{"id":4229,"date":"2024-12-18T08:55:27","date_gmt":"2024-12-18T08:55:27","guid":{"rendered":"https:\/\/regenerative-thermal-oxidizers.com\/?page_id=4229"},"modified":"2024-12-23T08:56:43","modified_gmt":"2024-12-23T08:56:43","slug":"reusing-low-concentration-methane-gas","status":"publish","type":"page","link":"https:\/\/regenerative-thermal-oxidizers.com\/de\/reusing-low-concentration-methane-gas\/","title":{"rendered":"Reusing Low-Concentration Methane Gas"},"content":{"rendered":"

[et_pb_section fb_built=”1″ fullwidth=”on” _builder_version=”4.27.4″ _module_preset=”default” global_colors_info=”{}”][et_pb_fullwidth_header title=”Reusing Low-Concentration Methane & Vam” button_one_text=”Click Here” _builder_version=”4.27.4″ _module_preset=”default” global_colors_info=”{}”]<\/p>\n

Entdecken Sie, wie unsere fortschrittlichen RTO-Systeme die effiziente Wiederverwendung niedrig konzentrierter Gase erm\u00f6glichen, Emissionen reduzieren und Kosten senken. Optimieren Sie Ihre Prozesse noch heute mit nachhaltigen, leistungsstarken L\u00f6sungen.<\/span><\/p>\n

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Aktuelle Situation der Nutzung von Methan mit niedriger Konzentration<\/strong><\/h2>\n

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Methan in niedriger Konzentration hat ein gro\u00dfes Emissionsvolumen<\/h3>\n
    \n
  • Im Jahr 2018 betrug der weltweite Methanaussto\u00df aus Kohlebergwerken 40 Millionen Tonnen, was einer Emission von einer Milliarde Tonnen CO2-\u00c4quivalenten an Treibhausgasen entspricht. Chinas Emissionen machen mehr als die H\u00e4lfte der gesamten weltweiten Methanemissionen aus dem Kohlebergbau aus.<\/li>\n
  • Im Jahr 2018 f\u00f6rderte China 13 Milliarden Kubikmeter Gas, von denen 5,3 Milliarden Kubikmeter mit einer Konzentration von \u00fcber 91 TP3T genutzt wurden, was einer Nutzungsrate von 40,71 TP3T entspricht.<\/li>\n
  • Beim Kohleabbau werden etwa 601\u2013701 TP3T des niedrig konzentrierten Gases (unter 91 TP3T) freigesetzt, wobei die Nutzungsrate nur 21 TP3T betr\u00e4gt. Der Gro\u00dfteil davon wird nicht genutzt, sondern direkt in die Atmosph\u00e4re abgegeben und verschmutzt die Umwelt.<\/li>\n
  • Chinas Kohlebergwerke sto\u00dfen j\u00e4hrlich insgesamt 24 Milliarden Kubikmeter Methan in die Atmosph\u00e4re aus. Dies entspricht einem Drittel der gesamten industriellen Methanabgasmenge und verursacht 200 Millionen Tonnen Kohlenstoffemissionen.<\/li>\n
  • Gas ist brennbar und explosiv (5%~15%) (Sicherheitsproblem).<\/li>\n<\/ul>\n

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    Methangaseigenschaften: Brennstoff + Nicht-CO2-Treibhausgase<\/h3>\n
      \n
    • Methangas ist eine saubere Brennstoffressource.<\/strong><\/em><\/li>\n
    • Gas (Methan) ist ein Treibhausgas. Der Treibhauseffekt von Methan hat ein 28-mal h\u00f6heres Erw\u00e4rmungspotenzial (GWP) als Kohlendioxid \u00fcber einen Zeitraum von 100 Jahren.<\/li>\n
    • Eine drastische Reduzierung der Methanemissionen ist eine notwendige Voraussetzung f\u00fcr die Eind\u00e4mmung der globalen Erw\u00e4rmung. unter 1,5 \u2103<\/em><\/strong>.<\/li>\n
    • Im Januar 2021 wies das Ministerium f\u00fcr \u00d6kologie und Umweltschutz auf die Notwendigkeit hin, die \u00dcberwachung der Treibhausgase zu verst\u00e4rken und schrittweise in die allgemeine Umsetzung des \u00f6kologischen Umwelt\u00fcberwachungssystems zu integrieren. Auf der Ebene der wichtigsten Emissionspunktquellen werden Pilotprojekte zur \u00dcberwachung der Methanemissionen in Schl\u00fcsselindustrien wie \u00d6l und Gas, Kohlebergbau usw. durchgef\u00fchrt.<\/li>\n
    • Der Neustart des National Certified Voluntary Emission Reduction (CCER)-Programms steht unmittelbar bevor. (Berechnet mit 50 Yuan\/Tonne, entsprechend einem Gaswert von etwa 0,75 Yuan\/Nm3).<\/li>\n
    • Die Oxidation und Zerst\u00f6rung von Abgasen wird in Zukunft eine der Richtungen zur Reduzierung der Methanemissionen sein.<\/li>\n<\/ul>\n

