久久久免费网站I日韩高清在线观看I888超碰I一区二区三区精品I影音在线观看最新avI孕妇孕交一区二区三区I人妻少妇I久久精品麻豆Iaⅴ精品av导航

Analysis of the Reasons for the excessive temperature of the Flue gas at the Outlet of the suction Tower in the operation of the Sulfuric Acid Plant

Preface

Consequences of flue gas overheating

During the operation of the sulfuric acid plant, the flue gas at the outlet of the first suction tower may experience an over-temperature phenomenon. When the temperature rises, the thermal equilibrium of the subsequent conversion is disrupted, resulting in the temperature of the third and fourth conversion stages remaining persistently high, especially when operating under high-temperature loads or high gas concentration conditions. If the conversion temperature remains at a high level for a long time, the ignition temperature of the catalyst will rise, which is not conducive to the normal operation of the device, and at the same time, the service life of the catalyst will also be shortened. In addition, if the flue gas temperature at the outlet of the first suction tower continues to rise, it will cause irreversible damage to the demister inside the tower. Under normal circumstances, fiber demisters can operate stably for a long time at temperatures below 85℃. However, if the temperature exceeds 150℃, they will be quickly burned out and lose their demisting function. If the flue gas contains acid mists, as the temperature rises, the corrosion rate of the equipment will also increase accordingly.

I. Analysis of the Causes of Flue Gas Overheating

With the continuous development of the sulfuric acid industry and the continuous improvement of thermal energy utilization rate, the traditional one-absorption tower has gradually been replaced by high-temperature absorption towers to utilize more absorbed thermal energy. The control of the flue gas temperature at the outlet of the high-temperature absorption tower is also more crucial. The main reasons for the over-temperature of the outlet flue gas are as follows:

First, the influence of circulating acid temperature: The circulating acid temperature is a key parameter for regulating the outlet flue gas temperature. After entering the packing layer, sulfuric acid comes into direct contact with the flue gas. While absorbing sulfur trioxide, it also absorbs the heat in the flue gas. If the contact area is large enough and the contact time is long enough, the excess heat in the flue gas will be completely absorbed by the sulfuric acid, thus achieving temperature equilibrium. In an ideal state, we can assume that the temperature of the flue gas leaving the packing layer is almost the same as that of the sulfuric acid entering the packing layer. If the acid temperature at the top of the tower is relatively high, the temperature of the flue gas leaving the tower will also increase accordingly. For high-temperature heat recovery towers, to fully utilize the high calorific value heat, the primary acid temperature is usually controlled at a relatively high level, while the secondary acid temperature plays a crucial role in controlling the outlet flue gas temperature. Through thermal energy calculation (this calculation method can be obtained by downloading the parameter query in the "Digital Sulfuric Acid APP"), the flue gas temperature at the outlet of the high-temperature heat recovery tower is simultaneously affected by the primary acid temperature and the secondary acid temperature. Therefore, when the secondary acid temperature is relatively high, the flue gas temperature at the outlet of the high-temperature absorption tower will also increase accordingly.

Second, the influence of circulating acid volume and acid concentration: As mentioned earlier, the contact time between sulfuric acid and flue gas needs to be long enough, which requires ensuring a certain scale of circulating acid volume. The circulating acid volume is a key parameter affecting the absorption efficiency. Generally, the circulating acid volume is determined by the acid concentration difference between the upper and lower towers or the acid spray density. The acid concentration difference of a traditional single-suction tower is generally 0.2-0.4%, and the spray density is 15-25m³/m²·h. If the acid flow rate is low, the absorption efficiency will decline, and at the same time, the temperature of the flue gas at the outlet will rise. For high-temperature absorption towers, in order to fully utilize heat, the acid concentration difference is usually maintained at the upper limit of 0.4% or higher, but its absorption efficiency can only reach about 90%, and the flue gas temperature cannot be effectively controlled. Therefore, a two-stage absorption process was introduced, that is, the flue gas after the first-stage absorption is further absorbed by a certain amount of secondary acid. This not only ensures the absorption efficiency but also reduces the flue gas temperature. Due to the excessively high acid temperature inside the high-temperature absorption tower and the presence of air in the sulfuric acid at the outlet of the diluter, it is difficult to measure the sulfuric acid concentration, which in turn leads to higher measurement results, resulting in a decrease in absorption rate and an increase in flue gas temperature. Therefore, precise measurement of acid concentration is the key guarantee for reducing the excessively high temperature of flue gas. The high-temperature acid concentration analyzer of Lizhenglai Company can effectively solve the problem of acid concentration measurement in high-temperature environments.

(High-temperature acid concentration analyzer)

Third, the influence of the acid separator and packing: As mentioned earlier, the contact area between sulfuric acid and flue gas needs to be large enough. To ensure this condition, it is first necessary to guarantee the uniformity of acid distribution, which requires the use of efficient acid separation equipment to evenly cover the surface of the packing material. At present, the acid separator can achieve a distribution density of up to 46 points per square meter. Secondly, to further increase the contact area, it is necessary to rely on the function of packing. Currently, the specific surface area of packing can reach 140 square meters per cubic meter, ensuring that the acid flows on the surface of the packing and fully contacts with the flue gas.

