{"id":649,"date":"2025-06-23T19:51:10","date_gmt":"2025-06-23T19:51:10","guid":{"rendered":"http:\/\/vaksypukkimaki.local\/klooridioksidin_valmistus\/"},"modified":"2026-04-22T22:13:31","modified_gmt":"2026-04-22T19:13:31","slug":"sulfiittiselluloosatehdas-klooridioksidin-valmistus","status":"publish","type":"post","link":"https:\/\/vaksy.com\/pukkimaki\/sulfiittiselluloosatehdas-klooridioksidin-valmistus\/","title":{"rendered":"Sulfiittiselluloosatehdas &#8211; Klooridioksidin valmistus"},"content":{"rendered":"\n<h2 class=\"wp-block-heading\">Valkaisukemikaaliosasto \/ Klooridioksidi<\/h2>\n\n\n\n<p class=\"wp-block-paragraph\">1950-luvun lopulla alkoi uuden sulfaattitehtaan suunnitteluty\u00f6t. Molempien selluloosatehtaiden yhteiseksi tarkoitettu valkaisukemikaaliosasto p\u00e4\u00e4tettiin rakentaa sulfiitin yhteyteen ja se valmistuikin jo syksyll\u00e4 1960. Vuonna 1967 sulfiitin valkaisussa luovuttiin kokonaan aktiivikloorin k\u00e4yt\u00f6st\u00e4 ja sen tilalle tuli klooridioksidivaihe. Se vaikutti ratkaisevasti koivumassan uutetason alentumiseen ja paransi siten selluprosessin hallittavuutta ja taloudellisuutta. Koivun k\u00e4ytt\u00f6 sellun raaka-aineena alkoi sulfiitissa lis\u00e4\u00e4nty\u00e4 vuodesta 1960 l\u00e4htien. Tehtaalle tulevan koivun nuorentuessa massan kasvava uutepitoisuus alkoi tuottaa ongelmia. Klooridioksidivaihe toi t\u00e4h\u00e4n ongelmaa helpotusta.<\/p>\n\n\n\n<h2 class=\"wp-block-heading\">Klooridioksidin ominaisuuksia<\/h2>\n\n\n\n<p class=\"wp-block-paragraph\">Klooridioksidi ClO<sub>2<\/sub>\u00a0on vihre\u00e4n keltainen myrkyllinen kaasu. Sen haju on pieniss\u00e4 pitoisuuksissa makean tuntuinen, mutta suurissa pitoisuuksissa tympe\u00e4 ja pist\u00e4v\u00e4. J\u00e4\u00e4hdytett\u00e4ess\u00e4 se muodostaa punaisen liuoksen, jonka j\u00e4\u00e4tymispiste on -59\u00b0C ja kiehumispiste +110\u00b0C. Klooridioksidin nesteytt\u00e4minen ei kuitenkaan k\u00e4yt\u00e4nn\u00f6ss\u00e4 tule kysymykseen, sill\u00e4 nestem\u00e4isen\u00e4 se on pysym\u00e4t\u00f6nt\u00e4 ja hajoaa r\u00e4j\u00e4hdysm\u00e4isesti, jolloin sen hajoamistuotteina ovat kloori ja happi.<\/p>\n\n\n\n<p class=\"wp-block-paragraph\">Klooridioksidi on pysyv\u00e4mp\u00e4\u00e4, kun se laimennetaan inertill\u00e4 kaasulla tai kaasuseoksella tai jos se liuotetaan veteen. Tehdasoloissa voidaan toimia turvallisesti aina 16% kaasupitoisuuteen asti. T\u00e4ll\u00f6inkin sellaiset tekij\u00e4t kuin s\u00e4hk\u00f6kipin\u00e4, korkea l\u00e4mp\u00f6tila tai useat orgaaniset aineet voivat aiheuttavat klooridioksidin hajoamisen. Alhaisissa kaasupitoisuuksissa t\u00e4t\u00e4 ei kuitenkaan voi kutsua r\u00e4j\u00e4hdykseksi, vaan pikemminkin possahdukseksi.