Analysis Noise Level in Production the Palm Oil: A Case Study

N. Panjaitan, U. Panggabean
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引用次数: 0

Abstract

Excessive noise exposure during the manufacturing process is a widespread issue. This research aimed to analyze noise exposure in the kernel recovery station in the manufacturing process of palm oil. We conduct some measurements and calculations for noise exposure analysis to get the Equivalent Noise Level (Leq) value during the daytime for each measurement point. The noise measurement was conducted on four machines, including a depericarper and polishing drum machine, ripple mill machine, silo dryer machine, and clay bath machine. In addition, this research showed noise contour mapping to define the noise distribution.  The results of this research are that only the clay bath machine had Ls below the threshold. The clay bath machine workstation has good noise levels. The Depericarper, Polishing Drum, Ripple Mill, and Silo Dryer Machine must be quieter. Thus, this research used the Hierarchy of Control Approach to reduce and control hazardous noise exposure. The stage of HOC includes elimination, substitution, engineering, administrative control, and Personal Protective Equipment (PPE).
棕榈油生产中的噪音水平分析:一个案例研究
在制造过程中过度的噪音暴露是一个普遍存在的问题。本研究旨在分析棕榈油生产过程中核回收站的噪音暴露情况。我们对噪声暴露分析进行了一些测量和计算,以获得每个测点在白天的等效噪声水平(Leq)值。在4台机器上进行了噪声测量,包括脱纸机和抛光滚筒机、波纹磨机、筒仓干燥机和粘土浴机。此外,本研究采用噪声等值线图来定义噪声分布。研究结果表明,只有泥浴机的Ls值低于阈值。泥浴机工作站具有良好的噪音水平。脱纸机、抛光鼓、波纹磨和筒仓烘干机必须更安静。因此,本研究采用层次控制方法来减少和控制有害噪声暴露。HOC阶段包括淘汰、替代、工程、行政控制和个人防护装备(PPE)。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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