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Evaluation of Engineering Controls for the Mixing Of Flavorings Containing Diacetyl and other Volatile Ingredients

机译:含二乙酰基和其他挥发性成分的调味料混合的工程控制评估

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Exposures to diacetyl, a primary ingredient of butter flavoring, have been shown to cause respiratory disease among workers who mix flavorings. This study focused on evaluating ventilation controls designed to reduce emissions from the flavor mixing tanks, the major source of diacetyl in the plants. Five exhaust hood configurations were evaluated in the laboratory: standard hinged lid-opened, standard hinged lid-closed, hinged lid-slotted, dome with 38-mm gap, and dome with 114-mm gap. Tracer gas tests were performed to evaluate quantitative capture efficiency for each hood. A perforated copper coil was used to simulate an area source within the 1.2-meter diameter mixing tank. Capture efficiencies were measured at four hood exhaust flow rates (2.83, 5.66, 11.3, and 17.0 cubic meters per min) and three cross draft velocities (0, 30, and 60 meters per min). All hoods evaluated performed well with capture efficiencies above 90% for most combinations of exhaust volume and cross drafts. The standard hinged lid was the least expensive to manufacture and had the best average capture efficiency (over 99%) in the closed configuration for all exhaust flow rates and cross drafts. The hinged lid-slotted hood had some of the lowest capture efficiencies at the low exhaust flow rates compared to the other hood designs. The standard hinged lid performed well, even in the open position, and it provided a flexible approach to controlling emissions from mixing tanks. The dome hood gave results comparable to the standard hinged lid but it is more expensive to manufacture. The results of the study indicate that emissions from mixing tanks used in the production of flavorings can be controlled using simple inexpensive exhaust hoods.
机译:业已表明,接触二乙酰(黄油调味剂的主要成分)会导致混合调味剂的工人呼吸系统疾病。这项研究的重点是评估旨在减少风味混合罐(工厂中二乙酰的主要来源)排放的通风控制。在实验室中评估了五种排风罩配置:标准铰链开盖,标准铰链开盖,铰链盖开槽,带38毫米间隙的圆顶和带114毫米间隙的圆顶。进行示踪气体测试以评估每个通风柜的定量捕集效率。多孔铜线圈用于模拟直径1.2米的混合槽内的面源。在四个排气罩排气流速(每分钟2.83、5.66、11.3和17.0立方米)和三个横向通风速度(每分钟0、30和60米)下测量捕集效率。对于排气量和横向通风的大多数组合,所评估的所有通风柜均表现良好,捕获效率超过90%。标准的铰链盖制造成本最低,并且在所有排气流量和横向通风的密闭配置下,平均捕获效率最高(超过99%)。与其他罩设计相比,铰链式盖缝式罩在低排气流量下具有最低的捕集效率。标准的铰链盖即使在打开位置也表现良好,并且为控制混合罐的排放提供了灵活的方法。圆顶罩的结果可与标准铰链盖媲美,但制造成本更高。研究结果表明,使用简单廉价的排气罩可以控制用于调味料生产的混合罐的排放。

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