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      Wiederverwendungsmodus f\u00fcr Methan mit niedriger Konzentration<\/strong><\/h2>\n

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        \n
      • Vacuum pressure swing adsorption technology (adsorption of methane adsorbent, adsorption of non methane adsorbent method)<\/span><\/li>\n
      • Raise the concentration to over 30% and enter the coalbed methane civil pipeline network. (A small amount)<\/span><\/li>\n
      • Low concentration gas dehydration and adsorbent performance affect purification.<\/span><\/li>\n
      • The gas concentration and volume are unstable.<\/span><\/li>\n<\/ul>\n

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        <\/h4>\n

        Reinigungs- und Versorgungsmodus<\/h4>\n
          <\/ul>\n

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            \n
          • Methane internal combustion engine exhaust heat recovery for supplying saturated steam or hot water.<\/span><\/li>\n
          • Methane thermal storage oxidation heating can provide high-temperature flue gas or steam. (Anti freezing of wellbore)<\/span><\/li>\n
          • Heating is limited to northern coal mines, and a small number of southern coal mines require cooling to meet mine cooling needs.<\/span><\/li>\n
          • The short heating time is not conducive to maximizing the utilization of methane throughout the year.<\/span><\/li>\n<\/ul>\n

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            <\/h4>\n

            Heiz- (K\u00fchl-)Modus<\/h4>\n
              <\/ul>\n

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                \n
              • Low concentration gas internal combustion engine power generation.<\/span><\/li>\n
              • Low concentration gas with a concentration of 9% to 30% is used for internal combustion engine power generation.<\/span>
                NOx emissions issue.<\/span><\/li>\n
              • Thermal storage oxidation waste heat power generation. The gas concentration is 1.2%, and the initial investment is relatively large<\/span><\/li>\n
              • The electricity price directly determines the economic benefits of the project, whether it is for self use by the coal mine or for grid connection. <\/span><\/li>\n<\/ul>\n

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                <\/h4>\n

                Stromerzeugungsmodus<\/h4>\n
                  <\/ul>\n

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                    \n
                  • Gas oxidation heat is generated by a waste heat boiler to produce steam with medium temperature, medium pressure or above parameters, equipped with a steam turbine to provide electricity and steam. (Development direction)<\/span><\/li>\n<\/ul>\n

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                    <\/h4>\n

                    W\u00e4rmespeicheroxidations-Kraft-W\u00e4rme-Kopplungsmodus<\/h4>\n
                      <\/ul>\n

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                      Kaskade und Management der Methankonzentration in Kohlebergwerken
                      <\/strong>(Am Beispiel China im Jahr 2020)<\/h2>\n

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                      Das beim Kohlebergbau entstehende Kohlefl\u00f6zgas wird allgemein als \u201eGas\u201c bezeichnet und sein Hauptbestandteil ist Methan (CH4).
                      Derzeit wird alles Gas mit einer Konzentration unter 8% in die Atmosph\u00e4re freigesetzt, was eine gro\u00dfe Menge an Umweltverschmutzung verursacht.
                      Durch die vollst\u00e4ndige Nutzung dieser Ressourcen zur W\u00e4rme- und Stromerzeugung k\u00f6nnen erhebliche wirtschaftliche Vorteile und Vorteile bei der Reduzierung des CO2-Aussto\u00dfes erzielt werden.<\/p>\n

