PL33674B3 - A method of recovering precious metals entrained from catalysts by gases during catalytic reactions - Google Patents

A method of recovering precious metals entrained from catalysts by gases during catalytic reactions Download PDF

Info

Publication number
PL33674B3
PL33674B3 PL33674A PL3367440A PL33674B3 PL 33674 B3 PL33674 B3 PL 33674B3 PL 33674 A PL33674 A PL 33674A PL 3367440 A PL3367440 A PL 3367440A PL 33674 B3 PL33674 B3 PL 33674B3
Authority
PL
Poland
Prior art keywords
filter
catalysts
precious metals
catalytic reactions
gases during
Prior art date
Application number
PL33674A
Other languages
Polish (pl)
Filing date
Publication date
Application filed filed Critical
Publication of PL33674B3 publication Critical patent/PL33674B3/en

Links

Description

Najdluzszy czas trwania patentu do dnia 7 maja 1964 r.W patencie nr 33673 opisano sposób odzy¬ skiwania szlachetnych metali porwanych z ka¬ talizatorów przez gazy podczas reakcji katali¬ tycznych, zwlaszcza reakcji utleniania amonia¬ ku, polegajacy na przepuszczaniu gazów, po¬ chodzacych z reakcji katalitycznej: przez filtr. zdolny/ do zatrzymywania czastek katalizatora, zwlaszcza przez filtr z ogniotrwalego materialu wlóknistego.Obecnie wykryto, ze szczególnie dobre wy¬ niki osiaga sie stosujac filtry, utworzone z ma¬ sy przewodzacej elektrycznosc a zwlaszcza utworzone z masy metalowej.Filtr metalowy najlepiej umiescic w komo¬ rze, tak zeby nie tamowal przeplywu gazu, przed miejscem skraplania pary wodnej. Prze¬ puszczalna dla gazu masa filtru moze sie skla¬ dac z metalu w postaci wlóknistej, np. w po¬ staci welny. Szczególnie odpowiednie do tego celu sa metale takie, jak stal nierdzewna, sta] niklowa, stal chromowa, aluminium, monel i nikiel, gdyz sa one odporne na dzialanie wy - sokich temperatur oraz na korozyjne dzialanie gazów.Gdy na filtrze zbierze sie dostateczna ilosc metalu szlachetnego, filtr usuwa sie i zaste¬ puje go swiezym. Usuniety filtr poddaje sie nastepnie odpowiedniej obróbce w celu odzy¬ skania zawartego w nim szlachetnego metalu.Naogól odzyskiwanie polega na rozpuszczeniumetalu lub stopu w odpowiednim rozpuszczal¬ niku, nie rozpuszczajacym szlachetnego metalu, i na oddzielaniu pozostalego metalu szlachet¬ nego. W wiekszosci przypadków metal mozna rozpuscic .w, kwasie solnym, a ^zawarty w nim metal szlachetny odsaczyc od otrzymanego roz¬ tworu. Jezeli metal albo stop uzyty jako filtr, trzeba' rozpuszczac w1 rozpuszczalnikach dosta¬ tecznie mocnych do rozpuszczenia równiez i katalizatora, to katalizator odzyskuje sie przez odpowiednia dalsza chemiczna przeróbke wedlug znanych metod.Okazalo sie, iz stosujac, filtry metalowe mozna odzyskac o 20% wiecej szlachetnego metalu, niz przy uzyciu filtrów z niemetalo¬ wych materialów ogniotrwalych, wymienionych w patencie nr 33673. PLThe longest term of the patent until May 7, 1964. Patent No. 33,673 describes a method of recovering noble metals entrained from catalysts by gases during catalytic reactions, especially ammonia oxidation, consisting in passing gases resulting from the reaction. catalytic converter: by filter. capable of retaining catalyst particles, especially through a refractory fibrous filter. It has now been found that particularly good results are achieved with filters made of electrically conductive mass, especially made of metal mass. The metal filter is best placed in a chamber so as not to obstruct the gas flow in front of the place where water vapor condenses. The gas-permeable mass of the filter may consist of a metal in a fibrous form, for example in the form of wool. Metals such as stainless steel, solid nickel, chrome steel, aluminum, monel and nickel are particularly suitable for this purpose as they are resistant to high temperatures and to the corrosive effects of gases. When enough metal has collected on the filter the filter is removed and replaced with a fresh one. The removed filter is then subjected to appropriate treatment to recover the noble metal contained therein. Generally the recovery consists of dissolving the metal or alloy in a suitable solvent which does not dissolve the noble metal and separating the remaining noble metal. In most cases, the metal can be dissolved in hydrochloric acid and the noble metal contained therein can be drained from the resulting solution. If the metal or alloy used as a filter must be dissolved in solvents strong enough to dissolve the catalyst as well, the catalyst is recovered by appropriate further chemical treatment according to known methods. It has been found that using metal filters can be recovered by 20% more precious metal, than with the use of non-metallic refractory filters mentioned in Patent No. 33673. PL

