Selected Publication

การแปรรูปชีวมวลเป็นเชื้อเพลิงชีวภาพ (Biomass conversion into biofuels)
  1. Ashokkumar, V., Chen, W.-H., Kamyab, H., Kumar, G., Al-Muhtaseb, A.H., Ngamcharussrivichai, C., Cultivation of microalgae Chlorella sp. in municipal sewage for biofuel production and utilization of biochar derived from residue for the conversion of hematite iron ore (Fe2O3) to iron (Fe) – Integrated algal biorefinery, Energy, 189 (2019) DOI: 10.1016/j.energy.2019.116128 (IF@2018 = 5.537; Tier1)
  2. Thunyaratchatanon, C., Luengnaruemitchai, A., Chollacoop, N., Chen, S.-Y., Yoshimura, Y., Catalytic hydrogenation of soybean oil-derived fatty acid methyl esters over Pd supported on Zr-SBA-15 with various Zr loading levels for enhanced oxidative stability, Fuel Processing Technology, 179 (2018) 422–435 (IF@2018 = 4.507; Q1)
  3. Thunyaratchatanon, C., Luengnaruemitchai, A., Jitjamnong, J., Chollacoop, N., Chen, S.-Y., Yoshimura, Y., Influence of alkaline and alkaline earth metal promoters on the catalytic performance of Pd−M/SiO2 (M = Na, Ca, or Ba) catalysts in the partial hydrogenation of soybean oil-derived biodiesel for oxidative stability improvement, Energy & Fuels, 32 (2018) 9744–9755 (IF@2018 = 3.021; Q2)
  4. Ashokkumar, V., Chen, W.-H., Ngamcharussrivichai, C., Agila, E., Ani, F.N., Potential of sustainable bioenergy production from Synechocystis cultivated in wastewater at large scale – A low cost biorefinery approach, Energy Conversion and Management, 186 (2019) 188–199 (IF@2018 = 7.181; Tier1)
  5. Ashokkumar, V., Chen, W.-H., Al-Muhtaseb, A.H., Kumar, G., Sathishkumar, P., Pandian, S., Ani, F.N., Ngamcharussrivichai, C., Bioenergy production and metallic iron (Fe) conversion from Botryococus sp. cultivated in domestic wastewater: algal biorefinery concept, Energy Conversion and Management, 196 (2019) 1326–1334 (IF@2018 = 7.181; Tier1)
  6. Rashid, U., Soltani, S., Choong, T.S.Y., Nehdi, I.A., Ahmad, J., Ngamcharussrivichai, C., Palm biochar-based sulphated zirconium (Zr-AC-HSO3) catalyst for methyl ester production from palm fatty acid distillate, Catalysts, 9 (2019) DOI:10.3390/catal9121029 (IF@2017 = 3.465; Q2)
  7. Mueangta, S., Kuchonthara, P., Krerkkaiwan, S., Catalytic steam reforming of biomass-derived tar over the coal/biomass blended char: effect of devolatilization temperature and biomass type, Energy & Fuels, 33 (2019) 3290–3298 (IF@2018 = 3.021; Q2)
  8. Sangnikul, P., Phanpa, C., Xiao, R., Zhang, H., Reubroycharoen, P., Kuchonthara, P., Vitidsant, T., Pattiya, A., Hinchiranan, N., Role of copper- or cerium-promoters on NiMo/γ-Al2O3 catalysts in hydrodeoxygenation of guaiacol and bio-oil, Applied Catalysis A, General, 574 (2019) 151–160 (IF@2018 = 4.630; Q1)
  9. Jiraroj, D., Tongtooltush, T., Panpranot, J., Praserthdam, P., Tungasmita, D.N., Catalytic Cracking of Biodiesel Waste Using Metal Supported SBA-15 Mesoporous Catalysts, Catalysts, 9 (2019) DOI:10.3390/catal9030291 (IF@2017 = 3.465; Q2)
  10. Akkarawatkhoosith, N., Srichai, A., Kaewchada, A., Ngamcharussrivichai, C., Jaree, A., Evaluation on safety and energy requirement of biodiesel production: Conventional system and microreactors, Process Safety and Environmental Protection, 132 (2019) 294–302 (IF@2019 = 4.966; Tier1)