<\/p>\n\n\n\n<p class=\"wp-block-paragraph\">Klooridioksidi liukenee veteen paremmin kuin kloori eik\u00e4 se vedess\u00e4 en\u00e4\u00e4 ole r\u00e4j\u00e4hdysvaarallinen. T\u00e4st\u00e4 syyst\u00e4 klooridioksidia varastoidaan ja k\u00e4ytet\u00e4\u00e4n vesiliuoksena. Sen pitoisuus tehdasoloissa on 5-10 g ClO<sub>2<\/sub>\u00a0litrassa vett\u00e4. 1 gramma klooridioksidia = 2,63 grammaa aktiiviklooria.<\/p>\n\n\n\n<h2 class=\"wp-block-heading\">Mathiesonin menetelm\u00e4<\/h2>\n\n\n\n<p class=\"wp-block-paragraph\">Niihin aikoihin klooridioksidin valmistuksessa Suomessa oli yleisimmin k\u00e4yt\u00f6ss\u00e4 ns. Mathiesonin menetelm\u00e4. Siin\u00e4 klooridioksidin valmistus l\u00e4hti liikkeelle natriumkloraatista pelkist\u00e4m\u00e4ll\u00e4 sit\u00e4 rikkidioksidilla rikkihappopitoisessa liuoksessa. Tunnusomaista t\u00e4lle menetelm\u00e4lle oli se, ett\u00e4 prosessin kloraattipitoisuus reaktioliuoksessa pidettiin alhaisena. Se oli 18-22 grammaa NaClO<sub>3<\/sub>\u00a0litrassa, mutta rikkihappopitoisuus puolestaan pidettiin korkeana 440-450 grammaa H<sub>2<\/sub>SO<sub>4<\/sub>\u00a0litrassa.<\/p>\n\n\n\n<figure class=\"wp-block-image size-full\"><img loading=\"lazy\" decoding=\"async\" width=\"630\" height=\"540\" src=\"https:\/\/vaksy.com\/pukkimaki\/wp-content\/uploads\/2025\/06\/klooridioksidin_valmistus1.jpg\" alt=\"\" class=\"wp-image-176\" srcset=\"https:\/\/vaksy.com\/pukkimaki\/wp-content\/uploads\/2025\/06\/klooridioksidin_valmistus1.jpg 630w, https:\/\/vaksy.com\/pukkimaki\/wp-content\/uploads\/2025\/06\/klooridioksidin_valmistus1-300x257.jpg 300w\" sizes=\"auto, (max-width: 630px) 100vw, 630px\" \/><figcaption class=\"wp-element-caption\">Klooridioksidin valmistus Mathiesonin menetelm\u00e4ll\u00e4.<\/figcaption><\/figure>\n\n\n\n<p class=\"wp-block-paragraph\">Mathiesonin menetelm\u00e4n klooridioksidisaanto oli 90-95% kloraatista teoreettisesti lasketusta saannosta.<\/p>\n\n\n\n<h2 class=\"wp-block-heading\">Reaktiokaavat<\/h2>\n\n\n\n<p class=\"wp-block-paragraph\">T\u00e4m\u00e4 oli tyypillinen hapetus-pelkistysreaktio. Siin\u00e4 Natriumkloraatti oli voimakas hapetin, joka itse pelkistyi rikkidioksidin samalla hapettuessa. L\u00e4ht\u00f6aineet ionisoituivat nestem\u00e4isess\u00e4 ymp\u00e4rist\u00f6ss\u00e4 ja reaktio tapahtui ionien kesken:<\/p>\n\n\n\n<figure class=\"wp-block-image size-full\"><img loading=\"lazy\" decoding=\"async\" width=\"405\" height=\"43\" src=\"https:\/\/vaksy.com\/pukkimaki\/wp-content\/uploads\/2025\/06\/reaktiokaava9.png\" alt=\"\" class=\"wp-image-3356\" srcset=\"https:\/\/vaksy.com\/pukkimaki\/wp-content\/uploads\/2025\/06\/reaktiokaava9.png 405w, https:\/\/vaksy.com\/pukkimaki\/wp-content\/uploads\/2025\/06\/reaktiokaava9-300x32.png 300w\" sizes=\"auto, (max-width: 405px) 100vw, 405px\" \/><\/figure>\n\n\n\n<h2 class=\"wp-block-heading\">Klooridioksin valmistus<\/h2>\n\n\n\n<figure class=\"wp-block-image size-full\"><img loading=\"lazy\" decoding=\"async\" width=\"300\" height=\"190\" src=\"https:\/\/vaksy.com\/pukkimaki\/wp-content\/uploads\/2025\/06\/reaktorit.jpg\" alt=\"\" class=\"wp-image-175\"\/><figcaption