Acid Gas Injection and Related Technologies

Acid Gas Injection and Related Technologies
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Artikel-Nr:
9781118094266
Veröffentl:
2011
Einband:
E-Book
Seiten:
468
Autor:
Ying Wu
Serie:
Advances in Natural Gas Engineering
eBook Typ:
PDF
eBook Format:
Reflowable E-Book
Kopierschutz:
Adobe DRM [Hard-DRM]
Sprache:
Englisch
Beschreibung:

Focusing on the engineering of natural gas and its advancement as an increasingly important energy resource, this volume is a must-have for any engineer working in this field. Acid gas is a mixture of carbon dioxide and hydrogen sulfide, with small amounts of light hydrocarbons, which is the by-product of the process for removing these unwanted components from raw natural gas. Because companies are no longer allowed to flare (burn off) excess acid gas, acid gas injection has emerged as a technology that is suitable for dealing with small amounts of unwanted acid gas. Gas injection involves the compression of the stream, transportation by pipeline to an injection well, then the fluid travels down the well and into a suitable formation. Larger producers have started to use this technology for their applications and in the future it is predicted that even larger projects will be developed. This book is the most comprehensive and up-to-date coverage of this technique, which is rapidly increasing in importance and usage in the natural gas and petroleum industry. The authors, a group of the most well-known and respected in the field, discuss, in a series of papers, this technology and related technologies as to how they can best be used by industry. This process will help companies in the energy industry "e;go green,"e; by creating a safer, cleaner environment. These techniques also create a more efficient and profitable process in the plant, cutting waste and making operations more streamlined. This outstanding new volume: Covers the most recent advances in natural gas engineering, in both upstream (drilling) and downstream (refining) Covers acid gas injection, the method of choice for disposing of small quantities of acid gas Covers technologies for working towards a zero-emission process in natural gas production Written by a team of the world's most well-known scientists and engineers in the field
Focusing on the engineering of natural gas and its advancement as an increasingly important energy resource, this volume is a must-have for any engineer working in this field.Acid gas is a mixture of carbon dioxide and hydrogen sulfide, with small amounts of light hydrocarbons, which is the by-product of the process for removing these unwanted components from raw natural gas. Because companies are no longer allowed to flare (burn off) excess acid gas, acid gas injection has emerged as a technology that is suitable for dealing with small amounts of unwanted acid gas. Gas injection involves the compression of the stream, transportation by pipeline to an injection well, then the fluid travels down the well and into a suitable formation. Larger producers have started to use this technology for their applications and in the future it is predicted that even larger projects will be developed.This book is the most comprehensive and up-to-date coverage of this technique, which is rapidly increasing in importance and usage in the natural gas and petroleum industry. The authors, a group of the most well-known and respected in the field, discuss, in a series of papers, this technology and related technologies as to how they can best be used by industry.This process will help companies in the energy industry "go green," by creating a safer, cleaner environment. These techniques also create a more efficient and profitable process in the plant, cutting waste and making operations more streamlined.This outstanding new volume:* Covers the most recent advances in natural gas engineering, in both upstream (drilling) and downstream (refining)* Covers acid gas injection, the method of choice for disposing of small quantities of acid gas* Covers technologies for working towards a zero-emission process in natural gas production* Written by a team of the world's most well-known scientists and engineers in the field

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