  11. Dechakhumwat, S., Hongmanorom, P., Thunyaratchatanon, C., Smith, S.M., Boonyuen, S., Luengnaruemitchai, A., Catalytic activity of heterogeneous acid catalysts derived from corncob in the esterification of oleic acid with methanol, Renewable Energy, 148 (2020) 897-906 (IF@2019 = 6.274; Tier1)
  12. Ahmad, J., Rashid, U., Patuzzi, F., Alamoodi, N., Choong, T.S.Y, Soltani, S., Ngamcharussrivichai, C., Nehdi, I.A., Baratieri, M., Mesoporous acidic catalysts synthesis from dual-stage and rising co-current gasification char: Application for FAME production from waste cooking oil, Materials, 13 (2020) Article no. 871 (IF@2019 = 3.057; Q2)
  13. Akinfalabi, S.-I., Rashid, U., Ngamcharussrivichai, C., Nehdi, I.A., Synthesis of reusable biobased nano-catalyst from waste sugarcane bagasse for biodiesel production, Environmental Technology & Innovation, 18 (2020) Article no. 100788 (IF@2019 = 3.356; Q1)
  14. Akkarawatkhoosith, N., Kaewchada, A., Ngamcharussrivichai, C., Jaree, A., Biodiesel production via interesterification of palm oil and ethyl acetate using ion-exchange resin in a packed-bed reactor, BioEnergy Research, 13 (2020) 542–551 (IF@2019 = 2.195; Q2)
  15. Abdullah, R.F., Rashid, U., Taufiq-Yap, Y.H., Ibrahim, M.L., Ngamcharussrivichai, C., Azam, M., Synthesis of bifunctional nanocatalyst from waste palm kernel shell and its application for biodiesel production, RSC Advances, 10 (2020) Article no. 27183 (IF@2019 = 3.119; Q1)
  16. Jindapon, W., Ruengyoo, S., Kuchonthara, P., Ngamcharussrivichai, C., Vitidsant, T., Continuous production of fatty acid methyl esters and high-purity glycerol over a dolomite-derived extrudate catalyst in a countercurrent-flow trickle-bed reactor, Renewable Energy, 157 (2020) 626–636 (IF@2019 = 6.274; Tier1)
  17. Jindapon, W., Ashokkumar, V., Rashid, U., Rojviriya, C., Pakawanit, P., Ngamcharussrivichai, C., Production of biodiesel over waste seashell-derived active and stable extrudate catalysts in a fixed-bed reactor, Environmental Technology & Innovation, 20 (2020) Article no. 101051 (IF@2019 = 3.356; Q1)
  18. Burimsitthigul, T., Yoosuk, B., Ngamcharussrivichai, C., Prasassarakich, P., Hydrocarbon biofuel from hydrotreating of palm oil over unsupported Ni-Mo sulfide catalysts, Renewable Energy, 163 (2021) 1648–1659 (IF@2019 = 6.274; Tier1)
  19. Chen, S.-Y., Chang, A., Na Rungsi, A., Attanatho, L., Chang, C.-L., Pan, J.-H., Suemanotham, A., Mochizuki, T., Takagi, H., Yang, C.-M., Luengnaruemitchai, A., Chou, H-H., Superficial Pd nanoparticles supported on carbonaceous SBA-15 as efficient hydrotreating catalyst for upgrading biodiesel fuel, Applied Catalysis A: General, 602 (2020) Article no. 117707 (IF@2019 = 5.006; Q1)
  20. Na Rungsi, A., Luengnaruemitchai, A., Chollacoop, N., Chen, -Y., Mochizuki, T., Takagi, H., Yoshimura, Y., Preparation of MCM-41-supported Pd–Pt catalysts with enhanced activity and sulfur resistance for partial hydrogenation of soybean oil-derived biodiesel fuel, Applied Catalysis A: General, 590 (2020) Article no. 117351 (IF@2019 = 5.006; Tier1)
  21. Numwong, N., Prabnasak, P., Prayoonpunratn, P., Triphatthanaphong, P., Thunyaratchatanon, C., Mochizuki, T., Chen, S.-Y., Luengnaruemitchai, A., Sooknoi, T., Effect of Pd particle size on activity and cis-trans selectivity in partial hydrogenation of soybean oil-derived FAMEs over Pd/SiO2 catalysts, Fuel Processing Technology, 203 (2020) Article no. 106393 (IF@2019 = 4.982; Tier1)