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                      W\u00e4rmespeicherung und Oxidations-Energiekaskadennutzungstechnologie<\/strong><\/h2>\n

                      [\/et_pb_text][et_pb_image src=”https:\/\/regenerative-thermal-oxidizers.com\/wp-content\/uploads\/2024\/12\/0-methane-gas-3.webp” alt=”methane gas” title_text=”0-methane gas 3″ _builder_version=”4.27.4″ _module_preset=”default” global_colors_info=”{}”][\/et_pb_image][\/et_pb_column][\/et_pb_row][et_pb_row _builder_version=”4.27.4″ _module_preset=”default” global_colors_info=”{}”][et_pb_column type=”4_4″ _builder_version=”4.27.4″ _module_preset=”default” global_colors_info=”{}”][et_pb_text _builder_version=”4.27.4″ _module_preset=”default” global_colors_info=”{}”]<\/p>\n

                      Prozessflussdiagramm<\/strong><\/h2>\n

                      [\/et_pb_text][et_pb_image src=”https:\/\/regenerative-thermal-oxidizers.com\/wp-content\/uploads\/2024\/12\/0-methane-gas-4-2.webp” alt=”methane gas” title_text=”0-methane gas 4 (2)” _builder_version=”4.27.4″ _module_preset=”default” global_colors_info=”{}”][\/et_pb_image][\/et_pb_column][\/et_pb_row][\/et_pb_section][et_pb_section fb_built=”1″ _builder_version=”4.27.4″ _module_preset=”default” global_colors_info=”{}”][et_pb_row _builder_version=”4.27.4″ _module_preset=”default” global_colors_info=”{}”][et_pb_column type=”4_4″ _builder_version=”4.27.4″ _module_preset=”default” global_colors_info=”{}”][et_pb_text _builder_version=”4.27.4″ _module_preset=”default” global_colors_info=”{}”]<\/p>\n

                      Sicherer Transport und Mischen von CH4 und Vam in niedriger Konzentration<\/strong><\/h2>\n

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                        \n
                      • Funktion:<\/strong>
                        Transportieren Sie Gas mit niedriger Konzentration sicher vom Abgasende zum Gasverbrauchsende und stellen Sie die Qualit\u00e4t des transportierten Gases sicher. Das betroffene Abgasende ist eine Gasentnahmestation und das betroffene Gasende ist ein Mischsystem.
                        <\/strong><\/li>\n
                      • Installation:<\/strong>
                        Das direkt an den Abgasauslass der Gasabsaugstation angeschlossene Dreiwegerohr erfordert keine Rohrleitungsmodifikation.<\/li>\n<\/ul>\n

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                        \u00a0Hauptausr\u00fcstung \u2460 \u2014 Elektrisches Ablassventil<\/span><\/strong><\/h3>\n
                          \n
                        • Prinzip und Funktion:<\/strong>
                          Die elektrische Ausl\u00f6sevorrichtung wird haupts\u00e4chlich zur Notentlastung des Systemdrucks verwendet und am Anfang und Ende der F\u00f6rderleitung installiert. Ihr Schwerpunkt liegt eher auf dem Schutz von Grubengasentw\u00e4sserungsstationen und Mischsystemen.<\/li>\n
                        • Installationsvoraussetzungen:<\/strong>
                          Installiert am Endauslassrohr der F\u00f6rderleitung und der Auslassabgasleitung der Grubengasentw\u00e4sserungsstation. Am hinteren Ende des Ablassventils sollte eine trockene Flammensperre installiert werden, um sicherzustellen, dass das freigesetzte Gas die Rohrleitung nicht beeintr\u00e4chtigt.<\/li>\n<\/ul>\n