class=\"wp-element-caption\">Klooridioksidireaktorit<\/figcaption><\/figure>\n\n\n\n<p class=\"wp-block-paragraph\">Klooridioksidin muodostuminen prosessissa tapahtui p\u00e4\u00e4reaktorissa ja viel\u00e4 osittain j\u00e4lkireaktorissa. Reaktoriin sy\u00f6tett\u00e4v\u00e4n NaClO<sub>3<\/sub>-liuoksen v\u00e4kevyys oli noin 46% ja H<sub>2<\/sub>SO<sub>4<\/sub>-liuoksen 93%. K\u00e4ytetty rikkidioksidi oli nesteen\u00e4 tehtaan varastos\u00e4ili\u00f6ss\u00e4, josta se otettiin kaasuttimeen ja kaasutettiin h\u00f6yryll\u00e4. T\u00e4m\u00e4n j\u00e4lkeen saatu 100% SO<sub>2<\/sub>-kaasu sekoitettiin kompressorissa ilman kanssa ja pumpattiin p\u00e4\u00e4- ja j\u00e4lkireaktoreihin. Reaktoreissa k\u00e4ytetyn SO<sub>2<\/sub>-kaasun v\u00e4kevyys oli normaalisti noin 8-10%, mutta sen ehdoton maksimiv\u00e4kevyys prosessissa oli 16%. Reaktoreissa oli sis\u00e4ll\u00e4 viisi diffuusiolevy\u00e4, joiden teht\u00e4v\u00e4n\u00e4 oli SO<sub>2<\/sub>-kaasun hajottaminen pieniksi kupliksi, jotka noustessaan reaktorin sis\u00e4ll\u00e4 olevan nesteen l\u00e4pi reagoivat liuoksessa olevan natriumkloraatin kanssa muodostaen klooridioksidikaasua.<\/p>\n\n\n\n<p class=\"wp-block-paragraph\">Reaktoreissa kehittynyt ClO<sub>2<\/sub>-kaasu, jota laimensi SO<sub>2<\/sub>-kaasun mukana tullut ilma, nousi reaktorin kaasutilaan, josta se imettiin pesukolonniin. Siell\u00e4 vastavirtaan kulkeva kloraattiliuos poisti kaasussa olevan suola- ja rikkihapon ja palautti ne takaisin reaktoriin. Kaasun pesukolonnista kaasu johdettiin absorptiotorneihin, joissa klooridioksidikaasu liuotettiin j\u00e4\u00e4hdytettyyn veteen. Lopuksi liuos johdettiin ClO<sub>2<\/sub>-varastos\u00e4ili\u00f6\u00f6n. Absorptiotornin j\u00e4tekaasut, jotka sis\u00e4lsiv\u00e4t klooria ja pienen m\u00e4\u00e4r\u00e4n klooridioksidia, ohjattiin ulkoilmaan. Prosessista saadun ClO<sub>2<\/sub>-kaasun v\u00e4kevyys oli noin 6 g ClO<sub>2<\/sub>\u00a0litrassa vett\u00e4. Kes\u00e4isin vesien l\u00e4mmetess\u00e4 vedenj\u00e4\u00e4hdytt\u00e4j\u00e4n teho loppui. T\u00e4st\u00e4 oli seurauksena ClO<sub>2<\/sub>-liuoksen v\u00e4kevyyden lasku.<\/p>\n\n\n\n<p class=\"wp-block-paragraph\">P\u00e4\u00e4reaktorista reaktioliuos virtasi jatkuvasti ylijuoksuputken alaosaa my\u00f6ten j\u00e4lkireaktoriin, jossa reaktioliuoksen kloraattipitoisuus pudotettiin 1-3 grammaan NaClO<sub>3<\/sub>\u00a0litrassa. T\u00e4m\u00e4 tapahtui johtamalla SO<sub>2<\/sub>-kaasua j\u00e4lkireaktorin pohjan kautta. Tarvittava rikkidioksidim\u00e4\u00e4r\u00e4 oli 5-8% p\u00e4\u00e4reaktorin vastaavasta m\u00e4\u00e4r\u00e4st\u00e4. Kehittynyt klooridioksidikaasu kulki ylijuoksuputken yl\u00e4osaa pitkin p\u00e4\u00e4reaktorin kaasutilaan. J\u00e4lkireaktorista j\u00e4teliuos virtasi j\u00e4teliuoskolonniin, jossa siit\u00e4 poistettiin pienell\u00e4 ilmam\u00e4\u00e4r\u00e4ll\u00e4 j\u00e4teliuokseen liuennut klooridioksidi. Prosessin j\u00e4tteen\u00e4 syntynyt natriumsulfaatti pumpattiin soodakattilalle polttoon. Tosin pitk\u00e4 putkilinja tukkeentui usein, jolloin prosessin j\u00e4tteet laskettiin puhdistamon kautta j\u00e4rveen.