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| 1 | Electrochemical separation and reuse of EDTA after extraction of Cu contaminated soil显示文摘 | David Voglar Domen Lestan | 2010 | Journal of Hazardous Materials2010,,1: | 1 |
| 2 | Chelant soil-washing technology for metal-contaminated soil显示文摘 | Voglar David Lestan Domen | 2014 | Environmental Technology2014,35,912: | 1 |
| 3 | Electrochemical treatment of spent solution after EDTA-based soil washing显示文摘 | David Voglar Domen Lestan | 2012 | Water Research2012,,6: | 1 |
| 4 | Heap leaching of Pb and Zn contaminated soil using ozone/UV treatment of EDTA extractants显示文摘 | Neza Finzgar Domen Lestan | | 0,,10: | 1 |
| 5 | Soil physical characteristics after EDTA washing and amendment with inorganic and organic additives显示文摘 | Vesna Zupanc Damijana Kastelec Domen Lestan Helena Grcman | 2014 | Environmental Pollution2014,,: | 1 |
| 6 | Electrochemical inactivation of cyanobacteria and microcystin degradation using a boron-doped diamond anode-A potential tool for cyanobacterial bloom control显示文摘Cyanobacterial blooms are global phenomena that can occur in calm and nutrient-rich(eutrophic) fresh and marine waters. Human exposure to cyanobacteria and their biologically active products is possible during water sports and various water activities, or by ingestion of contaminated water. Although the vast majority of harmful cyanobacterial products are confined to the interior of the cells, these are eventually released into the surrounding water following natural or artificially induced cell death. Electrochemical oxidation has been used here to damage cyanobacteria to halt their proliferation, and for microcystin degradation under in-vitro conditions. Partially spent Jaworski growth medium with no addition of supporting electrolytes was used. Electrochemical treatment resulted in the cyanobacterial loss of cell-buoyancy regulation, cell proliferation arrest, and eventual cell death. Microcystin degradation was studied separately in two basic modes of treatment: batch-wise flow, and constant flow, for electrolytic-cell exposure. Batch-wise exposure simulates treatment under environmental conditions, while constant flow is more appropriate for the study of boron-doped diamond electrode efficacy under laboratory conditions. The effectiveness of microcystin degradation was established using high-performance liquid chromatography–photodiode array detector analysis, while the biological activities of the products were estimated using a colorimetric protein phosphatase-1 inhibition assay. The results indicate potential for the application of electro-oxidation methods for the control of bloom events by taking advantage of specific intrinsic ecological characteristics of bloom-forming cyanobacteria. The applicability of the use of boron-doped diamond electrodes in remediation of water exposed to cyanobacteria bloom events is discussed. | Andrej Meglic Anja Pecman Tinkara Rozina Domen Lestan Bojan Sedmak | 2017 | Journal of Environmental Sciences2017,29,3: | 1 |
| 7 | Electrochemical treat-ment of spent solution after EDTA-based soil washing显示文摘 | David Voglar Domen Lestan | 2012 | Water Research2012,46,: | 1 |
| 8 | EDTA and HCl leaching of calcareous and acidic soils polluted with potentially toxic metals: Remediation efficiency and soil impact显示文摘 | Metka Udovic Domen Lestan | 2012 | Chemosphere2012,,6: | 1 |
| 9 | Washing of metal contaminated soil with EDTA and process water recycling显示文摘 | Maja Pociecha Domen Lestan | 2012 | Journal of Hazardous Materials2012,,: | 1 |
| 10 | Pb, Zn and Cd mobility, availability and fractionation in aged soil remediated by EDTA leaching显示文摘 | Metka Udovic Domen Lestan | 2008 | Chemosphere2008,,10: | 1 |
| 11 | Electrochemical separation and reuse of EDTA after extraction of Cu contaminated soil显示文摘 | David Voglar Domen Lestan | 2010 | Journal of Hazardous Materials2010,,1: | 1 |
| 12 | The use of chelating agentsin the remediation of metal- contaminated soils:a review显示文摘 | Domen Lestan Luo Chun - ling | 2007 | Environmental Pollution2007,12,: | 1 |
| 13 | The effects of electrochemical oxidation on in-vivo fluorescence and toxin content in Microcystis aeruginosa culture显示文摘The increasing occurrence of cyanobacterial blooms in water bodies is a serious threat to the environment. Efficient in-lake treatment methods for the control of cyanobacteria proliferation are needed, their in-vivo detection to obtain a real-time response to their presence, as well as the information about their physiological state after the applied treatment. In-vivo fluorescence measurements of photosynthetic pigments have proved to be effective for quantitative and qualitative detection of phytoplankton in a water environment. In the experiment, chlorophyll and phycocyanin fluorescence sensors were used concurrently to detect stress caused by electrochemical oxidation applying an electrolytic cell equipped with borondoped diamond electrodes on a laboratory culture of cyanobacteria Microcystis aeruginosa PCC 7806. The inflicted injuries were reflected in a clear transient increase in the phycocyanin fluorescence signal(for 104 %? 43%) 24 h after the treatment, which was not the case for the chlorophyll fluorescence signal. In the next 72 h of observation, the fluorescence signals decreased(on 40% of the starting signal) indicating a reduction of cell number, which was confirmed by cell count(24% reduction of the starting concentration) and analysis of extracted chlorophyll and phycocyanin pigment. These results demonstrate the viability of the combined application of two sensors as a useful tool for in-vivo detection of induced stress, providing real-time information needed for the evaluation of the efficiency of the in-lake treatment and decision upon the necessity of its repetition. The electrochemical treatment also resulted in a lower free microcystins concentration compared to control. | ROZINA Tinkara ELERSEK Tina Maja ZUPANCIC JUSTIN MEGLIC Andrej LESTAN Domen SEDMAK Bojan | 2018 | Journal of Oceanology and Limnology2018,36,4: | 1 |
| 14 | The tree of chelating agents in the remediation of metal - contaminated soil: A rebiew显示文摘 | Domen Lestan Chun - ling Luo Xiang - dong Li | 2008 | Environmental Pollution2008,153,: | 1 |