Ukuhlelwa kwe-electrostatic precipitator
Ngokweendlela ezahlukeneyo zokucoca zinokwahlulwa zibe yi-precipitator eyomileyo ye-electrostatic, i-precipitator emanzi ye-electrostatic, inkungu yenkungu umqokeleli we-electrostatic kunye ne-semi-wet electrostatic precipitator.
(1) I-electrostatic precipitator eyomileyo: uthuli kwigesi ye-flue lubanjwe kwindawo eyomileyo, kwaye uthuli olufakwe kwibhodi yokuqokelela uthuli lucocwa yi-vibration yomatshini kunye ne-electromagnetic vibration.
(2) I-electrostatic precipitator emanzi: kuba uthuli oluqokelelwe yi-pole yokuqokelela uthuli, ukutshiza kwamanzi kuphuphuma okanye sebenzisa indlela efanelekileyo yokwenza umaleko wefilimu yamanzi phezu kwendawo yokuqokelela uthuli, ukwenzela ukuba uthuli olufakwe kumqokeleli wothuli kunye nokuhamba kwamanzi kunye ukuya kwindawo engezantsi yokuqokelela uthuli ukukhupha, usebenzisa le ndlela yokucoca ibizwa ngokuba yi-wet electrostatic precipitator.
(3) Amasuntswana enkungu i-electrostatic defogger: Sebenzisa i-electrostatic precipitator ukubamba amathontsi njengenkungu ye-sulfuric acid kunye nenkungu yetar, kwaye emva koko uyehla ezantsi kwimeko yolwelo emva kokubanjwa kwaye uyisuse.
(4) I-semi-wet electrostatic precipitator: zombini i-electrostatic precipitator eyomileyo kunye nezibonelelo ezimanzi ze-electrostatic precipitator, kukho i-precipitator eyomileyo, emanzi edibeneyo ye-electrostatic, eyaziwa ngokuba yi-semi-wet electrostatic precipitator; Inkqubo yolwakhiwo kukuba irhasi yobushushu obuphezulu ikhutshwa kuqala kumagumbi amabini othuli olomileyo, ize emva koko ikhuphe uthuli kumagumbi amanzi ngetshimini.
Ukuhlelwa kwe-electrostatic precipitator
I-electrostatic precipitator emanzi (ekwaziwa ngokuba ngumqokeleli wothuli wombane omanzi) isebenza ngolu hlobo lulandelayo:
1. Ekuqaleni kwenkqubo, i-particulate matter kunye nombane we-static ifakwe kwi-air flow of the wet electrostatic precipitator.
2. Ukuhamba komoya kuqala kudlula kwigumbi lokutshiza lamanzi apho isitshizi sibamba kwaye sinyakazise amasuntswana emoyeni.
3. Isitshizi sibhengeza amasuntswana asuka emoyeni ukuya kumathontsi amanzi, awenze anzima kwaye atshone ezantsi.
4. Badibana namanzi kwitanki yentlenga engezantsi, ngaloo ndlela bahlulwe ngokupheleleyo ekuhambeni komoya.
5. Intsimi ye-Electrostatic isetyenziselwa ukunyusa umphumo wokususa uthuli. Kwi-precipitator ye-electrostatic emanzi, amasuntswana okutshiza asetyenziswa yijenereyitha ye-electrostatic ukuya kwigumbi lokutshiza lamanzi anentlawulo engatshintshiyo.
6. Amalungu ancanyatheliswe kumathontsi amanzi aneentlawulo ze-electrostatic ancanyathiselwe ngokukuko ngakumbi kumathontsi amanzi ngamandla e-electrostatic kunye nokumanzisa imiphezulu enoxinzelelo olukhulu kakhulu.
7. Amathontsi amanzi emva kokunyangwa kwe-electrostatic aphinde afakwe kwitanki yentlenga, kwaye ukuxinwa kwe-particle kuncitshisiwe ngaphambi kokuba umoya udlule kumqokeleli wothuli.