  22. Jitjamnong, J., Thunyaratchatanon, C., Luengnaruemitchai, A., Kongrit, N., Kasetsomboon, N., Chuaykarn, N., Khantikulanon, N., Effect of calcination temperature of Musa sapientum linn peels as a novel biobased heterogeneous catalyst for soybean oil-derived fatty acid methyl ester formation, Chiang Mai Journal of Science, 47 (2020) 484-498 (IF@2019 = 325; Q4)
  23. Pongsiriyakul, K., Kiatkittipong, W., Adhikari, S., Lim, J.W., Lam, S.S., Kiatkittipong, K., Dankeaw, A., Reubroycharoen, P., Laosiripojana, N., Faungnawakij, K., Assabumrungrat, S., Effective Cu/Re promoted Ni-supported g-Al2O3 catalyst for upgrading algae bio-crude oil produced by hydrothermal liquefaction, Fuel Processing Technology, 216 (2021) Article no. 106670 (IF@2019 = 4.982; Tier1)
  24. Sumrunronnasak, S., Reubroycharoen, P., Pimpha, N., Chanlek, N., Tantayanon, S., Hydrogen production by steam reforming of fusel oil using a CeCoOx mixed-oxide catalyst, Chemical Engineering & Technology, 43 (2020) 689–697 (IF@2019 = 543; Q2)
  25. Phumpradit, S., Reubroycharoen, P., Kuchonthara, P., Ngamcharussrivichai, C., Hinchiranan, N., Partial hydrogenation of palm oil-derived biodiesel over Ni/electrospun silica fiber catalysts, Catalysts, 10 (2020) Article no. 993 (IF@2019 = 520; Q2)
  26. Chintakanan, P., Vitidsant, T., Reubroycharoen, P., Kuchonthara, P., Kida, T., Hinchiranan, N., Bio-jet fuel range in biofuels derived from hydroconversion of palm olein over Ni/zeolite catalysts and freezing point of biofuels/Jet A-1 blends, Fuel, 293 (2021) Article no. 120472 (IF@2019 = 5.578; Tier1)
  27. Jiraroj, D., Jirarattanapochai, O., Anutrasakda, W., Samec, J.S.M., Tungasmita, D.N., Selective decarboxylation of biobased fatty acids using a Ni-FSM-16 catalyst, Applied Catalysis B: Environmental, 291 (2021) Article no. 120050 (IF@2019 = 16.683; Tier1)
  28. Kaewchada, A., Akkarawatkhoosith, N., Bunpim, D., Bangjang, T., Ngamcharussrivichai, C., Jaree, A., Production of bio-hydrogenated diesel from palm oil using Rh/HZSM-5 in a continuous mini fixed-bed reactor, Chemical Engineering and Processing – Process Intensification, 168 (2021) Article no. 108586 (IF@2020 = 4.237; Q1)
  29. Aiamsiri, P., Tumnantong, D., Yoosuk, B., Ngamcharussrivichai, C., Prasassarakich, P., Biohydrogenated diesel from palm oil deoxygenation over unsupported and g-Al2O3 supported Ni-Mo catalysts, Energy and Fuels, 35 (2021) 14793-14804 (IF@2020 = 3.605; Tier1)
  30. Nisar, S., Hanif, M.A., Rashid, U., Hanif, A., Akhtar, M.N., Ngamcharussrivichai, C., Trends in widely used catalysts for fatty acid methyl esters (FAME) production: A review, Catalysts, 11 (2021) Article no. 1085 (IF@2020 = 4.146; Q2)
  31. Jitjamnong, J., Thunyaratchatanon, C., Luengnaruemitchai, A., Kongrit, N., Kasetsomboon, N., Sopajarn, A., Chuaykarn, N., Khantikulanon, N., Response surface optimization of biodiesel synthesis over a novel biochar-based heterogeneous catalyst from cultivated (Musa sapientum) banana peels, Biomass Conversion and Biorefinery, 11 (2021) 2795–2811 (IF@2020 = 4.987; Q2)
