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6篇 您的检索式:作者名="Chanthais"
    题名 作者 年代 出处 被引量
1Sonocatalytic performance of ZnO/graphene/TiOz nanocomposite for degradation of dye pollutants (methylene blue, texbrite BAC-L, texbrite BBU-L and texbrite NFW-L) under ultrasonic irradiation显示文摘Nuengrnatcha P Chanthai S 2016Dyes andPigments2016,134,:1
2Impact of drought stress on the accumulation of eapsaieinoids in Capsicum cultivars with different initial eapsaicinoid levels paongpetch phimchan显示文摘Phimchan P Techawongstien S Chanthais S 2012Hort Science2012,47,9:1
3De- termination of Capsaicin and Dihydrocapsaiein inSome Chilli Varieties using Accelerated SolventExtraetion As-sociated with Solid-Phase ExtractionMethods and RP- HPLC-Fluorescence显示文摘Chanthais Juangsamootj Ruangviriyachai C 2012E-Journal of Chemistry2012,9,3:1
4Preparation of activated carbon derived from Jatropha curcas fruit shell by simple thermo-chemical activation and characterization of their physico-chemical properties显示文摘Wimonrat Tongpoothorn Manop Sriuttha Phunsiri Homchan Saksit Chanthai Chalerm Ruangviriyachai 2010Chemical Engineering Research and Design2010,,3:1
5Removal of heavy metals from artificial metals contaminated water samples based on micelle-templated silica modified with pyoverdin I显示文摘The micelle-templated silica (MTS) was firstly chemically modified with 3-glycidoxypropyl-trimethoxysilane (GPTMS) before immobilized with pyoverdin I. The characteristics of pyoverdin I-anchored onto the modified MTS were investigated using fluorescence, infrared spectra and scanning electron microscopy. The specific surface area of all materials was calculated by Brunauer, Emmett and Teller (BET) method using nitrogen isotherm adsorption data. As the results, the surface area of commercial silica gel decreased from 609.2 to 405.4 m2/g, it indicated that the pyoverdin I could be immobilized onto the surface of silica solid support. This adsorbent was used for extraction of Fe(III), Cu(II), Zn(II), and Pb(II) in artificial metals contaminated water. Experimental conditions for effective adsorption of trace levels of metal ions were optimized with respect to different experimental parameters using batch procedure. The optimum pH value for the removal of metal ions simultaneously on this adsorbent was 4.0. Complete desorption of the adsorbed metal ions from the adsorbent was carried out using 0.25 mol/L of EDTA. The effect of different cations and anions on the adsorption of these metals on adsorbent was studied and the results showed that the proposed adsorbent could be applied to the highly saline samples and the sample which contains some transition metals.PANADDA Tansupo WORAKARN Chamonkolpradit SAKSIT Chanthai CHALERM Ruangviriyachai 2009Journal of Environmental Sciences2009,21,7:1
6Efficient degradation of dye pollutants in wastewater via photocatalysis using a magnetic zinc oxide/graphene/iron oxide-based catalyst显示文摘In this paper, we present a proof-of-concept study of the enhancement of photocatalytic activity via a combined strategy of fabricating a visible-light responsive ternary heterostructure and improving overall photostability by incorporating magnetic zinc oxide/graphene/iron oxide (ZGF). A solvothermal approach was used to synthesize the catalyst. X-ray diffraction (XRD), scanning electron microscopic, energy dispersive X-ray, transmission electron microscopic, vibrating sample magnetometric, and ultraviolet–visible diffuse reflectance spectroscopic techniques were used to characterize the synthesized samples. The obtained optimal Zn(NO_(3))_(2) concentration, temperature, and heating duration were 0.10 mol/L, 600℃, and 1 h, respectively. The XRD pattern revealed the presence of peaks corresponding to zinc oxide, graphene, and iron oxide, indicating that the ZGF catalyst was effectively synthesized. Furthermore, when the developed ZGF was used for methylene blue dye degradation, the optimum irradiation time, dye concentration, catalyst dosage, irradiation intensity, and solution pH were 90 min, 10 mg/L, 0.03 g/L, 100 W, and 8.0, respectively. Therefore, the synthesized ZGF system could be used as a catalyst to degrade dyes in wastewater samples. This hybrid nanocomposite consisting of zinc oxide, graphene, and iron oxide could also be used as an effective photocatalytic degrader for various dye pollutants.Piyawan Nuengmatcha Arnannit Kuyyogsuy Paweena Porrawatkul Rungnapa Pimsen Saksit Chanthai Prawit Nuengmatcha 2023Water Science and Engineering2023,16,3:0
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