8. Umoya ococekileyo ukhutshwa kwindawo, ngaloo ndlela ufezekise umphumo wokususa uthuli.
Umgaqo wokusebenza we-electrostatic precipitator emanzi ubukhulu becala uxhomekeke ekudityanisweni kwesitshizi samanzi kunye nesiphumo se-electrostatic ukwahlula amasuntswana emoyeni kunye nokucoca umoya ngokufanelekileyo.
I-Wet electrostatic precipitator luhlobo lwezixhobo zokususa uthuli lwesibini ezongeziweyo emva kwe-desulphurization emanzi. I-Wet electrostatic precipitator sisixhobo esitsha sokususa uthuli esisetyenziselwa ukujongana nothuli lomkhondo kunye namasuntswana amancinci, asetyenziswa ikakhulu ukususa uthuli, i-PM2.5, i-aerosol, ivumba, inkungu ye-asidi, amathontsi amanzi kunye nezinye izinto ezinobungozi kwiigesi ezimanzi, kwaye sisixhobo esifanelekileyo sokulawula ukungcoliseka kothuli lomoya.
I-electrostatic precipitator emanzi ubukhulu becala yenziwe yiflue yokungena kunye ne-outlet, umzimba wendlu ye-precipitator, i-deflector plate, igridi yokuhlaziya, i-anode yokuqokelela uthuli lwe-plate cathode line, ibhokisi yokugquma, inkqubo yamanzi egungxulwayo, unikezelo lwamandla kunye nenkqubo yokulawula. Uhlobo lwesakhiwo luhlukaniswe ngokubanzi kwiindidi ezimbini: ipleyiti kunye ityhubhu. Ukuqokelela uthuli lweplate kucaba kakhulu, ukubunjwa kwefilimu yamanzi kulungile, umgca we-corona usasazwa phakathi kwamacwecwe, kwaye umzimba oyintloko ufana ne-precipitator eyomileyo ye-electrostatic, enokusingatha i-gas flue kwiqondo okanye ukunyakaza okuthe ngqo. Ipali yokuqokelela uthuli lwe-tubula ngokuqhelekileyo iyityhubhu yesinyithi okanye i-polygonal yensimbi ngokuhambelanayo, kwaye umgca we-corona usasazwa phakathi, onokubamba kuphela umsi ohamba ngokuthe ngqo. Amacandelo angaphandle e-precipitator emanzi ye-electrostatic amkele intsimbi yekhabhoni eqhelekileyo, kwaye umphezulu wangaphakathi ugqunywe ukuthintela urhwaphilizo. Xa ufaka isixhobo, ingqalelo kufuneka ihlawulwe kumonakalo wendawo yangaphakathi, ngakumbi amanqaku e-welding kunye nokudibanisa kwamacandelo.
I-precipitator ye-electrostatic emanzi ineendlela ezimbini eziphambili zesakhiwo, enye kukusetyenziswa kwezinto zokuqhuba i-corrosion-resistant njengomqokeleli wothuli, enye kukusetyenziswa kokutshiza kwamanzi okanye ukuphuphuma kwamanzi ukwenza ifilimu yamanzi e-conductive, ukusetyenziswa kwezinto ezingenayo i-conductive non-metallic njengokuqokelela uthuli, ngokuqinisekileyo, inokwahlulwa ibe yi-cross-flow kunye ne-flowly plate ye-gayflow, i-plate flow flowing kunye nohlobo oluthe nkqo. isalathiso sokuqukuqela esithe tye ngaphakathi nangaphandle. Isakhiwo sifana ne-electrostatic precipitator eyomileyo, ukuhamba ngokuthe nkqo kuninzi kwesakhiwo se-tubular, kwaye ukuhamba kwegesi kuphuma kwaye kuphuma kwicala elithe nkqo.
I-electrostatic precipitator emanzi inokohlulwa ibe yi-cross-flow type kunye nohlobo lokuhamba ngokuthe nkqo. Ngaphantsi kwendawo efanayo ye-ventilation cross-sectional, ukususwa kothuli olusebenzayo lwe-vertical flow wet precipitator iphindwe kabini kuhlobo lokuhamba kwe-cross-flow.

