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糖精鈉的制作流程設(shè)計(jì)-閱讀頁

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【正文】 口和電口、百兆、千兆和萬兆端口,以及多模光纖接口和長(zhǎng)距離的單模光纖接口等。其軟件應(yīng)具有獨(dú)立知識(shí)產(chǎn)權(quán),應(yīng)保證其后續(xù)研發(fā)和升級(jí),以保證對(duì)未來新業(yè)務(wù)的支持。 ④可管理性一個(gè)大型網(wǎng)絡(luò)可管理程度的高低直接影響著運(yùn)行成本和業(yè)務(wù)質(zhì)量。⑤安全性隨著網(wǎng)絡(luò)的普及和發(fā)展,各種各樣的攻擊也在威脅著網(wǎng)絡(luò)的安全。⑥QoS控制能力隨著網(wǎng)絡(luò)上多媒體業(yè)務(wù)流(如語音、視頻等)越來越多,人們對(duì)核心交換節(jié)點(diǎn)提出了更高的要求,不僅要能進(jìn)行一般的線速交換,還要能根據(jù)不同的業(yè)務(wù)流的特點(diǎn),對(duì)它們的優(yōu)先級(jí)和帶寬進(jìn)行有效的控制,從而保證重要業(yè)務(wù)和時(shí)間敏感業(yè)務(wù)的順暢。主要是在參照整體網(wǎng)絡(luò)設(shè)計(jì)要求的基礎(chǔ)上,根據(jù)網(wǎng)絡(luò)實(shí)際帶寬性能需求、端口類型和端口密度選型。為使資金的投入產(chǎn)出達(dá)到最大值,能以較低的成本、較少的人員投入來維持系統(tǒng)運(yùn)轉(zhuǎn),網(wǎng)絡(luò)開通后,會(huì)運(yùn)行許多關(guān)鍵業(yè)務(wù),因而要求系統(tǒng)具有較高的可靠性。作為骨干網(wǎng)絡(luò)節(jié)點(diǎn),中心交換機(jī)、匯聚交換機(jī)和廠區(qū)交換機(jī)必須能夠提供完全無阻塞的多層交換性能,以保證業(yè)務(wù)的順暢。選型主要選擇的是重氮罐和氨化罐的選型,而這兩個(gè)均需要在里面加入攪拌器,下面粗略介紹一下攪拌器的分類攪拌器的分類方法有很多,這里介紹以下幾種: 按槳葉攪拌結(jié)構(gòu)分為平葉、斜(折)葉、彎葉、螺旋面葉式攪拌器。根據(jù)安裝要求又可分為整體式和剖分式,便于把攪拌器直接固定在攪拌軸上而不用拆除聯(lián)軸器等其他部件。用于低黏流體的攪拌器有:推進(jìn)式、漿式、開啟渦輪式、圓盤渦輪式、布魯馬金式、板框漿式、三葉后完式等。 按流體流動(dòng)形態(tài)分為軸向流攪拌器和徑向流攪拌器。推進(jìn)式攪拌器是軸流型的代表,平直葉圓盤渦輪攪拌器是徑流型的代表,而斜葉渦輪攪拌器是混合流型的代表。因?yàn)楹馑惆邀}酸和水分離開來計(jì)算,所以此時(shí)的鹽酸基本上體積忽略不計(jì)。根據(jù)H/Di及y計(jì)算重氮罐的體積由于得到了然后帶入值所以有V==所以設(shè)計(jì)表明設(shè)計(jì)取值是符合要求的。根據(jù)H/Di及y計(jì)算重氮罐的體積由于得到了然后帶入值所以有V==因?yàn)檫@個(gè)數(shù)據(jù)大于預(yù)定值所以設(shè)計(jì)表明設(shè)計(jì)取值是符合要求的。根據(jù)任務(wù)要求,在某糖精鈉廠的一個(gè)年產(chǎn)3000噸糖精納的車間,綜合考慮①符合糖精鈉總體規(guī)劃和附近工業(yè)企業(yè)相結(jié)合。③滿足工業(yè)情況下做到經(jīng)濟(jì)合理④美化廠房排列,保證生產(chǎn)的連續(xù)性和安全性,使作業(yè)簡(jiǎn)潔,方便避免交叉。⑥動(dòng)力車間,熱能靠近負(fù)荷中心。⑧建筑物的布置符合《建筑設(shè)計(jì)防火規(guī)定》和《工業(yè)企業(yè)衛(wèi)生標(biāo)準(zhǔn)》⑨符合國(guó)家有關(guān)衛(wèi)生防火和個(gè)人安全等的要求。 1)生產(chǎn)設(shè)備要按工藝流程的順序配置,在保證生產(chǎn)要求、安全及環(huán)境衛(wèi)生的前提下,盡量節(jié)省廠房面積與空間,減少各種管道的長(zhǎng)度。 3)保證車間內(nèi)交通運(yùn)輸及管理方便。 4)廠房結(jié)構(gòu)要緊湊簡(jiǎn)單,并為生產(chǎn)發(fā)展及技術(shù)革新等創(chuàng)造有利條件。 2)注意改善操作條件,對(duì)勞動(dòng)條件差的工段要充分考慮朝向、風(fēng)向、門窗、排氣、除塵及通風(fēng)設(shè)施的安裝位置。 3)輔料制備車間應(yīng)與適用設(shè)備靠近,但如液氯汽化、制漂等有污染和粉塵部分,應(yīng)有墻與車間隔開,應(yīng)有通風(fēng)等必要的設(shè)施。高壓容器等有爆炸危險(xiǎn)的設(shè)備應(yīng)布置在室外。 5)設(shè)備布置在樓面還是布置在底層,要視樓面荷載及是否利用位差輸送等因素而定。 相互聯(lián)系的設(shè)備在保證正常運(yùn)行、操作、維修、交通方便和安全條件下,盡可能靠近。設(shè)備的安裝位置不應(yīng)騎在建筑物的伸縮縫或沉降縫上。 要統(tǒng)一安排車間所有操作平臺(tái)、各種管路、地溝、地坑及巨大的或震動(dòng)大的設(shè)備基礎(chǔ),避免同廠房基礎(chǔ)發(fā)生矛盾。 