  32. Na Rungsi, A., Truong, T.H., Thunyaratchatanon, C., Luengnaruemitchai, A., Chollacoop, N., Chen, S.-Y., Mochizuki, T., Takagi, H., Yoshimura, Y., Tuning the porosity of sulfur-resistant Pd-Pt/MCM-41 bimetallic catalysts for partial hydrogenation of soybean oil-derived biodiesel, Fuel, 298 (2021) Article no. 120658 (IF@2020 = 6.609; Tier1)
  33. Ibrahim, N.A., Rashid, U., Hazmi, B., Moser, B.R., Alharthi, F.A., Rokhum, S.L., Ngamcharussrivichai, C., Biodiesel production from waste cooking oil using magnetic bifunctional calcium and iron oxide nanocatalysts derived from empty fruit bunch, Fuel, 317 (2022) Article no. 123525 (IF@2020 = 6.609; Tier1)
  34. Shabbir, A., Mukhtar, H., Mumtaz, M.W., Rashid, U., Abbas G., Moser, B.R., Alsalme, A., Touqeer, T., Ngamcharussrivichai, C., Lewatit-immobilized lipase from Bacillus pumilus as a new catalyst for biodiesel production from tallow: Response surface optimization, fuel properties and exhaust emissions, Process Safety and Environmental Protection, 160 (2022) 286-296 (IF@2020 = 6.158; Tier1)
  35. Ashokkumar, V., Venkatkarthick, R., Jayashree, S., Chuetor, S., Dharmaraj, S., Kumar, G., Chen, W.-H., Ngamcharussrivichai, C., Recent advances in lignocellulosic biomass for biofuels and value-added bioproducts – A critical review, Bioresource Technology, 344 (2022) Article no. 126195 (IF@2020 = 9.642; Tier1)
  36. Jindapon, W., Ngamcharussrivichai, C., Heterogeneously catalyzed transesterification of palm oil with methanol to produce biodiesel over calcined dolomite: The role of magnesium oxide. Energy Conversion and Management 171 (2018) 1311–1321 (IF@2018 = 7.181; Tier1)
  37. Eaimsumang, S., Petchakan, S., Luengnaruemitchai, A., Dependence of the CeO2 morphology in CuO/CeO2 catalysts for the oxidative steam reforming of methanol, Reaction Kinetics, Mechanisms and Catalysis, Reaction Kinetics, Mechanisms and Catalysis, (2019) 1–22 DOI: 10.1007/s11144-019-01570-4 (IF@2018 = 2.846; Q3)
  38. Eaimsumang, S., Wongkasemjit, S., Pongstabodee, S., Meejoo, S., Ratanawilai, S., Chollacoop, N., Luengnaruemitchai, A., Effect of synthesis time on morphology of CeO2 nanoparticles and Au/CeO2 and their activity in oxidative steam reforming of methanol, Journal of Rare Earths, 37 (2019) 819–828 (IF@2018 = 2.846; Q2)
  39. Eaimsumang, S., Chollacoop, N., Luengnaruemitchai, A., Taylor S.H., Ceria nanorod supported gold nanoparticles as structured catalysts for the oxidative steam reforming of methanol: Effect of CTAB concentration on physiochemical properties and catalyst performance, Journal of Catalysis, 392 (2020)254-265 (IF@2019 = 7.888; Tier1)
  40. Chutirat, J., Eaimsumang, S., Luengnaruemitchai, A., Influence of nitric acid-assisted hydrothermal conditions on the characteristics of TiO2 catalysts and their activity in the oxidative steam reforming of methanol, Advanced Powder Technology, 31 (2020) 4731-4742 (IF@2019 = 4.217; Q1)
  41. Eaimsumang, S., Prataksanon, P., Pongstabodee, S., Luengnaruemitchai, A., Effect of acid on crystalline phase of TiO2 prepared by hydrothermal treatment and their application in the oxidative steam reforming of methanol, Research on Chemical Intermediates, 46 (2020) 1235-1254 (IF@2019 = 2.262; Q2)
  42. Mhadmhan, S., Ngamcharussrivichai, C., Hinchiranan, N., Kuchonthara, P., Li, Y., Wang, S., Reubroycharoen, P., Direct biogas upgrading via CO2methanation to high-quality biomethane over NiMg/CNT-SiO2 fiber catalysts, Fuel, 310 (2022) Article no. 122289 (IF@2020 = 6.609; Tier1) 
