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茯苓多糖通过下调lncRNA GAS5表达抑制TNF-α诱导的气道平滑肌细胞重构 被引量:1
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作者 曹卫红 向金波 +6 位作者 彭经纬 李世刚 闫梦真 魏含清 胡小燕 袁野 罗军 《吉林中医药》 2025年第4期449-455,共7页
目的探究茯苓多糖(poria cocos polysaccharides,PCP)对肿瘤坏死因子α(airway smooth muscle cells,TNF-α)刺激下的气道平滑肌细胞(ASMCs)的增殖、迁移和细胞外基质(ECM)沉积的影响及长链非编码RNA生长阻滞特异性转录本5(lnc RNA GAS5... 目的探究茯苓多糖(poria cocos polysaccharides,PCP)对肿瘤坏死因子α(airway smooth muscle cells,TNF-α)刺激下的气道平滑肌细胞(ASMCs)的增殖、迁移和细胞外基质(ECM)沉积的影响及长链非编码RNA生长阻滞特异性转录本5(lnc RNA GAS5)在其中的作用。方法采用TNF-α处理ASMCs来建立哮喘细胞模型。将沉默GAS5的si RNA(si-GAS5)及阴性对照组si-NC转染入ASMCs中,并将其分为:Control组,TNF-α+si-NC组,TNF-α+si-GAS5组和TNF-α+si-NC+PCP组。CCK-8法检测各组ASMCs的增殖活力,Western blot检测细胞中增殖相关蛋白PCNA、Ki67和ECM沉积相关蛋白CollagenⅠ、CollagenⅡ、MMP-9与TIMP-1的表达,Transwell法检测各组细胞的迁移能力。结果与Control组比较,TNF-α+si-NC组AMSCs中GAS5表达、细胞的增殖活力与迁移和细胞中PCNA、Ki67、CollagenⅠ、CollagenⅡ、MMP-9蛋白表达均显著增加(P<0.05),而细胞中TIMP-1蛋白表达明显降低(P<0.05);与TNF-α+si-NC组比较,TNF-α+si-NC+PCP组中GAS5表达、细胞的增殖活力与迁移和细胞中PCNA、Ki67、CollagenⅠ、CollagenⅡ、MMP-9蛋白表达均显著降低(P<0.05),而细胞中TIMP-1蛋白表达明显升高(P<0.05);与TNF-α+si-GAS5组比较,TNF-α+si-NC+PCP组的上述检测指标均无明显改变(P>0.05)。结论PCP可通过抑制细胞增殖、迁移和ECM沉积来改善TNF-α诱导的ASMCs功能改变,这可能与茯苓多糖降低了ASMCs中GAS5/mi R-10a表达的作用有关。 展开更多
关键词 茯苓多糖 lncRNA gas5 气道平滑肌细胞 细胞增殖
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基于Wasm代码块的层次化gas扣除方法
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作者 冯霞 赵猛 刘才华 《中国民航大学学报》 2025年第3期68-74,80,共8页
针对基于WebAssembly(简称Wasm)的区块链智能合约虚拟机在gas扣除过程中产生过长时延的问题,分析该过程中的性能瓶颈,提出一种基于代码块的层次化gas扣除方法。通过在Wasm虚拟机中设计指令记录器与代码块分析器,实现基于代码块的gas扣... 针对基于WebAssembly(简称Wasm)的区块链智能合约虚拟机在gas扣除过程中产生过长时延的问题,分析该过程中的性能瓶颈,提出一种基于代码块的层次化gas扣除方法。通过在Wasm虚拟机中设计指令记录器与代码块分析器,实现基于代码块的gas扣除。根据Wasm模块结构,设计层次化代码块识别规则。实验结果表明,与传统逐条指令的gas扣除方法相比,本文方法将gas扣除次数减少了79.6%,且在交易串行执行模式和交易并行执行模式下,可分别将执行平均时延降低17.0%和18.8%。 展开更多
关键词 区块链 WebAssembly 智能合约虚拟机 gas扣除 代码块
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益母草碱调节GAS6/Axl信号通路对冠心病大鼠心肌损伤的影响 被引量:2
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作者 孟王桃 崔冬玲 +2 位作者 吴冬景 陈超 张颖颖 《中国药房》 北大核心 2025年第1期51-56,共6页
目的探讨益母草碱对生长停滞特异性蛋白6(GAS6)/酪氨酸蛋白激酶受体(Axl)信号通路的影响,阐明其减轻冠心病大鼠心肌损伤的机制。方法构建冠心病大鼠模型,将造模成功的大鼠按随机抽样方法分为模型组,益母草碱低、高剂量组(分别灌胃25、10... 目的探讨益母草碱对生长停滞特异性蛋白6(GAS6)/酪氨酸蛋白激酶受体(Axl)信号通路的影响,阐明其减轻冠心病大鼠心肌损伤的机制。方法构建冠心病大鼠模型,将造模成功的大鼠按随机抽样方法分为模型组,益母草碱低、高剂量组(分别灌胃25、100 mg/kg益母草碱+腹腔注射75 mg/kg生理盐水),益母草碱高剂量+GAS6/Axl信号通路抑制剂组(灌胃100 mg/kg益母草碱+腹腔注射75 mg/kg的R428),每组12只;另取12只正常大鼠作对照组。各给药组大鼠给予相应药物,对照组和模型组大鼠灌胃并腹腔注射等体积生理盐水,每天1次,连续48 d。