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                          \u00a0Hauptausr\u00fcstung \u2461 \u2013 Automatische Pulverspr\u00fch- und Explosionsunterdr\u00fcckungsvorrichtung<\/span><\/strong><\/h3>\n
                            \n
                          • Prinzip und Funktion:<\/strong>
                            Die elektrische Ausl\u00f6sevorrichtung wird haupts\u00e4chlich zur Notentlastung des Systemdrucks verwendet und am Anfang und Ende der F\u00f6rderleitung installiert. Ihr Schwerpunkt liegt eher auf dem Schutz von Grubengasentw\u00e4sserungsstationen und Mischsystemen.<\/li>\n
                          • Installationsvoraussetzungen:<\/strong>
                            Installiert am Endauslassrohr der F\u00f6rderleitung und der Auslassabgasleitung der Grubengasentw\u00e4sserungsstation. Am hinteren Ende des Ablassventils sollte eine trockene Flammensperre installiert werden, um sicherzustellen, dass das freigesetzte Gas die Rohrleitung nicht beeintr\u00e4chtigt.<\/li>\n<\/ul>\n

                            [\/et_pb_text][\/et_pb_column][\/et_pb_row][et_pb_row column_structure=”1_2,1_2″ _builder_version=”4.27.4″ _module_preset=”default” global_colors_info=”{}”][et_pb_column type=”1_2″ _builder_version=”4.27.4″ _module_preset=”default” global_colors_info=”{}”][et_pb_image src=”https:\/\/regenerative-thermal-oxidizers.com\/wp-content\/uploads\/2024\/12\/0-methane-gas-5.webp” alt=”Powder automatic powder spraying and explosion suppression device” title_text=”0-methane gas 5″ _builder_version=”4.27.4″ _module_preset=”default” global_colors_info=”{}”][\/et_pb_image][et_pb_text _builder_version=”4.27.4″ _module_preset=”default” global_colors_info=”{}”]<\/p>\n

                            1. D\u00fcse der Explosionsunterdr\u00fcckungsvorrichtung<\/p>\n

                            2. Pulvervorratsbeh\u00e4lter mit Explosionsunterdr\u00fcckungsvorrichtung<\/p>\n

                            3. Feuerl\u00f6schmittelpuffer<\/p>\n

                            4. Gasgenerator<\/p>\n

                            5. Terminal<\/p>\n

                            6. Kabel<\/p>\n

                            7. Verantwortlicher<\/p>\n

                            8. Ultraviolett-Flammensensor<\/p>\n

                            [\/et_pb_text][\/et_pb_column][et_pb_column type=”1_2″ _builder_version=”4.27.4″ _module_preset=”default” global_colors_info=”{}”][et_pb_image src=”https:\/\/regenerative-thermal-oxidizers.com\/wp-content\/uploads\/2024\/12\/0-methane-gas-6.webp” alt=”Powder automatic powder spraying and explosion suppression device” title_text=”0-methane gas 6″ _builder_version=”4.27.4″ _module_preset=”default” global_colors_info=”{}”][\/et_pb_image][\/et_pb_column][\/et_pb_row][et_pb_row _builder_version=”4.27.4″ _module_preset=”default” global_colors_info=”{}”][et_pb_column type=”4_4″ _builder_version=”4.27.4″ _module_preset=”default” global_colors_info=”{}”][et_pb_text _builder_version=”4.27.4″ _module_preset=”default” header_3_text_color=”#0C71C3″ hover_enabled=”0″ global_colors_info=”{}” sticky_enabled=”0″]<\/p>\n

                            \u00a0Hauptausr\u00fcstung \u2462 \u2014<\/span>Automatische Pulverspr\u00fch- und Explosionsunterdr\u00fcckungsvorrichtung<\/span><\/strong><\/h3>\n
                              \n
                            • Prinzip und Funktion:<\/strong>
                              Die elektrische Ausl\u00f6sevorrichtung wird haupts\u00e4chlich zur Notentlastung des Systemdrucks verwendet und am Anfang und Ende der F\u00f6rderleitung installiert. Ihr Schwerpunkt liegt eher auf dem Schutz von Grubengasentw\u00e4sserungsstationen und Mischsystemen.<\/li>\n
                            • Installationsvoraussetzungen:<\/strong>
                              Installiert am Endauslassrohr der F\u00f6rderleitung und der Auslassabgasleitung der Grubengasentw\u00e4sserungsstation. Am hinteren Ende des Ablassventils sollte eine trockene Flammensperre installiert werden, um sicherzustellen, dass das freigesetzte Gas die Rohrleitung nicht beeintr\u00e4chtigt.<\/li>\n<\/ul>\n