Ukuqulunqwa kwe-precipitator ye-electrostatic emanzi
I-Wet electrostatic precipitator (WESP) iqulunqwe ngumzimba wesakhiwo, inkqubo ye-cathode, inkqubo ye-anode, inkqubo yokugungxula i-atomization, inkqubo yokucoca amanzi, inkqubo yokulawula umbane, njl. (jonga umfanekiso). Umzimba we-WESP ngokusisiseko uyafana nowomileyo we-ESP, kubandakanywa uphondo lokungena, uphondo lokuphuma, iqokobhe, i-electrode ekhuphayo kunye nesakhelo, isigqubuthelo somqokeleli, umbhobho weatomizing kunye nombhobho.
(1) Inkqubo yeCathode: Inkqubo ye-cathode yenziwe ngumqadi ophethe i-cathode, umgca we-cathode, ubunzima obunzima kunye nesakhelo se-cathode esezantsi. Isiphelo esiphezulu somgca we-cathode sixhonywe kwi-bearing beam ye-cathode, kwaye isiphelo esisezantsi sidibaniswa nomgca we-cathode kunye nobunzima obunzima. Umgaqo wokukhetha ucingo lwe-cathode luhlala ixesha elide, umbane ophantsi we-corona, ukukhutshwa okunamandla, ubuninzi be-corona yangoku, ukuqina okulungileyo, ukuxhathisa kweengcambu, ukuxhathisa okuqinileyo kwe-chloride ion corrosion (ezifana ne-lead-antimony alloy materials). Umgca we-sawtooth udla ngokusetyenziswa njenge-electrode yokukhupha ukuhlangabezana neemfuno zokutshaja uthuli olucolekileyo. Iiparamitha zokukhetha zemigca yecathode eyahlukeneyo.
(2) Inkqubo ye-Anode: Inkqubo ye-anode isebenzisa ipleyiti ye-anode ekhethekileyo (ityhubhu) ukukhawulelana neemfuno zokusebenza zesitshizi se-atomization kunye nokuhlamba. Kwi-precipitator emanzi ye-electrostatic ethe nkqo, uninzi lweenkqubo zangoku ze-anode zisebenzisa i-hexagonal conductive kunye nedangatye elibuyisela ifayibha yeglasi eyomeleziweyo kwimiqulu yetyhubhu yeplastiki ecwangciswe njengeepali zokuqokelela uthuli. I-electrode ye-honeycomb yenziwe ngeetyhubhu ze-CFRP ezine-hexagonal ezinesangqa se-tangent yangaphakathi ye-φ350mm / 360mm, ubukhulu bodonga lwe-3mm kunye nobude be-6000mm, kwaye ixhonywe kumqadi wenkxaso we-tube bundle.

(3)I-atomizing kunye nenkqubo yokuhlamba:I-atomizing kunye nenkqubo yokuhlamba ifakwe ngokubanzi kwindawo ephezulu ye-precipitator emanzi kunye ne-electrostatic. Amathontsi e-atomizing yamanzi angena kwindawo yokusebenza ye-WESP emanzi ye-electrostatic precipitator kunye negesi ye-flue, kwaye ivame ukuqokelela uthuli lwe-electrode phantsi kwesenzo sentsimi yombane, kwaye yenze ifilimu yamanzi kwi-electrode yokuqokelela uthuli. Ngaphantsi kwesenzo sobunzima, amaconsi aqhutyelwa kwitanki yokuqokelela amanzi okanye i-desulfurization tower. Amathontsi enkungu aneziphumo ezininzi ezibalulekileyo ekusebenzeni kokususa uthuli lwe-electrostatic precipitator.