给药结束后,检测大鼠心功能和血清中炎症因子及心肌损伤标志物水平;观察其心肌组织病理形态;检测其心肌组织细胞凋亡率和心肌组织中凋亡及GAS6/Axl信号通路相关蛋白表达。结果与对照组比较,模型组大鼠出现心肌细胞与心肌纤维排列紊乱、心肌细胞肥大、细胞核固缩等病变,左室射血分数、左室短轴缩短率、二尖瓣环舒张早期与舒张晚期运动速度之比及GAS6蛋白相对表达量和B细胞淋巴瘤2/B细胞淋巴瘤2相关X蛋白、磷酸化Axl/Axl比值均显著降低(P<0.05),肿瘤坏死因子α、白细胞介素1β、白细胞介素6、肌酸激酶同工酶、肌钙蛋白Ⅰ、肌红蛋白水平以及心肌组织细胞凋亡率和剪切型胱天蛋白酶3/胱天蛋白酶3比值均显著升高(P<0.05);益母草碱各剂量组大鼠上述病理情况及各检测指标均显著改善(P<0.05),且益母草碱高剂量组效果较益母草碱低剂量组明显(P<0.05);R428处理可逆转高剂量益母草碱对冠心病大鼠心肌损伤的改善作用(P<0.05)。结论益母草碱可减轻冠心病大鼠心肌损伤,其作用机制可能与激活GAS6/Axl信号通路相关。 展开更多
关键词 益母草碱 gas6/Axl信号通路 冠心病 心肌损伤
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lncRNA GAS5靶向miR-21通过PI3K/Akt/mTOR信号通路抑制肺癌细胞的上皮-间质转化和自噬
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作者 张茜 刘杰 马红霞 《国际检验医学杂志》 2025年第5期568-574,共7页
目的探讨长链非编码RNA(lncRNA)GAS5靶向微小RNA-21(miR-21)通过磷脂酰肌醇3-激酶(PI3K)/蛋白激酶B(Akt)/哺乳动物雷帕霉素靶蛋白(mTOR)信号通路抑制肺癌细胞的上皮-间质转化和自噬。方法实时定量聚合酶链反应(qPCR)检测lncRNA GAS5在5... 目的探讨长链非编码RNA(lncRNA)GAS5靶向微小RNA-21(miR-21)通过磷脂酰肌醇3-激酶(PI3K)/蛋白激酶B(Akt)/哺乳动物雷帕霉素靶蛋白(mTOR)信号通路抑制肺癌细胞的上皮-间质转化和自噬。方法实时定量聚合酶链反应(qPCR)检测lncRNA GAS5在5例非小细胞肺癌(NSCLC)组及癌旁组中的表达。用双荧光素酶报告基因实验检测lncRNA GAS5对miR-21的靶向作用。另将A549细胞分为5组,包括pcDNA-null组、pcDNA-GAS5组、pcDNA-GAS5+mimic-NC组、pcDNA-GAS5+mimic组、pcDNA-GAS5+mimic+BEZ235组。用qPCR检测lncRNA GAS5和miR-21表达。用蛋白质印迹法检测PI3K、磷酸化Akt(p-Akt)、磷酸化mTOR(p-mTOR)、贝克兰蛋白1(Beclin1)、微管相关蛋白1轻链3(LC3)-Ⅱ、LC3-Ⅰ、上皮钙黏蛋白(E-cadherin)、神经钙黏蛋白(N-cadherin)、波形蛋白(Vimentin)、扭转蛋白1(Twist1)、核增殖相关抗原(Ki67)和增殖细胞核抗原(PCNA)表达。采用3-(4,5-二甲基噻唑-2-基)-2,5-二苯基四唑溴化物法检测细胞增殖活力。结果NSCLC组lncRNA GAS5表达明显高于癌旁组,差异有统计学意义(P<0.05)。双荧光素酶报告基因实验确定A549细胞中lncRNA GAS5对miR-21有直接靶向作用。与pcDNA-null组比较,pcDNA-GAS5组细胞增殖活力减少,lncRNA GAS5、PI3K、p-Akt、p-mTOR、Beclin1、LC3-Ⅱ、N-cadherin、Vimentin、Twist1、Ki67、PCNA表达下调,miR-21、LC3-Ⅰ、E-cadherin表达上调,差异有统计学意义(P<0.05)。与pcDNA-GAS5+mimic-NC组比较,pcDNA-GAS5+mimic组细胞增殖活力上调,PI3K、p-Akt、p-mTOR、Beclin1、LC3-Ⅱ、N-cadherin、Vimentin、Twist1、Ki67、PCNA表达上调,miR-21、LC3-Ⅰ、E-cadherin表达下调,差异有统计学意义(P<0.05)。与pcDNA-GAS5+mimic组比较,pcDNA-GAS5+mimic+BEZ235组细胞增殖活力下调,PI3K、p-Akt、p-mTOR、Beclin1、LC3-Ⅱ、N-cadherin、Vimentin、Twist1、Ki67、PCNA表达下调,LC3-Ⅰ和E-cadherin表达上调,差异有统计学意义(P<0.05)。结论lncRNA GAS5通过miR-21抑制PI3K/Akt/mTOR信号通路,从而抑制肺癌细胞的上皮-间质转化和自噬,减少细胞增殖活力。 展开更多
关键词 长链非编码RNA gas5 微小RNA-21 磷脂酰肌醇3-激酶/蛋白激酶B/哺乳动物雷帕霉素靶蛋白信号通路 肺癌
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Novel Methodologies for Preventing Crack Propagation in Steel Gas Pipelines Considering the Temperature Effect 被引量:2
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作者 Nurlan Zhangabay Ulzhan Ibraimova +4 位作者 Marco Bonopera Ulanbator Suleimenov Konstantin Avramov Maryna Chernobryvko Aigerim Yessengali 《Structural Durability & Health Monitoring》 EI 2025年第1期1-23,共23页
