{"id":7274,"date":"2024-08-28T08:06:18","date_gmt":"2024-08-28T08:06:18","guid":{"rendered":"https:\/\/longchangchemical.com\/?p=7274"},"modified":"2026-04-28T10:42:34","modified_gmt":"2026-04-28T10:42:34","slug":"purification-of-common-solvents","status":"publish","type":"post","link":"https:\/\/longchangchemical.com\/hu\/purification-of-common-solvents\/","title":{"rendered":"K\u00f6z\u00f6ns\u00e9ges old\u00f3szerek tiszt\u00edt\u00e1sa"},"content":{"rendered":"<h1><strong>K\u00f6z\u00f6ns\u00e9ges old\u00f3szerek tiszt\u00edt\u00e1sa<\/strong><\/h1>\n<p><!-- lc-qa-start --><\/p>\n<p><strong>Gyors v\u00e1lasz:<\/strong> General coating decisions are usually made by balancing substrate wetting, rheology, cure or drying, and long-term film performance. The best answer usually comes from checking the whole coating process, not just one ingredient.<\/p>\n<p><!-- lc-qa-end --><\/p>\n<p>A vegyipari besz\u00e1ll\u00edt\u00f3k \u00e1ltal\u00e1nosan haszn\u00e1lt reagensek csak az \u00e1ltal\u00e1nos k\u00e9miai reakci\u00f3khoz elegend\u0151ek. Egyes szerves szint\u00e9zisreakci\u00f3k zavartalan lefolytat\u00e1s\u00e1hoz gyakran sz\u00fcks\u00e9g van a reagensek tov\u00e1bbi tiszt\u00edt\u00e1s\u00e1ra. Az old\u00f3szeres kezel\u00e9s gyakori m\u00f3dja a desztill\u00e1ci\u00f3. Ha a reakci\u00f3 k\u00f6vetelm\u00e9nyei csak v\u00edzmentes, lehet hozz\u00e1adni a kondenz\u00e1tor cs\u0151 sz\u00e1raz cs\u0151, olajt\u00f6m\u00edt\u00e9s vagy nitrog\u00e9n goly\u00f3 lehet t\u00f6lteni, ha meg kell el\u00e9rni a v\u00edzmentes \u00e9s oxig\u00e9nmentes k\u00f6r\u00fclm\u00e9nyek k\u00f6z\u00f6tt, az old\u00f3szert kell oxig\u00e9nmentes\u00edteni. \u00c1ltal\u00e1ban nitrog\u00e9n atmoszf\u00e9ra alatt.<\/p>\n<p>&nbsp;<\/p>\n<p>A reagens min\u0151s\u00e9g\u0171 old\u00f3szerek tiszt\u00edt\u00e1sa A v\u00edzmentes reagens min\u0151s\u00e9g\u0171 old\u00f3szerek gyakran megfelel\u0151 tisztas\u00e1g\u00faak, n\u00e9ha desztill\u00e1ci\u00f3 n\u00e9lk\u00fcl is. A megfelel\u0151 sz\u00e1razs\u00e1g biztos\u00edt\u00e1sa \u00e9rdek\u00e9ben a t\u00e1rol\u00e1s sor\u00e1n aktiv\u00e1lt molekulasz\u0171r\u0151ket adhatunk hozz\u00e1juk. Az old\u00f3szer dezoxid\u00e1l\u00e1s\u00e1hoz egy fecskend\u0151 vagy \u00fcvegcs\u0151 seg\u00edts\u00e9g\u00e9vel k\u00f6r\u00fclbel\u00fcl \u00f6t percig nitrog\u00e9nnel dobolhatunk bele. \u00c1ltal\u00e1nos old\u00f3szerek tiszt\u00edt\u00e1sa A legt\u00f6bb old\u00f3szert \u00fagy lehet kell\u0151en tiszt\u00e1v\u00e1 tenni, hogy inert atmoszf\u00e9r\u00e1ban desztill\u00e1ljuk ki \u0151ket a nedvsz\u00edv\u00f3b\u00f3l.<\/p>\n<p>&nbsp;<\/p>\n<p>1. Alk\u00e1nok<\/p>\n<p>Alkanok, mint p\u00e9ld\u00e1ul hex\u00e1n, pent\u00e1n stb. El\u0151sz\u00f6r mossuk t\u00f6bbsz\u00f6r t\u00f6m\u00e9ny k\u00e9nsavval az olefinek elt\u00e1vol\u00edt\u00e1sa \u00e9rdek\u00e9ben, mossuk v\u00edzzel, sz\u00e1r\u00edtsuk CaCl2-vel, sz\u00fcks\u00e9g eset\u00e9n sz\u00e1r\u00edtsuk n\u00e1triumhuzallal vagy P2O5-tel, \u00e9s desztill\u00e1ljuk. T\u00e1roljuk lez\u00e1rt reagens\u00fcvegben.