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    • 1. 发明授权
    • Method for separating fine particles by selective hydrophobic coagulation
    • 通过选择性疏水凝结分离细颗粒的方法
    • US5161694A
    • 1992-11-10
    • US513884
    • 1990-04-24
    • Roe-Hoan YoonGerald H. Luttrell
    • Roe-Hoan YoonGerald H. Luttrell
    • B03B1/04B03C1/01B03D3/02
    • B03D3/02B03B1/04B03C1/01
    • A process of selectively agglomerating coal in an aqueous environment while leaving the mineral matter dispersed has been developed. This process is autogenous for hydrophobic particles in that neither an agglomerating agent nor an electrolytic coagulant is needed. It is based on the finding that hydrophobic particles are pushed against each other by the surrounding water structure. This process, which is referred to as selective hydrophobic coagulation, is driven by the so-called hydrophobic interaction energy, which is not included in the classical DLVO theory describing the stability of lyophobic suspensions. The relatively small coagula formed by the selective hydrophobic coagulation process can be readily separated from the dispersed mineral matter by several different techniques such as screening, elutriation, sedimentation and froth flotation.
    • 已经开发出在分离矿物质的同时在含水环境中选择性凝集煤的方法。 该方法对于疏水性颗粒是自生的,因为不需要附聚剂和电解凝结剂。 这是基于以下发现:疏水性颗粒被周围的水结构相互推压。 被称为选择性疏水性凝血的这个过程是由所谓的疏水相互作用能量驱动的,它不包括在描述疏液性悬浮液稳定性的经典DLVO理论中。 通过选择性疏水凝结方法形成的相对较小的凝结剂可以通过几种不同的技术,如筛选,淘析,沉淀和泡沫浮选,容易地从分散的矿物质中分离出来。
    • 8. 发明授权
    • Hindered-bed separator device and method
    • 受阻分离装置及方法
    • US06264040B1
    • 2001-07-24
    • US09453680
    • 1999-12-03
    • Michael J. MankosaGerald H. Luttrell
    • Michael J. MankosaGerald H. Luttrell
    • B03B566
    • B03B11/00B03B5/623
    • A process and a structure is described for separating particles in a fluid medium based on a difference in settling velocity. The feed is introduced tangential into the separation zone. The tangential feed system includes a transition box to reduce flow velocity and disperse the slurry across the separator eliminating the efficiency losses associated with other classifiers that introduce feed directly into the separation chamber. This approach offers an improvement in process capacity and efficiency. The fluidization water is introduced to the separation chamber below a baffle plate that disperses the water across the base of the separator. The feed system may include baffles in the upper separation chamber, and a stilling well with an impact plate adjustable side walls and adjustable baffle plates to reduce flow velocity and disperse the slurry across the separator.
    • 描述了基于沉降速度差异来分离流体介质中的颗粒的方法和结构。 将进料切入导入分离区。 切向进料系统包括一个过渡箱,以减少流速并将浆料分散在分离器上,消除了与将进料直接引入分离室的其它分级器相关的效率损失。 这种方法提高了过程能力和效率。 流化水被引入挡板下方的分离室,该挡板将水分散在分离器的基部上。 进料系统可以包括上分离室中的挡板,以及具有冲击板可调侧壁和可调节挡板的静止井,以减少流速并将浆料分散在分离器上。
    • 10. 发明授权
    • Flotation separation device and method
    • 浮选分离装置及方法
    • US08960443B2
    • 2015-02-24
    • US12101376
    • 2008-04-11
    • Michael J. MankosaJaisen KohmuenchEric S. YanGerald H. Luttrell
    • Michael J. MankosaJaisen KohmuenchEric S. YanGerald H. Luttrell
    • B03D1/02B03D1/14B03D1/24B03D1/22B03D1/08
    • B03D1/16B01F3/04B03D1/028B03D1/082B03D1/1487B03D1/22B03D1/24B03D1/247
    • A flotation separation system is provided for partitioning a slurry that includes a hydrophobic species which can adhere to gas bubbles formed in the slurry. The flotation separation system comprises a flotation separation cell that includes a sparger unit and a separation tank. The sparger unit has a slurry inlet for receiving slurry and a gas inlet to receive gas with at least enough pressure to allow bubbles to form in the slurry within the sparger unit. The sparger unit includes a sparging mechanism constructed to disperse gas bubbles within the slurry. The sparging mechanism sparges the gas bubbles to form a bubble dispersion so as to cause adhesion of the hydrophobic species to the gas bubbles substantially within the sparger unit while causing a pressure drop of about 10 psig or less across the sparging mechanism. The sparger unit includes a slurry outlet to discharge the slurry and the bubble dispersion into the separation tank.
    • 提供浮选分离系统用于分配浆料,其包括能粘附在浆料中形成的气泡的疏水性物质。 浮选分离系统包括浮选分离单元,其包括分布器单元和分离罐。 分布器单元具有用于接收浆料的浆料入口和用于以至少足够的压力接收气体的气体入口,以允许在分布器单元内的浆料中形成气泡。 该分布器单元包括一个构造成将气泡分散在浆料内的喷射机构。 喷射机构喷射气泡以形成气泡分散体,以便引起疏水物质基本上在分布器单元内的气泡粘附,同时在喷射机构上引起约10psig或更小的压降。 喷射器单元包括浆料出口,用于将浆料和气泡分散体排出到分离罐中。