Using the software ANSYS-19.2/Explicit Dynamics,this study performedfinite-element modeling of the large-diameter steel pipeline cross-section for the Beineu-Bozoy-Shymkent gas pipeline with a non-through straight crac... Using the software ANSYS-19.2/Explicit Dynamics,this study performedfinite-element modeling of the large-diameter steel pipeline cross-section for the Beineu-Bozoy-Shymkent gas pipeline with a non-through straight crack,strengthened by steel wire wrapping.The effects of the thread tensile force of the steel winding in the form of single rings at the crack edges and the wires with different winding diameters and pitches were also studied.The results showed that the strengthening was preferably executed at a minimum value of the thread tensile force,which was 6.4%more effective than that at its maximum value.The analysis of the influence of the winding dia-meters showed that the equivalent stresses increased by 32%from the beginning of the crack growth until the wire broke.The increment in winding diameter decelerated the disclosure of the edge crack and reduced its length by 8.2%.The analysis of the influence of the winding pitch showed that decreasing the distance between the winding turns also led to a 33.6%reduction in the length of the straight crack and a 7.9%reduction in the maximum stres-ses on the strengthened pipeline cross-section.The analysis of the temperature effect on the pipeline material,within a range from-40℃to+50℃,resulted in a crack length change of up to 5.8%.As the temperature dropped,the crack length decreased.Within such a temperature range,the maximum stresses were observed along the cen-tral area of the crack,which were equal to 413 MPa at+50℃and 440 MPa at-40℃.The results also showed that the presence of the steel winding in the pipeline significantly reduced the length of crack propagation up to 8.4 times,depending on the temperature effect and design parameters of prestressing.This work integrated the existing methods for crack localization along steel gas pipelines. 展开更多
关键词 Crack propagation finite-element internal pressure PRESTRESSING steel gas pipeline temperature effect
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加速GAS模型时变杠杆效应及其实证研究
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作者 杨亮亮 沈根祥 《中央财经大学学报》 北大核心 2025年第7期80-94,共15页