Therefore, the acid separator and packing are the key factors influencing the outlet temperature of flue gas. If the acid distribution is uneven, it will cause the temperature of the flue gas at the outlet to rise. Improper selection, damage or collapse of packing materials can also cause the temperature of the flue gas at the tower outlet to rise.

Fourth, other reasons: The contact time is also affected by the flue gas flow rate. If the flow rate is too fast, it is not conducive to the absorption of sulfuric acid (including energy absorption). Therefore, the selection of tower diameter is crucial, and the gas volume also needs to be precisely controlled. If the temperature of the flue gas entering the tower is too high, it will cause the temperature of the flue gas leaving the tower to exceed the standard. Uneven distribution of conversion rates: If the conversion rate of the first phase is too high and the absorption capacity of the first phase tower exceeds the upper limit, resulting in incomplete absorption, it will also cause the temperature of the flue gas leaving the tower to exceed the standard.

主站蜘蛛池模板: 国产精品久久精品国产 | wwwxxx在线播放 | 亚洲v国产v天堂a无码二区 | 亚洲日韩色图 | 日韩精品一区二区三区亚洲综合 | 曰欧一片内射vα在线影院 成人福利在线 | 一本大道香一蕉久 | 欧美性生交xxxxxdddd | 亚洲精品国产一区二区贰佰信息网 | 国产成人亚洲综合无码dvd | 天天操夜夜躁 | 新片速递丨最新合集bt伙计 | 亚洲精品1卡2卡三卡23卡 | 国产精品jk白丝av网站 | 亚洲第一色在线 | av人摸人人人澡人人超碰小说 | 日本老太婆做爰视频 | 好吊色国产欧美日韩免费观看 | 亚洲人成高清 | 2019中文字幕在线观看 | 色拍拍国产精品视频免费观看 | 人与禽性视频77777 | 国内视频一区 | 日韩一区二区三区视频在线观看 | 国产欧美一区二区三区视频 | 国精产品99永久一区一区 | 玖玖在线免费视频 | 精品美女久久久久 | 国产ts丝袜人妖系列视频 | 日韩精品无码专区免费视频 | 丰满少妇弄高潮了www | 精品亚洲国产成人av制服丝袜 | 国产又粗又爽又猛又大的动漫片 | 日本特级黄色录像 | 国语自产偷拍在线观看 | 久久99一区| 亚洲最大综合久久网成人 | 美女自卫慰黄网站 | 久久草在线视频 | 九色国产蝌蚪 | 免费一级黄色 | 比色毛片 | 男女免费观看在线爽爽爽视频 | 日本亚洲精品色婷婷在线影院 | 精品国产鲁一鲁一区二区张丽 | 靴奴—视频丨vk | 久久久久国色av免费看 | 久久99久久99精品免视看 | 91九色国产ts另类人妖 | 茄子视频A| 蜜桃色视频 | 亚洲欧美丝袜精品久久 | 国产做爰全免费的视频 | 久久精品欧美日韩精品 | 瑟瑟在线观看 | 亚洲精品无码成人网站 | 久久99国产精品久久99果冻传媒新版本 | 国产成人av在线影院 | 男女性潮高清免费网站 | 黄色a在线 | 中文无码一区二区不卡αv 全亚洲最大的免费影院 | 国产aaa大片| 一级黄色毛片视频 | 日韩v欧美v中文在线 | 午夜爽视频| 日本久久精品视频 | 在线观看国产成人av片 | 五月天亚洲综合 | 99久久人妻精品免费一区 | 精品久久一区二区乱码 | 免费网站看sm调教视频 | 男女性生活毛片 | 亚洲色欲色欲www在线丝 | 狠狠色婷婷丁香综合久久韩国 | 天天综合色天天综合色hd | 婷婷久久综合九色综合97最多收藏 | 干欧美少妇 | 福利所第一导航福利 | 好吊操视频这里只有精品 | 国产69久久久欧美一级 | 三级黄色在线视频 | 国产精品欧美大片 | 日本一区二区三区视频在线观看 | 婷婷久久综合九色综合88 | 日韩视频一区二区在线观看 | 亚洲一本二卡三卡四卡乱码 | 午夜精品久久久久久不卡8050 | 97干在线视频 | 久操青青| 精品乱码久久久久久中文字幕 | 国内精自线一二三四在线看 | 狼人青草久久网伊人 | 国产精品天天干 | 无码人妻一区二区三区一 | 夜鲁很鲁在线视频 | 午夜精品偷拍 | tushy超清4k欧美极品在线 | 国产综合亚洲区在线观看 | 中国少妇大p毛茸茸 |