Surfactant (Genapol OX-80) toxicity to Selenastrum capricornutumP.M AnastácioElsevier Science2000DOI 10.1016/s0045-6535(99)00275-1
Recovery of Natural Antioxidants from Olive Mill Wastewater Using Genapol-X080Olga GortziSpringer-Verlag2008DOI 10.1007/s11746-007-1180-z
Acute Toxicity of Malathion and the New Surfactant “Genapol OXD 080” on Species of Rice BasinsE. CanoSpringer1999DOI 10.1007/s001289900958
Modeling Mosquitofish (Gambusia Holbrooki) Responses to Genapol OXD-080, a Non-ionic Surfactant, in Rice FieldsJ.A. CabralEcological Engineering2001DOI 10.1016/s0925-8574(00)00116-6
Acute and Sublethal Effects of a Non-Ionic Surfactant, Genapol OXD-080, on Mosquitofish Gambusia holbrooki (Girard)João A. CabralSpringer1999DOI 10.1023/a:1008975013964
Phase behavior of systems containing Genapol X080®+technical 1-dodecene+water compared with the phase behavior of pure C12E8+pure 1-dodecene+waterSchrader, PhilippChemical Engineering Science2014DOI 10.1016/j.ces.2013.04.030
Study of High-performance Liquid Chromatographic Separation of Selected Herbicides by Hydro-methanolic and Micellar Liquid Chromatography Using Genapol X-080 Non-ionic Surfactant as Mobile Phase ConstituentRadoslav HalkoElsevier Science2002DOI 10.1016/s0003-2670(02)00590-1
Tuning Gelled Lyotropic Liquid Crystals (LLCs) – Probing the Influence of Different Low Molecular Weight Gelators on the Phase Diagram of the System H 2 O/NaCl–Genapol LA070Steck, KatjaRoyal Society of Chemistry2019DOI 10.1039/c8sm02330a
A Green and Efficient Method for the Preconcentration and Determination of Gallic Acid, Bergenin, Quercitrin, and Embelin from Ardisia japonica Using Nononic Surfactant Genapol X-080 as the Extraction SolventChen, YingHindawi Limited2018DOI 10.1155/2018/1707853
GI-530159, a Novel, Selective, Mechanosensitive Two-pore-domain Potassium (K2P) Channel Opener, Reduces Rat Dorsal Root Ganglion Neuron ExcitabilityAlexandre J C Loucif, Pierre-Philippe Saintot & 12 more2018PDF