<\/p>\n<p>&nbsp;<\/p>\n<p>2. Arom\u00e1s sz\u00e9nhidrog\u00e9nek<\/p>\n<p>P\u00e9ld\u00e1ul benzol, toluol, xilol stb. Sz\u00e1r\u00edtsuk CaCl2-vel, sz\u00fcks\u00e9g eset\u00e9n n\u00e1triummal vagy P2O5-tel, \u00e9s desztill\u00e1ljuk. T\u00e1roljuk lez\u00e1rt reagens\u00fcvegekben. 3.<\/p>\n<p>&nbsp;<\/p>\n<p>3. Kl\u00f3rozott alk\u00e1nok<\/p>\n<p>Ilyen p\u00e9ld\u00e1ul a dikl\u00f3rmet\u00e1n, kloroform, sz\u00e9ntetraklorid, dikl\u00f3ret\u00e1n stb. Mos\u00e1s az alkoholok stb. elt\u00e1vol\u00edt\u00e1s\u00e1ra. Az alkoholok stb. elt\u00e1vol\u00edt\u00e1s\u00e1ra mossuk v\u00edzzel, CaCl2-vel sz\u00e1r\u00edtsuk meg, \u00e9s P2O5-ben vagy CaH2-ben val\u00f3 visszaforral\u00e1ssal p\u00e1roljuk be. Soha ne sz\u00e1r\u00edtsuk n\u00e1triumsz\u00e1lakkal, mert felrobban. Hossz\u00fa t\u00e1v\u00fa t\u00e1rol\u00e1s l\u00e9gmentesen lez\u00e1rt \u00fcvegekben \u00e9s s\u00f6t\u00e9tben kell tartani.<\/p>\n<p>&nbsp;<\/p>\n<p>4. \u00c9terek \u00e9s fur\u00e1nok<\/p>\n<p>Ilyen p\u00e9ld\u00e1ul az \u00e9ter \u00e9s a tetrahidrofur\u00e1n. Sok \u00e9ter leveg\u0151vel \u00e9rintkezve lassan peroxidokat k\u00e9pez, amelyek nem ill\u00e9konyak \u00e9s ismeretlen szerkezet\u0171ek. A peroxidok h\u0151 hat\u00e1s\u00e1ra bomlanak \u00e9s felrobbanhatnak. Ez\u00e9rt a hossz\u00fa ideig t\u00e1rolt \u00e9tereket \u00e9s fur\u00e1nokat felhaszn\u00e1l\u00e1s el\u0151tt, k\u00fcl\u00f6n\u00f6sen desztill\u00e1l\u00e1s el\u0151tt ellen\u0151rizni kell a peroxidok jelenl\u00e9t\u00e9t. Vizsg\u00e1lati m\u00f3dszer: 1 ml 10% KI oldatot, amely egy csepp kem\u00e9ny\u00edt\u0151 indik\u00e1tort tartalmaz, 10 ml \u00e9teroldattal keverve, ha nincs sz\u00ednv\u00e1ltoz\u00e1s, akkor nincs peroxid. Alternat\u00edvak\u00e9nt vizsg\u00e1lja 1% amm\u00f3nium-vas-szulf\u00e1t oldattal, vas-szulf\u00e1t \u00e9s k\u00e1lium-tiocianid oldattal. Ha van, adjunk 5% FeSO4 vagy n\u00e1trium-biszulfit oldatot az \u00e9terhez, \u00e9s r\u00e1zzuk fel, hogy a peroxid lebomoljon. el\u0151sz\u00e1r\u00edtsuk CaCl2 -vel, \u00e9s p\u00e1roljuk el n\u00e1triumsz\u00e1lban vagy LiAlH4 -ben val\u00f3 visszaforral\u00e1ssal. l\u00e9gmentesen z\u00e1r\u00f3d\u00f3 palackban t\u00e1roljuk. T\u00e1rolja l\u00e9gmentesen z\u00e1r\u00f3d\u00f3 palackokban \u00e9s tartsa h\u0171v\u00f6s, s\u00f6t\u00e9t helyen.<\/p>\n<p>&nbsp;<\/p>\n<p>\u00c1ltal\u00e1nosan haszn\u00e1lt szerves old\u00f3szerek tiszt\u00edt\u00e1sa - \u00e9ter Forr\u00e1spont 34,51 \u2103, t\u00f6r\u00e9smutat\u00f3 1,3526, relat\u00edv s\u0171r\u0171s\u00e9g 0,71378. A k\u00f6z\u00f6ns\u00e9ges \u00e9ter gyakran 2% etanolt \u00e9s 0,5% vizet tartalmaz. Az \u00e9ter gyakran tartalmaz kis mennyis\u00e9g\u0171 peroxidot.