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Two wellfields have been developed to provide water for a coal fired electric generating station in Arizona. Wellfield No. 1 penetrates the unconfined Coconino Sandstone aquifer, and wellfield No. 2 penetrates the composite Kaibab Limestone-Coconino Sandstone aquifer where ground water occurs under confined conditions. A well in each wellfield was pumped and water level drawdown data were collected before and after acidizing. The drawdown data at the various pumping rates were analyzed to determine the potential benefits of acidizing production water wells in both wellfields. After acidizing, the specific capacity of the well in wellfield No. 1 was improved about 50 percent at water production rates ranging from about 200 to 500 gallons per minute (gpm) (13 to 32 liters per second (lps)). After acidizing, the specific capacity of the well completed in wellfield No. 2 was improved about 100 percent at pumping rates ranging from about 1,250 to 2,200 gpm (79 to 139 lps). An annual saving of approximately 11 percent in pumping costs can be realized in wellfield No. 2, and savings are approximately four percent in wellfield No. 1. Acidization is beneficial for wells that can produce more than 500 gpm (32 lps), and is of marginal value for those that produce less than that amount.  相似文献   
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为解决富含矿物质煤层透气性问题,基于点式压裂和酸液增透煤体机制,提出点式酸化压裂增透技术,通过扫描电镜试验确定适合三元煤矿酸液配比体系。结果表明:点式酸化压裂钻孔组平均抽采瓦斯流量和浓度是普通钻孔组的3.65,1.72倍,是点式水力压裂钻孔组的1.32,1.06倍;点式酸化压裂增透效果明显优于点式水力压裂;且其增透煤体起裂压力和同等条件下注液量均低于点式水力压裂,点式酸化压裂实现煤体定点、低流量、大范围、快速增透,通过将物理增透与化学增透相结合,可有效提高煤体孔隙-裂隙结构发育程度和整体连通性,有助于煤体中瓦斯运移,提高采收率。  相似文献   
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为了探究不同碱度物质(Na2CO3、KHCO3、NaHCO3)和浓度范围(2000,3000,4000mg/L)(以CaCO3计)对中温厌氧消化系统的影响,采用了密封的半连续搅拌反应器进行批次试验.综合反应器运行与微生物高通量测序分析,结果表明在3种不同碱度类型中Na2CO3能推进水解酸化过程,而在产气减量方面NaHCO3表现更为突出,说明在调节系统碱度时,Na2CO3更易促进水解酸化这一限速阶段,而NaHCO3能使水解酸化细菌与产甲烷菌之间保持平衡,保证甲烷产量;在不同NaHCO3浓度情况下,增加投加碱度的浓度使水解能力增强,相应会导致脱水性能恶化,而系统中挥发性脂肪酸含量变化不大,过量碱度将使得系统产气和减量能力下降.  相似文献   
4.
季铵盐复合型缓蚀剂的研制   总被引:3,自引:0,他引:3  
以烷基卤化物与喹啉等原料合成的喹啉季铵盐,当其与有机胺、适当溶剂、表面活性剂复配后,可作为油井酸化作业的酸化缓蚀剂。该缓蚀剂对金属腐蚀的阴、阳极过程起抑制作用,因此使用的温度范围宽(60~150℃),盐酸浓度高(15%~34%),该产品生产工艺简单,成本低,是油田较理想的酸化缓蚀剂。  相似文献   
5.
There has been considerable public interest regarding the toxicity of chemicals used in hydraulic fracturing, but little is known about its sister technique, acidizing. Little to no research has been done on what the chemicals of acidization are and what impact they could have on humans and the environment. This paper discusses the differences between three acidizing techniques (acid maintenance, matrix acidization, and acid fracturing) and quantifies the amounts of the chemicals used for each. Washington State's Quick Chemical Assessment Tool is used to identify F-graded toxins, which are known carcinogens, mutagens, reproductive toxins, developmental toxins, endocrine disruptors, or high acute toxicity chemicals. The analysis of the present data shows that there have been over 600 instances of acidizing in urbanized Southern and Central California from April 2013 to August 2015. Although most of the chemicals of acidizing are similar to hydraulic fracturing, those used most frequently are different. There are close to 200 specific chemicals used in acidization, with at least 28 of them being F-graded hazardous chemicals. Some are used frequently in the range of 100–1000 kg per treatment, such as hydrofluoric acid, xylene, diethylene glycol, and ethyl benzene. Close to 90 more chemicals are identified using non-specific names as trade secrets or reported with no quantity. Unlike hydraulic fracturing the chemical concentrations in acidizing are high, ranging from 6% to 18%, and the waste returns can be highly acidic, in the range of pH 0–3. With this paper it is hoped that acidization becomes part of the larger discussion on concerns with oil exploration and be evaluated by appropriate authorities.  相似文献   
6.
对N,N-二乙基-1,4-苯二胺(DPD)分光光度法测游离氯的3个较权威的版本的操作步骤在显色效果、显色物稳定性、标准曲线和实测样品结果方面进行了对比,对<水质游离氯和总氯的测定N,N-二乙基-1,4-苯二胺分光光度法>(GB 11898-1989)操作步骤提出了一点改进建议.  相似文献   
7.
针对钻井废水悬浮物和CODCr含量高的污染特征,对其酸化中和预处理的可行性进行了实验研究,并对其作用机理进行了探讨,以浓H2SO4 调节pH至1.5,加入石灰乳中和使 pH为9,可使CODCr的去除率达到50%,悬浮物的去除率达到80%.处理可在废水池内进行,给下一步利用装置进行混凝处理创造了条件。  相似文献   
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