<\/p>\n\n\n\n<h2 class=\"wp-block-heading\">Prosessin ohjaus<\/h2>\n\n\n\n<figure data-wp-context=\"{&quot;imageId&quot;:&quot;69ee1cae73b6a&quot;}\" data-wp-interactive=\"core\/image\" data-wp-key=\"69ee1cae73b6a\" class=\"wp-block-image size-full wp-lightbox-container\"><img loading=\"lazy\" decoding=\"async\" width=\"300\" height=\"190\" data-wp-class--hide=\"state.isContentHidden\" data-wp-class--show=\"state.isContentVisible\" data-wp-init=\"callbacks.setButtonStyles\" data-wp-on--click=\"actions.showLightbox\" data-wp-on--load=\"callbacks.setButtonStyles\" data-wp-on--pointerdown=\"actions.preloadImage\" data-wp-on--pointerenter=\"actions.preloadImageWithDelay\" data-wp-on--pointerleave=\"actions.cancelPreload\" data-wp-on-window--resize=\"callbacks.setButtonStyles\" src=\"https:\/\/vaksy.com\/pukkimaki\/wp-content\/uploads\/2025\/06\/abs_torni.jpg\" alt=\"\" class=\"wp-image-174\"\/><button\n\t\t\tclass=\"lightbox-trigger\"\n\t\t\ttype=\"button\"\n\t\t\taria-haspopup=\"dialog\"\n\t\t\tdata-wp-bind--aria-label=\"state.thisImage.triggerButtonAriaLabel\"\n\t\t\tdata-wp-init=\"callbacks.initTriggerButton\"\n\t\t\tdata-wp-on--click=\"actions.showLightbox\"\n\t\t\tdata-wp-style--right=\"state.thisImage.buttonRight\"\n\t\t\tdata-wp-style--top=\"state.thisImage.buttonTop\"\n\t\t>\n\t\t\t<svg xmlns=\"http:\/\/www.w3.org\/2000\/svg\" width=\"12\" height=\"12\" fill=\"none\" viewBox=\"0 0 12 12\">\n\t\t\t\t<path fill=\"#fff\" d=\"M2 0a2 2 0 0 0-2 2v2h1.5V2a.5.5 0 0 1 .5-.5h2V0H2Zm2 10.5H2a.5.5 0 0 1-.5-.5V8H0v2a2 2 0 0 0 2 2h2v-1.5ZM8 12v-1.5h2a.5.5 0 0 0 .5-.5V8H12v2a2 2 0 0 1-2 2H8Zm2-12a2 2 0 0 1 2 2v2h-1.5V2a.5.5 0 0 0-.5-.5H8V0h2Z\" \/>\n\t\t\t<\/svg>\n\t\t<\/button><figcaption class=\"wp-element-caption\">Absorptiotorni ja sen imureita<\/figcaption><\/figure>\n\n\n\n<p class=\"wp-block-paragraph\">Klooridioksidireaktoreiden toimintaan vaikuttavista tekij\u00f6ist\u00e4 t\u00e4rkein oli rikkidioksidikaasun sy\u00f6tt\u00f6. Sen kaasukuplan koon tuli olla juuri oikean kokoinen. Kaasun kuplakoko oli sopiva silloin, kun sen saavuttaessa reaktorin nestepinnan rikkidioksidin reaktio kloraatin kanssa oli juuri p\u00e4\u00e4ttynyt. Jos kuplakoko oli liian suuri, niin silloin aika ei riitt\u00e4nyt kaiken rikkidioksidin hapettumiseen SO<sub>4<\/sub><sup>2-<\/sup>-ioniksi. Silloin hapettumatta j\u00e4\u00e4nyt osa SO<sub>2<\/sub>-kaasusta laimensi syntynytt\u00e4 ClO<sub>2<\/sub>-kaasua. Jos kuplat taas olivat reaktorissa liian pieni\u00e4, niin silloin niiss\u00e4 oleva rikkidioksidi ehti kulua loppuun ennen kuplien saapumista nestepinnalle. Silloin reaktorin nestepinnan yl\u00e4osaan syntynyt kloori j\u00e4i pelkistym\u00e4tt\u00e4 klooridioksidiksi ja se lis\u00e4si klooridioksidikaasun klooripitoisuutta. Kloori liukeni absorptiotornissa veteen huonommin kuin klooridioksidi, jolloin absorptiotornin poistokaasuun syntyi vihert\u00e4v\u00e4n keltainen juova eli ketunh\u00e4nt\u00e4.