<\/p>\n<p>A peroxidok vizsg\u00e1lata \u00e9s elt\u00e1vol\u00edt\u00e1sa: 2~3 csepp t\u00f6m\u00e9ny k\u00e9nsav, 1mL2% k\u00e1lium-jodid oldat (ha a k\u00e1lium-jodid oldatot leveg\u0151vel oxid\u00e1lt\u00e1k, h\u00edg n\u00e1trium-szulfit oldat haszn\u00e1lhat\u00f3, am\u00edg a s\u00e1rga sz\u00edn el nem t\u0171nik) \u00e9s 1~2 csepp kem\u00e9ny\u00edt\u0151oldat, j\u00f3l keverj\u00fck \u00f6ssze \u00e9s adjuk hozz\u00e1 az \u00e9tert, a k\u00e9k megjelen\u00e9se, azaz a peroxidok jelenl\u00e9te. T\u00e1vol\u00edtsa el a peroxid lehet haszn\u00e1lni, hogy k\u00e9sz\u00edtsen egy \u00faj h\u00edg oldatot a vas-szulf\u00e1t (el\u0151\u00e1ll\u00edt\u00e1si m\u00f3dszer FeSO47H2O60g, 100mL v\u00edz \u00e9s 6mL t\u00f6m\u00e9ny k\u00e9nsav). Mossunk 100mL \u00e9tert \u00e9s 10mL frissen k\u00e9sz\u00edtett vas-szulf\u00e1t oldatot egy adagol\u00f3 t\u00f6lcs\u00e9rben t\u00f6bbsz\u00f6r, am\u00edg nincs peroxid.<\/p>\n<p>Az alkoholok \u00e9s a v\u00edz vizsg\u00e1lata \u00e9s elt\u00e1vol\u00edt\u00e1sa: az \u00e9terbe egy kev\u00e9s por\u00edtott k\u00e1lium-permangan\u00e1tot \u00e9s egy szem n\u00e1trium-hidroxidot tett\u00fcnk. Az alkohol jelenl\u00e9t\u00e9t az bizony\u00edtja, hogy a n\u00e1trium-hidroxid fel\u00fclet\u00e9n barna r\u00e9szecsk\u00e9k jelennek meg, ha \u00e1llni hagyjuk. A v\u00edz jelenl\u00e9t\u00e9t v\u00edzmentes r\u00e9z-szulf\u00e1ttal vizsg\u00e1ljuk. A v\u00edz nagy r\u00e9sz\u00e9t el\u0151sz\u00f6r v\u00edzmentes kalcium-kloriddal t\u00e1vol\u00edtjuk el, majd f\u00e9mes n\u00e1triummal sz\u00e1r\u00edtjuk. A m\u00f3dszer a k\u00f6vetkez\u0151: 100ml \u00e9ter egy sz\u00e1raz k\u00fapos lombikba, adjunk hozz\u00e1 20~25g v\u00edzmentes kalcium-kloridot, a palack sz\u00e1j\u00e1t egy dug\u00f3val szorosan elz\u00e1rjuk, t\u00f6bb mint egy napig helyezz\u00fck, \u00e9s id\u0151szakos r\u00e1z\u00e1ssal, majd desztill\u00e1ljuk, hogy 33~37 \u2103 frakci\u00f3kat gy\u0171jts\u00fcnk. N\u00e1triumpr\u00e9ssel 1 g n\u00e1triumf\u00e9met k\u00f6zvetlen\u00fcl n\u00e1triumsz\u00e1lakba pr\u00e9sel\u00fcnk, amelyeket egy \u00e9tert tartalmaz\u00f3 palackba helyez\u00fcnk, \u00e9s egy kalcium-klorid sz\u00e1r\u00edt\u00f3cs\u0151vel paraf\u00e1val dugaszolunk. Vagy egy \u00fcvegcs\u00f6vet helyez\u00fcnk a dug\u00f3ba egy kapill\u00e1ris cs\u0151be h\u00fazott v\u00e9ggel, hogy megakad\u00e1lyozzuk a nedvess\u00e9g besziv\u00e1rg\u00e1s\u00e1t, de a keletkez\u0151 g\u00e1z t\u00e1voz\u00e1s\u00e1t is lehet\u0151v\u00e9 tegy\u00fck. Addig helyezz\u00fck, am\u00edg bubor\u00e9kok nem keletkeznek, lehet haszn\u00e1lni; a helyez\u00e9s ut\u00e1n, ha a n\u00e1triumsz\u00e1l fel\u00fclete s\u00e1rgult \u00e9s durvult, \u00fajra g\u0151z\u00f6lni kell, majd a n\u00e1triumsz\u00e1lba nyomni.<\/p>\n<p>&nbsp;<\/p>\n<p>\u00c1ltal\u00e1nosan haszn\u00e1lt szerves old\u00f3szerek tiszt\u00edt\u00e1sa - tetrahidrofur\u00e1n (THF) forr\u00e1spont 67 \u2103 (64,5 \u2103), t\u00f6r\u00e9smutat\u00f3 1,4050, relat\u00edv s\u0171r\u0171s\u00e9g 0,8892.