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    • 2. 发明专利
    • Radioactive waste liquid processor
    • 放射性废液处理器
    • JP2013148364A
    • 2013-08-01
    • JP2012007029
    • 2012-01-17
    • Mitsubishi Heavy Ind Ltd三菱重工業株式会社
    • OGAWA NAOKIHAMAGUCHI RYOKICHISHIMADA TAKASHISHIMIZU YOSHIHITOKAKINOKI KOICHIKOBAYASHI SEIJISUZUKI HIDEO
    • G21F9/08G21F9/12
    • PROBLEM TO BE SOLVED: To provide a radioactive waste liquid processor capable of achieving reduced costs for disposal by reducing the volume of secondary waste.SOLUTION: A radioactive waste liquid processor 1 includes: two-staged evaporative concentrators 2A, 2B sequentially concentrating a radioactive waste liquid W by evaporation; an oil remover 3 and a filtration device 4 which are followed by the first and second evaporative concentrators 2A, 2B in such a manner that the four devices are connected together in this order from an upper stream to a lower stream in the flow of a process of converting the radioactive waste liquid W into concentrated liquid waste; a condensed water lead-out path 21 leading a first condensed water G1 generated from the first evaporative concentrator 2A in the foremost stage out of the radioactive waste liquid processor 1; and a condensed water circulation path 22 leading a second condensed water G2 generated from the second evaporative concentrator 2B in the subsequent stage into the first evaporative concentrator 2A.
    • 要解决的问题:提供一种放射性废液处理器,能够通过减少二次废物的体积来降低处理成本。解决方案:放射性废液处理器1包括:两级蒸发浓缩器2A,2B,依次浓缩放射性废物 液体W通过蒸发; 除油器3和过滤装置4,其后面是第一和第二蒸发浓缩器2A,2B,使得四个装置在过程流中以从上流到下游的顺序连接在一起 将放射性废液W转化为浓缩废液; 将从最前段的第一蒸发浓缩器2A产生的第一冷凝水G1引导出放射性废液处理器1的冷凝水引出路径21; 以及冷凝水循环路径22,其将从后续阶段中的第二蒸发浓缩器2B产生的第二冷凝水G2导入第一蒸发浓缩器2A。
    • 3. 发明专利
    • Contaminated soil cleaning apparatus, and contaminated water cleaning method and apparatus therefor
    • 污染土壤清洁装置和污染水清洗方法及其装置
    • JP2005103417A
    • 2005-04-21
    • JP2003339450
    • 2003-09-30
    • Mitsubishi Heavy Ind Ltd三菱重工業株式会社
    • HAMAZAKI AKIHIROHATANO SHIGEKAZUKAWAMURA WATARUUEJIMA NAOYUKIARIKAWA KIWAMUEITO TORUTERAKURA SEIICHISUZUKI HIDEOIWABUCHI HIROYUKIHIRAO MASASHIWATANABE ICHIRO
    • B09C1/02B01D3/00B01D3/36B01D17/00B01D19/00B09C1/08C02F1/04C02F1/20C02F1/28C02F1/44
    • PROBLEM TO BE SOLVED: To provide a contaminated soil cleaning apparatus which can greatly improve an efficiency in a cleaning treatment of soil contaminated with a harmful organic matter.
      SOLUTION: The contaminated soil cleaning apparatus is equipped with the following: a mixing tank 110 for mixing soil 1 with a partially water-soluble cleaning solvent 5 to form a slurry 6; a cleaning tower 120 through which the cleaning solvent 5 flows from below to above and the slurry 6 flows from above to below; a seal tank 130 which is linked to the lower part of the cleaning tower 120 and contains water; a soil after-treatment tank 140 which is linked to the seal tank 130 and dries recovered soil 1; a first specific gravity separation tank 150 which is linked to above the cleaning tower 120 and subjects the cleaning solvent 5 and water, sent from the cleaning tower 120, to separation by specific gravity; and a distillation apparatus 160 which subjects the cleaning solvent 5 separated by the first specific gravity separation tank 150 to distillation to separate into the cleaning solvent 5, water 3, and a condensate containing a harmful organic matter 2.