  43. Chayaporn, S., Thunyaratchatanon, C., Luengnaruemitchai, A., Preferential oxidation of carbon monoxide in a hydrogen-rich gas stream over supported gold catalysts: the effect of a mixed ceria–zirconia support composition, Research on Chemical Intermediates, 46 (2020) 4173-4192 (IF@2019 = 2.262; Q2)
  44. Naderipour, A., Abdul-Malek, Z., Ahmad, N.A., Kamyab, H., Ashokkumar, V., Ngamcharussrivichai, C., Chelliapan, S., Effect of COVID-19 virus on reducing GHG emission and increasing energy generated by renewable energy sources: A brief study in Malaysian context (Review), Environmental Technology & Innovation, 20 (2020) Article no. 101151 (IF@2019 = 3.356; Q1)
  45. Dharmaraj, S., Ashokkumar, V., Hariharan, S., Manibharathi, A., Show, P.L., Chong, C.T., Ngamcharussrivichai, C., The COVID-19 pandemic face mask waste: A blooming threat to the marine environment (Review), Chemosphere, 272 (2021) Article no. 129601 (IF@2019 = 5.778; Tier1)
  46. Dharmaraj, S., Ashokkumar, V., Pandiyan, R., Halimatul Munawaroh, H.S., Chew. K.W., Chen, W.H., Ngamcharussrivichai, C., Pyrolysis: An effective technique for degradation of COVID-19 medical wastes, Chemosphere, 275 (2021) Article no. 130092 (IF@2019 = 5.778; Tier1)
  47. Luengnaruemitchai, A., Anupapwisetkul, C., Surface morphology and cellulose structure of Napier grass pretreated with the ionic liquid 1-ethyl-3-methylimidazolium acetate combined with either water or dimethyl sulfoxide as a co-solvent under microwave irradiation, Biomass Conversion and Biorefinery, 10 (2020) 435-446 (IF@2019 = 2.602; Q3)
  48. Srisuk, F., Chinwatpaiboon, P., Atjayutpokin, T., Boonsombuti, A., Savarajara, A., Luengnaruemitchai, A., Comparison of different Vetiver grass pretreatment techniques and their impact on immobilized butanol production by Clostridium beijerinckii TISTR 1461, Cellulose, 28 (2021) (IF@2020 = 5.044; Tier1)
  49. Boonsombuti, A., Trisinsub, O., Luengnaruemitchai, A., Comparative study of three chemical pretreatments and their effects on the structural changes of rice straw and butanol production, Waste and Biomass Valorization, 11 (2020) 2771–2781 (IF@2019 = 2.851; Q2)
  50. Ahmad, J., Patuzzi, F., Rashid, U., Shahabz, M., Ngamcharussrivichai, C., Baratieri, M., Exploring untapped effect of process conditions on biochar characteristics and applications (Review), Environmental Technology and Innovation, 21 (2021) Article no. 101310 (IF@2019 = 3.356; Q1)

 

การแปรรูปชีวมวลเป็นสารเคมีชีวภาพ (Biomass conversion into biochemicals)
  1. Sankaranarayanan, S., Jindapon, W., Ngamcharussrivichai, C., Valorization of biodiesel plant-derived products via preparation of solketal fatty esters over calcium-rich natural materials derived oxides. Journal of the Taiwan Institute of Chemical Engineers 81 (2017) 57–64 (IF@2020 = 5.876; Tier1)
  2. Rautiainen, S., Francesco, , Katea, S., Westin, G., Tungasmita, D.N., Samec J., Lignin valorization by cobalt-catalyzed fractionation of lignocellulose to yield monophenolic compounds, ChemSusChem, 12 (2019) 404–408 (IF@2017 = 7.411; Tier1)
  3. Anutrasakda W., Eiamsantipaisarn, K., Jiraroj, D., Phasuk, A., Tuntulani, T., Liu, H., Tungasmita, D.N., One-pot catalytic conversion of cellobiose to sorbitol over nickel phosphides supported on MCM-41 and Al-MCM-41, Catalysts, 9 (2019) DOI:10.3390/catal9010092 (IF@2017 = 3.465; Q2)