合理安排廠房的出入口,每個(gè)車間出入口不應(yīng)少于2個(gè),廠房大門的寬度應(yīng)比所需通過的設(shè)備寬度大200mm左右,比滿載的運(yùn)輸工具寬度要大600~1000mm,總的寬度不應(yīng)小于2000~2500mm。 遵守國(guó)家的有關(guān)勞動(dòng)衛(wèi)生及防火安全等方面的各項(xiàng)規(guī)定,《建筑設(shè)計(jì)防火規(guī)范》。 在滿足生產(chǎn)工藝需要的同時(shí),設(shè)備布置要盡量符合建筑結(jié)構(gòu)標(biāo)準(zhǔn)化要求,18m以下,采用3m的倍數(shù),18m以上采用6m的倍數(shù),多層廠房跨度和柱距均以6m進(jìn)位,高度應(yīng)為300mm的倍數(shù)。堿母液廢水可先回收甲醇,之后與含硫酸銅廢酸水反應(yīng)回收鄰氨基苯甲酸。排放的尾氣毒性都比較大,尾氣回收工作是個(gè)重點(diǎn),可回收亞硫酸鈉、次氯酸鈉、亞硝酸鈉及氨水。在這次設(shè)計(jì)中,我通過查閱大量資料,和同組同學(xué)交流總結(jié)經(jīng)驗(yàn),從老師那里請(qǐng)教方法方式,還有查閱資料的手段,使自己學(xué)會(huì)了不少知識(shí),收獲良多。相信對(duì)我將來會(huì)有非常好的目前無法感知到的優(yōu)點(diǎn)。參考文獻(xiàn)[1]凌關(guān)庭.食品添加劑手冊(cè)[M].北京:化學(xué)工業(yè)出版社,1997.[2]化學(xué)工業(yè)出版社圖書編輯室.化工生產(chǎn)流程圖解[M].北京:燃料化學(xué)工業(yè)出版社,1968.[3]徐克勛.精細(xì)有機(jī)化工原料及中間體手冊(cè)[M].北京:化學(xué)工業(yè)出版社,1998.[4]李美菊,蒲帥天,張萬青,等.糖精鈉生產(chǎn)工藝評(píng)述[J].廣東化工,2007,34(1):7072.[5]林春綿,徐明仙,陶雪文.精細(xì)化工產(chǎn)品手冊(cè)老師們用自己的人格和知識(shí)感染著我,溫暖著我,讓我更加明白作為一個(gè)大學(xué)生應(yīng)該具有的底線與品質(zhì),并且也學(xué)會(huì)了關(guān)于我們應(yīng)用化學(xué)專業(yè)的很多知識(shí),并成功在這次畢設(shè)設(shè)計(jì)中得到展現(xiàn)。并且在這種理念之下,李老師對(duì)我們進(jìn)行了盡職盡責(zé)的教誨,雖然我知道李老師同時(shí)要帶好多好多的學(xué)生,并且他自己也有自己的研究課題需要天天泡在實(shí)驗(yàn)室了,但是他卻依然沒有覺得我們很厭煩,每個(gè)星期都關(guān)注我們的進(jìn)程,無論我們有什么問題,他都先仔細(xì)聆聽,并且從根本上告訴我們我們有什么錯(cuò)誤,我深深的被他的淵博的學(xué)識(shí)折服了,他那象征著知識(shí)的面龐照耀我們前進(jìn)的道路。感謝李老師,感謝諸位老師,給我這個(gè)機(jī)會(huì)讓我應(yīng)用我這幾年的知識(shí),讓我可以在畢業(yè)的前夕,審視自己,理解自己。engineering electrodeposition issuperior technique for producing nanocrystalline with fullelectrodeposited nanocrystalline materials .greatcoatings due to the high brightnessgrain size, such as mechanical, thermal stability,corrosion and magnetic properties pared withinvestigated by quite a lot of researcher Mishrarecently investigated the effect ofand Basu studied the effect of grain size on tribologicalelectrodeposited coatings were greatly influenced by thethat smaller grain size can be obtained by the addition ofin different amounts,in the case of Ni electrodeposition But few studies had been undertaken to developproperties of nanocrystalline Ni coatings systemically Therefore,the purpose of this paper is to study the effectamountsand corrosion resistance of ncNi coatings.1 Experimental procedureThencNi coatings were prepared by pulse6H2O 45g / L,H3BO340g / L,C12H25OSO2Na0. 