      COPYRIGHT: (C)2005,JPO&NCIPI
    • 要解决的问题:提供污染的土壤清洁装置,其可以大大提高对有害有机物污染的土壤的清洁处理的效率。 污染土壤清洁装置配备有:混合槽110,用于将土壤1与部分水溶性清洗溶剂5混合以形成浆料6; 清洗塔120通过清洗溶剂5从下流到上面,浆料6从上流到下面; 密封罐130,其连接到清洁塔120的下部并且包含水; 与密封箱130连接并干燥回收的土壤1的土壤后处理罐140; 第一比重分离罐150,其连接到清洁塔120上方,并将清洁溶剂5和从清洗塔120送出的水进行比重分离; 以及蒸馏装置160,其使由第一比重分离罐150分离的清洗溶剂5蒸馏以分离成清洗溶剂5,水3和含有有害物质的冷凝物。版权所有(C) )2005年,日本特许厅和NCIPI
    • 7. 发明专利
    • RESIN SPILL PREVENTIVE DEVICE FOR ADSORPTION TOWER
    • JPH09155208A
    • 1997-06-17
    • JP32436095
    • 1995-12-13
    • MITSUBISHI HEAVY IND LTD
    • SUZUKI HIDEONAGANO HAYAMI
    • B01D15/00B01J47/02B01J49/00C02F1/42
    • PROBLEM TO BE SOLVED: To restrain the leak of ion exchange resin grains in an adsorption tower and also to prevent the spill of resins and the increase in pressure rise with respect to a resin spill preventive device for an adsorption tower for filtering a liquid to be treated containing dispersed solid matter. SOLUTION: A liquid 4 to be treated enters a separating pipe 8 of an adsorber 1 from a liquid inflow/outflow pipe 5 and passes through inner ring resin pellets 12 and synthetic resin pellets 9 with which a baglike net 13 is filled from a lot of outflow/inflow holes 7 and passes through ion exchange resins 2 and a net bed 3 to become treated waste water 6. The baglike net 13 is provided with a lot of folds the periphery thereof in order to widen the filter area. And around the separating pipe 8, the inner ring resin pellets 12 are packed so that liquid cannot leak from a mesh bed 10. During adsorption, liquid flows in from below to adsorb ions by ion exchange resins 2 and to remove solid matter by the baglike net 13 and synthetic resin pellets 9, and flows out from above. During desorption, liquid backflows from above and flows to below to catch and remove the adsorbed solid matter and ions, and flows out from below.
    • 8. 发明专利
    • LOW TEMPERATURE TANK WITH FIXED INNER RESERVOIR
    • JPS54128016A
    • 1979-10-04
    • JP3584278
    • 1978-03-28
    • MITSUBISHI HEAVY IND LTD
    • FUJITA SUMIOOOSAKA KENJIYAMAGATA SHIYUNSUKENIWA RIICHISUZUKI HIDEO
    • F17C3/06F17C13/12
    • PURPOSE:To prevent breakage eliminating changes of original shapes at the bottom corners due to cooling contraction and thermal expansion predicated on rising the side bulkheads of the outer reservoir on the surface owing to congealed soil and inlet and outlet of stored liquid in such a way that the underneath of the inner reservoir is reinforced and anchored at the bottom part of the outer reservoir. CONSTITUTION:Since the inner reservoir 3 is solidified at anchors 8 with use of an anchor bar 7 at the bottom of the outer reservoir 1, even if soil around the outside of the tank is congealed and the side bulkheads of the outer reservoir 1 may be broken separatedly from the bottom part and pushed up in the arrow X direction, it will be without fear of being drawn up by friction, in consequence, because the bottom corners keep the original form, there is no breakage. Secondly, since the bottom corners of the inner reservoir 3 are tightly fixed by the anchors 8, even if the inner reservoir 3 reiterates cooling contraction and thermal expansion by routine inlet and outlet of stored liquid, because the propinquity to the bottom corners does not crawl, there will be no cases of breaking and yielding creeps by deformation due to the changes.