  4. Khumho, R., Yousatit, S., Ngamcharussrivichai, C., Glucose conversion into 5-hydroxymethylfurfural over niobium oxides supported on natural rubber-derived carbon/silica nanocomposite, Catalysts, 11 (2021) Article no. 887 (IF@2020 = 4.146; Q2)
  5. Thunyaratchatanon, C., Sinsakullert, W., Luengnaruemitchai, A., Faungnawakij, K., 5-Hydroxymethylfurfural production from hexose sugars using adjustable acid- and base-functionalized mesoporous SBA-15 catalysts in aqueous media, Biomass Conversion and Biorefinery, 11 (2021) 1733-1747 (IF@2020 = 4.987; Q2)
  6. Mongkolpichayarak, I., Jiraroj, D., Anutrasakda, W., Ngamcharussrivichai, C., Samec, J.S.M., Tungasmita, D.N., Cr/MCM-22 catalyst for the synthesis of levulinic acid from green hydrothermolysis of renewable biomass resources, Journal of Catalysis, 405 (2022) 373-384 (IF@2020 = 7.920; Tier1)
  7. Chaowamalee, S., Yan, N., Ngamcharussrivichai, C., Propylsulfonic acid functionalized mesostructured natural rubber/silica nanocomposites as promising hydrophobic solid catalysts for alkyl levulinate synthesis, Nanomaterials, 12 (2022) Article no. 604 (IF@2020 = 5.076; Q1)
  8. Yousatit, S., Osuga, R.,Kondo, J.N., Yokoi, T., Ngamcharussrivichai, C., Selective synthesis of 5-hydroxymethylfurfural over natural rubber–derived carbon/silica nanocomposites with acid–base bifunctionality, Fuel, 311 (2022) Article no. 122577 (IF@2020 = 6.609; Tier1)
  9. Hongkailers, S., Jing, Y., Wang, Y., Hinchiranan, N., Yan, N., Recovery of arenes from polyethylene terephthalate (PET) over a Co/TiO2catalyst, ChemSusChem, 14 (2021) 4330-4339 (IF@2020 = 8.928; Tier1)
  10. Chaihad, N., Kurnia, I., Yoshida, A., Watanabe, C., Tei, K., Reubroycharoen, P., Kasaie, Y., Abudula, A., Guan, G., Catalytic pyrolysis of wasted fishing net over calcined scallop shells: Analytical Py-GC/MS study, Journal of Analytical and Applied Pyrolysis (IF@2019 = 905; Q1)
  11. Thongdorn-Ae, N., Nhujak, T., Janta, P., Rueangthaweep, A., Hinchiranan, N., Kulsing, C., Cryogen-free comprehensive heartcut multidimensional gas chromatography using a Deans switch for improved analysis of petrochemical products derived from palmitic acid oxidation, Analytical Methods, 12 (2020) 5160–5167 (IF@2019 = 2.596; Q2)
ผลิตภัณฑ์ที่มีมูลค่าสูงจากชีวมวล (High-value products from biomass)
  1. Sangkhum, P., Yanamphorn, J., Wangriya A., Ngamcharussrivichai, C., Ca–Mg–Al ternary mixed oxides derived from layered double hydroxide for selective etherification of glycerol to short-chain polyglycerols, Applied Clay Science, 173 (2019) 79–87 (IF@2018 = 3.890; Q1)
  2. Nuntang, S., Yousatit, S., Yokoi, T., Ngamcharussrivichai, C., Tunable mesoporosity and hydrophobicity of natural rubber/ hexagonal mesoporous silica nanocomposites, Microporous and Mesoporous Materials, 275 (2019) 235–243 (IF@2018 = 4.182; Q1)
  3. Watthanachai, C., Ngamcharussrivichai, C., Pengprech, S., Synthesis and characterization of bimodal mesoporous silica derived from rice husk ash, Engineering Journal, 23 (2019) 25–34 (Scopus)
