Experimental study on the adverse effect of gel fracturing fluid on gas sorption behavior for Illino

来源 :国际煤炭科学技术学报(英文版) | 被引量 : 0次 | 上传用户:feiwu111
下载到本地 , 更方便阅读
声明 : 本文档内容版权归属内容提供方 , 如果您对本文有版权争议 , 可与客服联系进行内容授权或下架
论文部分内容阅读
Hydraulic fracturing is an effective technology for coal reservoir stimulation.After fracturing operation and flowback,a fraction of fracturing fluid will be essentially remained in the formation which ultimately damages the flowability of the formation.In this study,we quantified the gel-based fracturing fluid induced damages on gas sorption for Illinois coal in US.We conducted the high-pressure methane and CO2 sorption experiments to investigate the sorption damage due to the gel residue.The infrared spectroscopy tests were used to analyze the evolution of the functional group of the coal during fracturing fluid treatment.The results show that there is no significant chemical reaction between the fracturing fluid and coal,and the damage of sorption is attributed to the physical blockage and interactions.As the concentration of fracturing fluid increases,the density of residues on the coal surface increases and the adhesion film becomes progressively denser.The adhesion film on coal can apparently reduce the number of adsorption sites for gas and lead to a decrease of gas sorption capacity.In addition,the gel residue can decrease the interconnectivity of pore structure of coal which can also limit the sorption capacity by isolating the gas from the potential sorption sites.For the low concentration of fracturing fluid,the Langmuir volume was reduced to less than one-half of that of raw coal.After the fracturing fluid invades,the desorption hysteresis of methane and CO2 in coal was found to be amplified.The impact on the methane desorption hysteresis is significantly higher than CO2 does.The reason for the increasing of hysteresis may be that the adsorption swelling caused by the residue adhered on the pore edge,or the pore blockage caused by the residue invasion under high gas pressure.The results of this study quantitatively confirm the fracturing fluid induced gas sorption damage on coal and provide a baseline assessment for coal fracturing fluid formulation and technology.
其他文献
有机无机配施可为作物提供长效持续的营养物质来源,研究旱地农田有机无机配施带来的环境效应和土壤酶活性及微生物特性,对减少化肥面源污染,改善生态环境有重要意义.本试验以3个梯度氮水平(NO、N1、N2):0、150、300 kg·hm-2为主处理,单施化肥和有机无机配施(+M)为副处理,有机肥施用量为30 t·hm-2;测定了小麦生长季的温室气体N2O排放通量和土壤酶活性,硝态氮及铵态氮含量和土壤物理性质.结果表明,土壤N2O排放通量最高的为N2+M处理,排放通量达到0.190 4 mg·(m2·h)-1,N