<\/p>\n<p>A tetrahidrofur\u00e1n keverhet\u0151 v\u00edzzel, \u00e9s gyakran tartalmaz kis mennyis\u00e9g\u0171 vizet \u00e9s peroxidot. Ha azt szeretn\u00e9nk, hogy v\u00edzmentes tetrahidrofur\u00e1n, lehet haszn\u00e1lni, hogy reflux l\u00edtium-alum\u00ednium-hidrid az izol\u00e1ci\u00f3 a nedvess\u00e9g (\u00e1ltal\u00e1ban 1000mL k\u00f6r\u00fclbel\u00fcl 2 ~ 4g l\u00edtium-alum\u00ednium-hidrid), hogy t\u00e1vol\u00edtsa el a v\u00edz \u00e9s a peroxidok, majd desztill\u00e1ci\u00f3, gy\u0171jtem\u00e9nye 66 \u00b0 C frakci\u00f3k (nem g\u0151z desztill\u00e1ci\u00f3, a fennmarad\u00f3 kis mennyis\u00e9g\u0171 marad\u00e9k folyad\u00e9k, hogy ki\u00f6ntj\u00fck). A finom\u00edtott folyad\u00e9kot a n\u00e1triumsz\u00e1lhoz adjuk, \u00e9s nitrog\u00e9n atmoszf\u00e9r\u00e1ban kell t\u00e1rolni.<\/p>\n<p>A tetrahidrofur\u00e1n kezel\u00e9s\u00e9n\u00e9l kis mennyis\u00e9gben kell vizsg\u00e1lni, \u00e9s csak akkor kell tiszt\u00edtani, ha biztos, hogy csak kis mennyis\u00e9g\u0171 v\u00edz \u00e9s peroxidok vannak benne, \u00e9s hogy a hat\u00e1s nem t\u00fal intenz\u00edv. \uff01\uff01\uff01\uff01\uff01 A tetrahidrofur\u00e1nban l\u00e9v\u0151 peroxidok savas\u00edtott k\u00e1lium-jodid-oldattal vizsg\u00e1lhat\u00f3k. Ha nagy mennyis\u00e9g\u0171 peroxid van jelen, k\u00fcl\u00f6n kezel\u00e9s indokolt. A nagy mennyis\u00e9g\u0171 peroxidot CuCl-lel t\u00f6rt\u00e9n\u0151 reflux\u00e1l\u00e1ssal lehet most elt\u00e1vol\u00edtani.<\/p>\n<p>&nbsp;<\/p>\n<p>\u00c1ltal\u00e1nosan haszn\u00e1lt szerves old\u00f3szerek tiszt\u00edt\u00e1sa - diox\u00e1n Forr\u00e1spont 101,5 \u00b0C, olvad\u00e1spont 12 \u00b0C, t\u00f6r\u00e9smutat\u00f3 1,4424, relat\u00edv s\u0171r\u0171s\u00e9g 1,0336.<\/p>\n<p>A diox\u00e1n tetsz\u0151legesen keverhet\u0151 v\u00edzzel, gyakran kis mennyis\u00e9g\u0171 dietanol-acet\u00e1lt \u00e9s vizet tartalmaz, a hossz\u00fa ideig t\u00e1rolt diox\u00e1n peroxidot tartalmazhat (az \u00e9terre val\u00f3 utal\u00e1s azonos\u00edt\u00e1sa \u00e9s elt\u00e1vol\u00edt\u00e1sa). Diox\u00e1n tiszt\u00edt\u00e1si m\u00f3dszer, 500mL diox\u00e1nban adjunk hozz\u00e1 8mL t\u00f6m\u00e9ny s\u00f3savat \u00e9s 50mL v\u00edzoldatot, reflux 6~10h, a reflux folyamat sor\u00e1n lassan nitrog\u00e9nt vezet\u00fcnk \u00e1t a keletkezett acetaldehid elt\u00e1vol\u00edt\u00e1s\u00e1ra. Leh\u0171l\u00e9s ut\u00e1n szil\u00e1rd k\u00e1lium-hidroxidot adtunk hozz\u00e1, am\u00edg m\u00e1r nem tudott felold\u00f3dni, a vizes r\u00e9teget elv\u00e1lasztottuk, majd szil\u00e1rd k\u00e1lium-hidroxiddal 24 h-ig sz\u00e1r\u00edtottuk, majd sz\u0171rt\u00fck, meleg\u00edtett\u00fck \u00e9s n\u00e1trium-f\u00e9m jelenl\u00e9t\u00e9ben 8~12 h-ig reflux\u00e1ltuk, v\u00e9g\u00fcl n\u00e1trium-f\u00e9m jelenl\u00e9t\u00e9ben desztill\u00e1ltuk, \u00e9s hungarocellhuzalba pr\u00e9selt\u00fck lez\u00e1r\u00e1s \u00e9s tart\u00f3s\u00edt\u00e1s c\u00e9lj\u00e1b\u00f3l. A finom\u00edtott 1,4-diox\u00e1nt v\u00e9deni kell a leveg\u0151vel val\u00f3 \u00e9rintkez\u00e9st\u0151l.