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    • 8. 发明专利
    • Method for collecting emulsified or dissolved oil contained in waste water
    • 用于收集在废水中包含的乳化或溶解的油的方法
    • JPS6133287A
    • 1986-02-17
    • JP15278784
    • 1984-07-25
    • Kanagawaken
    • HIYOSHI KATSUNORIYASUDA MAKOTO
    • C02F1/28C02F1/68
    • C02F1/681
    • PURPOSE: To diminish the collection cost of the titled oil by destroying the state of oil emulsified in waste water and thereafter adsorbing the oil by means of a colloidal clay-organic composite body.
      CONSTITUTION: The emulsified or dissolved state of the oil is destroyed by adding the ions such as iron ion, aluminum ion and potassium ferrocyanide to the coil emulsified or dissolved in the waste water. Thereafter, a colloidal clay- organic composite body which is obtained by allowing the clay such as montmorillonite to react with the aliphatic amines such as laurylamine is added to adsorb the above-mentioned oil.
      COPYRIGHT: (C)1986,JPO&Japio
    • 目的:通过破坏在废水中乳化的油状态,然后通过胶态粘土 - 有机复合体吸附油来降低标称油的收集成本。 构成:通过将铁离子,铝离子和亚铁氰化钾等离子添加到乳化或溶解在废水中的线圈中,使油的乳化或溶解状态被破坏。 此后,加入通过使诸如蒙脱石等粘土与脂肪族胺如月桂胺反应得到的胶态粘土 - 有机复合体,以吸附上述油。
    • 10. 发明专利
    • Heat storage type heating method of greenhouse
    • 热仓储热式加热方法
    • JPS59180222A
    • 1984-10-13
    • JP5397483
    • 1983-03-31
    • KanagawakenMitsui Petrochem Ind LtdNepon Kk
    • SASAKI KOUJISHIRAYANAGI RIYUUTAROUKAMANAKA RIYUUSUKE
    • A01G9/24F24D11/00F24H7/02F24H7/04F28D20/00
    • F24D11/009
    • PURPOSE:To contrive to enhance the heat exchange efficiency by a method wherein latent heat type heat storage agent and liquid are used in combination. CONSTITUTION:Vessels 2, in which latent heat type heat storage agent are packed, are disposed in arrays on net-like shelves 3 and yet water is filled in a space part in a heat storage tank. The latent heat type heat storage agent consists of hydrate of inorganic salt or organic crystalline substance, the typical one of which is a simple substance of magnesium chloride hexahydrate, calcium chloride hexahydrate or the like or a mixture of more than one substance just mentioned above, is packed in polyethylene vessels 20 and used. The water, which is filled together with said latent heat type heat storage agent in the heat storage tank, is sent through an outflowing port at the lower part of the tank to a heat exchanger 6 by means of a pump 5. The water sent from the heat storage tank 1 is heat-exchanged with the air in a greenhouse at the heat exchanger 6 and then sent back to the heat storage tank. Because the air temperature in the greenhouse is higher than the temperature in the heat storage tank during the daytime, heat energy is accumulated in the heat storage tank, while, because the air temperature in the greenhouse is lower than the temperature in the heat storage tank during the nighttime, the heat energy accumulated in the heat storage tank is released, resulting in heating the greenhouse.
    • 目的:通过组合使用潜热型储热剂和液体的方法来提高热交换效率。 构成:将堆积有潜热型蓄热剂的容器2排列在网状搁板3上,而将水填充在储热箱的空间部分中。 潜热型蓄热剂由无机盐或有机结晶物质的水合物组成,其典型的一种是氯化镁六水合物的单一物质,氯化钙六水合物等或上述刚刚提及的多种物质的混合物, 包装在聚乙烯容器20中并使用。 与储热箱内的潜热式蓄热剂一起填充的水通过泵5通过罐下部的流出口送入热交换器6。 蓄热箱1与热交换器6的温室内的空气进行热交换,然后送回蓄热箱。 由于温室内的空气温度高于白天的储热箱内的温度,所以在储热箱内积聚热能,而由于温室内的空气温度低于蓄热槽内的温度 在夜间,储存在蓄热箱内的热能被释放,从而对温室进行加热。