久久精品国产亚洲7777喷水-日韩一级美女免费视频-日本最新在线中文字幕-东京热久久影音-91精品国产久久久久蜜臀-伊人久久狠狠操-久久五月婷婷狠狠爱-国产日韩在线毛片-国产欧美精品久久久久久久,中文字幕成人精品视频,123亚洲一区二区自拍偷拍,17c国产一区二区三区

歡迎進入山東恒能環(huán)保能源設(shè)備有限公司

熱線電話

0531-69953988

分類導(dǎo)航
產(chǎn)品展示
聯(lián)系我們
山東恒能環(huán)保能源設(shè)備有限公司

聯(lián)系電話:18678860671

服務(wù)熱線:0531-69953988

聯(lián)系地址:中國(山東)自由貿(mào)易試驗區(qū)濟南片區(qū)孫村街道經(jīng)十東路33688號章錦綜合保稅區(qū)聯(lián)東U谷科創(chuàng)中心5號樓 101

液幕式濕法煙氣脫硫技術(shù)特點介紹

二氧化硫由于其對環(huán)境的破壞性和對人類健康的危害性,是當今人類面臨的主要大氣污染物之一。工業(yè)用能和電力行業(yè)中的燃煤是產(chǎn)生SO2的主要的人為來源。目前我國二氧化硫排放量居世界首位,SO2污染已成為我國經(jīng)濟可持續(xù)發(fā)展的一個重要制約因素。我國目前的濕法煙氣脫硫技術(shù)基本由國外引進,昂貴的投資和運行費用尚不能被國內(nèi)一般電廠和工業(yè)鍋爐所接受。研究和開發(fā)具有自主知識產(chǎn)權(quán)的新型煙氣脫硫技術(shù)是我國控制和解決SO2污染的重要手段。本文以此為目的在對典型濕法煙氣脫硫設(shè)備噴淋塔全面研究的基礎(chǔ)上,

