标题: 以本质较安全设计策略探讨LED制程氨氮回收系统之研究
Study on the Ammonia-Nitrogen Recovery System of LED Process using Inherently Safer Design Strategies
作者: 崔丕汉
陈俊勋
陈俊瑜
Tsui, Pei-Han
Chen, Chiun-Hsun
Chen, Chun-Yu
工学院产业安全与防灾学程
关键字: 本质较安全设计;HAZOP;LED制程;氨氮回收系统;Inherently Safer Design (ISD);Hazard and Operability study (HAZOP);Light-Emitting Diode (LED) process;Ammonia and nitrogen recovery system
公开日期: 2016
摘要: LED光电产业属近年快速成长的科技产业之一,但制程原物料或相关废弃物(包含废气、废水、废弃物料等)之误排放或意外事件之后果,已显然造成工安问题与生态环境之实质影响。目前国内外法规已有相当完善且严格之化学品管制与废弃物排放规范,对于工安的要求也日趋严格;因此,如何同时兼顾工安上的要求与降低废弃物对环境的冲击,更是眼前重要的课题。
本研究将以某LED光电厂为例,由制程的原料_氨(Ammonia)及其废弃物_氨氮问题进行切入,并针对该厂设置之“氨氮回收系统”加以探讨工安管理问题及其对环保的效益;另外,运用“危害与可操作性分析(HAZOP)”之方法,研讨与辨识出所有可能的作业危害,其中分析结果鉴别出19个不可接受与16个可接受但具潜在危害之工安风险;因应前述之分析结果,以“本质较安全设计(Inherently Safer Design, ISD)”的观点,导入11项设计策略,进而将35个潜在危害因子消除或降低至可接受风险范围,使该系统不仅能降低环保污染议题外,更兼具安全操作等工安效益,达到工安及环保双赢的局面。
Light-Emitting Diode (LED) optoelectronics industry is one of the fast-growing technology industry in recent years , but the process raw materials or related waste (including waste gas , waste water , waste materials, etc.) emission or consequences of misuse of the accident , has apparently caused industrial safety problems and ecological environment of the real impact. At domestic and abroad, a considerable improvement regulations and stringent regulation of chemicals and waste emissions standards has been implemented, and the industrial safety requirements are becoming more stringent ; therefore , how taking into account the safety for workplace requirements and reducing the impact of waste on the environment , are all in front of an important issue.
This study will take a LED light plant as an example, investigate its process of raw materials _ammonia, waste_ammonia, nitrogen problems and issues to be explored industrial safety management for the plant set of " ammonia recovery system " for its environmental benefits ; wherein the use of " hazard and operability study (HAZOP) " method , the research and identify all possible hazards of the job , also the result show us 19 unacceptible hazards and 16 acceptible but nearly dangerous hazards. Because of the result, we elaboration preferred coping responses; and finally, to "Inherently Safer Design (ISD)" point of view , ammonia and nitrogen recycling system safety factor which should be considered with the 11 stratages in the design , so that the system can reduce the environmental pollution issues , but also benefit both for the industrial safety design , safe operation , industrial safety and environmental protection to achieve a win-win situation.
URI: http://etd.lib.nctu.edu.tw/cdrfb3/record/nctu/#GT070261019
http://hdl.handle.net/11536/143131
显示于类别:Thesis