                              [\/et_pb_text][et_pb_image src=”https:\/\/regenerative-thermal-oxidizers.com\/wp-content\/uploads\/2024\/12\/0-methane-gas-7.webp” alt=”Water sealed fire and explosion prevention device
                              \n” title_text=”0-methane gas 7″ _builder_version=”4.27.4″ _module_preset=”default” global_colors_info=”{}”][\/et_pb_image][\/et_pb_column][\/et_pb_row][et_pb_row _builder_version=”4.27.4″ _module_preset=”default” column_structure=”2_5,3_5″ use_custom_gutter=”on” gutter_width=”1″ hover_enabled=”0″ sticky_enabled=”0″][et_pb_column _builder_version=”4.27.4″ _module_preset=”default” type=”2_5″][et_pb_text _builder_version=”4.27.4″ _module_preset=”default” header_3_text_color=”#0C71C3″ hover_enabled=”0″ global_colors_info=”{}” sticky_enabled=”0″]<\/p>\n

                              \u00a0Hauptausr\u00fcstung \u2463 \u2013 Explosionsschutz- und Entl\u00fcftungsvorrichtung<\/span><\/strong><\/span><\/h3>\n
                                \n
                              • Einsatz einer Kombination aus fotoelektrischen Flammensensoren, Druckkontrollsensoren und elektromechanischer Verbindung zur Steuerung der Wirkung des automatischen explosionsgesch\u00fctzten Ger\u00e4ts<\/li>\n
                              • Achten Sie auf die Einbaurichtung<\/li>\n<\/ul>\n

                                [\/et_pb_text][\/et_pb_column][et_pb_column _builder_version=”4.27.4″ _module_preset=”default” type=”3_5″][et_pb_image src=”https:\/\/regenerative-thermal-oxidizers.com\/wp-content\/uploads\/2024\/12\/0-methane-gas-8.webp” _builder_version=”4.27.4″ _module_preset=”default” alt=”methane gas” title_text=”0-methane gas 8″ hover_enabled=”0″ sticky_enabled=”0″][\/et_pb_image][\/et_pb_column][\/et_pb_row][et_pb_row _builder_version=”4.27.4″ _module_preset=”default” column_structure=”1_2,1_4,1_4″ hover_enabled=”0″ sticky_enabled=”0″ use_custom_gutter=”on” gutter_width=”1″][et_pb_column _builder_version=”4.27.4″ _module_preset=”default” type=”1_2″][et_pb_text _builder_version=”4.27.4″ _module_preset=”default” header_3_text_color=”#0C71C3″ hover_enabled=”0″ global_colors_info=”{}” sticky_enabled=”0″]<\/p>\n

                                \u00a0Hauptausr\u00fcstung \u2464 \u2013 Trockene Flammensperre<\/span><\/strong><\/h3>\n
                                  \n
                                • Prinzip und Funktion:<\/strong>
                                  Trockene Flammensperren nutzen das Prinzip der Flammenl\u00f6schung in schmalen Schlitzen, indem sie Edelstahlplatten biegen und \u00fcberlappen, um eine Flammenl\u00f6schschicht mit sehr kleinen L\u00fccken zu bilden. Wenn in der Rohrleitung eine Flamme entsteht, wird diese durch eine trockene Flammensperre blockiert, wodurch die Flamme erlischt oder die Intensit\u00e4t des Feuers verringert wird. Spielt eine hemmende Rolle bei der Ausbreitung von Flammen.
                                  An der Unterseite befindet sich ein Ablassventil, das regelm\u00e4\u00dfig ge\u00f6ffnet werden muss, um eine \u00fcberm\u00e4\u00dfige Wasseransammlung im flammhemmenden Kern und eine Beeintr\u00e4chtigung seiner Nutzung zu verhindern.
                                  Auf beiden Seiten des oberen Flammschutzkerns befinden sich Druckmessger\u00e4te, um zu \u00fcberwachen, ob der Flammschutzkern verstopft ist.<\/li>\n<\/ul>\n

