• Title/Summary/Keyword: catalytic hydrolysis

Search Result 160, Processing Time 0.032 seconds

Catalytic Decomposition of NF3 by Thermal Decomposition and Hydrolysis of γ-Al2O3 (γ-Al2O3 촉매상에서 열분해와 가수분해에 의한 NF3 촉매분해 특성)

  • Kim, Yong Sul;Park, No-Kuk;Lee, Tae Jin
    • Applied Chemistry for Engineering
    • /
    • v.26 no.2
    • /
    • pp.154-158
    • /
    • 2015
  • In this study, the catalytic activity of ${\gamma}-Al_2O_3$ was investigated for the decomposition of $NF_3$. Reactions for $NF_3$ decomposition were carried out in the range of reaction temperature of $330{\sim}730^{\circ}C$ and GHSV of $3,000{\sim}15,000mL/g-cat{\cdot}h$ in a fixed-bed catalytic reactor system. Thermal decomposition of $NF_3$ was also performed in order to compare with the catalytic decomposition of $NF_3$. The conversion of $NF_3$ by the catalytic decomposition at $400^{\circ}C$ was four times higher than that of the thermal decomposition. It was confirmed that the reaction behavior of $NF_3$ over ${\gamma}-Al_2O_3$ exhibited two reaction pathways in the presence of steam. Fluorine in $NF_3$ over ${\gamma}-Al_2O_3$ was chemically absorbed to $AlF_3$ by the gas-solid reaction in the absence of steam. The catalytic decomposition of $NF_3$ occurred by hydrolysis with steam. It was also confirmed by FT-IR analysis that $NF_3$ was completely decomposed to NOx and HF above $500^{\circ}C$.

Catalytic Effects of Co(Ⅲ) Complexes on the Hydrolysis of p-Nitrophenyl Picolinate (p-Nitrophenyl Picolinate의 가수분해에 대한 코발트(Ⅲ) 착물의 촉매효과)

  • Noh, Jae Geun;Kim, Chang Suk;Hong, Soon Yung
    • Journal of the Korean Chemical Society
    • /
    • v.40 no.4
    • /
    • pp.254-263
    • /
    • 1996
  • Five cobalt(Ⅲ) complexes were synthesized from bi- or tridentate nitrogen ligands. Catalytic actions of these complexes for hydrolyses of p-nitrophenyl picolinate, p-nitrophenyl nicotinate, and p-nitrophenyl isonicotinate were investigated by a spectrophotometric method. p-Nitrophenyl picolinate showed the most senstive reaction among three substrates by these catalysts. Aquohydroxo Co(Ⅲ) complexes raised as much as 21∼40 times the rate of hydrolysis of p-nitrophenyl picolinate at pH 6.5. Activities of complexes were in the order: Co(ibpn)(OH)2(OH2) > Co(aepn)(OH)2(OH2) > Co(tn)2(OH)(OH2) > Co (bpy)2(OH)(OH2) > Co(dien)(OH)2(OH2). Catalytic hydrolysis was postulated to proceed through a intramolecular general base catalysis path which is mixed by a partial intramolecular nucleophilic catalysis.

  • PDF

Structure and Hydrolysis Study of Inclusion Complex of Cyclodextrin and Aspirin (시클로덱스트린과 아스피린의 포접화합물의 구조와 가수분해에 관한 연구)

  • 최희숙;김경순
    • Journal of Life Science
    • /
    • v.10 no.1
    • /
    • pp.86-93
    • /
    • 2000
  • Specific molecular recognition of cyclodextrin and aspirin was determined. A stable 1:1 inclusion complex was established in solution. The distinct structure of inclusion complex was elucidated by FT-IR, FAB-MS, UV, 1H NMR, and 13C NMR spectroscopy. Based on the 1H NMR data, a time-averaged conformation of $\alpha$-cyclodextrin exhibited significant catalytic activity toward the hydrolysis of aspirin in alkaline solution.

  • PDF

Catalytic Hydrolysis of Sodium Borohydride on LiCoO3 - Supported Pt, Ru Catalysts (LiCoO3에 담지된 Pt, Ru 촉매에 의한 NaBH4 가수분해반응)

  • Ahn, Jong-Gwan;Choi, Seung-Hoon;Lee, Su-Chol
    • Journal of the Korea Academia-Industrial cooperation Society
    • /
    • v.13 no.7
    • /
    • pp.3261-3266
    • /
    • 2012
  • Sodium borohydride($NaBH_4$) known as the material of hydrogen generation and storage can produce the hydrogen via catalytic hydrolysis. This protide chemical could be used in the hydrogen supply system for residential and mobile fuel cells, and thus many researches and developments regarding to these chemicals and decomposition reactions have been implemented. We experimented the hydrolysis of $NaBH_4$ alkaline solution by metal oxide-supported PGM(platinum group metal) catalysts and measured the generation rate of hydrogen which is product of decomposition reaction. We compared oxides as catalyst supports, and the precious metals, Pt and Ru for the catalysts and studied the effects of amounts of catalyst added and $NaBH_4$ concentrations on the hydrogen generation rates and patterns.