Sulfur dioxide is one of the main air pollutants that human beings are facing today because of its damage to the environment and harm to human health. Industrial energy consumption and coal combustion in the power industry are the main anthropogenic sources of SO2 generation. At present, China's sulfur dioxide emissions rank first in the world, and SO2 pollution has become an important constraint factor for the sustainable development of China's economy. The current wet flue gas desulfurization technology in China is basically imported from abroad, and the expensive investment and operation costs cannot be accepted by the general domestic power plants and industrial boilers. Research and development of new flue gas desulfurization technology with independent intellectual property rights is an important means to control and solve SO2 pollution in China. Based on the comprehensive study of spray tower of typical wet flue gas desulfurization equipment,
提出的液幕式濕法煙氣脫硫技術(shù)從試驗研究、理論建模和數(shù)值模擬等方面進行了深入研究。首先,利用自行設(shè)計和搭建的噴嘴霧化測試系統(tǒng)對壓力式噴嘴的霧化特性進行了詳細的試驗研究。采用高速動態(tài)攝像儀與扇形排狀量筒結(jié)合計算機圖像處理技術(shù)對液滴粒徑分布、徑向噴淋密度分布和霧化角等進行了測量和數(shù)據(jù)處理,得到噴嘴的霧化壓力與霧化液滴粒徑、徑向噴淋密度分布及霧化角之間的關(guān)系。在此基礎(chǔ)上,試驗分析了氣體動力學參數(shù)、噴淋密度等因素對噴淋式吸收塔阻力特性的影響;以及煙氣流速、循環(huán)漿液量、液氣比、漿液pH值、煙氣入口SO2濃度和脫硫劑粒徑等因素對脫硫效率的影響。運用兩相流運動學理論,建立了吸收塔內(nèi)單顆粒液滴的運動方程。
The proposed liquid curtain wet flue gas desulfurization technology has been deeply studied from experimental research, theoretical modeling and numerical simulation. First of all, the atomization characteristics of the pressure nozzle were studied in detail by using the self-designed and built nozzle atomization test system. The droplet size distribution, radial spray density distribution and atomization angle were measured and processed with high-speed dynamic camera and fan-shaped measuring cylinder combined with computer image processing technology. The relationship between atomization pressure of nozzle and droplet size, radial spray density distribution and atomization angle was obtained. On this basis, the effects of aerodynamic parameters, spray density and other factors on the resistance characteristics of spray absorption tower were analyzed experimentally; The effects of flue gas flow rate, circulating slurry volume, liquid-gas ratio, slurry pH value, SO2 concentration at flue gas inlet and particle size of desulfurizer on desulfurization efficiency are also discussed. Based on the kinematics theory of two-phase flow, the motion equation of a single droplet in the absorber is established.
通過理論分析和計算得到了臨界霧化粒徑與煙氣流速的關(guān)系以及液滴在塔內(nèi)停留時間與粒徑、煙氣流速的關(guān)系。建立了吸收塔氣側(cè)阻力計算模型,計算表明離散相阻力是吸收段氣相阻力的主要阻力,計算與試驗數(shù)據(jù)吻合較好。得到該裝置的工況運行參數(shù)。其次,分別對順流/逆流液幕塔內(nèi)氣液兩相流動、傳熱和脫硫特性進行了全面試驗研究和理論分析。得到液幕床層高度與液體噴射速度、煙氣流速、噴嘴直徑的關(guān)系,提出順流/逆流吸收塔壓降與液氣比、煙氣流速的關(guān)聯(lián)式和液幕床床層高度的計算公式 。根據(jù)液幕床吸收塔內(nèi)氣液兩相溫度分布的規(guī)律,首次提出液幕塔內(nèi)氣液平均傳熱系數(shù)的計算公式和順、逆流塔內(nèi)氣液兩相傳熱傳質(zhì)的幾何參數(shù)范圍。
