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    • 1. 发明授权
    • Prompt gamma neutron activation analysis system
    • 快速伽马中子激活分析系统
    • US5539788A
    • 1996-07-23
    • US958215
    • 1992-10-08
    • Frank H. RuddyThomas V. CongedoDavid C. GrantEdward J. LahodaJoseph L. GonzalezJohn G. SeidelJohn BartkoDavid F. McLaughlin
    • Frank H. RuddyThomas V. CongedoDavid C. GrantEdward J. LahodaJoseph L. GonzalezJohn G. SeidelJohn BartkoDavid F. McLaughlin
    • G01N23/222G01V5/02G21G1/06
    • G01V5/02G01N23/222G01N2223/0745G01N2223/204G01N2223/601
    • A system for determining depth profiles of concentrations of hazardous elements in soils comprises a neutron source for generating neutrons of a first energy level and irradiating a volume of soil with the neutrons. Nuclear reactions are effected within the soil and gamma radiation is emitted from the soil. The system also includes an array of gamma detectors for detecting gamma radiation emitted from the soil; source electronics for controlling the width of regularly repeated pulses of neutrons generated by the neutron source; detector electronics associated with the gamma detectors for amplifying and digitalizing signals generated by the gamma detectors and storing data representing the digitalized signals; spectral analysis software for analyzing the data and determining the concentrations of selected target elements in the soil; and an acquisition interface module (AIM). The AIM controls the timing of the source and detector electronics such that the neutron source generates neutrons in regularly repeated bursts of a prescribed pulse width and the detectors and detector electronics detect gamma rays during a plurality of time intervals associated with the burst and acquire groups of data. Each group is indicative of a number of gamma rays emitted and their energy levels during a corresponding time interval. The system also includes a mobile platform carrying the neutron source, array of gamma ray detectors and software for determining a depth profile of a target element. Trace elements can also be detected with the disclosed system.
    • 用于确定土壤中有害元素浓度深度分布的系统包括用于产生第一能级中子并用中子照射一定体积土壤的中子源。 核反应在土壤中进行,γ辐射从土壤中排出。 该系统还包括用于检测从土壤发射的γ辐射的伽马检测器阵列; 源电子器件,用于控制由中子源产生的规则重复的中子脉冲的宽度; 与γ检测器相关联的检测器电子器件,用于放大和数字化由伽马检测器产生的信号并存储表示数字化信号的数据; 光谱分析软件,用于分析数据并确定土壤中选定的目标元素的浓度; 和采集接口模块(AIM)。 AIM控制源和检测器电子设备的定时,使得中子源以规定的脉冲宽度的规则重复脉冲串产生中子,并且检测器和检测器电子装置在与突发相关联的多个时间间隔内检测伽马射线,并获取 数据。 每个组指示在相应的时间间隔期间发射的伽马射线数量及其能量水平。 该系统还包括携带中子源,伽马射线探测器阵列和用于确定目标元件的深度分布的软件的移动平台。 也可以利用所公开的系统检测微量元素。
    • 4. 发明授权
    • Process for the remediation of contaminated particulate material
    • 污染颗粒材料的修复方法
    • US5436384A
    • 1995-07-25
    • US137457
    • 1993-10-18
    • David C. GrantEdward J. LahodaC. P. Keegan
    • David C. GrantEdward J. LahodaC. P. Keegan
    • G21F9/28B03B9/00B09C1/00B09C1/02G21F9/30G21F9/00
    • B03B9/00B09C1/02G21F9/30
    • A method for segregating fines from the clean coarse fraction of the soil, preparing the contaminated fines for subsequent processing, and then separating the contaminants from the clean fines. The process produces a small, highly concentrated contaminanth fraction and a large fraction of clean soil. Metals, metallic compounds, and/or radioactive contaminants are removed from the fine fraction using either gravity separation, multistage gravity separation, a centrifugal jig, regular magnetic or paramagnetic separation using a high gradient magnetic separator, and/or a superconducting separator. Preparation of the fines requires selective segregation of the targeted particles size range and the removal of interfering soil fractions, and vegetation such as root hairs. This preparation is accomplished by a combination of attrition scrubbing, countercurrent jigging, and screening.
    • 一种将细粒与干净的粗糙部分分离的方法,为污染的细粉制备后续加工,然后将污染物与干净的细粉分离。 该过程产生小的,高度浓缩的污染物部分和大部分清洁的土壤。 和/或超导分离器,使用重力分离,多级重力分离,离心夹具,常规磁性或顺磁性分离法,从精细馏分中除去金属,金属化合物和/或放射性污染物。 细粉的制备需要选择性分离目标颗粒尺寸范围和去除干扰的土壤部分,以及植被如根毛。 该制备通过磨擦擦洗,逆流夹击和筛选的组合来实现。
    • 6. 发明授权
    • Method and apparatus for cleaning contaminated particulate material
    • 清洁污染颗粒物的方法和设备
    • US5268128A
    • 1993-12-07
    • US648673
    • 1991-01-31
    • Edward J. LahodaDavid C. Grant
    • Edward J. LahodaDavid C. Grant
    • B09C1/02G21F9/04G21F9/00B03B5/28
    • B09C1/02G21F9/04
    • Particulate material is treated by first washing the contaminated material with a contaminant mobilizing solution comprising a leaching agent, a surfactant or a mixture thereof. Large particles, typically greater than 5 mm are mechanically separated, washed with water and returned to the site as recovered soil. Fines, along with contaminants dissolved or dispersed in the contaminant mobilizing solution are separated from intermediate sized particles by a countercurrent flow of the contaminant mobilizing solution, preferably in a mineral jig. The intermediate sized particles are then abraded in an attrition scrubber to dislodge attached mineral slimes or fines. These additional fines are separated from the intermediate sized particles with a countercurrent flow of wash water in a second mineral jig. The preferred oxidizing agent is chlorine, and hydrogen is the preferred reducing agent.
    • 通过首先用包含浸出剂,表面活性剂或其混合物的污染物移动溶液洗涤被污染的材料来处理颗粒材料。 通常大于5mm的大颗粒机械分离,用水洗涤并作为回收的土壤返回到现场。 细粉以及溶解或分散在污染物移动溶液中的污染物通过污染物移动溶液的逆流流动,优选在矿物夹具中与中等尺寸的颗粒分离。 然后在磨耗洗涤器中研磨中等尺寸的颗粒以除去附着的矿物质泥或细粒。 这些额外的细粉与中等尺寸的颗粒分离,在第二矿物夹具中具有逆流的洗涤水。 优选的氧化剂是氯,氢是优选的还原剂。