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在油漆固化中节约天然气:带状焚烧炉用溶剂废气为燃料
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作者 尹昊 田野 《四川能源》 1989年第3期38-41,共4页
关键词 油漆 固化炉 焚烧器 燃料 溶剂废气
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三级Claus硫回收装置运行中运行优化提升 被引量:1
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作者 尹超 涂后沅 《大氮肥》 CAS 2018年第6期423-425,432,共4页
介绍三级Claus硫回收装置运行中存在液硫罐底部频繁堵塞、开车过程温度调节困难以及管线腐蚀等问题,通过增设氮气加热器和过程气加热器、更换尾气蒸气夹套伴热管线以及在循环流化床锅炉设置尾气焚烧器等改造措施,优化升级,实现硫回收环... 介绍三级Claus硫回收装置运行中存在液硫罐底部频繁堵塞、开车过程温度调节困难以及管线腐蚀等问题,通过增设氮气加热器和过程气加热器、更换尾气蒸气夹套伴热管线以及在循环流化床锅炉设置尾气焚烧器等改造措施,优化升级,实现硫回收环保装置的安全稳定运行。 展开更多
关键词 Claus硫回收装置 加热 尾气焚烧器 二级转化
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硝酸异丙脂生产废水处理的设计
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作者 王玉龙 赵淑玲 《水工业市场》 2009年第6期57-58,共2页
通过对硝酸异丙脂化工生产过程产生的废水的水质分析,确定采用蒸发焚烧——生化处理法进行处理。并针对实际运行时可能出现的问题提出相应解决的方法。
关键词 硝酸异丙脂废水 蒸发焚烧器 氧化槽 设计
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三级Claus硫回收装置运行中运行优化提升 被引量:1
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作者 尹超 涂后沅 《气体净化》 2019年第2期31-33,共3页
介绍三级Claus硫回收装置运行中存在液硫罐底部频繁堵塞、开车过程温度调节困难以及管线腐蚀等问题,通过增设氮气加热器和过程气加热器、更换尾气蒸气夹套伴热管线以及在循环流化床锅炉设置尾气焚烧器等改造措施,优化升级,实现硫回收环... 介绍三级Claus硫回收装置运行中存在液硫罐底部频繁堵塞、开车过程温度调节困难以及管线腐蚀等问题,通过增设氮气加热器和过程气加热器、更换尾气蒸气夹套伴热管线以及在循环流化床锅炉设置尾气焚烧器等改造措施,优化升级,实现硫回收环保装置的安全稳定运行。 展开更多
关键词 Claus硫回收装置 加热 尾气焚烧器 二级转化
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Elemental Analysis of Fly and Bottom Ash from Burners/Incinerators in Selected Health Care Facilities in Kiambu County, Kenya
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作者 Raphael Kungu Paul Njogu Jackson Kiptoo 《Journal of Environmental Science and Engineering(A)》 2014年第5期243-249,共7页
Medical waste incinerators emit a wide range of pollutants like heavy metals, dioxins and furans. These include Pb (lead), Hg (mercury), Cd (cadmium), fine dust particles and PICs (products of incomplete combus... Medical waste incinerators emit a wide range of pollutants like heavy metals, dioxins and furans. These include Pb (lead), Hg (mercury), Cd (cadmium), fine dust particles and PICs (products of incomplete combustion). The objective was to determine the elemental composition of medical waste residue after incineration in selected hospitals in Kiambu County, Kenya. Bottom/fly ash samples were collected from the burners/incinerators in the selected health care facilities visited. The concentrations of the metals in the fly ash and bottom ash were determined using an XRF (X-ray fluorescence) spectrometer after acid digestion. The concentrations of heavy metals in the fly and bottom ash were as follows: Ti (titanium) 62-839 mg·kg^-1 and a mean of 202 mg·kg^-1 and 344 mg·kg^-1 in fly ash and bottom ash, respectively. Ca (calcium) was 37,753-204,475 mg.kg1 with means of 27,132 mg.kg-1 in fly ash and 131,185 mgg·kg^-1 in bottom ash. Zn (zinc) was 297-6,605 mg·kg^-1 with means (2,307 mg·kg^-1 in fly ash, 4,359 mg·kg^-1 in bottom ash), Pb (13-1,819 mg·kg^-1) had means of 280 mg·kg^-1 in fly ash and 291 mg-kg-1 in bottom ash. Cu (copper) (9.5-250 mg·kg^-1) had means of 83.47 mg·kg^-1 in fly ash and 98.8 mg·kg^-1 in bottom ash. The wide variations in results can be attributed to the different burners/incinerators used and different segregation methods of the medical waste. The results show that the reported levels of heavy metals could pose a health risk due to possible leaching after disposal. 展开更多
关键词 Health care waste fly and bottom ash INCINERATORS metal pollutants.
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