Use of Transformer Oil and “Dry Water” to Store and Transport Methane Hydrate
In this paper a new system is proposed for the storage and transportation of gas in the hydrate form (for the case of methane hydrate). The use of solid particles (Aerosil ® R202) is most effective as promoters of hydrate formation for the intended purposes. The ratio of water to transformer oil in...
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Veröffentlicht in: | Chemistry and technology of fuels and oils 2019-07, Vol.55 (3), p.280-286 |
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container_title | Chemistry and technology of fuels and oils |
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creator | Stoporov, A. S. Sizikov, A. A. Yarkova, E. A. Molokitina, N. S. Semenov, A. P. Manakov, A. Yu Vinokurov, V. A. |
description | In this paper a new system is proposed for the storage and transportation of gas in the hydrate form (for the case of methane hydrate). The use of solid particles (Aerosil ® R202) is most effective as promoters of hydrate formation for the intended purposes. The ratio of water to transformer oil in the initial systems was constant (1:1 by weight); the content of Aerosil® R202 in “dry water” was 5 wt. %. From the obtained results it follows that the presence of “dry water” in the system accelerates the formation of the hydrate, while the transformer oil provides a self-preservation effect and thereby slow decomposition of the hydrate phase. The proportion of methane hydrate subjected to self-preservation in the presence of transformer oil is 80 times higher than for the hydrate obtained from “dry water” without any additives. The obtained data can be used in the development of hydrate methods of gas storage and transportation. |
doi_str_mv | 10.1007/s10553-019-01031-7 |
format | Article |
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The proportion of methane hydrate subjected to self-preservation in the presence of transformer oil is 80 times higher than for the hydrate obtained from “dry water” without any additives. 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From the obtained results it follows that the presence of “dry water” in the system accelerates the formation of the hydrate, while the transformer oil provides a self-preservation effect and thereby slow decomposition of the hydrate phase. The proportion of methane hydrate subjected to self-preservation in the presence of transformer oil is 80 times higher than for the hydrate obtained from “dry water” without any additives. The obtained data can be used in the development of hydrate methods of gas storage and transportation.</description><subject>Additives</subject><subject>Chemistry</subject><subject>Chemistry and Materials Science</subject><subject>Drying oils</subject><subject>Geotechnical Engineering & Applied Earth Sciences</subject><subject>Ice</subject><subject>Industrial Chemistry/Chemical Engineering</subject><subject>Methane</subject><subject>Methane hydrate</subject><subject>Methane hydrates</subject><subject>Mineral Resources</subject><subject>Preservation</subject><subject>Transformers</subject><subject>Transportation</subject><issn>0009-3092</issn><issn>1573-8310</issn><fulltext>true</fulltext><rsrctype>article</rsrctype><creationdate>2019</creationdate><recordtype>article</recordtype><recordid>eNp9kM1OAyEURonRxFp9AVckrkdhmCmwbOpPTWoaYxuXhDKXOk07VKCL7vog-nJ9EmnHxJ0hhADnXLgfQteU3FJC-F2gpCxZRqhMkzCa8RPUoSVnmWCUnKIOIURmjMj8HF2EsDhsec466HUaADuLJ143wTq_Ao_H9RLrpsL73de93-J3HcHvd984OvwWnYfj5VFYOx_xC8QP3QAebiuf0Et0ZvUywNXv2kXTx4fJYJiNxk_Pg_4oM0yWMeMSLBGmYFYamVMtcklMaqWoOK0gITPZgx4tZwBCCqoLU5TczMDOeCFSH6yLbtq6a-8-NxCiWriNb9KTKs9F0eNCcJKo25aa6yWourEuem3SqGBVG9eArdN5v5TJoDxl2EV5KxjvQvBg1drXK-23ihJ1yFq1WauUtTpmrXiSWCuFBDdz8H9_-cf6ASPngZE</recordid><startdate>20190701</startdate><enddate>20190701</enddate><creator>Stoporov, A. 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subjects | Additives Chemistry Chemistry and Materials Science Drying oils Geotechnical Engineering & Applied Earth Sciences Ice Industrial Chemistry/Chemical Engineering Methane Methane hydrate Methane hydrates Mineral Resources Preservation Transformers Transportation |
title | Use of Transformer Oil and “Dry Water” to Store and Transport Methane Hydrate |
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