Curing Experiments Researching on Waste Oil-base Shale Gas Drilling Mud

Curing research on waste oil-base shale gas drilling mud was performed for optimal additions matching. Destabilizing experiments on waste drilling mud demonstrated that Aluminum potassium sulfate (KAl(SO4)2) played a best role of destabilizing effects when compared with FeCl3 and AlCl3 based on demu...

Full description

Bibliographic Details
Main Authors: Zhan Xinyuan, Wang Xiang, Wang Li’ao, Xu Tengtun, Hu Chaochao, Wang Lei, Song Xue
Format: Article
Language:English
Published: EDP Sciences 2019-01-01
Series:E3S Web of Conferences
Online Access:https://doi.org/10.1051/e3sconf/20197803003
id doaj-fee20ee0fa6a48e09c5acedf615b4f44
record_format Article
spelling doaj-fee20ee0fa6a48e09c5acedf615b4f442021-02-02T05:39:49ZengEDP SciencesE3S Web of Conferences2267-12422019-01-01780300310.1051/e3sconf/20197803003e3sconf_fsee2018_03003Curing Experiments Researching on Waste Oil-base Shale Gas Drilling MudZhan XinyuanWang XiangWang Li’aoXu TengtunHu ChaochaoWang LeiSong XueCuring research on waste oil-base shale gas drilling mud was performed for optimal additions matching. Destabilizing experiments on waste drilling mud demonstrated that Aluminum potassium sulfate (KAl(SO4)2) played a best role of destabilizing effects when compared with FeCl3 and AlCl3 based on demulsification mechanism about oil-in-water type. Aluminum potassium sulfate emerged an impact influence on curing effects simultaneously when compared to sodium silicate, alumina, lime and complex Portland cement. Orthogonal test on curing waste drilling mud revealed that the optimal operation conditions of handling waste drilling mud was 4% aluminum potassium sulfate, 4% sodium silicate, 4% alumina, 4% lime and 16% complex Portland cement. Under this condition, unconfined compressive strength of the curing product was 1.80MPa, and lead leaching concentration cannot be detected after 7d maintenance. The curing mechanism was mainly the encapsulation of C3S and solid waste contaminated by mineral oil can be efficiency treated after breaking the interface of oil-in-water type.https://doi.org/10.1051/e3sconf/20197803003
collection DOAJ
language English
format Article
sources DOAJ
author Zhan Xinyuan
Wang Xiang
Wang Li’ao
Xu Tengtun
Hu Chaochao
Wang Lei
Song Xue
spellingShingle Zhan Xinyuan
Wang Xiang
Wang Li’ao
Xu Tengtun
Hu Chaochao
Wang Lei
Song Xue
Curing Experiments Researching on Waste Oil-base Shale Gas Drilling Mud
E3S Web of Conferences
author_facet Zhan Xinyuan
Wang Xiang
Wang Li’ao
Xu Tengtun
Hu Chaochao
Wang Lei
Song Xue
author_sort Zhan Xinyuan
title Curing Experiments Researching on Waste Oil-base Shale Gas Drilling Mud
title_short Curing Experiments Researching on Waste Oil-base Shale Gas Drilling Mud
title_full Curing Experiments Researching on Waste Oil-base Shale Gas Drilling Mud
title_fullStr Curing Experiments Researching on Waste Oil-base Shale Gas Drilling Mud
title_full_unstemmed Curing Experiments Researching on Waste Oil-base Shale Gas Drilling Mud
title_sort curing experiments researching on waste oil-base shale gas drilling mud
publisher EDP Sciences
series E3S Web of Conferences
issn 2267-1242
publishDate 2019-01-01
description Curing research on waste oil-base shale gas drilling mud was performed for optimal additions matching. Destabilizing experiments on waste drilling mud demonstrated that Aluminum potassium sulfate (KAl(SO4)2) played a best role of destabilizing effects when compared with FeCl3 and AlCl3 based on demulsification mechanism about oil-in-water type. Aluminum potassium sulfate emerged an impact influence on curing effects simultaneously when compared to sodium silicate, alumina, lime and complex Portland cement. Orthogonal test on curing waste drilling mud revealed that the optimal operation conditions of handling waste drilling mud was 4% aluminum potassium sulfate, 4% sodium silicate, 4% alumina, 4% lime and 16% complex Portland cement. Under this condition, unconfined compressive strength of the curing product was 1.80MPa, and lead leaching concentration cannot be detected after 7d maintenance. The curing mechanism was mainly the encapsulation of C3S and solid waste contaminated by mineral oil can be efficiency treated after breaking the interface of oil-in-water type.
url https://doi.org/10.1051/e3sconf/20197803003
work_keys_str_mv AT zhanxinyuan curingexperimentsresearchingonwasteoilbaseshalegasdrillingmud
AT wangxiang curingexperimentsresearchingonwasteoilbaseshalegasdrillingmud
AT wangliao curingexperimentsresearchingonwasteoilbaseshalegasdrillingmud
AT xutengtun curingexperimentsresearchingonwasteoilbaseshalegasdrillingmud
AT huchaochao curingexperimentsresearchingonwasteoilbaseshalegasdrillingmud
AT wanglei curingexperimentsresearchingonwasteoilbaseshalegasdrillingmud
AT songxue curingexperimentsresearchingonwasteoilbaseshalegasdrillingmud
_version_ 1724303117022920704