Stability of pipethanate hydrochloride in aqueous solution

  • Kim, Chonng-Kook;Cha, Hyun-Sook
    • Archives of Pharmacal Research
    • /
    • v.4 no.2
    • /
    • pp.109-115
    • /
    • 1981
  • In the present investigation, an attempt has been made to apply the methods of classical chemical kinetics to the hydrolytic reaction of pipethanate hydrochloride. By successively keeping all but one variable essentially constant, it has been possible to resolve the overall effect of the individual contributing factors. Since nearly all commercial pipethanate preparations are formulated with antacid, studies were made at several constant hydrogen ion concentration ranging pH 0.4 to 7.5. Rate measurement was also carried out in temperature ranging from $25^{\circ}C$ to $60^{\circ}C$. The hydrolysis of pipethanate is found to be of first order with respect to pipeethanate concentration over an experimental range of hydrogen ion concentration (pH 0407.5). The apparent activation energy(Ea) at pH 7.5 is 18.30 Kcal/mole and the frequency factor is $1.1408 {\times}10^{9}sec^{-1}$. The rate of the hydrolysis has a minimum at pH 2.5-3.5. In this region the half-life of pipethanate was about15.3 days at $60^{\circ}C$. The catalytic effect of water was found to be $K_{H_2O}$ = $3.16{\times}10^{-5}min^{-1}$ at $60^{\circ}C$. The catalytic constants of the hydroxyl ions and hydrogen ions at $60^{\circ}C$ were also found to be $K_{OH}$ = $4.5519{\times}10^{-5}min^{-1}$ and $K_{H}+$ = $1.1568{\times}10^{-2}min^{-1}$, respectively. This reaction appears to be primarily base catalyzed hydrolysis and pipethanate is relatively reluctant toward acid catalyzed hydrolysis. A positive primary salt effect was noted in the solution of phpethanate at pH 7.5 and at $60^{\circ}C$.

  • PDF

Enzymatic study on lymphocyte CD38 (임파구 CD38의 효소학적 연구)

  • Park, Hyang Ran;Kim, Jong Ju;An, Nyeon Hyoung
    • Korean Journal of Clinical Pharmacy
    • /
    • v.8 no.1
    • /
    • pp.29-34
    • /
    • 1998
  • Murine CD38 is a 42 kDa type II glycoprotein expressed on cell surface of both B and T lymphocytes. CD38 is a multifunctional enzyme that catalyzes the formation and hydrolysis of cyclic adenosine diphosphoribose (cADPR): ADP-ribosyl cyclase activity of CD38 catalyzes the formation of cADPR from NAD and cADPR hydrolase activity of CD38 catalyzes the hydrolysis of cADPR to ADP-ribose (ADPR). And also, CD38 has the catalytic activity of NAD glycohydrolase (NADase) which catalyzes the hydrolysis of catalyzes the formation and hydrolysis of cyclic adenosine diphosphoribose (cADPR): ADP-ribosyl cyclase activity of CD38 catalyzes the formation of cADPR from NAD to ADPR. In this study, we attempted to purify CD38 from mouse lymphocytes by using the immobilized anti-CD38 monoclonal antibody. The single step immuno-affinity column chromatography resulted in homogeneous purification, showing a single protein of 42 kDa on a SDS polyacrylamide gel. We have investigated the effects of various inhibitors on the enzyme activities of the purified CD38. Cibacron blue (0.5 mM) inhibited all three enzyme activities of CD38, NADase, ADP-ribosyl cyclase and cADPR hydrolase activities. ADPR (2 mM) showed inhibitory effect on both cADPR hydrolase activity and NADase, but not on ADP-ribosyl cyclase activity. However, ATP (2 mM) inhibited only cADPR hydrolase activity. $Zn^{2+}$ (1 mM) showed similar inhibitory effect as that of ADPR, but activated cyclase activity These results suggest that CD38 has three different catalytic activity domains which might be differentially regulated by their specific inhibitors.

