• 제목/요약/키워드: H-Mordenite

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중금속 흡착을 위한 원위치 피복소재로서 천연제올라이트의 양이온교환용량에 따른 적용성 평가 (Applicability of Natural Zeolite with Different Cation Exchange Capacity as In-situ Capping Materials for Adsorbing Heavy Metals)

  • 강구;신원호;홍성구;김영기;박성직
    • 대한환경공학회지
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    • 제39권2호
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    • pp.51-58
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    • 2017
  • 본 연구에서는 오염퇴적물의 원위치 피복을 위한 소재의 적용성 평가를 위해 양이온교환용량이 다른 제올라이트의 중금속 흡착특성을 평가하였다. 실험을 위해 양이온교환용량이 높은 제올라이트(HCzeo, 163.74 cmol/kg), 중간 값의 양이온교환용량의 제올라이트(MCzeo, 127.20 cmol/kg), 양이온교환용량이 낮은 제올라이트(LCzeo, 70.62 cmol/kg)를 사용하였다. 비표면적을 측정한 결과 HCzeo ($59.43m^2/g$) > MCzeo ($52.10m^2/g$) > LCzeo ($10.12m^2/g$)순으로 높은 결과를 나타내었다. 광물학적 조성 분석을 위해 XRD 측정결과 LCzeo는 quartz와 albite로 구성되었고 MCzeo와 HCzeo의 구성광물은 quartz, albite와 더불어 clinoptilolite, heulandite, mordenite도 측정되었다. HCzeo, MCzeo, LCzeo를 이용한 Cd, Cu, Ni, Zn의 동역학적 흡착실험 결과 실험 6시간대에 흡착 평형에 도달하였다. 평형흡착실험 결과 Cd과 Zn의 흡착은 제올라이트의 양이온교환용량에 따라 증가하였지만 Cu와 Ni의 흡착은 양이온교환용량에 따라 증가하는 경향을 보이지 않았다. 이에 따라 오염퇴적물의 원위치 피복적용에 있어 Cd과 Zn으로 오염된 지역은 양이온교환용량이 높은 제올라이트의 피복적용이 효과적이지만 Cu와 Ni로 오염된 지역의 경우 가격이 저렴한 양이온교환용량이 낮은 제올라이트를 적용하여도 무방할 것으로 판단된다.

Shape-Selective Catalysis over Zeolite. An Attempt in the Alkylation of Biphenyl

  • Sugi, Yoshihiro;Komura, Kenichi;Kim, Jong Ho
    • 공업화학
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    • 제17권3호
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    • pp.235-242
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    • 2006
  • Liquid phase alkylation of biphenyl (BP) was studied over large pore zeolites. Selective formation of the least bulky products, 4,4'-diisopropylbiphenyl (4,4'-DIPB) occurred only in the isopropylation of BP over some large pore molecular sieves. H-mordenites (MOR) gave the highest selectivity among them. The dealumination of MOR enhanced catalytic activity and the selectivity of 4,4'-DIPB because of the decrease of coke-deposition. Non-selective catalysis occurs on external acid sites over MOR with the low $SiO_2/Al_2O_3$ ratio because severe coke-deposition deactivates the acid sites inside the pores by blocking pore openings. The selectivity of DIPB isomers was changed with reaction temperature. Selective formation of 4,4'-DIPB was observed at moderate temperatures such as $250^{\circ}C$, whereas the decrease of the selectivity of 4,4'-DIPB occurred at higher temperatures as $300^{\circ}C$. However, 4,4'-DIPB was almost exclusive isomer in the encapsulated DIPB isomers inside the pores even at high temperatures. These decreases of the selectivity of 4,4'-DIPB are due to the isomerization of 4,4'-DIPB on the external acid sites. Some 12-membered molecular sieves, such as SSZ-24, MAPO-5 (M:Mg, Zn, Si), SSZ-31, and ZSM-12, which have straight channels, gave 4,4'-DIPB with moderate to high selectivity; however; SSZ-55, SSZ-42, and MAPO-36 (M: Mg, Zn) gave lower selectivity because of cages in 12-membered one dimensional channels. Three dimensional H-Y and Beta zeolites also yield 4,4'-DIPB in low yield because of their wide circumstances for the isopropylation of BP. The increasing the size of alkylating agent enhanced the shape-selective alkylaiton even for the zeolites, such as UTD-1. The ethylation of BP to ethylbiphenyls (EBPs) and diethylbiphenyls (DEBPs) over MOR was non-selective. The ethylation of BP to EBPs was controlled kinetically. However, there was difference in reactivity of EBPs and DEBPs for their further ethylation. 4-EBP was ethylated preferentially among the isomers, although the formation of 4,4'-DEBP was less selective. The least bulky 4-EBP and 4,4'-DEBP have the highest reactivity among EBPs and DEBPs for the ethylation to polyethylbiphenyls (PEBPs). These results show that the environments of MOR pores are too loose for shape selective formation of the least bulky isomers, 4-EBP and 4,4'-DEBP in the ethylation of BP, and that MOR pores have enough space for the further ethylation of 4,4'-DEBP.