• Title/Summary/Keyword: TX-100

Search Result 68, Processing Time 0.03 seconds

Kinetics of Methyl Green Fading in the Presence of TX-100, DTAB and SDS

  • Samiey, Babak;Dalvand, Zeinab
    • Bulletin of the Korean Chemical Society
    • /
    • v.34 no.4
    • /
    • pp.1145-1152
    • /
    • 2013
  • The rate constant of alkaline fading of methyl green ($ME^{2+}$) was measured in the presence of non ionic (TX-100), cationic (DTAB) and anionic (SDS) surfactants. $ME^{2+}$ hydrolyses and fades in neutral water and in this work we search the effects of surfactants on its fading rate. The rate of reaction showed remarkable dependence on the electrical charge of the used surfactants. It was observed that the reaction rate constant decreased in the presence of DTAB and SDS and increased in the presence of TX-100. Binding constants of $ME^{2+}$ to TX-100, DTAB and SDS and the related thermodynamic parameters were obtained by classical (or stoichiometric) model. The results show that binding of $ME^{2+}$ to TX-100 and DTAB are two-region and that of SDS is three-region. Also, the binding constants of $ME^{2+}$ to surfactant molecules in DTAB/TX-100 and SDS/TX-100 mixed solutions and their stoichiometric ratios were obtained.

Structural Stability of Bacteriorhodopsin Solubilized by Triton X-100

  • Sasaki, Takanori;Sonoyama, Masashi;Mukai, Yuri;Nakazawa, Chieko;Mitaku, Shigeki
    • Journal of Photoscience
    • /
    • v.9 no.2
    • /
    • pp.293-295
    • /
    • 2002
  • The structural stability of bacteriorhodopsin (bR) solubilized by Triton X-100 (TX-100) was studied by measuring the denaturation kinetics in the dark and under illumination, and compared with the structural stability of bR solubilized by octyl-${\beta}$-glucoside (OG). In the dark, bR solubilized by TX- 100 was more stable than bR solubilized by OG. Under illumination, bR solubilized by TX-100 showed light-induced denaturation in the same manner as bR solubilized by OG. These results in the dark well correlated with the experimental results of the visible CD band. Although solubilized bR in the TX-100 concentration range of 2-50 mM showed almost identical positive CD band and did not denature in the dark at 35$^{\circ}$C, the kinetic constant of the photobleaching increased with the increase of TX-100 concentration. These results suggested that photo-intermediates of solubilized bR are destabilized by TX-100 micelles.

  • PDF

Photodegradation of Mixtures of Tetracycline, Sulfathiazole, and Triton X-100 in Water (수계 내 테트라사이클린, 설파다이아졸, 트리톤 X-100 혼합물의 광분해)

  • Yun, Seong Ho;Lee, Sungjong;Jho, Eun Hea;Moon, Joon-Kwan
    • Korean Journal of Environmental Agriculture
    • /
    • v.40 no.1
    • /
    • pp.13-19
    • /
    • 2021
  • BACKGROUND: Chemicals such as antibiotics and surfactants can enter agricultural environment and they can be degraded by natural processes such as photolysis. These chemicals exist in mixtures in the environment, but studies on degradation of the mixtures are limited. This study compares the photodegradation of Triton X-100 (TX) and antibiotics [tetracycline (TC) and sulfathiazole (STH)] when they are in a single solution or in mixtures. METHODS AND RESULTS: TC, STH, and TX solutions were exposed to UV-A for the photodegradation tests for 14 days. The residual TC, STH, and TX concentrations were analyzed by using HPLC. The TC degradation was similar regardless of the presence of TX, while the TX degradation was lower in the presence of TC. The STH degradation was similar regardless of the presence of TX, while the TX degradation was greater in the presence of STH. However, the STH degradation was slower in the TC-STH-TX mixture than in the STH-TX mixture. Also, the TX degradation was negligible in the TC-STH-TX mixture. The results show that the photodegradation of TC, STH, and TX can be different in mixtures. This can be attributed to the different emission and absorption wavelengths of each compound and interaction between these compounds and photoproducts. CONCLUSION: Overall, this study emphasizes that photodegradation of single chemicals and chemical mixtures can be different, and more studies on single compounds as well as mixtures are required to understand the fate of chemicals in the environment in order to manage them properly.

