US$189.00 · In stock Delivery: <= 3 days. True-PDF full-copy in English will be manually translated and delivered via email. GB/T 19144-2010: Isolation method for kerogen from sedimentary rock Status: Valid GB/T 19144: Evolution and historical versions
Standard ID | Contents [version] | USD | STEP2 | [PDF] delivered in | Standard Title (Description) | Status | PDF |
GB/T 19144-2010 | English | 189 |
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3 days [Need to translate]
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Isolation method for kerogen from sedimentary rock
| Valid |
GB/T 19144-2010
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GB/T 19144-2003 | English | 279 |
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Separation of kerogen from sedimentary rock
| Obsolete |
GB/T 19144-2003
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PDF similar to GB/T 19144-2010
Basic data Standard ID | GB/T 19144-2010 (GB/T19144-2010) | Description (Translated English) | Isolation method for kerogen from sedimentary rock | Sector / Industry | National Standard (Recommended) | Classification of Chinese Standard | E11 | Classification of International Standard | 75-010 | Word Count Estimation | 8,853 | Date of Issue | 2010-09-02 | Date of Implementation | 2010-12-01 | Older Standard (superseded by this standard) | GB/T 19144-2003 | Regulation (derived from) | National Standard Approval Announcement 2010 No.4 (Total No.159) | Issuing agency(ies) | General Administration of Quality Supervision, Inspection and Quarantine of the People's Republic of China, Standardization Administration of the People's Republic of China | Summary | This standard specifies the kerogen separation equipment, equipment, reagents, sample preparation and quality requirements. This standard applies to the separation of kerogen samples of sedimentary rocks, also applies to modern sediments separating the insoluble organic matter. |
GB/T 19144-2010: Isolation method for kerogen from sedimentary rock---This is a DRAFT version for illustration, not a final translation. Full copy of true-PDF in English version (including equations, symbols, images, flow-chart, tables, and figures etc.) will be manually/carefully translated upon your order.
Isolation method for kerogen from sedimentary rock
ICS 75-010
E11
National Standards of People's Republic of China
Replacing GB/T 19144-2003
Extraction of kerogen in sedimentary rocks
2010-09-02 release
2010-12-01 implementation
General Administration of Quality Supervision, Inspection and Quarantine of the People 's Republic of China
China National Standardization Management Committee released
Foreword
This standard replaces GB/T 19144-2003 "Method for separation of kerogen in sedimentary rocks".
This standard compared with GB/T 19144-2003, the main differences are as follows.
--- Detailed operating conditions and equipment requirements;
--- increased the treatment of carbonate rocks;
--- increase the treatment of gypsum terms;
--- refine the steps of the treatment of pyrite.
Appendix A of this standard is a normative appendix.
This standard is proposed by China National Petroleum Corporation.
This standard is under the jurisdiction of the Standardization Committee of Petroleum Geological Prospecting.
This standard is responsible for the drafting unit. China Petroleum Exploration and Development Research Institute of Petroleum Geology Experimental Research Center.
This standard participates in the drafting unit. China Petroleum & Chemical Corporation Shengli Oilfield Branch Geological Science Research Institute, China Natural Gas
Co., Ltd. Southwest Oil and Gas Field Branch Exploration and Development Research Institute, China National Natural Gas Co., Ltd. Liaohe Oilfield Branch exploration and development research
Institute of Petroleum Exploration and Development, Wuxi Petrochemical Co., Ltd., China Institute of Experimental Geology, China National Natural Gas Corporation
Qinghai Oilfield Branch Exploration and Development Research Institute, China National Natural Gas Corporation Changqing Oilfield Branch Exploration and Development Research Institute.
The drafters of this standard. Wang Huitong, Lin Peng, Li Ping, Li Jianfeng, Jiang Wenchun, Wang Jun, Wang Lansheng, Huang Yi.
This standard was first published in.2003.
Extraction of kerogen in sedimentary rocks
1 Scope
This standard specifies the preparation, separation procedures and quality requirements for kerogen separation equipment, equipment, reagents, samples.
This standard applies to the kerogen separation of sedimentary rock samples and also to the separation of insoluble organic matter in modern sediments.
2 principle
The kerogen separation uses chemical and physical methods to remove inorganic minerals and chloroform soluble organic matter in the rock, allowing other organic matter to be enriched.
3 instruments and equipment
3.1 acid reaction device. made of hydrofluoric acid corrosion material.
3.2 heating mixing device. can be heated to about 90 ℃, adjustable speed.
3.3 Centrifuge. the maximum speed of not less than 4000r/min, with a volume of about 400mL, 50mL, 10mL of the centrifuge tube.
3.4 electric drying oven. the maximum temperature of not less than.200 ℃.
3.5 refrigerator. freezing temperature below -5 ℃.
3.6 Ultrasonic cleaner or oscillator. Output power 250W.
3.7 high temperature furnace. temperature control 1000 ℃ ± 20 ℃.
3.8 Analysis of balance. resolution 0.1mg.
3.9 agate mortar. about 8cm in diameter.
3.10 Crucible. resistant to high temperature of 1000 ℃.
3.11 sealed test sample grinder.
3.12 standard test sieve. 0.18mm, 0.5mm, 1.0mm.
3.13 balance. resolution 0.5g, the maximum weighing 500g.
3.14 Density meter. relative density measurement range of 1.00g/mL ~ 2.50g/mL.
4 reagents and materials
4.1 hydrochloric acid. chemical pure, dubbed about 1mol/L, 6mol/L, 8mol/L solution.
4.2 hydrofluoric acid. chemically pure.
4.3 glacial acetic acid. chemically pure
4.4 Arsenic free zinc particles. analytical grade.
4.5 chloroform. analytical grade.
4.6 silver nitrate. analysis of pure, dubbed 1% solution.
4.7 sodium hydroxide. analysis of pure, dubbed 0.5mol/L solution.
4.8 heavy liquid. relative density d204 2.0g/mL ~ 2.1g/mL of the relevant solution, the specific preparation method see Appendix A.
4.9 pH test paper. pH1 ~ pH12.
5 sample preparation
5.1 rock samples
Separate kerogen rock samples, the organic carbon content should be consistent with the provisions of Table 1.
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