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Kafe 바로가기국가/구분 | United States(US) Patent 등록 |
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국제특허분류(IPC7판) |
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출원번호 | US-0198850 (1980-10-20) |
발명자 / 주소 |
|
출원인 / 주소 |
|
인용정보 | 피인용 횟수 : 300 인용 특허 : 11 |
Disclosed are a method and apparatus for the in situ retorting of oil shale and purification products comprising establishing an underground in situ retort containing a mass of rubblized matter comprising oil shale and establishing a flame front within the rubblized matter. Oxygen containing gas com
Disclosed are a method and apparatus for the in situ retorting of oil shale and purification products comprising establishing an underground in situ retort containing a mass of rubblized matter comprising oil shale and establishing a flame front within the rubblized matter. Oxygen containing gas comprising at least about 90 weight percent oxygen and diluent are passed into the retort to support combustion and form combustion gases suitable for the retorting of the rubblized mass and formation of off-gas comprising hydrogen, hydrocarbons, and contaminants. Off-gas comprising hydrogen, hydrocarbons, and contaminants is recovered from the retort and hydrocarbons and contaminants are substantially separated from at least a portion of the off-gas to produce a purified gas stream comprising hydrogen. At least a portion of the purified gas stream is passed to one or more conversion zones wherein shale oil is contacted with a stream comprising purified gas stream in the presence of a conversion catalyst at conversion conditions so as to substantially reduce the amount of nitrogen and sulfur contained in the shale oil.
A method for processing oil shale, comprising the steps of: establishing an underground in situ retort containing a mass of rubblized matter comprising oil shale; establishing a flame front within said mass of oil shale to liberate water and shale oil containing arsenic, nitrogen and sulfur from sai
A method for processing oil shale, comprising the steps of: establishing an underground in situ retort containing a mass of rubblized matter comprising oil shale; establishing a flame front within said mass of oil shale to liberate water and shale oil containing arsenic, nitrogen and sulfur from said oil shale and form combustion off-gases containing hydrogen, sulfur, carbon dioxide and shale oil; passing a gaseous mixture of oxygen and a diluent selected from the group consisting of steam, carbon dioxide and combustion off-gases into said underground retort to support said flame front; withdrawing said shale oil, water and combustion off-gases from said underground retort; substantially separating said withdrawn shale oil, water and combustion off-gases in an underground separation zone; deoiling said combustion off-gases in a deoiling zone to remove a substantial amount of said shale oil from said combustion off-gases; desulfurizing said combustion off-gases to remove a substantial amount of said sulfur from said combustion off-gases; removing a substantial amount of said carbon dioxide from said combustion off-gases; recovering a substantially purified gas stream of hydrogen from said combustion off-gases; separating said shale oil from said underground retort into fractions including a fraction of light shale oil and a fraction of heavy shale oil; injecting a portion of said purified gas stream of hydrogen into said fraction of light shale oil; injecting another portion of said purified gas stream of hydrogen into said fraction of heavy oil; removing a substantial amount of said arsenic from said fraction of light shale oil in a first reactor; removing a substantial amount of said arsenic from said fraction of heavy shale oil in a second reactor; hydrotreating said fraction of light shale oil and removing a substantial amount of said nitrogen and said sulfur from said fraction of light shale oil in a hydrotreating zone; and hydrocracking said fraction of heavy shale oil and removing a substantial amount of said nitrogen and said sulfur from said fraction of heavy shale oil in a hydrocracking zone. A method for processing oil shale, comprising the steps of: establishing a flame front in an underground retort containing a rubblized mass of oil shale; liberating shale oil and water from said oil shale with heat generated from said flame front; emitting combustion off-gases from said flame front; feeding an oxygen containing gas consisting essentially of 90% by weight oxygen into said retort to support said flame front; stopping feeding of said oxygen containing gas; injecting steam into said retort after said feeding is stopped for minimizing burning of said shale oil; and withdrawing said shale oil, water and combustion off-gases from said retort.
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