Mixed Micellar Properties of Cetylpyridinium Chloride(CPC) with Triton X-100(TX-100) in Aqueous Solutions of n-Alcohols (n-알코올 수용액에서 Cetylpyridinium Chloride(CPC)와 Triton X-100(TX-100)의 혼합미셀화에 대한 연구)

  • Chung, Jong Jae;Kim, Yung Cheol;Lee, Yung Cheol
    • Journal of the Korean Chemical Society
    • /
    • v.41 no.6
    • /
    • pp.284-291
    • /
    • 1997
  • The critical micelle concentrations($CMC^*$) of a cationic surfactant cetylpyridinium chloride (CPC) and a nonionic surfactant triton X-100(TX-100) in aqueous solutions of n-alcohols(methanol, ethanol, 1-propanol, 1-butanol and 1-pentanol) were determined by UV spectroscopic method at 25$^{\circ}C$. The various thermodynamic values in 0.1 M n-alcohols were calculated by means of the equation derived from the pseudo-phase separation model and compared with the values in the absence of n-alcohols. The results were a good agreement with the nonideal mixed micelle model, and they showed negative deviation from the ideal behavior.

  • PDF

Study of Kinetics of Bromophenol Blue Fading in the Presence of SDS, DTAB and Triton X-100 by Classical Model

  • Samiey, Babak;Alizadeh, Kamal;Moghaddasi, Mohammad Ali;Mousavi, Mir Fazlolah;Alzadeh, Nader
    • Bulletin of the Korean Chemical Society
    • /
    • v.25 no.5
    • /
    • pp.726-736
    • /
    • 2004
  • In this paper, kinetics of reaction between Bromophenol blue (BPB) and $OH^-$, called fading, has been studied through a spectrophotometric method in the presence of nonionic Triton X-100 (TX-100), anionic sodium dodecyl sulfate (SDS) and cationic dodecyl trimethylammonium bromide (DTAB) surfactants. The influence of changes in the surfactant concentration on the observed rate constant was investigated. The results are treated quantitatively by pseudophase ion-exchange (PPIE) model and a new simple model called "classical model". The binding constants of BPB molecules to the micelles and free molecules of surfactants, their stoichiometric ratios and thermodynamic parameters of binding have been evaluated. It was found that SDS has nearly no effect on the fading rate up to 10 mM, whereas TX-100 and DTAB interact with BPB which reduce the reaction rate. By the use of fading reaction of BPB, the binding constants of SDS molecules to TX-100 micelles and their Langmuir and Freundlich adsorption isotherms were obtained and when mixtures of DTAB and TX-100 were used, no interaction was observed between these two surfactants.

Kinetics Study of Malachite Green Fading in the Presence of TX-100, DTAB and SDS

  • Samiey, Babak;Toosi, Ali Raoof
    • Bulletin of the Korean Chemical Society
    • /
    • v.30 no.9
    • /
    • pp.2051-2056
    • /
    • 2009
  • The rate constants of alkaline fading of malachite green ($MG^+$) was measured in the presence of nonionic (TX-100), cationic (DTAB) and anionic (SDS) surfactants. This reaction was studied under pseudo-first-order conditions at 283∼303 K. The rate of fading reaction showed noticeable dependence on the electrical charge of the used surfactants. It was observed that the reaction rate constants were increased in the presence of TX-100 and DTAB and decreased in the presence of SDS. According to Hughs-Ingold rules for nucleophilic substitution reactions, the electric charge of MG/surfactant compound along with decrease in dielectric constant of $MG^+$ micro-environment in this compound varies the rate of fading reaction. Binding constants of surfactant molecules to $MG^+$ were calculated using cooperativity, pseudo-phase ion exchange and classical models and the related thermodynamic parameters were obtained by classical model. The results show that the binding of $MG^+$ to TX-100 is exothermic and binding of $MG^+$ to DTAB and SDS in some concentration ranges of the used surfactants is endothermic and in the other ones is exothermic.

