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8篇 您的检索式:作者名="CUI Xueqi"
    题名 作者 年代 出处 被引量
1Temporal variation of soil carbon stock and its controlling factors over the last two decades on the southern Song-nen Plain,Heilongjiang Province显示文摘对全球气候变化的当前的背景,在土壤碳水池和它的控制因素的变化的学习可以在温室气体的缓解或改进帮助土壤角色的评估。这份报纸在 Heilongjiang 省在南部的 Song-nen 平原在土壤碳水池和他们的控制因素学习空间、时间的变化,用在二个不同时期由上收集的土壤数据在 20052007 的多种用途的地区性的 Geochemical 调查,和另外一个玷污在 19821990 进行的调查。学习区域是 1479 t/km2 并且在过去的 20 年里的碳来源,从直到 2005 的 1980 年代,从土壤的实际的碳排放是 0.12 Gt。温度,被发现了线性地被相关玷污器官的碳,是控制器官的碳满足的土壤的主导的 climatologic 因素。我们的学习在器官的碳由升起的温度引起了的土壤的潜在的损失是的相关区域和时间时期显示出那 0.10 Gt ,源于陆地使用变化的潜在的土壤碳排放是 0.09 Gt ,并且温暖和陆地使用变化引起的土壤碳( 0.19 Gt )的联合潜在的损失比得上石块燃料燃烧( 0.21 Gt )的。由于在土壤碳水池变化的时间延期,仍然在温暖和以后将逐渐地被释放的陆地使用变化引起的潜在的排放有 0.07 Gt。Xueqi Xia Zhongfang Yang Yan Liao Yujun Cui Yansheng Li 2010Geoscience Frontiers2010,1,1:19
2Chlorogallate(Ⅲ) ionic liquids: Synthesis, acidity determination and their catalytic performances for isobutane alkylation显示文摘A series of triethylammonium-based chlorogallate(Ⅲ) ionic liquids with varied Lewis acidity was synthesized, characterized, and firstly applied to isobutane alkylation. The [Et3NHCl]-GaCl3 with χGaCl3 = 0.65 displayed a potential catalytic activity for the alkylation. The addition of copper halide into the chlorogallate(Ⅲ) ionic liquids dramatically enhanced the alkylation reaction. Up to 70.1% C8 selectivity and 91.3 RON were achieved with the [Et3NHCl]-GaCl3-CuCl (χGaCl3 = 0.65, CuCl = 5% mol) under 0.5 MPa, 900 r/min, 15 min, 288 K using the industrial C4 cut (isobutane/butene = 10). These results indicate that the chlorogallate(Ⅲ) system may be used as a promising catalyst for the C4 alkylation.XING XueQi ZHAO GuoYing CUI JianZhong 2012Science China Chemistry2012,55,8:3
3Study on the alteration ofchemical composition and structure parameters of modified montmorill-onite 显示文摘LU Xianjun CUI Xueqi SONG Meining 2003Minerals Engineering2003,,16:1
4Study on the alteration of chemical composition and structure parameters of modified montmorillonite显示文摘Xianjun Lu Xueqi Cui Meining Song 2003Minerals Engineering2003,,16:1
5Application of New Type Pre-classification Hydrocyclone with Centrifugal Volute in Grinding Process显示文摘Xueqi Cui Shuli Wang Jun Suo Lei Wang Jimin Zheng 2013Journal of Chemistry and Chemical Engineering2013,7,12:1
6Influence mechanism of pore-scale anisotropy and pore distribution heterogeneity on permeability of porous media显示文摘Based on micro-CT scanning experiments, three-dimensional digital cores of tight sandstones were established to quantitatively evaluate pore-scale anisotropy and pore-distribution heterogeneity. The quartet structure generation set method was used to generate three-dimensional anisotropic, heterogeneous porous media models. A multi-relaxation-time lattice Boltzmann model was applied to analyze relationships of permeability with pore-scale anisotropy and pore distribution heterogeneity, and the microscopic influence mechanism was also investigated. The tight sandstones are of complex pore morphology, strong anisotropy and pore distribution heterogeneity, while anisotropy factor has obvious directivity. The obvious anisotropy influences the orientation of long axis of pores and fluid flow path, making tortuosity smaller and flowing energy loss less in the direction with the greater anisotropy factor. The strong correlation of tortuosity and anisotropy is the inherent reason of anisotropy acting on permeability. The influence of pore distribution heterogeneity on permeability is the combined effects of specific surface area and tortuosity, while the product of specific surface area and tortuosity shows significantly negative correlation with heterogeneity. The stronger the pore distribution heterogeneity, the smaller the product and the greater the permeability. In addition, the permeability and tortuosity of complex porous media satisfy a power relation with a high fitting precision, which can be applied for approximate estimation of core permeability.LI Tao LI Min JING Xueqi XIAO Wenlian CUI Qingwu 2019Petroleum Exploration and Development2019,46,3:0