为了提升孔雀草(Tagetes patula L.)对镉(Cd)污染土壤的修复潜力,通过田间试验,研究铵态氮肥和腐殖酸对孔雀草生长以及土壤中Cd去除的影响.结果表明,氮肥(N)与氮肥和腐殖酸联用处理(NHA)可显著提高孔雀草的生物量;与对照(CK)相比,NHA和N处理下孔雀草地上部生物量分别提高了 2.49倍和1.52倍(肥东土壤),提高了 2.28倍和1.74倍(长丰土壤).在孔雀草生长期间,氮肥和腐殖酸能够降低土壤pH值,尤其是NHA处理;NHA处理较CK处理在肥东和长丰土壤上pH值分别降低了 0.7
铜仁市有色金属矿业活动频繁,为了解贵州省铜仁地区土壤-水稻重金属积累与迁移转化状况,开展水稻安全种植区划,共采集水田土壤和相应稻米样品230组,并测试重金属和土壤理化性质等.通过单因子指数法对稻米样品进行评价,并结合土壤环境质量和食品污染物限量提出安全种植区划方法.结果表明:①水田土壤pH在4.4~7.9之间,ω(As)、ω(Cd)、ω(Cu)、ω(Hg)、ω(Ni)和ω(Zn)平均值分别为 12.94、0.343、30.53、3.869、30.32和 110.0 mg-kg-1,其中 As、Cd、Hg
In shale reservoirs,the organic pores with various structures formed during the thermal evolution of organic matter are the main storage site for adsorbed methane.However,in the process of thermal evolution,the adsorption characteristics of methane in mul
香榧(Torreya grandis cv.Merrillii)是我国特有的一类经济树种.目前关于香榧的研究大都关注于果实的品质以及高产措施等,对香榧林地土壤重金属污染的研究鲜见报道.为探明其污染状况,选择位于浙江省会稽山脉附近的香榧集中种植区[诸暨、嵊州、柯桥和东阳四市(区)]作为研究对象,系统地采取了121个土壤样品(0~20 cm),对其中的13种重金属(As、Cd、Co、Cr、Cu、Fe、Mn、Ni、Pb、Sb、Sn、V和Zn)进行分析.同时结合主成分分析方法构建最小数据集,筛选出能最大程度代表土
以我国华东地区典型单季稻水稻田(江苏宜兴)的原柱状土为研究对象,通过两年土柱观测试验,研究不同灌溉管理模式(长期淹水CF、间隙灌溉Ⅱ、控制灌溉CI)和氮肥施用(不施氮CK、尿素Urea和控释肥CRF)耦合措施对水稻生长期内CH4和N2O排放和产量的影响,以期优选典型单季稻田减排增效的水肥管理模式.结果表明,两种节水灌溉方式(CI和Ⅱ)均显著影响稻田土壤CH4和N2O排放量及二者的综合温室效应(GWP)和排放强度(GHGI),与CF相比,Ⅱ和CI均显著提高了 N2O排放量(P<0.05),降低了 CH4排放
研究紫色土壤养分含量与不同形态磷含量对生物炭配施化肥和有机肥的响应,探明不同施肥处理对紫色土壤养分和磷形态的影响,以期为生物炭在紫色土区的合理农用提供科学依据.采用盆栽试验方法,设置对照(CK)、传统施肥(F)、化肥+20 t·hm-2稻壳生物炭(FP)、化肥+10 t·hm-2稻壳生物炭+10 t·hm-2玉米生物炭(FPM)、有机肥+20 t·hm-2稻壳生物炭(PP)和新鲜有机肥+20 t-hm-2稻壳生物炭(NPP)这6个处理,通过测定土壤养分含量的变化和不同形态磷之间的转化,阐明化肥和有机肥配施
This paper analyzed the current situation and development trends of energy consumption and carbon emissions,and the current situation and development trend of coal consumption in China.In the context of recently estab-lished carbon peak and carbon neutral
盐渍化草地土壤养分含量低,自然条件差,尤其是大量元素氮和磷的含量低于天然非盐渍化草地.盐渍化草地中的土壤微生物由于长期受盐或碱的胁迫,群落组成与结构也区别于非盐渍化天然草地.盐渍化草地土壤微生物受养分限制叠加盐碱胁迫如何响应氮、磷添加的机制尚不清楚.本研究在山西省右玉县境内的盐渍化草地进行,2017年建立了氮磷添加实验平台,包括对照、氮添加、磷添加及氮和磷同时添加的4个处理,于实验处理的第3年(2020年)测定生长季5~9月氨氧化微生物(氨氧化细菌:AOB和氨氧化古菌:AOA)、土壤真菌(fungi,F)
为探究浒苔生物炭与木醋液复配改良碱化土壤效果及提高作物产量,以龟裂碱土为例,通过田间试验研究不同生物炭施加量(0、1%、2%和4%)与不同木醋液稀释倍数(0、2%)复配对土壤pH、碱化度、全盐、容重、速效磷、有机质、盐分离子、油葵生长和产量的影响,不施加生物炭和木醋液视为对照(CK).结果表明,2%浒苔生物炭+2%木醋液(V2BC2)改良龟裂碱土的综合效果最佳;在最佳处理条件下:①浒苔生物炭与木醋液复配能改善土壤理化性质,具体表现为作物生长期内土壤平均pH、碱化度和全盐含量显著降低,较CK分别降低12.1