05 g / used reagents of the solutions were analytically experiments were performed at 50 ℃with a current density of 10 A / cycle of 20%solutions were kept at 3.of plate(99%)copper was cathode with dimension of 50 mm 40 mm 2 the electrodeposition,the copperalkaline,acid and distilled water in turn.After the other parameters were fixedconcentrations of saccharin sodium were 0,5,10,15,20,25 g / L, the experiments,allcoating were investigated by a JSM6360Lv scanningtransmission electron microscopevoltage of 200 crystal structure of ncNi(XRD) with a Cu Kα size of the(111) Xray diffractionScherrer equation.L = kλ / βcosθwhere β is the full width half maximadiffraction angle89) is the( = 0.wavelength of the radiation used.Microhardness of the coatings was determined by a100gf and loading time is 15 test method was coating thermal stability was estimated by a DSC200F3 differential scanning calorimeter ( DSC) in a nitrogen atmosphere with a 20 ℃ min1 heating coatings was measured by a PS168B electrochemical5 wt% NaCl solution.2 Results and discussion Microstructure of ncNi coating XRD patterns of ncNi coatings deposited atAs evidence in Fig. 1are apparently widened and then sharpened with thethat the grain sizes of ncNi coatings decreased firstlyexhibit face centered cubic(fcc) lattice with(111)hkl are the diffraction intensity of thecrystal plane(hkl)in the deposit and standard sample,respectively. n is the number of reflection faces in thethan 1.it indicates the existence of a preferredvarious saccharin sodium concentrationsat different saccharin sodium concentrationsAccording to XRD patterns,the grain sizes and TCIt isdecreased with the increase of the concentration till 10concentration is greater than 10 g / sodiumthe mean free path for lateraldecrease in the coefficient of diffusion of in ions at the steady state and thus an increase in theAs a consequence,twodimensional growth rates are reduced, leading tothan 10 g / Lthe overpotential of cathode , therate decreases.As a result,the grain size 1 also shows the relationship between thetexture coefficients of ncNi a saccharinthe TC values for(111)0orientation of ncNi electrodeposits is the dual ( 111 )(111)concentrations,starts to develop.Fig. 2 Surface morphology of ncNi coatings deposited at differentof the electrodeposited ncNi with concentration ofis anomalistic cell deposit with some defects withoutinternal stresses generated during electrodeposition,which could be eliminated in the presence of saccharinsodium concentration less than 15 g / L, theth
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