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        검색결과 722

        94.
        2022.02 KCI 등재 구독 인증기관 무료, 개인회원 유료
        The electrical resistances of small-sized activated carbon fiber (ACF) fabric (specific surface area: 1244.7 m2/ g, average pore diameter: 1.92 nm) and felt (specific surface area: 1321.2 m2/ g, average pore diameter: 2.21 nm) sensors were measured in a temperature and humidity controlled gas chamber by CO2 adsorption at different surrounding CO2 concentrations (3000–10,000 ppm). The electrical resistances of ACF sensors decreased linearly as the increase of temperature and decreased exponentially as the increase of humidity in the ambient atmospheric chamber. The electrical resistances of ACF rapidly decreased within 4 s and an equilibrium state was achieved within 10 s due to the very rapid CO2 adsorption at room temperature and 40% humidity. Comparing the difference in electrical resistance values measured during injection of similar concentrations of CO2 after reaching the equilibrium value, the fabric exhibited a significant change, whereas the felt did not, even though it had a relatively larger specific surface area. The reason is that micropore volume greatly affected the amount of CO2 adsorbed, whereas the specific surface area did not affect it as much. Therefore, ACF fabric with large micropores (> 2.0 nm) can be developed and used as CO2 sensors in small rooms such as a passenger vehicles.
        4,000원
        95.
        2022.02 KCI 등재 구독 인증기관 무료, 개인회원 유료
        본 연구에서는 순수 PEBAX® 분리막의 투과특성을 향상시키기 위해 개질된 fumed silica 나노입자를 혼합한 MMMs (mixed matrix membranes) 타입의 PEBAX®/fumed silica 하이브리드 분리막을 제조하고, 이산화탄소와 메탄의 투과 특성을 측정하였다. PEBAX®-1657/TS-530 하이브리드 소재의 경우, FT-IR과 XRD 분석을 통해 PEBAX® 고분자에 무기입자 가 비교적 잘 분산되었음을 확인하였다. 기체투과특성 측정 결과 TS-530을 10 wt% 혼합한 분리막의 경우, 순수 PEBAX® 분 리막과 비교하여 투과도 계수는 약간 감소하나 이상분리인자는 약간 증가하였다. 이는 비투과성 silica 입자의 도입에 따라 기 체 확산 경로가 줄어들고, 경로의 비틀림이 증가하기 때문으로 볼 수 있다. TS-530 함량이 증가함에 따라서는 투과도 계수와 이상분리인자 간에 전형적인 trade-off 경향을 보였다. 이는 TS-530 함량이 증가함에 따라 결정성이 감소하고, 고분자 사슬 간 충전 억제에 따라 자유부피가 증가하기 때문으로 볼 수 있다. 또한 무기입자 함량 증가에 나노간극의 형성 가능성이 높아지 고, 이에 따라 기체 확산도가 커지기 때문으로 판단된다.
        4,000원
        97.
        2021.12 KCI 등재 구독 인증기관 무료, 개인회원 유료
        The present study analyzed the pore formation and development process in carbon black that was activated by CO2 gas and the effect of the burn-off (BO) ratio on the process, particularly based on changes in the surface shape and internal microstructure. The activation process was performed as follows. Carbon blacks were injected into a horizontal tube furnace when the inside temperature reached 1000 °C. Carbon black samples with different BOs, i.e., 7.2%, 15.4%, 30.4%, 48.2%, 59.9%, and 83.2%, were prepared by varying the activation time. The microstructure of the activated samples was observed and examined using SEM and TEM. The results showed that pore passages were first created on the surface of the primary particles of the carbon black, and then the inner portion of the carbon black with a lower degree of crystallinity started to be activated, thereby causing inner pores to be formed. These inner pores then started to grow and coalesce into larger pores, thereby causing the crystallite layers in the inner portion of the carbon black to be activated. The changes in the microstructure of the carbon black during the activation reaction were attributable to the carbon black manufacturing process, in which the nucleation and growth of the primary particles of the carbon black occurred within a very short period of time. Thus, the crystallization of the inner portion was suppressed, and therefore, the degree of crystallinity was lower in the inner portion than in the outer portion.
        4,000원
        98.
        2021.12 KCI 등재 구독 인증기관 무료, 개인회원 유료
        Global warming and climate changes are the ultimate consequences of increased CO2 volume in the air. Physical activation was used to prepare high-throughput activated carbon from a low-cost date stone. The adsorption performance of activated carbon using fixed bed for CO2 separation was studied. The reliance of temperature, flow rate, and initial CO2 concentration levels on breakthrough behaviour was analysed. The adsorption response was explored in terms of breakthrough and saturation points, adsorption capacity, temperature profiles, utilization factor, and length of mass-transfer zone. Increased temperatures lead to vary the breakthrough periods notably. The vastly steep breakthrough curves reveal satisfactory utilization of bed capacity. LMTZ is varied positively with increased feed rates and temperatures. The high utilization factor of 0.9738 with 1.66 mmol/g CO2 uptake was acquired at 298 K and 0.25 bars. The findings recommend that the carbon prepared from date stone is encouraging to capture CO2 from CO2/ N2 mixture.
        4,300원
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