1. Amathontsi enkungu angagcina i-electrode yokukhupha icocekile, ukuze i-corona ibe yomelele: inkungu ithontsiza isibonda sokuqokelela uthuli ukuze iqhubeke yenze ifilimu yamanzi ebhityileyo kunye neyunifomu, enokuthintela "ukubhabha okwesibini" kothuli oluncinci lokuxhathisa, ukulungelelanisa uthuli oluphezulu lokumelana nokuthintela "i-anti-corona" into, ukuthintela i-viscosity enamandla, i-viscosity eqinileyo kunye nokuqokelela uthuli olufanelekileyo lwe-electro. uthuli oluqhumayo.
2. I-droplet ifakwe ngokuthe ngqo kwi-electrode yokukhupha kunye nommandla we-corona, kwaye i-electrode yokukhupha nayo inokudlala indima ye-atomizer. Ubonelelo lwamandla afanayo lunokuqonda ukukhutshwa kwe-corona, i-atom yamanzi, inkungu yamanzi kunye nokutshaja kwamasuntswana othuli, kunye nokuqaphela indibaniselwano yendalo yombane ongatshintshiyo kunye nenkungu yamanzi.
3. Amaconsi atshizwe ngokuthe ngqo kwi-electrode yokukhupha, kwaye umrhumo uphezulu, onokuthi uphucule kakhulu ukukhutshwa kothuli ngaphandle kokuphazamiseka kwe-collision interception kunye ne-absorption plate yamanzi e-athomu kwintsimi yombane.
4. Tshiza amathontsi kwi-electrode yokukhupha kunye nendawo ye-corona ukuze uqhubele phambili i-atomize inkungu yamanzi. Akukho kudityaniswa ngokuthe ngqo phakathi kombane omileyo kunye nesixhobo sokutshiza se-atomizing, kwaye akukho ngxaki yokugquma.
5. I-electrode ye-burr inokuvelisa indawo eyomeleleyo ye-electrostatic, kwaye inekhono lokukhupha i-corona, kunye ne-electrostatic kunye ne-fog droplet synergy. Inokusebenza kakuhle kokususa uthuli.
6. Amaconsi enza ukuhamba kwamanzi kwi-pole yokuqokelela uthuli, ukwenzela ukuba i-pole yokuqokelela uthuli (umbhobho) ihlale icocekile, ikhuphe isixhobo sokungcangcazela, kwaye igweme ukungcola okwesibini okubangelwa ukususwa kothuli olomileyo ngenxa yokucoca i-vibration.
(4) Inkqubo yokucoca amanzi: Inkqubo yokucocwa kwamanzi ibandakanya itanki yamanzi ajikelezayo, impompo yamanzi ajikelezayo, itanki yamanzi ehambisa amanzi, impompo yamanzi ehambisa amanzi, itanki yokugcina i-alkali, impompo yokulinganisa i-alkali, itanki yamanzi kwimizi-mveliso, impompo yamanzi kwimizi-mveliso kunye nemibhobho ehambelana nayo. Emva kokutshiza kunye nothuli, i-liquid eqokelelweyo iqokelelwa kuqala kwi-tank ye-drainage, ize ifakwe kwisisombululo se-NaOH sokulungelelanisa ixabiso le-pH, kwaye emva koko ikhutshwe kwinkqubo ye-desulfurization njengamanzi ongezelelweyo. Amanye amanzi aphuphuma kwitanki yokujikeleza ngetanki yokuhambisa amanzi. Amanzi ajikelezayo kwitanki yamanzi ajikelezayo abunjwe ngexabiso le-pH le-8 ~ 10 ngokudibanisa amanzi avela kwimizi-mveliso kunye nelyethi, asetyenziswa njengamanzi ajikelezayo e-electrostatic precipitator emanzi aze abuyiselwe kumlomo weatomizing. Amanzi alahlekileyo ngokukhutshwa kwangaphandle ancediswa ngamanzi amashishini.