  4. Chaowamalee, S., Ngamcharussrivichai, C., Facile fabrication of mesostructured natural rubber/silica nanocomposites with enhanced thermal stability and hydrophobicity, Nanoscale Research Letters, 14 (2019) DOI: 10.1186/s11671-019-3197-2 (IF@2018 = 3.159; Q2)
  5. Yousatit, S., Pitayachinchot, H., Wijitrat, A., Chaowamalee, S., Nuntang, S., Soontaranon, S., Rugmai, S., Yokoi, T., Ngamcharussrivichai, C., Natural rubber as a renewable carbon source for mesoporous carbon/silica nanocomposites, Scientific Reports, 10 (2020) Article no. 12977 (IF@2019 = 3.998; Tier1)
  6. Jitjamnong, J., Luengnaruemitchai, A., Kongrit, N., Kasetsomboon, N., Khantikulanon, N., Efficiency of zinc ions (II) adsorption using activated carbon from palm kernel shell, IOP Conf. Series: Earth and Environmental Science, 463 (2020) Article no. 012069 (Scopus)
  7. Kumaniaev, I., Subbotina, E., Galkin, M., Srifa, P., Monti, S., Mongkolpichayarak, I., Tungasmita, D.N., Samec, J.S.M., A combination of experimental and computational methods to study the reactions during a Lignin-First approach, Pure and Applied Chemistry, 92 (2020) 631–639 (IF@2019 = 1.919; Q2)
  8. Pandiyan, R., Dharmaraj, S., Ayyaru, S., Sugumaran, A., Somasundaram, J., Kazi, A.S., Samiappan, S.C., Ashokkumar, V., Ngamcharussrivichai, C., Ameliorative photocatalytic dye degradation of hydrothermally synthesized bimetallic Ag-Sn hybrid nanocomposite treated upon domestic wastewater under visible light irradiation, Journal of Hazardous Materials, 421 (2022) Article no. 126734 (IF@2020 = 10.588; Tier1)
  9. Ashokkumar, V., Chen, W.-H., Kumar, G., Satjarak, A., Chanthapatchot, W., Ngamcharussrivichai, C., A biorefinery approach for high value-added bioproduct (astaxanthin) from alga Haematococcus sp. and residue pyrolysis for biochar synthesis and metallic iron production from hematite (Fe2O3), Fuel, 304 (2021) Article no. 121150 (IF@2020 = 6.609; Tier1)
  10. Sankaranarayanan, S., Lakshmi, D.S., Vivekanandhan, S., Ngamcharussrivichai, C., Biocarbons as emerging and sustainable hydrophobic/oleophilic sorbent materials for oil/water separation, Sustainable Materials and Technologies, 28 (2021) Article no. e00268 (IF@2020 = 7.053; Tier1)
  11. Takomthong, P., Waiwut, P., Yenjai, C., Sombatsri, A., Reubroycharoen, P., Lei, L., Lai, R., Chaiwiwatrakul, S., Boonyarat, C., Multi-target actions of acridones from atalantia monophylla towards alzheimer’s pathogenesis and their pharmacokinetic properties, Pharmaceuticals, 14 (2021) Article no. 888 (IF@2020 = 5.863; Q1)
  12. Khumho, R., Tocuweang, K., Sangkhum, P., Kuchonthara, P., Ashokkumar, V., Ngamcharussrivichai, C., Etherification of glycerol into short-chain polyglycerols over MgAl LDH/CaCO3 nanocomposites as heterogeneous catalysts to promote circular bioeconomy, Chemosphere, 291 (2022) Article no. 133091 (IF@2020 = 7.086; Tier1)
  13. Nuntang, S., Yousatit, S., Chaowamalee, S., Yokoi, T., Tatsumi, T., Ngamcharussrivichai, C., Mesostructured natural rubber/in situ formed silica nanocomposites: A simple way to prepare mesoporous silica with hydrophobic properties. Microporous and Mesoporous Materials 259 (2018) 79-88
  14. Yousatit, S., Jittapasata, T., Leelaphattharaphan, N., Nuntang, S., Ngamcharussrivichai, C., One-pot synthesis of wormhole-like mesostructured silica with a high amine loading for enhanced adsorption of clofibric acid. Journal of Porous Materials 25 (2018) 1611–1623