A stable N‐rich aromatic ligand is employed to prepare energetic zeolite‐like metal‐organic frameworks. IFMC‐1 shows excellent air stability, and the lowest sensitivity toward impact, friction, and electrostatic discharge and the highest predicted heat of detonation among the reported coordination polymers, and even commercial materials (such as trinitrotoluene (TNT)).
This study showed the effect of Decabromodiphenylethane (DBDPE) - Sb2O3、Tetramomobisphenol A (BDDP) - Sb2O3 and Mg(OH)2 to the mechanical and retardant performance. To eliminate the bad influence of flame retardant agents to materials’ mechanical performance, SEBS-g-MAH and ABS-g-MAH were added into HIPS to toughen HIPS. The experimental results showed that Decabromodiphenylethane (DBDPE) - Sb2O3 had the best effect of flame retardant, and had little influence on the mechanical performance of HIPS. SEBS-g-MAH could improve the impact strength of HIPS greatly and had little influence on other performance.
As more and more natural gas fields with high content of CO2 have been exploited, it is a strategic significance to capture and take good use of the waste gas while reducing CO2 emission to atmosphere. Pipelines have been identified as the primary means of transporting CO2 from point-of-capture to storage sites, but there is little published work on the economics of CO2 pipeline transport study either exclude transport costs or assume a given cost per tonne of CO2 in addition to capture costs.This paper simulates the CO2 pipeline transport processes of different diameters by liquid and supercritical phase, and estimates the total costs of different transport cases. By comparing the economic value of different cases comprehensively, the optimal transport option for Dongfang 1-1 gas field EGR program has been analyzed.
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