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Simulation Research on Coal-Water Slurry Gasification of Oil-Based Drill Cuttings Based on Fluent
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作者 Liang Hu Hailong Yu +4 位作者 Liuyang Huang Yayun Xu XuleiWu Yunlan Sun Baozhong Zhu 《Energy Engineering》 EI 2023年第9期1963-1977,共15页
In this paper,based on Fluent software,a five-nozzle gasifier reactor was established to simulate the gasification process of oil-based drill cuttings coal-water slurry.The influence of concentration and oxygen/carbon... In this paper,based on Fluent software,a five-nozzle gasifier reactor was established to simulate the gasification process of oil-based drill cuttings coal-water slurry.The influence of concentration and oxygen/carbon atomic ratio on the gasification process of oil-based drill cuttings coal-water slurry was investigated.The results show that when the oxygen flow is constant,the outlet temperature of gasifier decreases,the content of effective gas increases,and the carbon conversion rate decreases with the increase of concentration;When the ratio of oxygen to carbon atoms is constant,the effective gas content rises and the temperature rises with the increase of the concentration,and the carbon conversion rate reaches the maximum value when the concentration of oil-based drill cuttings coal-water slurry is 65%;When the concentration is constant,the effective gas content decreases and the outlet temperature rises with the increase of the oxygen/carbon atom ratio,and the carbon conversion rate reaches 99.80%when the oxygen/carbon atom ratio is 1.03.It shows that this method can effectively decompose the organic matter in oilbased drill cuttings and realize the efficient and cooperative treatment of oil-based drill cuttings. 展开更多
关键词 oil-base drill cuttings coal-water slurry gasification furnace numerical simulation FLUENT
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Gas-hydrate formation,agglomeration and inhibition in oil-based drilling fluids for deep-water drilling 被引量:9
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作者 Fulong Ning Ling Zhang +2 位作者 YunzhongTu Guosheng Jiang Maoyong Shi 《Journal of Natural Gas Chemistry》 EI CAS CSCD 2010年第3期234-240,共7页
One of the main challenges in deep-water drilling is gas-hydrate plugs,which make the drilling unsafe.Some oil-based drilling fluids(OBDF) that would be used for deep-water drilling in the South China Sea were teste... One of the main challenges in deep-water drilling is gas-hydrate plugs,which make the drilling unsafe.Some oil-based drilling fluids(OBDF) that would be used for deep-water drilling in the South China Sea were tested to investigate the characteristics of gas-hydrate formation,agglomeration and inhibition by an experimental system under the temperature of 4 ?C and pressure of 20 MPa,which would be similar to the case of 2000 m water depth.The results validate the hydrate shell formation model and show that the water cut can greatly influence hydrate formation and agglomeration behaviors in the OBDF.The oleophobic effect enhanced by hydrate shell formation which weakens or destroys the interfacial films effect and the hydrophilic effect are the dominant agglomeration mechanism of hydrate particles.The formation of gas hydrates in OBDF is easier and quicker than in water-based drilling fluids in deep-water conditions of low temperature and high pressure because the former is a W/O dispersive emulsion which means much more gas-water interfaces and nucleation sites than the later.Higher ethylene glycol concentrations can inhibit the formation of gas hydrates and to some extent also act as an anti-agglomerant to inhibit hydrates agglomeration in the OBDF. 展开更多
关键词 oil-based drilling fluids gas hydrates water cut formation and agglomeration INHIBITOR
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Pyrolytic gas analysis and evaluation from thermal plasma pyrolysis of simulated oil-based drill cuttings
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作者 Zhuofan Zhai Junhu Zhou +2 位作者 Jinlong Wu Jianzhong Liu Weijuan Yang 《Waste Disposal and Sustainable Energy》 EI CSCD 2023年第3期367-382,共16页
Oil-based drill cuttings(OBDCs)are hazardous wastes generated during shale gas exploration,and the rapid,efficient and safe disposal methods for OBDCs have attracted the attention of many researchers.Plasma pyrolysis ... Oil-based drill cuttings(OBDCs)are hazardous wastes generated during shale gas exploration,and the rapid,efficient and safe disposal methods for OBDCs have attracted the attention of many researchers.Plasma pyrolysis technology is widely used in solid waste treatment due to its extremely high temperature and reaction activity.A laboratory-scale thermal plasma pyrolysis system was built to investigate the plasma pyrolysis mechanism of simulated OBDCs.The thermal decomposition characteristics of OBDCs were studied by thermogravimetric-derivative thermo gravimetric-differential scanning calorimetry(TG-DTG-DSC)analysis in the range of 50–1300℃.The thermal decomposition process of OBDCs was divided into the following four stages:evaporation of water and light oil,evaporation and decomposition of heavy oil,carbonate decomposition,and phase change reaction from solid to liquid.The effects of the oil ratio,water content,and water/oil(W/O)ratio of OBDCs on the composition and gas selectivity of pyrolytic gas were investigated.The results show that thermal plasma can crack the mineral oil in the OBDCs into clean gases such as H_(2),CO and C_(2)H_(2),while water can promote the decomposition of the heavy oil molecules and enhance the H_(2)production.The energy consumption model calculation for the pyrolysis and melting of OBDCs shows that the highest energy utilization and the lowest molar energy consumption of H_(2)were achieved at a W/O ratio of 1:4.Based on the thermal plasma pyrolysis system used in this study,the commercial application prospects and economic benefits of the plasma pyrolysis of OBDCs were discussed. 展开更多
关键词 oil-based drill cuttings PLASMA PYROLYSIS HYDROGEN Energy consumption
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热解油基钻屑/橘皮生物炭钝化修复铜铅污染土壤 被引量:1
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作者 刘向明 邓小刚 +3 位作者 徐倩霞 罗斌 邱海燕 兰贵红 《精细化工》 EI CAS CSCD 北大核心 2023年第10期2286-2293,共8页
将热解油基钻屑(OBDC)/橘皮(OB)生物炭(OBDCs-OB)加入到Cu(Ⅱ)和Pb(Ⅱ)污染土壤中进行为期83 d的钝化修复实验,探究OBDCs-OB用于钝化修复铜铅污染土壤的效果及其对土壤微生物的影响。结果表明,OBDCs-OB表面具有—OH及—COOH等官能团、... 将热解油基钻屑(OBDC)/橘皮(OB)生物炭(OBDCs-OB)加入到Cu(Ⅱ)和Pb(Ⅱ)污染土壤中进行为期83 d的钝化修复实验,探究OBDCs-OB用于钝化修复铜铅污染土壤的效果及其对土壤微生物的影响。结果表明,OBDCs-OB表面具有—OH及—COOH等官能团、碳酸盐岩和黏土矿物等矿物组成以及多孔结构,可作为吸附剂使用;对比空白土壤,加入OBDCs-OB后,土壤阳离子交换容量(CEC)增加18.29 cmol/kg,维持pH在6.80;土壤中可酸溶态Cu(Ⅱ)和Pb(Ⅱ)含量分别降低18.21%和20.07%;Cu(Ⅱ)和Pb(Ⅱ)的潜在浸出毒性分别降低52.8%和92.8%,有效钝化了Cu(Ⅱ)和Pb(Ⅱ);土壤微生物总数最大值为8.6×10^(10)cfu/g,土壤脱氢酶与脲酶含量最大值为127.10μgTPE/(g·6 h)和167.10 mg_(NH_(3)-N)/(kg·24 h),增加了土壤微生物群落多样性和丰富度,可促进土壤微生物生长。 展开更多
关键词 热解油基钻屑 重金属离子固定化 微生物群落结构 土壤修复 环境保护
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