Extractive fermentation of Monascus purpureus promotes the production of oxidized congeners of the pigment azaphilone

  • Lim, Yoon Ji;Lee, Doh Won;Park, Si-Hyung;Kwon, Hyung-Jin
    • Journal of Applied Biological Chemistry
    • /
    • v.61 no.4
    • /
    • pp.327-334
    • /
    • 2018
  • Monascus is a source of food colorant with high productivity of the pigment azaphilone. Monascus azaphilone (MAz) is biosynthesized through a single non-reducing polyketide pathway, the major components of which are ankaflavin (1), monascin (2), rubropunctatin (3) and monascorubrin (4); valuable biological activities have been reported for these compounds. Thus, various culture conditions were explored to reduce the cost of culture ingredients, enhance productivity and modulate compound composition. In the present study, we examined an extractive fermentation (EF) method with Diaion HP-20 resin (HP20) in direct comparison to a previously explored method involving Triton X-100 (TX100) to explore the modulated production of the major MAzs. We employed wild-type Monascus purpureus as well as two derivative recombinant strains (${\Delta}mppG$ and ${\Delta}mppE$) that are known to have differential MAz profiles as that of the wild-type strain. The HP20 resin was capable of modulating the MAz profile in favor of orange MAzs 3 and 4, oxidized congeners in this class, as was TX100-a phenomenon not previously observed for TX100 EF with Monascus anka. These finding substantiate that HP20 can be employed for the selective production of oxidized MAz and for diversifying the culture conditions used for Az production.

Study on the Solubilization of 4-ethylaniline in the aqueous solutions of mixed surfactants (혼합계면활성제의 수용액에서 4-ethylaniline의 가용화에 관한 연구)

  • Lee, Dong-Cheol;Lee, Byung-Hwan
    • Journal of the Korean Applied Science and Technology
    • /
    • v.37 no.3
    • /
    • pp.438-447
    • /
    • 2020
  • The critical micelle concentration (CMC) values of the mixed surfactant systems and the solubilization conatant (Ks) values of 4-ethylaniline in those solutions were measured and analyzed by the UV-Vis method. As a result, the mixed surfactant systems of TTAB/LSB and TTAB/TX-100 did not deviate significantly from ideal mixed micellization. However, the mixed systems of SDS/LSB and SDS/TX-100 showed great negative deviations from ideal mixed model. These differences showed that the intensity of the interaction between two components in the mixed micelle was different for each mixed system and that these differences greatly influenced the solubilization of 4-ethylaniline by a mixed surfactant system. Among pure surfactants, an anionic surfactant such as SDS showed a greater Ks value than other ionic surfactants, and the Ks value by each surfactant system decreased in the order of SDS≫TTAB≧LSB>TX-100. In addition, the Ks values of all the mixed surfactant systems were higher than those of the pure surfactants constituting the mixed systems.

A Study of Spreading code for Watermarking of TxID of ATSC-DTV (ATSC-DTV의 송신기 식별을 위한 워터마킹용 확산코드에 관한 연구)

  • Cha Jae-Sang;Choi Seong-Jin;Lee Seon-Hee;Lee Kwang-Jik;Lee Yong-Tae;Park Goo-Man
    • Journal of Broadcast Engineering
    • /
    • v.11 no.1 s.30
    • /
    • pp.100-106
    • /
    • 2006
  • In this paper, we proposed a TxID(Transmitter Identification) system using ZCD (Zero Correlation Duration) code as interference-cancelled spread codes for single frequency network of ATSC terrestrial DTV broadcasting. ZCD codes are simply implemented and have ZCD characteristics. Then, Proposal system can fundamentally solve interference problems caused by ICI(Inter Code Interference) and MPI(Multi-Path Interference) which happens in TxID system using spread coding method. Also, those can cancel truncated error which happens at watermarking for TxID since those can remove its period. In this paper, we identified the availability of TxID system applying interference-cancelled ZCD codes by analyzing DER (Detection Error Rate) which is simulated in various interference environments such as AWGN, ICI, and MPI.