<\/p>\n\n\n\n<p class=\"wp-block-paragraph\">Kloodidioksidilaitoksen toiminnan aikana siell\u00e4 tapahtui kaksi r\u00e4j\u00e4hdyst\u00e4 tai paremminkin possahdusta. Niiss\u00e4 molemissa oli syyn\u00e4 SO<sub>2<\/sub>-kaasun sy\u00f6t\u00f6n h\u00e4iri\u00f6 reaktoreihin. Niiss\u00e4 molemmissa 100% SO<sub>2<\/sub>-kaasun laimennus oli h\u00e4iriintynyt ja reaktoreihin ajautui siit\u00e4 syyst\u00e4 laimentamatonta rikkidioksidikaasua. T\u00e4st\u00e4 oli seurauksena reaktion karkaaminen hallinnasta ja voimakas paineen kasvu prosessissa.<\/p>\n\n\n\n<p class=\"wp-block-paragraph\">Prosessin valvonta ja ohjaus edellyttiv\u00e4t reaktoreihin tulevien kloraatti- ja rikkihappoliuosten sek\u00e4 rikkidioksidikaasun ja absorptiotorneihin tulevan sy\u00f6tt\u00f6veden tarkkaa mittausta sek\u00e4 s\u00e4\u00e4t\u00f6\u00e4. ClO<sub>2<\/sub>-laitteiston instrumentointiin sis\u00e4ltyi lis\u00e4ksi reaktoreiden l\u00e4mp\u00f6tilans\u00e4\u00e4t\u00f6 sek\u00e4 h\u00e4lytys- ja varolaitteet, jotta klooridioksidikaasun l\u00e4mp\u00f6tila ei p\u00e4\u00e4ssyt nousemaan yli sallitun arvon. Prosessin hallintaan kuului my\u00f6s k\u00e4ytetyn SO<sub>2<\/sub>-kaasun v\u00e4kevyyden hallintaan liittyv\u00e4\u00e4 instrumentointia.<\/p>\n\n\n\n<p class=\"wp-block-paragraph\">Reaktoreiden sis\u00e4lt\u00e4m\u00e4 liuos vaihdettiin noin kaksi kertaa vuodessa sinne ker\u00e4\u00e4ntyneiden ep\u00e4puhtauksien takia ja my\u00f6s diffuusiolevyj\u00e4 jouduttiin vaihtamaan reaktoriin aika ajoin. Prosessissa k\u00e4ytetty SO<sub>2<\/sub>\u00a0tuli laitokselle p\u00e4\u00e4asiassa keitt\u00e4m\u00f6lt\u00e4, mutta sit\u00e4 jouduttiin my\u00f6s ostamaan tehtaalle.<\/p>\n\n\n\n<p class=\"wp-block-paragraph\"><em>L\u00e4hteet<\/em><\/p>\n\n\n\n<ol class=\"wp-block-list\">\n<li><em>Puumassan valmistus, Suomen paperi-insin\u00f6\u00f6rien yhdistys, Erkki Aaltio, 1968<\/em><\/li>\n\n\n\n<li><em>Heikki Palosen haastattelu 2017<\/em><\/li>\n\n\n\n<li><em>Jorma Hiekkalan haastattelu 2016<\/em><\/li>\n\n\n\n<li><em>Jouko Pirkkasen haastattelu 2016<\/em><\/li>\n\n\n\n<li><em>Erkki Aallon haastattelu 2016<\/em><\/li>\n<\/ol>\n","protected":false},"excerpt":{"rendered":"<p>\u00c4\u00e4nekosken Pukkim\u00e4en asuntoalueen historiaa<\/p>\n","protected":false},"author":1,"featured_media":0,"comment_status":"open","ping_status":"open","sticky":false,"template":"","format":"standard","meta":{"_crdt_document":"{\"document\":\"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