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Recycling oil and steel from grinding swarf

机译:从切屑中回收石油和钢铁

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The aqueous washing process using nonionic surfactants and detergent builders was investigated for recovering cutting oil and alloy steel from swarf generated during high-speed grinding operations. Bivariate regression and the response surface methodology were applied to find the optimal concentrations of surfactant and detergent builders. Experimental results showed that 95% of oil removal could be achieved. Nonylphenol decaethoxylate (NPE-10), Tergitol 15-S-7 and 15-S-9 with low oil/water interfacial tension were most efficient in oil removal. Washed samples containing less than 3% of oil and 0.03% of phosphorous were acceptable for recycling in a smelter. A hypothetical 40-t per month processing unit installed at the manufacturer's site would break even, if 24.7 and 58.6% of the recoverable oils were recycled as cutting oils for the base and the alternative cases, respectively. Higher profit would be obtained if more recoverable oil could be recycled as cutting oil. (c) 2006 Elsevier B.V. All rights reserved.
机译:研究了使用非离子表面活性剂和洗涤剂助洗剂的水洗工艺,用于从高速研磨操作中产生的切屑中回收切削油和合金钢。应用双变量回归和响应面方法来找到表面活性剂和洗涤剂助洗剂的最佳浓度。实验结果表明,可以实现95%的除油效果。油/水界面张力低的壬基酚十乙氧基化物(NPE-10),Tergitol 15-S-7和15-S-9在除油方面最有效。含有少于3%的油和0.03%的磷的洗涤样品可以在冶炼厂循环使用。如果分别将24.7%和58.6%的可回收油作为基础油和替代油的切削油进行再循环,则假设每月在制造商现场安装的40吨加工装置将收支平衡。如果更多的可回收油可以用作切削油,则可以获得更高的利润。 (c)2006 Elsevier B.V.保留所有权利。

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