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首页> 外文期刊>Nanotechnology perceptions: A review of ultraprecision engineering and nanotechnology >Electroerosion dispersion, sorption and coagulation for complex water purification: Electroerosion waste recycling and manufacturing of metal,oxide and alloy nanopowders
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Electroerosion dispersion, sorption and coagulation for complex water purification: Electroerosion waste recycling and manufacturing of metal,oxide and alloy nanopowders

机译:复合净水净化的电镀分散,吸附和凝固:电化废物回收和金属,氧化物和合金纳米粉的制造

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摘要

The application of EEDSC - electroerosion dispersion, sorption and coagulation (using in situ dispersion in plasma of aluminium or iron)-allowed efficient water purification from heavy metal ions and radioactive alkali ions (of Fe, Cr, Cu, Mo, Zn, Co, Ni,Cd, Mn, As, Sn, Pb, Al, Ba, Co, Cs and Sr) as well as from organic contamination. Intensive ozonization should be applied because of intensive foam formation as a result of complex electrohydrodynamic effects during removal of the “heavy", organic contaminants (such as from liquid waste from landfills) during EEDSC. The method of electroerosion dispersion is very effective for the production of nano and submicron powders (5 nm-3 μm) of metals, oxides, nitrides and carbides as well as for recycling of any conductive materials such as cemented carbides, alloys of heavy metals, metallic waste products etc. The iron oxide polyvalent magnetic nanoparticlcs produced by electroerosion dispersion attract considerable interest in many fields of research and application. They have high potential for applications in the field of biomedical sciences (diagnostics and therapy), fcrrofluids, catalysis, coloured pigments, high-density magnetic recording, printer toners, Li-ion batteries, wastewater treatment and absorption of electromagnetic waves.
机译:EEDSC - 电子分散,吸附和凝固(使用铝或铁等浆液中原位分散的凝固) - 重金属离子和放射性碱(Fe,Cr,Cu,Mo,Zn,Co,Co,Co,Co,Co,Co,Co,Co,Co Ni,Cd,Mn,As,Sn,Pb,Al,Ba,Co,Cs和Sr)以及有机污染。由于在EEDSC中除去“重”,有机污染物(例如来自垃圾填埋场的液体废物)期间复杂的电液动力学效应,应施加密集臭氧化。在EEDSC期间的复杂电流动力学效应。电气分散方法对生产非常有效纳米和亚微米粉末(5nm-3μm)金属,氧化物,氮化物和碳化物,以及用于回收任何导电材料,如硬质合金,重金属的合金,金属废品等。氧化铁多价磁性纳米粉末通过电化色散产生,吸引了许多研究和应用领域的相当兴趣。它们在生物医学科学领域(诊断和治疗),FcRrofloflo,催化,彩色颜料,高密度磁记录,打印机调色剂,Li电池,废水处理和电磁波吸收。

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