首页> 外文会议>Eighth Mill Operators' Conference; Jul 22-23, 2003; Townsville, Queensland >On-Line Moisture Determination of Ore Concentrates ― A Review of Traditional Methods and Introduction of a Novel Solution
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On-Line Moisture Determination of Ore Concentrates ― A Review of Traditional Methods and Introduction of a Novel Solution

机译:矿石精矿的在线水分测定-传统方法的回顾和新解决方案的介绍

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The manual gravimetric drying moisture determination methods currently employed by most mineral processing plants fail to provide timely and accurate information required for automatic control. The costs associated with transporting and handling concentrates represent a major portion of the overall treatment price. When considering the cash flow of a mining operation that is governed by both the smelter contract, with moisture penalties and the quantity and quality of the concentrates shipped, any tool that provides real-time feedback on the process is vital (Edwards, RP 1994). The introduction of an on-line moisture sensor would become a welcome addition to the process control field instrumentation package now applied. A novel on-line determination system for ore concentrate moisture content would replace the tedious manual procedure. Since the introduction of microelectronic-based control systems, operators have strived to reduce the treatment costs to the minimum. Therefore a representative and timely determination of on-line moisture content becomes vital for control set points and timely feedback. Reliable sensors have long been on the 'wish list' of mineral processors since the problem has always been that you can only control what you can measure, (Konigsmann, 1990). Today, the task of moisture determination is still done by the classical technique of loss in weight utilising uncontrolled procedures. These same methods were introduced in the earliest base metal concentrators. Generally, it is acceptable to have ore concentrate moisture content vary within a range of seven to nine percent, but controlling the moisture content below eight percent is a difficult task with a manually controlled system. Many times, delays in manually achieving reliable feedback of the moisture content results in the moisture varying from five to twelve percent before corrective actions can be made. This paper first reviews the traditional and widely available methods for determining moisture content in granular materials by applying physical principals and properties to measure moisture content. All methods are in some form affected when employed on mineral ore concentrates. This paper introduces and describes a unique and promising novel on-line moisture sensor employed for mineral processing de-watering applications, which not only automates the tedious tasks but also results in reliable moisture feedback that can be used in the optimisation of the de-watering process equipment such as pressure or vacuum filters and fuel-fired driers. Finally, two measurement applications will be presented to indicate the usefulness and to summarise the measurement requirements for the proposed method of employing drag force and mechanical properties of the material itself to determine the moisture content. The commercial model of the equipment is described with the features and benefits to the users summarised.
机译:大多数矿物加工厂目前采用的手动重量干燥水分测定方法无法提供自动控制所需的及时准确的信息。与浓缩物的运输和处理相关的成本占总处理价格的主要部分。当考虑由冶炼厂合同控制的矿山运营的现金流量,水分损失以及所运输精矿的数量和质量时,任何提供有关该过程实时反馈的工具都是至关重要的(Edwards,RP 1994) 。在线湿度传感器的引入将成为现在应用的过程控制现场仪表包的一个受欢迎的补充。一种新颖的矿石精矿水分含量在线测定系统将取代繁琐的人工程序。自从引入基于微电子的控制系统以来,操作员一直在努力将治疗成本降至最低。因此,有针对性的及时确定在线水分含量对于控制设定点和及时反馈至关重要。长期以来,可靠的传感器一直是矿物加工机的“愿望清单”,因为一直存在的问题是,您只能控制自己可以测量的内容(Konigsmann,1990年)。时至今日,水分测定的任务仍然是使用不受控制的程序通过传统的减肥技术来完成的。最早的贱金属选矿厂也采用了相同的方法。通常,使精矿的水分含量在7%到9%的范围内变化是可以接受的,但是使用手动控制的系统将水分含量控制在8%以下是一项艰巨的任务。很多时候,手动获得水分含量可靠反馈的延迟会导致水分含量在百分之五到百分之十二之间变化,然后才能采取纠正措施。本文首先回顾了通过应用物理原理和性质来测量水分含量的测定颗粒材料中水分含量的传统方法和广泛使用的方法。在矿砂精矿上使用时,所有方法都会受到某种形式的影响。本文介绍并描述了一种独特的,很有前途的新颖在线水分传感器,该传感器用于矿物加工脱水应用,该传感器不仅可以使繁琐的工作自动化,而且还可以提供可靠的水分反馈,可用于优化脱水处理设备,例如压力或真空过滤器和燃油干燥器。最后,将介绍两个测量应用程序,以表明其实用性,并总结建议的方法的测量要求,该方法利用材料本身的阻力和机械性能确定水分含量。介绍了设备的商业模型,并总结了其功能和对用户的好处。

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