7TO–YOLOX: a pure CNN tiny object detection model for remotesensing images显示文摘Remote sensing and deep learning are being widely combined in tasks such as urban planning and disaster prevention.However,due to interference occasioned by density,overlap,and coverage,the tiny object detection in remote sensing images has always been a difficult problem.Therefore,we propose a novel TO–YOLOX(Tiny Object–You Only Look Once)model.TO–YOLOX possesses a MiSo(Multiple-in-Singleout)feature fusion structure,which exhibits a spatial-shift structure,and the model balances positive and negative samples and enhances the information interaction pertaining to the local patch of remote sensing images.TO–YOLOX utilizes an adaptive IOU-T(Intersection Over Uni-Tiny)loss to enhance the localization accuracy of tiny objects,and it applies attention mechanism Group-CBAM(group-convolutional block attention module)to enhance the perception of tiny objects in remote sensing images.To verify the effectiveness and efficiency of TO–YOLOX,we utilized three aerial-photography tiny object detection datasets,namely VisDrone2021,Tiny Person,and DOTA–HBB,and the following mean average precision(mAP)values were recorded,respectively:45.31%(+10.03%),28.9%(+9.36%),and 63.02%(+9.62%).With respect to recognizing tiny objects,TO–YOLOX exhibits a stronger ability compared with Faster R-CNN,RetinaNet,YOLOv5,YOLOv6,YOLOv7,and YOLOX,and the proposed model exhibits fast computation.Zhe Chen Yuan Liang Zhengbo Yu Ke Xu Qingyun Ji Xueqi Zhang Quanping Zhang Zijia Cui Ziqiong He Ruichun Chang Zhongchang Sun Keyan Xiao Huadong Guo 2023International Journal of Digital Earth2023,16,1:0
8Hydrocarbon generation mechanism of lamalginite- and telalginite-dominated source rocks in a saline lake basin: A case study of the Permian Lucaogou formation in the Jimusaer Sag, Junggar Basin显示文摘The hydrocarbon generation of source rocks is significantly influenced by organic matter type, chemical element composition, and structural characteristics of kerogen. We classified the organic matter types in the shale of the Lucaogou Formation, Jimusar Sag, Junggar Basin, using organic petrology and rock pyrolysis as well as kerogen element and Fourier transform infrared (FT-IR) spectroscopy analyses, and compared the hydrocarbon generation mechanisms of source rocks with different types of organic matter. The organic matter of the Lucaogou Formation contains mostly two types of hydrocarbon generating macerals, the lamalginite and the telalginite based on physical and optical properties (texture, fluorescence, and optical reflectance). The lamalginite is a continuous sheet of less than 5 μm thick and greater than 50 μm in length. It has strong yellow fluorescence. The telalginite occurs as discontinuous short strips or pear-shaped objects with length of 10–30 μm and relatively weak fluorescence. The lamalginite-dominated shale has higher atomic H/C and lower atomic O/C ratios, indicating better hydrocarbon generation potential, whereas the telalginite-dominated shale has higher N and S heteroatom contents. The results of FT-IR spectroscopy of the kerogen indicate that the lamalginite-dominated shale is rich in aliphatic groups with long linear methylene sequences. The aromatic groups content is relatively low, but the carboxyl/carbon group (Cdouble bondO) content is high. The aliphatic group content of the telalginite-dominated shale is relatively low, with short-branched chains. The aromatic group content is relatively high. The methyl vibration signal directly connected to the benzene ring is strong, and the sulfoxide (Sdouble bondO) group has a high-intensity peak. Our results provide new insights into distinguishing organic matter types in the Lucaogou Formation and understanding the hydrocarbon generation mechanisms of source rocks in saline lake basins.Lichang Chen Jingqiang Tan Haisu Cui Xiao Ma Xueqi Song Qiang Yuan Jin Liu 2023Energy Geoscience2023,4,3:0
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