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通过在湿型砂铸型中进行铸铁,研究高级氧化对湿型砂性能的影响。

Effects of advanced oxidation on green sand properties via iron casting into green sand molds.

作者信息

Wang Yujue, Cannon Fred S, Voigt Robert C, Komarneni Sridhar, Furness J C

机构信息

The Pennsylvania State University, University Park, Pennsylvania 16802, USA.

出版信息

Environ Sci Technol. 2006 May 1;40(9):3095-101.

Abstract

The effects of advanced oxidation (AO) processing on the properties of green sand were studied via pouring cast iron into green sand molds. Upon cooling, the green sand molds were autopsied at various distances from the metal-sand interface. Autopsy green sand samples collected from a mold that incorporated AO water were characterized and compared to controlled samples collected from a similar autopsied mold made with conventional tap water (TAP). It was found that the AO processing removed a coating of coal pyrolysis products from the clay surface that typically accumulated on the clay surface. As a result, the AO-conditioned green sand retained 10-15% more active clay as measured bythe standard ultrasonic methylene blue titration than did the TAP-conditioned green sand. The AO processing also nearly doubled the generation of activated carbon from the normalized amount of coal composition of the green sand during the casting process. The AO-enhanced activated carbon generation and the AO-incurred clay surface cleaning provided the AO-conditioned green sand with higher normalized pore volume, and thus higher normalized m-xylene adsorption capacity, i.e., relative to before-metal-pouring conditions. Furthermore, mathematical analysis indicated that the AO-conditioned green sand better retained its important properties after pouring than did the TAP-conditioned green sand. Effectively, this meant after metal pouring, the AO-conditioned sample offered about the same net properties as the TAP-conditioned sample, even though the AO-conditioned sample contained less clay and coal before metal pouring. These results conformed to the full-scale foundry empirical finding that when AO is used, foundries need less makeup clay and coal addition through each casting cycle, and they release less air emissions.

摘要

通过将铸铁浇铸到湿型砂模具中,研究了高级氧化(AO)处理对湿型砂性能的影响。冷却后,在距金属-砂界面不同距离处对湿型砂模具进行解剖。对从使用AO水的模具中收集的解剖湿型砂样品进行表征,并与从使用传统自来水(TAP)制成的类似解剖模具中收集的对照样品进行比较。结果发现,AO处理去除了通常积聚在粘土表面的煤热解产物涂层。因此,通过标准超声亚甲基蓝滴定法测得,经AO处理的湿型砂比经TAP处理的湿型砂多保留10-15%的活性粘土。AO处理还使铸造过程中湿型砂中煤成分的归一化量产生的活性炭生成量几乎增加了一倍。AO增强的活性炭生成和AO引起的粘土表面清洁为经AO处理的湿型砂提供了更高的归一化孔体积,从而具有更高的归一化间二甲苯吸附容量,即相对于浇铸金属前的条件。此外,数学分析表明,经AO处理的湿型砂在浇铸后比经TAP处理的湿型砂更好地保留了其重要性能。实际上,这意味着在浇铸金属后,经AO处理的样品提供的净性能与经TAP处理的样品大致相同,尽管经AO处理的样品在浇铸金属前含有的粘土和煤较少。这些结果与铸造厂的实际经验相符,即使用AO时,铸造厂在每个铸造周期中需要添加的补充粘土和煤更少,并且排放的空气更少。

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