                                  [\/et_pb_text][\/et_pb_column][et_pb_column _builder_version=”4.27.4″ _module_preset=”default” type=”1_4″][et_pb_image src=”https:\/\/regenerative-thermal-oxidizers.com\/wp-content\/uploads\/2024\/12\/0-dry-flame-arrester-2.webp” _builder_version=”4.27.4″ _module_preset=”default” alt=”dry flame arrester” title_text=”0-dry flame arrester 2″ hover_enabled=”0″ sticky_enabled=”0″][\/et_pb_image][\/et_pb_column][et_pb_column _builder_version=”4.27.4″ _module_preset=”default” type=”1_4″][et_pb_image src=”https:\/\/regenerative-thermal-oxidizers.com\/wp-content\/uploads\/2024\/12\/0-dry-flame-arrester-3.webp” _builder_version=”4.27.4″ _module_preset=”default” alt=”dry flame arrester” title_text=”0-dry flame arrester 3″ hover_enabled=”0″ sticky_enabled=”0″][\/et_pb_image][\/et_pb_column][\/et_pb_row][et_pb_row _builder_version=”4.27.4″ _module_preset=”default” column_structure=”2_5,3_5″ hover_enabled=”0″ sticky_enabled=”0″][et_pb_column _builder_version=”4.27.4″ _module_preset=”default” type=”2_5″][et_pb_image src=”https:\/\/regenerative-thermal-oxidizers.com\/wp-content\/uploads\/2024\/12\/0-Dehydrator-1.webp” _builder_version=”4.27.4″ _module_preset=”default” alt=”Dehydrator” title_text=”0-Dehydrator 1″ hover_enabled=”0″ sticky_enabled=”0″][\/et_pb_image][\/et_pb_column][et_pb_column _builder_version=”4.27.4″ _module_preset=”default” type=”3_5″][et_pb_text _builder_version=”4.27.4″ _module_preset=”default” header_3_text_color=”#0C71C3″ hover_enabled=”0″ global_colors_info=”{}” sticky_enabled=”0″]<\/p>\n

                                  \u00a0Hauptausr\u00fcstung \u2465 \u2014<\/span><\/strong>Trockene Flammensperre<\/span><\/strong><\/h3>\n
                                    \n
                                  • Prinzip und Funktion:<\/strong>
                                    Der hocheffiziente Gas-Fl\u00fcssigkeits-Verbundabscheider erf\u00fcllt mehrere Funktionen wie Entw\u00e4sserung, Staubentfernung und Druckstabilisierung und ist eine Anlage zur Gasreinigungsbehandlung.
                                    Einsatz der Zyklontrenntechnologie, bei der die Zentrifugalkraft zur Gas-Fl\u00fcssigkeits-Trennung genutzt wird. Das abgetrennte Wasser flie\u00dft entlang der Zylinderwand nach unten, w\u00e4hrend das Gas spiralf\u00f6rmig entlang der Zylinderwand nach oben str\u00f6mt und durch den sekund\u00e4ren Reinigungseffekt der oberen Trennschicht in das Gasende gelangt. Dadurch wird die Reinigung des Gases erreicht und die vom Gasmotor geforderten Gasindikatoren erf\u00fcllt.<\/li>\n<\/ul>\n

                                    [\/et_pb_text][\/et_pb_column][\/et_pb_row][\/et_pb_section][et_pb_section fb_built=”1″ theme_builder_area=”post_content” _builder_version=”4.27.4″ _module_preset=”default”][et_pb_row _builder_version=”4.27.4″ _module_preset=”default” theme_builder_area=”post_content”][et_pb_column _builder_version=”4.27.4″ _module_preset=”default” type=”4_4″ theme_builder_area=”post_content”][et_pb_text _builder_version=”4.27.4″ _module_preset=”default” theme_builder_area=”post_content” hover_enabled=”0″ sticky_enabled=”0″]<\/p>\n

                                    Mischsystem<\/strong><\/h2>\n

                                    [\/et_pb_text][\/et_pb_column][\/et_pb_row][et_pb_row _builder_version=”4.27.4″ _module_preset=”default” column_structure=”1_3,1_3,1_3″ theme_builder_area=”post_content” use_custom_gutter=”on” gutter_width=”2″ hover_enabled=”0″ sticky_enabled=”0″][et_pb_column _builder_version=”4.27.4″ _module_preset=”default” type=”1_3″ theme_builder_area=”post_content”][et_pb_text _builder_version=”4.27.4″ _module_preset=”default” theme_builder_area=”post_content” hover_enabled=”0″ sticky_enabled=”0″]<\/p>\n