(5) Inkqubo yolawulo lombane: Inkqubo yokulawula umbane we-WESP wet electrostatic precipitator ineenxalenye ezimbini: inkqubo yokulawula umbane ophantsi kunye nenkqubo yokulawula umbane ophezulu. Umthwalo wombane ikakhulu ubandakanya umzimba we-WESP precipitator, isixhobo sokufudumeza ibhokisi ye-insulated, impompo yamanzi kunye nokunye. Inkqubo yokulawula i-low-voltage isetyenziselwa ukulawula ukuhanjiswa kwamandla kwibhokisi ye-heater ye-insulated, exhotywe ngenkqubo yokulawula i-PLC, esetyenziselwa ukuqaphela ukuzenzekelayo kwebhokisi ye-heater ye-insulated, ukwenzela ukuba ukushisa kwebhokisi ye-insulated ihlale igcinwe kwi-100 ~ 120 ℃; Inkqubo yolawulo lwamandla ombane aphezulu ikakhulu yikhabhathi yolawulo lwamandla ombane aphezulu kunye nejenereyitha yamandla ombane aphezulu, enika amandla kwisixhobo se-corona electrode ukwenza ibala le-corona kunye nokufezekisa ukusulungekiswa okunzulu kwerhasi ye-flue.
Ukushwankathela, amacandelo e-electrostatic precipitator emanzi anzima kwaye ahlukeneyo, kwaye icandelo ngalinye lidlala indima ebalulekileyo. Iyunithi ye-electrostatic precipitator, inkqubo yokujikeleza kwamanzi, inkqubo yokuphuma komoya kunye nenkqubo yokulawula iyasebenzisana ukuze igqibezele ukususwa kothuli kunye nokucocwa komoya. Umsebenzi wentsebenziswano wala macandelo wenza i-electrostatic precipitator emanzi ibe sisixhobo esisebenzayo nesithembekileyo sokulawula ukungcoliseka komoya.

Umgaqo osebenzayo we-electrostatic precipitator
Umgaqo osebenzayo we-electrostatic precipitator kukusebenzisa intsimi yombane ophezulu wombane ukuze i-ionize igesi ye-flue, kwaye uthuli oluhlawuliswa kumlambo womoya luhlukaniswe kumlambo womoya phantsi kwesenzo sommandla wombane. I-electrode engalunganga yenziwe ngocingo lwentsimbi kunye neemilo zecandelo ezahlukeneyo kwaye kuthiwa yi-electrode yokukhupha. I-electrode efanelekileyo yenziwe ngamacwecwe ensimbi yeemilo zejometri ezahlukeneyo kwaye ibizwa ngokuba yi-electrode yokuqokelela uthuli. Ukusebenza kwe-electrostatic precipitator kuchatshazelwa zizinto ezintathu, ezifana neepropati zothuli, isakhiwo sezixhobo kunye nesantya segesi ye-flue. Ukuchasana okuthe ngqo kothuli yisalathiso sokuvavanya ukuhanjiswa kombane, okunempembelelo ngokuthe ngqo ekusebenzeni kokususwa kothuli. Ukuchasana okuthe ngqo kuphantsi kakhulu, kwaye kunzima ukuba amasuntswana othuli ahlale kwi-electrode eqokelela uthuli, ebangela ukuba babuyele kumlambo womoya. Ukuba ukuchasana okuthe ngqo kuphezulu kakhulu, intlawulo ye-particle yothuli efikelela kuthuli lokuqokelela i-electrode akulula ukuyikhulula, kwaye i-voltage gradient phakathi kwemigangatho yothuli iya kubangela ukuphuka kwendawo kunye nokuphuma. Ezi meko ziya kubangela ukuba ukusebenza kakuhle kokususa uthuli kwehle.
Ukunikezelwa kwamandla e-electrostatic precipitator yenziwe ngebhokisi yokulawula, i-booster transformer kunye ne-rectifier. I-voltage ephumayo yonikezelo lwamandla nayo inempembelelo enkulu ekusebenzeni kakuhle kokususa uthuli. Ke ngoko, amandla ombane okusebenza we-electrostatic precipitator kufuneka agcinwe ngaphezulu kwe-40 ukuya kuma-75kV okanye nakwi-100kV.
