Determination of Optimum Conditions with Regression Analysis within the Scope of 6 Sigma for Eliminating Caking Problem in Nitrogen Fertilizers

A. O. Gezerman, Mahmut Nedim Dolunay
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Abstract

In the nitrogen fertilizer industry, the nitrogen content of chemical fertilizers is an important parameter that determines its physical strength, storage capacity and storage life. The production variables that determine this physical parameter, which is characterized as degradation and caking, can be expressed as the characteristics that determine the course of the chemical process. Although there are improvements in reaction conditions to solve the caking problem, the cost problem of the manufacturer limits the processing conditions. For this reason, in order to minimize the cost problem in any nitrogen fertilizer production process, the analysis of working conditions and the development of quality management systems accordingly constitute the focus of the manufacturer. In this study, within the scope of lean production, regression analysis of the 6-sigma quality method system was performed, the process parameters during the production were analyzed, the optimum conditions were determined and the effect on the production cost was investigated by comparing with the current production conditions.
用回归分析确定6 σ范围内解决氮肥结块问题的最佳条件
在氮肥工业中,化肥的含氮量是决定其物理强度、贮存能力和贮存寿命的重要参数。决定这一物理参数的生产变量,其特征是降解和结块,可以表示为决定化学过程过程的特性。虽然改进了反应条件来解决结块问题,但生产厂家的成本问题限制了加工条件。因此,为了最大限度地减少氮肥生产过程中的成本问题,对工作条件的分析和相应的质量管理体系的制定构成了制造商的重点。本研究在精益生产范围内,对6-sigma质量方法体系进行回归分析,对生产过程中的工艺参数进行分析,确定最佳工艺条件,并与现有生产条件进行对比,考察其对生产成本的影响。
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