<\/p>\n<p>&nbsp;<\/p>\n<p>5. Amidok<\/p>\n<p>Mint p\u00e9ld\u00e1ul dimetil-formamid, dimetilacetamid, HMPT. Adjunk hozz\u00e1 CaH2-t \u00e9s refluxot, p\u00e1roljuk el nyom\u00e1s alatt, k\u00fcl\u00f6nben k\u00f6nnyen bomlik. Adjunk hozz\u00e1 frissen aktiv\u00e1lt molekulaszit\u00e1kat, \u00e9s t\u00e1roljuk palackban, d\u00e1tummal ell\u00e1tva.<\/p>\n<p>&nbsp;<\/p>\n<p>\u00c1ltal\u00e1nosan haszn\u00e1lt szerves old\u00f3szerek tiszt\u00edt\u00e1sa, N, N-dimetil-formamid -DMF N, N-dimetil-formamid Forr\u00e1spont 149 ~ 156 \u2103, t\u00f6r\u00e9smutat\u00f3 1,430 5, relat\u00edv s\u0171r\u0171s\u00e9g 0,948 7. Sz\u00edntelen folyad\u00e9k, \u00e9s a legt\u00f6bb szerves old\u00f3szer \u00e9s v\u00edz tetsz\u0151legesen keverhet\u0151, a szerves \u00e9s szervetlen vegy\u00fcletek oldhat\u00f3s\u00e1ga j\u00f3.<\/p>\n<p>Az N,N-dimetil-formamid kis mennyis\u00e9g\u0171 vizet tartalmaz. A desztill\u00e1ci\u00f3 sor\u00e1n l\u00e9gk\u00f6ri nyom\u00e1son n\u00e9mi boml\u00e1s k\u00f6vetkezik be, melynek sor\u00e1n dimetil-amin \u00e9s sz\u00e9n-monoxid keletkezik. A boml\u00e1s savak vagy b\u00e1zisok jelenl\u00e9t\u00e9ben felgyorsul. Ez\u00e9rt n\u00e9mi boml\u00e1s k\u00f6vetkezik be, ha szil\u00e1rd k\u00e1lium- (n\u00e1trium-) hidroxidot adunk hozz\u00e1 \u00e9s n\u00e9h\u00e1ny \u00f3r\u00e1n \u00e1t szobah\u0151m\u00e9rs\u00e9kleten hagyjuk. Ez\u00e9rt leggyakrabban kalcium-szulf\u00e1tot, magn\u00e9zium-szulf\u00e1tot, b\u00e1rium-oxidot, szilikag\u00e9lt vagy molekulaszit\u00e1t haszn\u00e1lnak a term\u00e9k sz\u00e1r\u00edt\u00e1s\u00e1ra, amelyet azt\u00e1n cs\u00f6kkentett nyom\u00e1son desztill\u00e1lnak, hogy \u00f6sszegy\u0171jts\u00e9k a 76\u00b0C\/4800 Pa (36 mmHg) frakci\u00f3t. Amely, ha t\u00f6bb vizet tartalmaz, hozz\u00e1adhat\u00f3 annak 1\/10 t\u00e9rfogat benzol, l\u00e9gk\u00f6ri nyom\u00e1son \u00e9s 80 \u2103 alatt elp\u00e1rologtatni a vizet \u00e9s a benzolt, majd v\u00edzmentes magn\u00e9zium-szulf\u00e1t vagy b\u00e1rium-oxid sz\u00e1r\u00edt\u00e1s, \u00e9s v\u00e9g\u00fcl a dekompresszi\u00f3s desztill\u00e1ci\u00f3. A tiszt\u00edtott N,N-dimetil-formamidot f\u00e9nyt\u0151l v\u00e9dve kell t\u00e1rolni.<\/p>\n<p>Az N,N-dimetil-formamidban l\u00e9v\u0151 szabad aminok jelenl\u00e9t\u00e9t, ha vannak, 2,4-dinitrofluorbenzollal lehet ellen\u0151rizni a sz\u00edn el\u0151\u00e1ll\u00edt\u00e1sa \u00e9rdek\u00e9ben.<\/p>\n<p>&nbsp;<\/p>\n<p>6. Dimetil-szulfoxid<\/p>\n<p>Adjunk hozz\u00e1 CaH2-t \u00e9s keverj\u00fck egy \u00e9jszak\u00e1n \u00e1t, majd frakcion\u00e1ljuk cs\u00f6kkentett nyom\u00e1son. Adjunk hozz\u00e1 frissen aktiv\u00e1lt molekulaszit\u00e1kat T\u00e1roljuk \u00fcvegekben \u00e9s d\u00e1tumozzuk.