Xa kuthelekiswa nezinye izixhobo zokukhupha, i-electrostatic precipitator inosetyenziso oluncinci lwamandla kunye nokusebenza kakuhle kokususa uthuli. Ifanelekile ukususa uthuli lwe-0.01-50μm kwigesi ye-flue, kwaye ingasetyenziselwa iziganeko ezinokushisa kwegesi ephezulu kunye noxinzelelo oluphezulu. Uqheliselo lubonisa ukuba xa usiba mkhulu umthamo werhasi ephathwayo, kokukhona ukonga utyalo-mali kunye neendleko zokusebenza kwe-electrostatic precipitator.

Izinto ezichaphazela ukusebenza kwe-electrostatic precipitator
Ukusebenza kwe-electrostatic precipitator kuchatshazelwa zizinto ezintathu, ezifana neepropati zothuli, isakhiwo sezixhobo kunye nesantya segesi ye-flue. Ukuchasana okuthe ngqo kothuli yisalathiso sokuvavanya ukuhanjiswa kombane, okunempembelelo ngokuthe ngqo ekusebenzeni kokususwa kothuli. Ukuchasana okuthe ngqo kuphantsi kakhulu, kwaye kunzima ukuba amasuntswana othuli ahlale kwi-electrode eqokelela uthuli, ebangela ukuba babuyele kumlambo womoya. Ukuba ukuchasana okuthe ngqo kuphezulu kakhulu, intlawulo ye-particle yothuli efikelela kuthuli lokuqokelela i-electrode akulula ukuyikhulula, kwaye i-voltage gradient phakathi kwemigangatho yothuli iya kubangela ukuphuka kwendawo kunye nokuphuma. Ezi meko ziya kubangela ukuba ukusebenza kakuhle kokususa uthuli kwehle. I-Electrostatic precipitator ilungele unyango lwerhasi ngoxinaniso lothuli olucekethekileyo, kunye nezinye izixhobo zokususa uthuli kufuneka ziqwalaselwe iingxaki zothuli oluphezulu.
1. I-Condensation: Ukuba i-condensation ibangelwa ukulawula iimpawu ze-thermodynamic zokuhamba kwegesi ehambayo, iinqununu zingadlala indima yokukhulisa i-nuclei kwinkqubo yokudibanisa. Amalungu athi ke aqatywe ngolwelo abambeke ngokulula yindlela ebalulekileyo yokubambisa echazwe ngasentla. I-condensation idla ngokufunyanwa ngokujiya i-condensate yomphunga kuxinzelelo oluphantsi ukuya kuxinzelelo oluphezulu, ukungenisa umphunga kwi-saturated flow, okanye / kunye nokupholisa ngokuthe ngqo ukuhamba.
2. Isithintelo: Ukuba iqhekezana elincinci lijikeleza umqobo kulwelo, linokuthi lidibane nomqobo ngenxa yobukhulu bomzimba besuntswana. Oku kwenzeka kwakhona kumsebenzi onxulumene nothuli kunye namaconsi.
3. Impembelelo ye-inertial: Ukuba iinqununu zikhutshwe kwi-gesi ehambayo, xa i-gas ehambayo idibana nomqobo, i-inertia iya kwenza ukuba iinqununu ziphule ukuhamba kwegesi malunga nomqobo, kwaye ezinye zeengqungquthela ziya kubetha umqobo. Ubunokwenzeka besiganeko esinjalo kuxhomekeke kwiinguqu ezininzi, ngokukodwa ubukhulu be-inertia yeengqungquthela kunye nobukhulu bomqobo (kwimeko ye-precipitators emanzi, umqobo yi-droplet). Kumqokeleli wothuli, impembelelo ye-inertial yenziwa phakathi kwamasuntswana othuli kunye namathontsi amakhulu.
4. Ukutshaja kwe-Electrostatic: Xa kukho iintlawulo ezahlukeneyo ze-electrostatic phakathi kwamasuntswana kunye namathontsi, kuya kusebenza ngakumbi ukudibanisa amasuntswana othuli kunye namathontsi. I-electrostatic scrubber isebenzisa le ndlela yokuphucula umtsalane wothuli kunye namathontsi amanzi kwaye ngaloo ndlela iphucula ukuqokelelwa kothuli.