Claims (4)

Zastrzezenia patentowe 1. Sposób odzyskiwania szlachetnych metali, porwanych z katalizatorów przez gazy pod¬ czas reakcji katalitycznych, zwlaszcza reak¬ cji utleniania ^amoniaku, wedlug patentu nr 33673, znamienny tym, ze gazy, pochodzace z reakcji katalitycznej, przepuszcza sie przez filtr, utworzony z przepuszczalnej dla gazu masy, przewodzacej elektrycznosc. Claims 1. A method of recovering precious metals entrained from catalysts by gases during catalytic reactions, in particular ammonia oxidation, according to patent No. 33673, characterized in that the gases resulting from the catalytic reaction are passed through a filter formed by made of gas-permeable, electrically conductive mass. 2. Sposób wedlug zastrz. 1, znamienny tynvze filtr sklada sie z przepuszczalnej dla gazów masy metalowej. 2. The method according to claim A method as claimed in claim 1, characterized in that the plaster filter consists of a gas-permeable metal mass. 3. Sposób wedlug zastrz. 1 lub 2, znamienny tym, ze filtr sklada sie z metalu w postaci wlóknistej. 3. The method according to p. The filter as claimed in claim 1 or 2, characterized in that the filter consists of a fibrous metal. 4. Sposób wedlug zastrz. 1 — 3, znamienny tym, ze filtr umieszcza sie w strumieniu gazu przed miejscem skraplania pary wodnej. Hercules Powder Company Baker & Company Incorporated Zastepca: inz. W. Zakrzewski rzecznik patentowy P.O.Z.G/13Gddz.w3-stoku — 150 zam. 1655 12.7—19.9-49 r. T 05903 PL4. The method according to p. A process as claimed in any one of the preceding claims, characterized in that the filter is placed in the gas stream upstream of the steam condensation. Hercules Powder Company Baker & Company Incorporated Deputy: engineer W. Zakrzewski patent attorney P.O.Z.G / 13Gddz.w3-slope - 150 order 1655 12.7—19.9-49 T 05903 PL
PL33674A 1940-07-08 A method of recovering precious metals entrained from catalysts by gases during catalytic reactions PL33674B3 (en)

Publications (1)

Publication Number Publication Date
PL33674B3 true PL33674B3 (en) 1949-06-30

Family

ID=

Similar Documents

Publication Publication Date Title
CN106834715B (en) A kind of method of comprehensive utilization of arsenic-containing material
JPS6041612B2 (en) Method for extracting molybdenum and vanadium from desulfurization waste catalyst
PL33674B3 (en) A method of recovering precious metals entrained from catalysts by gases during catalytic reactions
US2226113A (en) Method for reacting gas mixtures by means of precious metal catalysts
JPS6136979B2 (en)
JP4989771B1 (en) Regeneration method of exhaust gas purification catalyst
US3996046A (en) Extraction and purification of silver from sulfates
CN106693640B (en) A treatment system for purifying industrial waste gas
JPH0765121B2 (en) How to reduce precious metals
JP3368820B2 (en) Method for treating fluorine compound-containing gas and catalyst
US3515541A (en) Process for the recovery of noble metals
JPS6116326B2 (en)
JPS55164042A (en) Method of separating and recovering platinum from platinum plating waste liquid
RU2301275C2 (en) Method of processing uranium-contaminated metallic molybdenum waste
JPH04304328A (en) Method for segregating noble metal
JPS57155333A (en) Method for recovering platinum group metal from residual catalyst
US580948A (en) montgomerie
JPH05212297A (en) Platinum group metal recovering method from metallic foil carrier catalyst
SU139837A1 (en) Method for extracting platinum and palladium from spent alumina-based catalysts
JPH05212296A (en) Platinum group metal recovering method from metallic foil carrier catalyst
GB542330A (en) Improvements in or relating to the recovery of precious metals lost during the catalytic conversion of gases
JPH01225730A (en) How to recover ruthenium from ruthenium resistor
JPS593938B2 (en) Method for recovering platinum group elements from platinum-based catalysts
JPH01142036A (en) Method for recovering platinum metal
KR810001293B1 (en) Method for preparation of catalyst for decomposing ammonia by oxidation