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| 1 | Chromium removal from electroplating wastewater by coir pith显示文摘 | Parinda Suksabye Paitip Thiravetyan Woranan Nakbanpote | 2007 | Journal of Hazardous Materials2007,14,1: | 1 |
| 2 | Adsorption of three azo reactive dyes by metal hydroxide sludge: effect of temperature, pH, and electrolytes 显示文摘 | SUCHAPA N PAITIP T SIRINTOMTHEP T | 2004 | Journal of Colloid and Interface Science2004,270,: | 1 |
| 3 | Adsorption mechanism of synthetic reactive dye wastewater by chitosan 显示文摘 | Niramol Sakkayawong Paitip Thiravetyan Woranan Nakbanpote | 2005 | Journal of Colloid and Interface Science2005,286,: | 1 |
| 4 | Color removal from water-based ink wastewater by bagass fly ash,sawdust fly ash and activated carbon显示文摘 | Sirikan Noonpui Paitip Thiravetyan Woman Nakbanpote | 2010 | Chemical Engineering Journal2010,162,2: | 1 |
| 5 | Adsorptionmechanism of synthetic reactive dyewastewater by chitosan 显示文摘 | NIRAMOL Sakkayawong PAITIP Thiravetyan WORANANNakbanpote | 2005 | J Colloid Interface Sci2005,286,: | 1 |
| 6 | Cr(VI)adsorption from electroplating plating wastewater by chemically modified coir pith显示文摘 | Parinda Suksabye Paitip Thiravetyan | 2012 | Journal of Environmental Management2012,102,2: | 1 |
| 7 | Mechanism of Cr(VI) adsorption by coir pith studied by ESR and adsorption kinetic显示文摘 | Parinda Suksabye Akira Nakajima Paitip Thiravetyan Yoshinari Baba Woranan Nakbanpote | 2008 | Journal of Hazardous Materials2008,,2: | 1 |
| 8 | Chromium removal from electroplating wastewater by coir pith 显示文摘 | Parinda Suksabye Paitip Thiravetyan Woranan Nakbanpote | 2007 | Journal of Hazardous Materials2007,141,3: | 1 |
| 9 | Decolorization of melanoidin by activated carbon obtained from bagasse bottom ash显示文摘 | Arunee Simaratanamongkol Paitip Thiravetyan | 2009 | Journal of Food Engineering2009,,1: | 1 |
| 10 | Chromium removal from electroplating wasterwater by coir pith显示文摘 | Parinda Suksabye Paitip Thiravetyan Woranan Nakbanpote | | 0,,03: | 1 |
| 11 | Endophytic Bacillus cereus ERBP-Clitoria ternatea interactions: Potentials for the enhancementof gaseous formaldehyde removal显示文摘 | GHOLAMREZA K CHAIRAT T PAITIP T | 2016 | Environmental and Experimental Botany2016,126,: | 1 |
| 12 | Adsorption mechanism of synthetic reactive dye wastewater by chitosan显示文摘 | NIRAMOL S PAITIP T WORANAN N | 2005 | Journal of Colloid and Interface Science2005,286,1: | 1 |
| 13 | Lignin and holocellulose from coir pith involved in trimethylamine(fishy odor) adsorption显示文摘Coir pith is a highly potential adsorbent for adsorbing trimethylamine(TMA). It harbors a higher adsorption capacity for TMA compared to commercial activated carbon(CAC). It was found that lignin and holocellulose extracted from coir pith played an important role in TMA adsorption. Lignin itself had the highest TMA adsorption capacity(269.01 mg/g)followed by holocellulose(75.43 mg/g), coir pith(14.3 mg/g) and CAC(10.26 mg/g),respectively. The pseudo-first-and second orders were applied to the kinetic data. For the adsorption of TMA by coir pith, the best fit was achieved by the pseudo-second order.Thermodynamic studies showed an endothermic and physico-chemical adsorption process between TMA and the coir pith. TMA desorption study suggested that only 14%–47% of TMA was desorbed with distilled water. In addition, Fourier transform-infrared(FT-IR) spectra showed that C–H bond(methyl group), C–O bond from phenolic alcohol and C–O bond from tertiary alcohol in lignin and holocellulose were involved in TMA adsorption. Coir pithbased filter showed high TMA adsorption efficiency(98%) and kept constant for more than48 days in a continuous system. Pilot scale experiment, coir pith beads filter could be succesfully applied as a packing material for TMA removal. Therefore, coir pith can be used as a promising packing material for TMA treatment at contaminated site. | Nuttapong Santawee Chairat Treesubsuntorn Paitip Thiravetyan | 2019 | Journal of Environmental Sciences2019,31,5: | 0 |
| 14 | Proteomic studies of plant and bacteria interactions during benzene remediation显示文摘Phytoremediation is a sustainable remedial approach for removing benzene from environment.Plant associated bacteria could ameliorate the phytotoxic effects of benzene on plant,although the specificity of these interactions is unclear.Here,we used proteomics approach to gain a better understanding of the mechanisms involved in plant-bacteria interactions.Plant associated bacteria was isolated and subsequently inoculated into the sterilized Helianthus annuus,and the uptake rates of benzene by these inoculated plants were evaluated.At the end of the experiment,leaves and roots proteins were analyzed.The results showed inoculated H.annuus with strain EnL3 removed more benzene than other treatments after 96 h.EnL3 was identified as Enterobacter sp.according to 16S rDNA analysis.Based on the comparison of proteins,62 proteins were significantly up or down regulated in inoculated leaves,while 35 proteins were significantly up or down regulated in inoculated roots.Furthermore,there were 4 and 3 identified proteins presented only in inoculated H.annuus leaves and roots,respectively.These proteins involved in several functions including transcription and translation,photosynthesis,and stress response.The network among anti-oxidant defense system,protein synthesis,and photosynthetic electron transfer are involved in collaboratively activate the benzene uptake and stress tolerance in plant. | Wararat Sriprapat Sittiruk Roytrakul Paitip Thiravetyan | 2020 | Journal of Environmental Sciences2020,32,8: | 0 |