<\/p>\n<p>&nbsp;<\/p>\n<p>7. Piridin<\/p>\n<p>Lehet KOH, NaOH, CaO, BaO vagy n\u00e1trium, majd bep\u00e1roljuk. Adjon hozz\u00e1 frissen aktiv\u00e1lt 5\u00c5 molekulaszit\u00e1kat T\u00e1rolja szorosan lez\u00e1rva \u00e9s d\u00e1tumozza.<\/p>\n<p>&nbsp;<\/p>\n<p>Gyakran haszn\u00e1lt szerves old\u00f3szerek tiszt\u00edt\u00e1sa - Piridin Forr\u00e1spont 115,5\u00b0C, t\u00f6r\u00e9smutat\u00f3 1,509 5, relat\u00edv s\u0171r\u0171s\u00e9g 0,9819.<br \/>\nAz analitikailag tiszta piridin kis mennyis\u00e9g\u0171 vizet tartalmaz, \u00e1ltal\u00e1nos k\u00eds\u00e9rletekhez haszn\u00e1lhat\u00f3. Ha v\u00edzmentes piridint szeretne k\u00e9sz\u00edteni, a piridin k\u00e1lium-hidroxiddal (n\u00e1trium) reflux\u00e1lhat\u00f3, majd nedvess\u00e9gg\u0151z\u00f6l\u00e9si k\u00e9szenl\u00e9tben izol\u00e1lhat\u00f3. A sz\u00e1r\u00edtott piridin er\u0151sen nedvsz\u00edv\u00f3, \u00e9s paraffinnal lez\u00e1rt sz\u00e1j\u00fa ed\u00e9nyben kell t\u00e1rolni.<\/p>\n<p>&nbsp;<\/p>\n<p>8. Etanol<\/p>\n<p>A f\u0151 szennyez\u0151d\u00e9sek a heteroalkoholos olajok, aldehidek, alkoholok, ketonok \u00e9s v\u00edz. Tiszt\u00edthat\u00f3 magn\u00e9ziumforg\u00e1cs \u00e9s j\u00f3d reflux\u00e1l\u00e1s\u00e1val, majd CaO-val val\u00f3 reflux\u00e1l\u00e1ssal \u00e9s bep\u00e1rl\u00e1ssal. Frissen aktiv\u00e1lt 3A molekulasz\u0171r\u0151ket adjunk hozz\u00e1, \u00e9s t\u00e1roljuk \u00fcvegekben.<\/p>\n<p>&nbsp;<\/p>\n<p>K\u00f6z\u00f6ns\u00e9ges szerves old\u00f3szerek tiszt\u00edt\u00e1sa - etanol Forr\u00e1spont 78,5 \u2103, t\u00f6r\u00e9smutat\u00f3 1,3616, relat\u00edv s\u0171r\u0171s\u00e9g 0,7893.<br \/>\nA v\u00edzmentes etanol el\u0151\u00e1ll\u00edt\u00e1s\u00e1nak sz\u00e1mos m\u00f3dja van, \u00e9s a v\u00edzmentes etanol min\u0151s\u00e9g\u00e9vel szemben t\u00e1masztott k\u00fcl\u00f6nb\u00f6z\u0151 k\u00f6vetelm\u00e9nyeknek megfelel\u0151en k\u00fcl\u00f6nb\u00f6z\u0151 m\u00f3dszereket v\u00e1lasztanak.<\/p>\n<p>Ha 98%~99% etanolra van sz\u00fcks\u00e9g, a k\u00f6vetkez\u0151 m\u00f3dszerek haszn\u00e1lhat\u00f3k:<br \/>\n(1) a haszn\u00e1lata benzol, v\u00edz \u00e9s etanol, hogy egy alacsony azeotr\u00f3p kever\u00e9ket alkotnak a term\u00e9szet benzol, benzol adunk etanol, frakcion\u00e1lt desztill\u00e1ci\u00f3, 64,9 \u2103, amikor elp\u00e1rolgott benzol, v\u00edz, etanol terner \u00e1lland\u00f3 forr\u00e1spont\u00fa kever\u00e9k, felesleges benzol a kialakul\u00e1s\u00e1t egy bin\u00e1ris \u00e1lland\u00f3 forr\u00e1spont\u00fa kever\u00e9k etanol a 68,3 volt elp\u00e1rolgott, \u00e9s v\u00e9g\u00fcl elp\u00e1rolgott etanol. Az ipar t\u00f6bbnyire ezt a m\u00f3dszert haszn\u00e1lja.<\/p>\n<p>(2) v\u00edztelen\u00edt\u00e9s \u00e9getett m\u00e9sszel. 100 ml 95% etanolhoz adjunk 20 g friss t\u00f6mb\u00f6s \u00e9getett meszet, 3~5 \u00f3ra reflux, majd desztill\u00e1ci\u00f3.