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    • 97. 发明授权
    • Marking device
    • 标记装置
    • US08011638B2
    • 2011-09-06
    • US12322761
    • 2009-02-05
    • Hideki Uratani
    • Hideki Uratani
    • B29C33/00B41F1/07
    • B29C33/424B29C45/374
    • A marking device comprises an outer shell in a cylindrical shape with a bottom surface attached to a molding device, a rotatable tube provided inside of the outer shell, an indicator connecting to the bottom of the outer shell and a support mechanism pushing up the rotatable tube from the internal space of the outer shell while the indicator and the outer shell are engaged with each other. The head of the indicator is formed in a frusto-conical shape tapered into the inside of the outer shell. The rotatable tube comprises an inner surface contacting to the outer surface of the head of the indicator, and an outer surface forming a frusto-conical head tapered into the inside of the outer shell from a second carved marks. The outer shell comprises an inner surface contacting to the outer surface of the head of the rotatable tube.
    • 标记装置包括圆柱形的外壳,底表面附接到模制装置,设置在外壳内部的可旋转管,连接到外壳底部的指示器和向上推动可旋转管的支撑机构 从外壳的内部空间,同时指示器和外壳彼此接合。 指示器的头部形成为锥形的锥形形状,其锥形到外壳的内部。 可旋转管包括与指示器的头部的外表面接触的内表面,以及形成从第二雕刻痕迹锥形到外壳内部的截头圆锥形头部的外表面。 外壳包括与可旋转管的头部的外表面接触的内表面。
    • 98. 发明授权
    • Salt brine capillary crystallization
    • 盐水毛细血管结晶
    • US07972391B2
    • 2011-07-05
    • US11899679
    • 2007-09-07
    • Mansur Abahusayn
    • Mansur Abahusayn
    • C01D5/00
    • B01D1/18C01D3/06Y02P20/133Y02P70/34
    • This invention relates to a method of crystallization of salt from brine on top of any soil surface through airborne brine droplet crystallization, controlled moisture depth, capillary action and enhanced renewable energy to grow a layer of salt which can be collected. The brine is pumped from an underground source, sprayed in ambient air over a solid surface and, if water is not completely evaporated, allowed to seep through the surface to saturate the capillary zone. Water is evaporated while the sprayed brine is in the air or on the surface where capillary action brings it up to the surface for the water component to be evaporated by net heat gained from the environment resulting in salt crystallization. The evaporation of sprayed brine is enhanced by smaller droplet size, residence time due the spray height and wind machines to reduce humidity and increase natural thermal input. The salt layer thus formed further grows by capillary action of the soil and the crystalline salt to a depth suitable for conventional mechanical harvesting. Instrumentation is included to optimize the method through the measurement of evaporation and moisture content of the lower boundary of the capillary zone of the soil and or crystalline salt.
    • 本发明涉及通过空气中的盐水液滴结晶,可控湿度深度,毛细管作用和增强的可再生能量,在任何土壤表面的顶部从盐水中结晶盐的方法,以生长可以收集的一层盐。 盐水从地下源泵送,在环境空气中喷洒在固体表面上,如果水不完全蒸发,允许渗透通过表面使饱和毛细管区域饱和。 水被蒸发,而喷洒的盐水在空气中或表面上,毛细管作用将其带到表面,以使得水分子被从环境中获得的净热量产生盐结晶而蒸发。 喷雾盐水的蒸发通过较小的液滴尺寸,由喷雾高度引起的停留时间和风机降低湿度和增加自然热输入而增强。 由此形成的盐层通过土壤和结晶盐的毛细作用进一步增长到适于常规机械收获的深度。 包括仪器,以通过测量土壤和/或结晶盐的毛细管区域的下边界的蒸发和水分含量来优化该方法。