saving and emissions reduction for development of chlor-alkali industry;推广节能减排技术 促进氯碱行业发展

5.Energy Saving and Pollutant Reduction Use in 3200m~3 BF节能减排技术在3200m~3高炉系统的应用

6.Development and Application of Energy-saving Technologies in Yankuang Luhua兖矿鲁化节能减排技术的开发与应用

7.Energy saving and emission reduction technology for waste water treatment plant in adipic acid production己二酸废水处理装置的节能减排技术

8.Example Analysis on the Technological Transformation for Energy Conservation and Emission Reduction of Central Air-conditioning中央空调节能减排技术改造——实例探析

9.The present research situation of solar-heat pump and heat pipe technology on lumber drying in China我国木材干燥节能减排技术研究现状

10.Energy-Saving Emission Reduction and Equipment in the Field of Theromechanical Processing铸锻热加工行业节能减排技术及设备

11.The energy saving and emission reducing techniques for lead-acid battery manufacturing industry in china;中国铅酸蓄电池行业节能减排技术分析(一)

12.FOCUS ON ANALYZING CHINA′S IRON AND STEEL INDUSTRY ENERGY-SAVING AND EMISSION-CUTTING TECHNOLOGY;当前中国钢铁工业节能减排技术重点分析

13.On Energy Saving and Exhaust Reduction of Metal Mines;加强矿山技术管理 促进节能减排工作

14.The Technological Progress of the Dyeing and Finishing Industry of Our Country in Energy Saving and Pollutants Discharge Reduction;节能减排与我国印染行业的技术进步

15.Rely on advanced technology to promote chlor-alkali enterprises energy saving and discharge reduction;依靠先进技术推动氯碱企业节能减排

16.Strategy Analysis of Application of Clean Technology in China"s Energy-saving and Emission Reduction节能减排中清洁技术应用的策略分析

17.Foundational Technology of Energy-Saving & Emission Reduction--Power Semiconductor Devices and IC"s节能减排的基础技术-功率半导体芯片

18.Energy-saving and emission reduction for CRCD coal gasification technology and lime industryCRCD煤气化技术与石灰生产的节能减排

相关短句/例句

Water saving and sewage reduction technology节水减排技术

3)technical modification of energy-saving and exhaust-reducing节能减排技改

1.The process,equipment selection,and main indexes oftechnical modification of energy-saving and exhaust-reducing for FCMP production are introduced.介绍钙镁磷肥节能减排技改的工艺流程及设备选型、工艺指标。

4)water supply and sewerage energy saving technology给排水节能技术

5)energy saving and emission reducing节能减排

1.Theenergy saving and emission reducing techniques for lead-acid battery manufacturing industry in china;中国铅酸蓄电池行业节能减排技术分析(一)

2.Theenergy saving and emission reducing techniques for lead-acid battery manufacturing industry in China;中国铅酸蓄电池行业节能减排技术分析(二)

3.Study on the Policies of Energy Saving and Emission Reducing of Chinese Foundry Industry中国铸造行业节能减排政策研究

6)energy saving and emission reduction节能减排

prehensive utilization of zinc tailings and process exploration forenergy saving and emission reduction;锌冶炼渣综合利用与节能减排的工艺探讨

2.The new model of power generation transaction dispatch with Chinese characteristics constructed by patent technology ofenergy saving and emission reduction;利用节能减排专利技术构筑具有中国特色的发电交易调度新模式

3.Application of hydroviscous variable speed drives inenergy saving and emission reduction;液粘调速装置在节能减排中的应用

延伸阅读

CO_2减排技术CO_2减排技术technology for reduction of CO_2 emissionCOZJ一onPo一J一shuCO:减排技术(teehnology for reduetion ofCOZ emission)用化学、物理、生态等方法从烟气或煤气中分离、回收利用或处理CO:,以减少或分离化石燃料燃烧生成的C02或分离煤气或天然气中C02的技术。也称碳整合技术(earbon sequestration)。此项技术当前尚处于可行性研究或试验阶段,主要有:①分离回收技术:以氛系为吸收液的化学吸收法,用类似于沸石等固体吸附剂的物理吸收法和利用高分子膜对不同气体的不同渗透速度将C02从烟气中分离出来的膜分离法等。②利用技术:液化COZ已广泛地用于焊接、冷却、生产碳酸盐和尿素及饮料等领域,但大t地利用C02的技术,如C02与HZ在高温高压和催化剂条件下合成甲醇、甲烷,与乙醇、环氧化物及不饱和碳化氢合成各种含氧有机化合物等则正在研究之中。③储存技术:将分离出来的C02液化后存放在地下蓄水层或废弃的油井、气井中,或储存于深海等。④加强自然界的补偿:大气与海洋、森林生物圈之间的COZ交换,与人为的CO:排放相比是非常巨大的,只要稍徽增加全球碳循环中CO:的吸收量,就会对大气中温室气体浓度的降低起显著作用,为此要禁止砍伐森林,扩大森林种植和复种面积,增加CO:在现有森林中的存储t。庞大的回收、处理设备需要大量的建设资金和运行费用。据估算,对于一座500 MW的火电厂,如采用化学吸收法从烟气中吸收CO:,液化后储存在soom深的海底,燃用天然气时发电成本要增加50写~7。%,嫩用煤炭时发电成本要增加130%~190%。目前实施这些减排技术,困难很大,尚需进一步研究。

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