<\/p>\n<p>Ha 99% etanoln\u00e1l t\u00f6bbet szeretne, akkor a k\u00f6vetkez\u0151 m\u00f3dszereket haszn\u00e1lhatja:<br \/>\n(1) 100 ml 99% etanolban adjunk hozz\u00e1 7 g n\u00e1trium-met\u00e1l, v\u00e1rjuk meg, am\u00edg a reakci\u00f3 befejez\u0151dik, majd adjunk hozz\u00e1 27,5 g dietil-ftal\u00e1tot vagy 25 g dietil-oxal\u00e1tot, refluxoljunk 2~3 \u00f3r\u00e1n \u00e1t, majd desztill\u00e1ljuk.<\/p>\n<p>B\u00e1r a n\u00e1trium-f\u00e9m az etanolban l\u00e9v\u0151 v\u00edzzel hidrog\u00e9n \u00e9s n\u00e1trium-hidroxid el\u0151\u00e1ll\u00edt\u00e1s\u00e1ra k\u00e9pes, de a keletkezett n\u00e1trium-hidroxid \u00e9s az etanol egyens\u00falyi reakci\u00f3t mutat, \u00edgy a n\u00e1trium-f\u00e9m haszn\u00e1lata \u00f6nmag\u00e1ban nem tudja teljesen elt\u00e1vol\u00edtani a vizet az etanolban, hozz\u00e1 kell adni a magas forr\u00e1spont\u00fa \u00e9szterek, p\u00e9ld\u00e1ul a dietil-ftal\u00e1t \u00e9s a keletkezett n\u00e1trium-hidroxid felesleg\u00e9hez, hogy g\u00e1tolja a fenti reakci\u00f3t, hogy el\u00e9rje a tov\u00e1bbi dehidrat\u00e1l\u00e1s c\u00e9lj\u00e1t.<\/p>\n<p>(2) 60 ml 99% etanolban adjunk hozz\u00e1 5 g magn\u00e9ziumot \u00e9s 0,5 g j\u00f3dot, \u00e9s amikor a magn\u00e9zium felold\u00f3dik, hogy alkoholos magn\u00e9ziumot hozzon l\u00e9tre, majd adjunk hozz\u00e1 900 ml 99% etanolt, 5 \u00f3r\u00e1n \u00e1t refluxoljuk, majd desztill\u00e1ljuk, ami 99,9% etanolt eredm\u00e9nyezhet.<\/p>\n<p>Mivel az etanol nagyon er\u0151s higroszk\u00f3poss\u00e1ggal rendelkezik, ez\u00e9rt a m\u0171velet sor\u00e1n a m\u0171veletnek gyorsnak kell lennie, minimaliz\u00e1lni kell az \u00e1tad\u00e1sok sz\u00e1m\u00e1t annak \u00e9rdek\u00e9ben, hogy megakad\u00e1lyozza a nedvess\u00e9g bejut\u00e1s\u00e1t a leveg\u0151be, \u00e9s ugyanakkor a haszn\u00e1lt eszk\u00f6zt el\u0151zetesen j\u00f3l meg kell sz\u00e1r\u00edtani.<\/p>\n<p>&nbsp;<\/p>\n<p>Megjegyz\u00e9s: Ha f\u00e9mvegy\u00fcleteket alkalmazunk tiszt\u00edt\u00f3szerk\u00e9nt, a desztill\u00e1l\u00f3 lombikban l\u00e9v\u0151 old\u00f3szert a desztill\u00e1ci\u00f3 sor\u00e1n a t\u00e9rfogat legal\u00e1bb egynegyed\u00e9n\u00e9l kell tartani, \u00e9s soha nem szabad hagyni, hogy sz\u00e1razra p\u00e1rologjon, mivel ez vesz\u00e9lyes lehet.<\/p>\n<p><!-- lc-commercial-start --><\/p>\n<h2>A practical checklist for coating formulation decisions<\/h2>\n<p>In conventional coating work, technical buyers usually move fastest when they define the film-performance target first and then review rheology, substrate compatibility, additives, and long-term durability as one system instead of isolated tweaks.<\/p>\n<ul>\n<li><strong>Start from the application scenario:<\/strong> furniture, powder coating, industrial paint, and waterborne systems often reward different formulation priorities.<\/li>\n<li><strong>Check surface quality and process stability together:<\/strong> leveling, wetting, foam control, and drying often interact strongly.