Through theoretical analysis and calculation, the relationship between critical atomization particle size and flue gas flow rate, and the relationship between droplet residence time in the tower and particle size and flue gas flow rate were obtained. The calculation model of the gas side resistance of the absorption tower is established. The calculation shows that the discrete phase resistance is the main resistance of the gas phase resistance in the absorption section, and the calculation is in good agreement with the test data. The operating parameters of the device are obtained. Secondly, the gas-liquid two-phase flow, heat transfer and desulfurization characteristics in the co-flow/counterflow liquid curtain tower were comprehensively studied and theoretically analyzed. The relationship between the height of liquid curtain bed and liquid injection velocity, flue gas velocity and nozzle diameter is obtained. The correlation formula between the pressure drop of downstream/countercurrent absorption tower and the liquid-gas ratio, flue gas velocity and the calculation formula for the height of liquid curtain bed are proposed. According to the law of gas-liquid two-phase temperature distribution in the liquid curtain absorption tower, the calculation formula of gas-liquid average heat transfer coefficient in the liquid curtain tower and the geometric parameter range of gas-liquid two-phase heat and mass transfer in the forward and reverse flow tower are proposed for the first time.
沼氣脫硫
總結(jié)歸納發(fā)現(xiàn),在試驗參數(shù)范圍內(nèi),提高煙氣流速或增大噴液量均能有效提高脫硫效率,噴液量對脫硫效率的影響較煙氣流速的影響大。得到順流/逆流塔的較佳運行工況點:在順流塔煙氣流速為6.44m/s,循環(huán)漿液量為27m3/h(液氣比為14L/m3),氧化漿池pH值為5.6~5.8,脫硫效率為93.7%;逆流塔煙氣流速為2.31m/s,循環(huán)漿液量為54m3/h(液氣比為27.5L/m3),氧化漿池pH值5.6~5.8時可使脫硫效率達到96.8%。采用鏡像分析和熱重分析方法對脫硫產(chǎn)物的物理結(jié)構(gòu)和成分分析結(jié)果表明,脫硫產(chǎn)物中石膏含量較高,但由于設(shè)備氧化工藝等問題,中間產(chǎn)物含量偏高,改進氧化系統(tǒng)增強氧化效果可得到滿足工業(yè)和民用的石膏。針對液幕塔的氣液傳質(zhì)特點,采用表面更新理論建立了塔內(nèi)SO2吸收過程的物理和數(shù)學模型。
It is concluded that within the range of test parameters, increasing the flue gas flow rate or increasing the liquid injection volume can effectively improve the desulfurization efficiency, and the effect of liquid injection volume on the desulfurization efficiency is greater than that of the flue gas flow rate. The better operating conditions of the downstream/countercurrent tower are obtained: the flue gas flow rate of the downstream tower is 6.44m/s, the circulating slurry volume is 27m3/h (the liquid-gas ratio is 14L/m3), the pH value of the oxidation slurry tank is 5.6~5.8, and the desulfurization efficiency is 93.7%; The flue gas flow rate of the countercurrent tower is 2.31m/s, the circulating slurry volume is 54m3/h (liquid-gas ratio is 27.5L/m3), and the desulfurization efficiency can reach 96.8% when the pH value of the oxidation slurry tank is 5.6~5.8. The physical structure and composition of desulfurization products are analyzed by image analysis and thermogravimetric analysis. The results show that the content of gypsum in desulfurization products is high, but the content of intermediate products is high due to equipment oxidation process and other problems. Improving oxidation system to enhance oxidation effect can meet the requirements of industrial and civil gypsum. According to the characteristics of gas-liquid mass transfer in the liquid curtain tower, the physical and mathematical models of SO2 absorption process in the tower were established using the surface renewal theory.
