The Significance of Chemical Sampling Quill
Plume d’échantillonnage chimique plays a crucial role in oil and gas operations. The production efficiency is improved and the equipment life is extended. In addition, it helps to prevent corrosion, reduce scaling, and control the emulsion of oil and water.
Chemical injection process overview
The chemical injection process involves a precise dosing system. Operators inject chemicals directly into oil Wells and pipelines. This approach guarantees optimal performance and protection of the infrastructure. In addition, these processes vary greatly depending on specific site requirements and operational challenges. Each approach focuses on maximizing recovery and minimizing operating costs.
Corrosion
Types and mechanisms of corrosion
Corrosion can take many forms, including electrical, pitting, and crevice corrosion. Each type stems from a different electrochemical or chemical reaction. These reactions degrade the metal and compromise the integrity of the pipe. Understanding these mechanisms can help in the selection of appropriate inhibitors.
The role of corrosion inhibitors in preventing corrosion
Corrosion inhibitors play a vital role in protecting metal surfaces. They form a barrier that minimizes the metal’s exposure to corrosive agents. By doing so, these inhibitors significantly extend the service life of oilfield equipment. This product guarantees continuity and safety of operation.
Modèle de sélection
Modèle | ||||||||||||||||||||||||||||
SI | Plume d’injecteur chimique | |||||||||||||||||||||||||||
-Code | Bouchon | |||||||||||||||||||||||||||
Pxxx | Type | Matériel | Scellement Matériel | |||||||||||||||||||||||||
0 | Aucune demande | 0 | CS | 0 | Aucune demande | |||||||||||||||||||||||
1 | Creux Corps de la prise | 1 | 316SS | 3 | DSS | 1 | Joint torique Viton / Garniture primaire en PTFE | |||||||||||||||||||||
2 | Corps de prise solide | 2 | 316LSS | 4 | INCONEL | 2 | HNBR | |||||||||||||||||||||
– Code | Écrou d’injection | |||||||||||||||||||||||||||
Nxx | Taille de la connexion | Matériel | ||||||||||||||||||||||||||
0 | c’est-à-dire aucune demande | 0 | i.e. CS | |||||||||||||||||||||||||
1 | i.e. 1/4″ | 1 | c’est-à-dire 316SS | 3 | c’est-à-dire le DSS | |||||||||||||||||||||||
2 | i.e. 1/2″ | 2 | c’est-à-dire 316LSS | 4 | c’est-à-dire INCONEL | |||||||||||||||||||||||
– Code | Injection Tube | |||||||||||||||||||||||||||
Sxxx-Lx″ | Taille de la connexion | Matériel | Buse | Line size(x″) | ||||||||||||||||||||||||
0 | Aucune demande | 0 | CS | 0 | c’est-à-dire aucune demande | La position la plus efficace pour l’injection se situe généralement au centre du tuyau | ||||||||||||||||||||||
1 | i.e. 1/4″ | 1 | c’est-à-dire 316SS | 1 | c’est-à-dire ouvert | |||||||||||||||||||||||
2 | i.e. 1/2″ | 2 | c’est-à-dire 316LSS | 2 | c’est-à-dire Quill | |||||||||||||||||||||||
3 | c’est-à-dire le DSS | 3 | i.e. Cap & Core | |||||||||||||||||||||||||
4 | c’est-à-dire INCONEL | |||||||||||||||||||||||||||
– Code | Nipple and Valve(or end Flange)of Tee | |||||||||||||||||||||||||||
Txx | Taille de la connexion | Matériel | ||||||||||||||||||||||||||
0 | c’est-à-dire aucune demande | 0 | i.e. CS | |||||||||||||||||||||||||
1 | i.e. 1/4″Nipple | un | i.e. 1/4″Nipple and Valve | 1 | c’est-à-dire 316SS | |||||||||||||||||||||||
2 | i.e. 1/2″Nipple | b | i.e. 1/2″Nipple and Valve | 2 | c’est-à-dire 316LSS | |||||||||||||||||||||||
3 | i.e. 3/4″Nipple | c | i.e. 3/4″Nipple and Valve | 3 | c’est-à-dire D SS | |||||||||||||||||||||||
4 | i.e. 1″Nipple | d | i.e. 1″Nipple and Valve | 4 | c’est-à-dire INCONEL | |||||||||||||||||||||||
5 | i.e. 1/4″Flange | e | i.e. 1/4″Nipple end Flange | |||||||||||||||||||||||||
6 | i.e. 1/2″Flange | f | i.e. 1/2″Nipple end Flange | |||||||||||||||||||||||||
7 | i.e. 3/4″Flange | g | i.e. 3/4″Nipple end Flange | |||||||||||||||||||||||||
8 | i.e. 1″Flange | h | i.e. 1″Nipple end Flange | |||||||||||||||||||||||||
For Example, SI-P221-N12-S122-L4″-T22 | ||||||||||||||||||||||||||||
SI:e.g. Sampling & Injection Assembly, | ||||||||||||||||||||||||||||
P221: e.g. Solid Plug Body in 316LSS Viton O-Ring and PTFE Primary Packing, | ||||||||||||||||||||||||||||
N12:e.g. injection Nut Connection Size is 1/4″and Le matériau est 316LSS, | ||||||||||||||||||||||||||||
S122:e.g. injection Tube Connection Size is 1/4″ and Le matériau est 316LSS. Le type de buse est des piquants | ||||||||||||||||||||||||||||
L4″:For 4″pipe. | ||||||||||||||||||||||||||||
T22 : Mamelon of Tee Connection Size is 1/2″, Le matériau de l’écrou est 316LSS |
Specifications of Chemical Sampling Quill
Nom | Système d’échantillonnage de piquants d’injection de produits chimiques dans les pipelines |
Matériel | Stainless Steel 304、Stainless Steel 316、DSS F51、Carbon Steel A105N、Inconel 625 |
Température de fonctionnement | -20±120 |
Caractéristique | 1. Utilisation facile |
2. Haute précision, longue durée de vie | |
3. Haute efficacité, faible coût | |
Paiement | TT/LC |
Avantage | Tout d’abord, ils sont légers et flexibles. |
Deuxièmement, une belle efficacité d’injection. | |
Enfin un suivi précis de la localisation. |
Conclusion
Chemical Sampling Quills, also known as sample or injection quills, are usually made of alloys such as 316/316L stainless steel. Materials used to make quills include rods, ASME pipes, flanges, and fittings. The manufacture of feather pipe assemblies includes valves and other process pipe assemblies. If you have any needs, feel free to contact us. We will provide the best price for you.
Il n’y a pas encore d’avis.