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Terms for subject Explosives and Explosive Ordnance Disposal containing 2 | all forms
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acid 2-amino-8-napthol-3, 6-disulfonic acidRR酸,2-氨基-8 #酚-3,6-二磺酸
2-amino-2-methyl-l -propanol2-氨基 2 甲基-1-丙醇
As a far more potent GHG than CO with a GWP of 21, the prediction of even modest quantities of CH₄ could significantly increase the overall predicted GHG emissions and even exceed that of CO₂甲烷的 GWP 值比CO₂ 高出21、是一种更具危害的温室气体、即便是少量的甲烷也会大大增加已预估的温室气体的排放总量、其危害性甚至超过二氧化碳
2,6-bis picrylamino-3,5-dinitropyridine2、6-二苦氨基-3、5-二硝基吡啶PYX, 分子式:C₁₇H₇N₁₁O₁₆,结构式:
2,6-bis picrylamino-3,5-dinitropyridine二氨基二硝基吡啶
2,6-bis picrylamino-3,5-dinitropyridine皮威克斯
Calls for drastic action have bee made within the last decade in order to achieve stabilization of CO levels at around 550 ppm twice the preindustrial era levels过去的十年、为了让二氧化碳在大气中的含量稳定在550 * 10⁻⁶、有人呼吁采取极端的行动
1-chloro-2.4-dinitronaphthalene1-氯-2.4-二硝基#氯硝#
2-chloro-3-4-chlorophenylpropionic acid4-氯-3 4-氯苯基丙酸
CO emissions are found from the extraction, refining and transport of diesel fuel柴油燃料在开采、提炼和运输过程中会产生二氧化碳
CO emissions from ammonia production are found both in the combustion of a proportion of the gas to provide process heat and from the reforming of the feedstock gas to provide ammonia synthesis gas人们发现、氨生产过程中释放的二氧化碳一部分是来自提供热量的气体燃烧、另一部分来自于提供氨合成气所需的原料气的制备过程中
diamino-2,4,6-trinitrobenzene【化】二氨基三硝基苯、三硝基间苯二胺、DATB (分子式:C₆ H₆ N₅ 0₆,结构式)
2,3-diaminonaphthalene2,3-二氨基蔡
2,2',4,4',6,6'-hexanitro-diphenylethylene二苦基砜HNDS;PCS 分子式:C₁₂H₄N₆O₁₄S
2,2',4,4',6,6'-hexanitro-diphenylethylene2、2'、4、4'、6、6'六硝基二苯砜
2,2',4,4',6,6'-hexanitrostilbene二苦基砜HNDS;PCS 分子式:C₁₂H₄N₆O₁₄S
2,2',4,4',6,6'-hexanitrostilbene2、2'、4、4'、6、6'六硝基二苯砜
However, the use of biofuels instead of fossil fuels in explosives would result in lower overall CO emissions, as the biofuel growth phase removes an equivalent amount of CO₂ from the atmosphere然而、制造炸药使用生物燃料代替化石燃料的结果、会使二氧化碳的整体排量降低、因为生物燃料在生长期从大气中消除同样当量的二氧化碳
mentioned in Section 2, Chapter 1在第一章第二节提到的
2-naphthylamine-4.8-disulfonic acidC-酸
2-naphthylamine-4.8-disulfonic acid2-荼胺-4. 8-二磺酸
2,4,8 principle2,4,8 准则能量准则,简称2,4,8准则。该准则简要指出:产品尺寸不变,厚度增大一倍时,需2倍药量, 若产品厚度不变,产品尺寸放大一倍时,需 4 倍药量, 若产品尺寸和厚度都放大一倍时,就需 8 倍药量。大量的实践结果证明,应用能量准则来计算金属爆炸成形时的炸药量是较为可靠的,它为大型金属制件的模拟实验提供了较为实用的理论依据
Some plants will combust a portion of the gas supply to provide process heat leading to farther onsite CO emissions, while others may employ electricity or other sources of energy as an一部分煤气被一些工厂燃烧以提供过程热、结果导致现场二氧化碳排放量进一步增加、而其他工厂可能用电或其他能源作为替代
1,2,4,5-tetrachloro-3-nitrobenzene四氯硝基苯
1,2,4,5-tetrachloro-3-nitrobenzene1,2,4,5-四氯-3-硝基苯
tetranitro-2,3,5,6-dibenzo-1,3a,4,6a-tetraza-pentalene塔考特四硝基二苯并四氮杂戊搭烯,四硝基-2,3,5,6-二苯并-1,3a,4,6a-四氮杂戊搭烯,TACOT,分子式:结构式
2,2,3,3-tetraphenylbutane2,2,3,3-四苯丁烷
The likely GHGs from detonation that require consideration are CO, CH₄ and possibly N₂O需要考量的是爆破可能产生的温室气体、包括二氧化碳、甲烷、可能还有一氧化二氮
Tovite 2托维特2 型硝铵炸药
2,4,6-trinitrobenzene sulfonic acid2,4,6-三硝基苯磺酸
2,4,6-trinitrobenzoic acid2,4,6-三硝基苯[甲]酸
2,4,3-trinitrodiphenylamine2,4,3-三硝基二苯胺
2,4,6-trinitrophenylmethylnitramine2,4,6-三硝基苯甲硝铵 ((NO₂)₃C₈H₂N(CH₃)NO₂)
2,4,6-trinitrophenylmethylnitramine特屈儿
2,4,6-Trinitrotoluene2、4、6 三硝基甲苯TNT,分子式:C₆ H₂CH₃(NO₂)₃, 结构式:粒状或片状晶体组成。其爆炸热为 5.07MJ/kg,爆炸气体体积为620L/ kg,熔融时的密度为1470kg/m³,凝固点为+80.8°C。这是一种军用炸药成分,工业上用作浆状炸药的敏化剂、朋托莱特和 B 混合炸药的组分
2,4,6-trinitrotoluene2,4,6-三硝基甲苯
2,4,6-Trinitrotoluene梯恩梯
2,4,6-trinitrotoluene梯恩梯2,4,6三硝基甲苯,黄色炸药TNT,分子式:C₆H₂CH₃(NO₂)₃ 结构式