<\/li>\n<li><strong>Review the film after full cure or drying:<\/strong> adhesion, hardness, weatherability, and color stability usually decide the commercial result.<\/li>\n<li><strong>Use targeted additive screening:<\/strong> wetting, leveling, defoaming, and wear-resistance additives work best when the defect is clearly defined.<\/li>\n<\/ul>\n<h3>Aj\u00e1nlott term\u00e9kreferenci\u00e1k<\/h3>\n<ul>\n<li><strong><a href=\"https:\/\/longchangchemical.com\/hu\/product\/photoinitiator-819-irgacure-819-cas-162881-26-7\/\">CHLUMINIT 819<\/a>:<\/strong> Useful when a formulation needs stronger absorption and deeper cure support.<\/li>\n<li><strong><a href=\"https:\/\/longchangchemical.com\/hu\/product\/cas-270586-78-2\/\">CHLUMINIT TMO<\/a>:<\/strong> \u00c9rt\u00e9kes \u00f6sszehasonl\u00edt\u00e1si pont, amikor az alacsonyabb s\u00e1rgul\u00e1s vagy a TPO-csere megbesz\u00e9l\u00e9se fontos.<\/li>\n<li><strong><a href=\"https:\/\/longchangchemical.com\/hu\/product\/acetyl-tributyl-citrate-cas-77-90-7\/\">CHLUMIFLEX ATBC<\/a>:<\/strong> A practical non-phthalate plasticizer reference for application and compliance screens.<\/li>\n<li><strong><a href=\"https:\/\/longchangchemical.com\/hu\/product\/dotp-cas-6422-86-2\/\">CHLUMIFLEX DOTP<\/a>:<\/strong> A standard terephthalate-plasticizer benchmark in flexible-plastics applications.<\/li>\n<\/ul>\n<h3>GYIK v\u00e1s\u00e1rl\u00f3knak \u00e9s formul\u00e1l\u00f3knak<\/h3>\n<p><strong>Why can a coating with good initial appearance still fail later?<\/strong><br \/>Because many failures show up only after full cure, storage, or service exposure, when adhesion, flexibility, or weatherability becomes the limiting factor.<\/p>\n<p><strong>Should coating additives be chosen one by one outside the full formula?<\/strong><br \/>It is usually safer to screen them inside the real formula because resin choice, pigments, and the rest of the additive package can change the result.<\/p>\n<p><!-- lc-commercial-end --><\/p>","protected":false},"excerpt":{"rendered":"<p>Commonly used reagents from chemical suppliers are only sufficient for general chemical reactions. In order to ensure the smooth running of some organic synthesis reactions, further purification of the reagents<\/p>","protected":false},"author":1,"featured_media":0,"comment_status":"closed","ping_status":"open","sticky":false,"template":"","format":"standard","meta":{"footnotes":""},"categories":[106],"tags":[],"class_list":["post-7274","post","type-post","status-publish","format-standard","hentry","category-laboratory-news"],"yoast_head":"<!-- This site is optimized with the Yoast SEO plugin v25.3.1 - https:\/\/yoast.com\/wordpress\/plugins\/seo\/ -->\n<title>Purification of common solvents - Longchang Chemical<\/title>\n<meta name=\"description\" content=\"Commonly used reagents from chemical suppliers are only sufficient for general chemical reactions. 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