該模型全面考慮了漿液中各種離子以及各種有限速率的反應(yīng),同時考慮了氣相傳質(zhì)阻力、液相傳質(zhì)阻力和石灰石溶解阻力的影響。通過模型分析確定了濕法煙氣脫硫工藝中吸收段和氧化段的反應(yīng)機理。模型計算得到了逆流式液幕塔的脫硫效率與煙氣流速和液氣比的關(guān)系、煙氣中SO2濃度隨吸收塔高度的變化曲線和循環(huán)漿液pH值隨高度的變化規(guī)律。對塔內(nèi)各段SO2的吸收速率進行了分析,發(fā)現(xiàn)液柱上升段對SO2吸收較少,液滴下落階段是SO2吸收的主要階段。逆流式液幕床層底端SO2的吸收為液相傳質(zhì)阻力控制。計算結(jié)果與試驗結(jié)果吻合較好,基本上反映了反應(yīng)塔內(nèi)的實際過程。
The model considers all kinds of ions in the slurry and all kinds of finite rate reactions, as well as the effects of gas phase mass transfer resistance, liquid phase mass transfer resistance and limestone dissolution resistance. The reaction mechanism of the absorption section and the oxidation section in the wet flue gas desulfurization process was determined by model analysis. The relationship between desulfurization efficiency of countercurrent liquid curtain tower and flue gas flow rate and liquid-gas ratio, the variation curve of SO2 concentration in flue gas with the height of absorption tower and the variation law of pH value of circulating slurry with the height were obtained by model calculation. The absorption rate of SO2 in each section of the tower was analyzed. It was found that the rising section of the liquid column absorbed less SO2, and the falling phase of the liquid drop was the main phase of SO2 absorption. The absorption of SO2 at the bottom of the countercurrent liquid curtain bed is controlled by the resistance of liquid phase mass transfer. The calculated results are in good agreement with the test results, and basically reflect the actual process in the reactor.
采用GAMBIT軟件構(gòu)造三維網(wǎng)格模型,運用Fluent 6.0軟件對液幕塔內(nèi)氣液兩相流動和傳熱過程進行了數(shù)值模擬。采用離散相模型,考慮兩相間的相互作用,在歐拉坐標系下采用RNG k-ε模型來描述氣相湍流,在拉格朗日坐標系下對液滴顆粒相進行描述,建立液幕塔內(nèi)氣液流動和傳熱的三維數(shù)學模型。
GAMBIT software was used to construct a three-dimensional mesh model, and fluent 6.0 software was used to simulate the gas-liquid two-phase flow and heat transfer process in the liquid curtain tower. The discrete phase model is adopted, and the interaction between two phases is considered. RNG k is adopted in Euler coordinate system- ε The model is used to describe the gas phase turbulence, describe the droplet particle phase in the Lagrange coordinate system, and establish a three-dimensional mathematical model of gas-liquid flow and heat transfer in the liquid curtain tower.
數(shù)值模擬了不同液氣比時塔內(nèi)氣液流動和傳熱狀況,計算與試驗結(jié)果吻合較好。表明所建立的模型和采用的算法具有良好的預(yù)測性和可靠性。針對逆流塔內(nèi)煙氣偏流現(xiàn)象進行了流場優(yōu)化設(shè)計,計算表明當煙氣入口通道與塔體連接處夾角為圓角時,塔內(nèi)氣液流場分布均勻性較好。
The gas-liquid flow and heat transfer in the tower at different liquid-gas ratios were numerically simulated, and the calculated results were in good agreement with the experimental results. It shows that the model and the algorithm have good predictability and reliability. The flow field optimization design is carried out for the phenomenon of flue gas deflection in the countercurrent tower. The calculation shows that when the angle between the flue gas inlet channel and the tower body is a fillet, the gas-liquid flow field in the tower is well distributed.