  • PDF

Molecular Characterization of Epoxide Hydrolase from Aspergillus niger LK using Phylogenetic Analysis (진화적 유연관계 분석을 통한 Aspergillus niger LK의 Epoxide Hydrolase의 특성분석)

  • 김희숙;이은열;이수정;이지원
    • KSBB Journal
    • /
    • v.19 no.1
    • /
    • pp.42-49
    • /
    • 2004
  • A gene coding for epoxide hydrolase (EH) of Aspergillus niger LK, a fungus possessing the enantioselective hydrolysis activity for racemic epoxides, was characterized by phylogenetic analysis. The deduced protein of A. niger LK epoxide hydrolase shares significant sequence similarity with several bacterial EHs and mammalian microsomal EHs (mEH) and belongs to the a/${\beta}$ hydrolase fold family. EH from A. niger LK had 90.6% identity with 3D crystal structure of lqo7 in Protein Data Bank. Sequence comparison with other source EHs suggested that Asp$\^$l92/, Asp$\^$374/ and His$\^$374/ constituted the catalytic triad. Based on the multiple sequence comparison of the functional and structural domain sequence, the phylogenetic tree between relevant epoxide hydrolases from various species were reconstructed by using Neighbor-Joining method. Genetic distances were so far as 1.841-2.682 but characteristic oxyanion hole and catalytic triad were highly conserved, which means they have diverged from a common ancestor.

Molecularly Imprinted Polymers Having Amidine and Imidazole Functional Groups As an Enzyme-Mimetic Catalyst for Ester Hydrolysis

  • Chen, Wen;Han, Dong-Keun;Ahn, Kwang-Duk
    • Macromolecular Research
    • /
    • v.10 no.2
    • /
    • pp.122-126
    • /
    • 2002
  • A molecularly imprinted polymer (MIP) having both amidine and imidazole functional groups in the active site has been prepared using p-nitrophenyl phosphate as a transition state analogue (TSA). The imprinted polymer MIP with amidine and imidazole found to have the highest hydrolysis activity compared with other MIPs with either amidine or imidazole groups only. It is postulated a cooperative effect between amidine and imidazole in the hydrolysis of p-nitrophenyl methyl carbonate (NPMC) as a substrate when both groups were arranged in proximity by molecular imprinting. The rate enhancement of the hydrolysis by MIP was 60 folds over the uncatalyzed solution reaction and two folds compared with the control non-imprinted polymer CPI having both functional groups. The enzyme-mimetic catalytic hydrolysis of p-nitrophenyl acetate by MIP was evaluated in buffer at pH 7.0 with $K_{m}$ of 1.06 mM and $k_{cat}$ of 0.137 $h^{-1}$ . . .

The Catalytic Effects of o-Iodosobenzoate Ion on Hydrolysis of p-Nitrophenylvalate in ETAMs Solution (ETAMs 용액내에서 p-Nitrophenylvalate의 가수분해반응에 미치는 o-Iodosobenzoate Ion의 촉매효과)

  • Kim, Jeung-Bea
    • Journal of Environmental Science International
    • /
    • v.20 no.1
    • /
    • pp.119-126
    • /
    • 2011
  • In this study, reaction model and reactions rate accelerated by o-iodosobenzoate ion(IB$^{\ominus}$) on hydrolysis reaction of p-nitrophenyl valate(NPV) using ethyl tri-octyl ammonium mesylate(ETAMs) for quaternary ammonium salts, the phase transfer catalysis(PTC) reagent, were investigated. The effect of IB$^{\ominus}$ on hydrolysis reaction rate constant of NPV was weak without ETAMs solutions. Otherwise, in ETAMs solutions, the hydrolysis reactions exhibit higher first order kinetics with respect to the nucleophile, IB$^{\ominus}$, and ETAMs, suggesting that reactions are occurring in small aggregates of the three species including the substrate(NPV), whereas the reaction of NPV with OH$^{\ominus}$ is not catalyzed by ETAMs. Different concentrations of NPV were tested to measure the change of rate constants to investigate the effect of NPV as substrate and the results showed that the effect was weak. This means the reaction would be the first order kinetics with respect to the nucleophile. This behavior for the drastic rate-enhancement of the hydrolysis is referred as 'Aggregation complex model' for reaction of hydrophobic organic ester with o-iodosobenzoate ion(IB$^{\ominus}$) in hydrophobic quarternary ammonium salt(ETAMs) solutions.

Stability of Dicyclomine HCl in Aqueous Solution ( II ) (수용액(水溶液)에서의 염산디싸이클로민의 안정성(安定性) (제 2 보)(第 2 報))

  • Kim, Kil-Soo
    • Journal of Pharmaceutical Investigation
    • /
    • v.14 no.3
    • /
    • pp.131-135
    • /
    • 1984
  • The effect of pH and magnesium ion on the hydrolysis of dicyclomine HCl was investigated by comparing the rate constant and activation energy. The hydrolysis of dicyclomine HCl was acid-base catalytic reaction and the most stable range of pH was $3{\sim}5$. The magnesium ion accelerated the hydrolysis of dicyclomine HCl in aqueous solution.

  • PDF