                                    Komplexe Arbeitsbedingungen<\/strong><\/h3>\n

                                    1. Schwankungen der Methankonzentration in niedrigen Konzentrationen
                                    2. Schwankungen der Methanflussrate bei niedriger Konzentration
                                    3. Temperaturschwankungen von Methan in geringer Konzentration
                                    4. Druckschwankungen bei geringer Methankonzentration
                                    5. Feuchtigkeitsschwankungen bei geringer Methankonzentration
                                    6. Schwankungen der Vam- und Methankonzentrationen<\/p>\n

                                    [\/et_pb_text][\/et_pb_column][et_pb_column _builder_version=”4.27.4″ _module_preset=”default” type=”1_3″ theme_builder_area=”post_content”][et_pb_text _builder_version=”4.27.4″ _module_preset=”default” theme_builder_area=”post_content” hover_enabled=”0″ sticky_enabled=”0″]<\/p>\n

                                    Forschungsmethode<\/strong><\/h3>\n

                                    1. Forschung zum adaptiven Schnellreaktionsalgorithmus neuronaler Netzwerke zur \u00dcberwachung und Anpassung von Eingabeparametern
                                    2. Forschung zum Blender-Design basierend auf dem Prinzip der elastischen D\u00e4mpfung
                                    3. Optimierung der Mischerstruktur durch CFD-Fluidberechnung<\/p>\n

                                    [\/et_pb_text][\/et_pb_column][et_pb_column _builder_version=”4.27.4″ _module_preset=”default” type=”1_3″ theme_builder_area=”post_content”][et_pb_text _builder_version=”4.27.4″ _module_preset=”default” theme_builder_area=”post_content” hover_enabled=”0″ sticky_enabled=”0″]<\/p>\n

                                    Antwortausgabe<\/strong><\/h3>\n

                                    1. Die Schwankungsbreite der Gaskonzentration nach dem Mischen betr\u00e4gt 1,2% \u00b1 0,1%
                                    2. Momentane Konzentrationsschwankung innerhalb von 10%
                                    3. Sofortige Reaktion innerhalb von 1 Sekunde<\/p>\n

                                    [\/et_pb_text][\/et_pb_column][\/et_pb_row][et_pb_row _builder_version=”4.27.4″ _module_preset=”default” column_structure=”1_3,1_3,1_3″ theme_builder_area=”post_content” use_custom_gutter=”on” gutter_width=”2″ hover_enabled=”0″ sticky_enabled=”0″][et_pb_column _builder_version=”4.27.4″ _module_preset=”default” type=”1_3″ theme_builder_area=”post_content”][et_pb_image src=”https:\/\/regenerative-thermal-oxidizers.com\/wp-content\/uploads\/2024\/12\/0-Methane-concentration-monitoring-equipment.webp” _builder_version=”4.27.4″ _module_preset=”default” theme_builder_area=”post_content” alt=”Methane concentration monitoring equipment” title_text=”0-Methane concentration monitoring equipment” hover_enabled=”0″ sticky_enabled=”0″][\/et_pb_image][\/et_pb_column][et_pb_column _builder_version=”4.27.4″ _module_preset=”default” type=”1_3″ theme_builder_area=”post_content”][et_pb_image src=”https:\/\/regenerative-thermal-oxidizers.com\/wp-content\/uploads\/2024\/12\/0-Mixing-system-1.webp” _builder_version=”4.27.4″ _module_preset=”default” theme_builder_area=”post_content” alt=”Mixing system” title_text=”0-Mixing system 1″ hover_enabled=”0″ sticky_enabled=”0″][\/et_pb_image][\/et_pb_column][et_pb_column _builder_version=”4.27.4″ _module_preset=”default” type=”1_3″ theme_builder_area=”post_content”][et_pb_image src=”https:\/\/regenerative-thermal-oxidizers.com\/wp-content\/uploads\/2024\/12\/0-Mixing-system-2.webp” _builder_version=”4.27.4″ _module_preset=”default” theme_builder_area=”post_content” alt=”Mixing system” title_text=”0-Mixing system 2″ hover_enabled=”0″ sticky_enabled=”0″][\/et_pb_image][\/et_pb_column][\/et_pb_row][et_pb_row _builder_version=”4.27.4″ _module_preset=”default” theme_builder_area=”post_content”][et_pb_column _builder_version=”4.27.4″ _module_preset=”default” type=”4_4″ theme_builder_area=”post_content”][et_pb_text _builder_version=”4.27.4″ _module_preset=”default” theme_builder_area=”post_content” hover_enabled=”0″ sticky_enabled=”0″]<\/p>\n