相關(guān)產(chǎn)品 我們的存在,是為了更好的服務(wù)于沼氣等可燃氣體凈化及利用行業(yè)
熟女人疌一级毛片-17c16.app,,美女xxnxx国产91-北条麻妃吹潮视-国产美女裸体视频 | 男模淫交(高H)-伊人超碰-免弗直播村委办公室肏屄视频-porn日本睡熟 | 爱奇艺视频视频,视频网站,高清视频,电影,电视剧,动漫,综艺,音乐-www·sao-con淫色网-亚洲伊人久久综合精品-国产精品操屄屄 | 中文字幕无码日韩专区免费-欧美精品视频xxxxx在线-黑人初解禁黑人巨大マラ-扒开黑女人大阴帝视频播放 | 日本大胆人体成人网站-欧美中出影院-男男互c开荤粗肉尿在里面视频-国产大胸美女被操的视频 | 51AV影院啪影院-中国人黄色录像-66m-66摸成人视频-人妻熟女-五月丁香she38p | 操东北女人-强制扩张高潮中出视频-1204免费手机你懂的毛片视频-被强壮的公1狂躁到抽搐 | 肉文小说91视频-不雅视频午夜亚洲一区-A级片,国产精品-欧美23p | 国产巨作麻豆欧美亚洲综合久久-x8x8视频在线观看-女生被男人插下面免费视频动漫-free性满足HD性公牛HD | 日韩一区二区无码大片-我要看男人的鸡儿日批呢黄拆片-日韩无码AV第1页-大地影视资源中文第二页 | jizzjizz在线中国-超清免费观看电视剧 天龙特攻队在线观看免费下载-色色精品视频-操老妇女老熟女中文 | 免费观看女人自慰片舌头-色驴888av-国产毛片日韩精品无码一-色熟女导航 | 五月丁香色婷婷 美女裸体app-97成人伦-大香伊蕉在人线国产2019-BD国语高清免费观看 国产一区二区免费资源在线观看 | 美女被插视频网站-BD在线观看电视 亚洲欧美日本一区二区三区-亚洲欧美日韩国产精品影院,精品亚洲综合一区二区三区-水野优香二区三区四区 | 九一桃色视频-综合网激情-蓝光电影免费在线-国产一级a毛一级毛片无码免费真人久久 | www.干456-欧美色图一区二区三区-一级AV在线-妃光莉AV亚洲一区二区 | 综合色区亚洲熟妇另类-精品粉嫩小BBwBBwBBw-午夜理论片福利在线观看-欧美wwww | 赵丽颖毛片-上床网站在线播放-M痴女北条麻妃のあ在线播放-又骚又嫩的骚B | 东北浪妇大荫蒂大叫-黄色xxxxxxxxxxxx日本人-中文欧美性爱在线 亚洲免费电影网站-Free性中国HD国语露脸 | 亚洲人成电影福利在线播放-大香蕉丝袜诱惑-日韩精品成人a在线观看-搡老女人老91妇女老熟女 | 久久99精品久久久久久国产-伊人久久网国产伊人xxxxhdi8日本hd-刮伦短篇小说 - JJXXXAV-亚洲A∨ 无套中出丰满人妻无码-扒开双腿强行扩宫视频 | HD免费在线观看 国产v日韩v欧美v精品专区-丰满熟妇大屁屁BBBBB-中国老太婆一级特黄大-东北熟女色 | 日本一道不卡-老牛成人网站-7799天天综合网日日-1v1高辣视频 | 亚洲日本成人一区二区-老熟女性爰网-天天想你天天干你-爆插熟女 小林真梨香人妻熟妇中出-日无嘛vvv区-天天操BBw-在线国产喝尿 | 欧美videossex极品-干人妻网-中文字幕无码乱人伦-操熟女大屁股 | 操东北妓女-大桥未久黑人mibd445封面-亚洲 女同志 年轻 热 free-V本道V视频 | BD英语日韩免费观看 无码精品国产第1页-亚洲欧美另类日本久久国产真实乱对白-720手机在线观看 酷百影院-少妇搡BBBB搡BBB搡澳门 | 国产精品欧美天堂网不卡-扒开腿狂揉 大胸吸乳 视频网站-啊啊啊啊啊啊啊啊啊啊啊我要啊啊啊啊啊啊一区a v-亚洲一级片四十区 | BD国语免费观看韩国 国产精品**无码免费下载-农村寡妇精品一区二区电影-欧美色图38p-偷看出轨麻麻黑人 | 中国精品性HD-91丨九色丨海角社区-中国女人一级视频-黄色羞羞羞 美女理发一级影院-日韩精品视频在线观看メイド 2021国产在线观看无码-女生祼体搞黄网站-91婷婷丝袜肉丝在线播放 | 中亚欧美精品免费观看-在线播放免费人成毛片软件-可以免费看女生下面的网站-校园激情男人的天堂 国产美女高潮欲仙欲死-亚洲裸体多毛xxxxxxxx-国产一区日韩二区欧美三区 xxxx69hd老师-去干网黄色 | 风韵人妻丰满熟妇老熟女图片-神马午夜电影-欧美色图俺去了-中文无码在线观看高清免费 | 三上悠亚被爆乳狂揉AV片-久热中文字幕在线精品首页-无码性中文字幕福利视频免费-老师 性感 大胸 制服 诱惑 丰满 裸 自慰 | 亚洲欧美另类中文字幕 -欧美成人免费高清二区三区-黑人XXXXBBBB-青青视屏三级片 | 女厕精品偷拍7777777-欧美成人美女爆操视频英语老师-成人3d动漫牛牛-日本激情一区二区三区 | 中文字幕av无码不卡免费-越南美女肏逼欣赏-国产秋霞理论久久久电影-国产帅哥gv在线 | 人妻被黑人侵犯中文字幕夜色-操日本人美女-五十路丰满人妻熟女中文字幕-日韩日B穴 | 色综合久久中文字幕-继攵女乱h客厅调教play-被女同囚禁的搜查官-迷j极品灌醉白嫩在线 | 医院护士撒尿chinese-老女人做爰全A片-综合久久午夜无码鲁丝片久久嫩草婷婷精华液-日本乱妇乱子视频 | 少妇洗澡被进深处爽A片动态图-中国宜红院黄片-亚洲一级毛片-亚洲爽爽一区二区三区 | 8060yy中文字幕无码视频-91精品国产中文字幕夏目彩-伊人影院焦久-中文字幕黑人 |