5. Ukusasazwa: Iincinci ezincinci ezinobungakanani be-aerodynamic obungaphantsi kwe-0.3μm (ubunzima obuthile be-1) bubalulekile ukuba babanjwe ngokusasazwa, kuba ubunzima babo obuncinci abunakwenzeka ukuvelisa impembelelo ye-inertial, kwaye ubungakanani babo obuncinane bomzimba akulula ukuba buvalwe. Inkqubo apho amasuntswana amancinci ahamba ukusuka kwiindawo eziphakamileyo ukuya kwiindawo ezisezantsi kuthiwa yi-diffusion. Ukusabalalisa kubalulekile ngenxa yomsebenzi we-Brownian, ukunyakaza okungahleliweyo kwamancinci amancinci njengoko angqubuzana neemolekyuli zegesi ezijikelezayo kunye nezinye iinqununu. Xa ezi ngqungquthela zibanjwe kwi-droplet, ukuxinwa kweengqungquthela kwindawo ekufutshane ne-droplet kuncipha, kwaye ezinye iinqununu ziphinde zihambe ukusuka kwindawo yoxinzelelo oluphezulu ukuya kwindawo yoxinzelelo oluphantsi kufuphi ne-droplet.
Ukugcinwa kwemihla ngemihla kwe-electrostatic precipitator
1. Ukubeka iliso ngokungqongqo i-voltage ephambili, i-primary current, i-voltage yesibini kunye ne-second current yesixhobo sokubonelela umbane. Rekhoda kanye rhoqo ngeyure enye.
2. Ukubeka iliso ekunyukeni kobushushu be-high-voltage silicon rectification, iqondo lobushushu le-oyile aliyi kuba ngaphezu kwe-80 ° C, akukho sandi esingaqhelekanga, kwaye akukho nto ingaqhelekanga yokukhutshwa kwinethiwekhi ye-high-voltage output.
3. I-incubator nganye kunye ne-ash hopper heater zisebenza ngokwesiqhelo.
4. Izixhobo zokulawula kwikhabhinethi yolawulo zisebenza ngokuqhelekileyo.
5. Ukusebenza kwenkqubo yokukhupha uthuthu kufuneka kuqondwe ngeyure nganye.
6. Rhoqo jonga isantya sentlantsi phakathi koluhlu oluchaziweyo, ukuba lufunyenwe aluhlangabezananga neemfuno, lufanele luhlengahlengiswe ngexesha, ukwenzela ukuba umqokeleli wothuli ukwimeko entle yokuqhuba.
7. Xa umqokeleli wothuli kunye nezixhobo ezincedisayo zingaphumeleli okanye zingasebenzi kakuhle ngexesha lokusebenza ngokuqhelekileyo, umqhubi uya kuhamba ngokukhawuleza ukuba aqinisekise indawo yephutha, ahlalutye isizathu, kunye noqhagamshelwano lonyango emva kokufumana isaziso se-alamu.
8. Ishifti nganye kufuneka iqhube uhlolo olubanzi lwezixhobo ze-electrostatic precipitator, kwaye yenze umsebenzi olungileyo wokucoca kwindawo yolawulo lwesithuba, irekhodishe ngokweenkcukacha imeko engaqhelekanga kunye neziphene zezixhobo zenzeke ekusebenzeni kweshifti, kwaye wenze umsebenzi olungileyo wokunikezela ngeshifti.
9. I-Motor, i-reducer, i-bearing kunye nazo zonke iindawo ezihambayo zangaphandle kufuneka zihlolwe kabini kwi-shift nganye, indawo nganye yokuthambisa kufuneka ihlolwe rhoqo i-lubrication, ukuba kuyimfuneko, kufuneka inyuse ioli yokuthambisa okanye igrisi.
10. Khangela ukuba i-silicone esetyenziselwa ukomisa iguqulwe, kwaye kufuneka itshintshwe ngexesha xa iguqulwe.