                                    Blender \u2013 Simulationsanalyse<\/h3>\n

                                    [\/et_pb_text][\/et_pb_column][\/et_pb_row][et_pb_row _builder_version=”4.27.4″ _module_preset=”default” column_structure=”2_3,1_3″ theme_builder_area=”post_content” hover_enabled=”0″ sticky_enabled=”0″][et_pb_column _builder_version=”4.27.4″ _module_preset=”default” type=”2_3″ theme_builder_area=”post_content”][et_pb_image src=”https:\/\/regenerative-thermal-oxidizers.com\/wp-content\/uploads\/2024\/12\/0-Time-dependent-curve-of-export-concentration.webp” _builder_version=”4.27.4″ _module_preset=”default” theme_builder_area=”post_content” alt=”Time dependent curve of export concentration” title_text=”0-Time dependent curve of export concentration” hover_enabled=”0″ sticky_enabled=”0″][\/et_pb_image][et_pb_text _builder_version=”4.27.4″ _module_preset=”default” theme_builder_area=”post_content” hover_enabled=”0″ sticky_enabled=”0″]<\/p>\n

                                    Wie aus der obigen Abbildung ersichtlich, steigt die Auslasskonzentration mit der Zeit allm\u00e4hlich an und stabilisiert sich nach 3 Sekunden bei 1,2%. Die Wolkenkarte rechts zeigt die zeitliche Ver\u00e4nderung der Auslasskonzentration.<\/p>\n

                                    [\/et_pb_text][\/et_pb_column][et_pb_column _builder_version=”4.27.4″ _module_preset=”default” type=”1_3″ theme_builder_area=”post_content”][et_pb_image src=”https:\/\/regenerative-thermal-oxidizers.com\/wp-content\/uploads\/2024\/12\/0-Time-dependent-curve-of-export-concentration-2.webp” _builder_version=”4.27.4″ _module_preset=”default” theme_builder_area=”post_content” alt=”Time dependent curve of export concentration” title_text=”0-Time dependent curve of export concentration 2″ hover_enabled=”0″ sticky_enabled=”0″][\/et_pb_image][\/et_pb_column][\/et_pb_row][\/et_pb_section][et_pb_section fb_built=”1″ theme_builder_area=”post_content” _builder_version=”4.27.4″ _module_preset=”default”][\/et_pb_section]<\/p>","protected":false},"excerpt":{"rendered":"

                                    Discover how our advanced RTO systems enable efficient reuse of low-concentration gases, reducing emissions and lowering costs. Optimize your processes with sustainable, high-performance solutions today.Current Situation of Low Concentration Methane UtilizationLow concentration methane has a large emission volume In 2018, the global coal mine methane leakage was 40 million tons, equivalent to the emission of […]<\/p>","protected":false},"author":1,"featured_media":0,"parent":0,"menu_order":0,"comment_status":"closed","ping_status":"closed","template":"","meta":{"_et_pb_use_builder":"on","_et_pb_old_content":"","_et_gb_content_width":"","footnotes":""},"class_list":["post-4229","page","type-page","status-publish","hentry"],"rankMath":{"parentDomain":"regenerative-thermal-oxidizers.com","noFollowDomains":[],"noFollowExcludeDomains":[],"noFollowExternalLinks":false,"featuredImageNotice":"Das angezeigte Beitragsbild sollte mindestens 200x200 px gro\u00df sein, damit Facebook und andere Social-Media-Websites es 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