杠杆效应(leverage-effect)描述了风险资产收益冲击对波动的非对称影响,是金融市场数据三大特征之一。大多数文献将杠杆效应作为常数,本文在EGARCH模型的框架内对杠杆效应参数进行时变化处理,以捕捉杠杆效应的时变特征。为克服得分驱动... 杠杆效应(leverage-effect)描述了风险资产收益冲击对波动的非对称影响,是金融市场数据三大特征之一。大多数文献将杠杆效应作为常数,本文在EGARCH模型的框架内对杠杆效应参数进行时变化处理,以捕捉杠杆效应的时变特征。为克服得分驱动模型对冲击反应迟缓的缺陷,本文采用加速广义得分驱动(aGAS)设定杠杆效应的时变动态模型。蒙特卡洛模拟结果显示,时变杠杆效应EGARCH模型具有更好的样本内拟合效果和更强的样本外预测能力,以Qlike为损失函数的模型置信集(MCS)检验对三种EGARCH模型的选择结果表明,时变杠杆效应EGARCH模型的波动预测能力总是在最优模型集合内。对上证指数和沪深300的实证分析表明,在波动拟合和预测方面,采用aGAS去时变化EGARCH模型比采用GAS更能灵活地捕捉市场变化,具有更好的效果。为进一步验证杠杆效应时变化的价值,本文用时变杠杆效应滤波值改进技术交易规则,结果表明改进后的技术交易规则在年化收益率、年化波动率、最大回撤和夏普比方面都优于原来的技术交易规则,显示出时变杠杆效应具有边际信息增量。 展开更多
关键词 EGARCH 加速gas 杠杆效应
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Smart Gas Sensors:Recent Developments and Future Prospective 被引量:1
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作者 Boyang Zong Shufang Wu +3 位作者 Yuehong Yang Qiuju Li Tian Tao Shun Mao 《Nano-Micro Letters》 SCIE EI CAS 2025年第3期55-86,共32页
Gas sensor is an indispensable part of modern society withwide applications in environmental monitoring,healthcare,food industry,public safety,etc.With the development of sensor technology,wireless communication,smart... Gas sensor is an indispensable part of modern society withwide applications in environmental monitoring,healthcare,food industry,public safety,etc.With the development of sensor technology,wireless communication,smart monitoring terminal,cloud storage/computing technology,and artificial intelligence,smart gas sensors represent the future of gassensing due to their merits of real-time multifunctional monitoring,earlywarning function,and intelligent and automated feature.Various electronicand optoelectronic gas sensors have been developed for high-performancesmart gas analysis.With the development of smart terminals and the maturityof integrated technology,flexible and wearable gas sensors play an increasingrole in gas analysis.This review highlights recent advances of smart gassensors in diverse applications.The structural components and fundamentalprinciples of electronic and optoelectronic gas sensors are described,andflexible and wearable gas sensor devices are highlighted.Moreover,sensorarray with artificial intelligence algorithms and smart gas sensors in“Internet of Things”paradigm are introduced.Finally,the challengesand perspectives of smart gas sensors are discussed regarding the future need of gas sensors for smart city and healthy living. 展开更多
关键词 Smart gas sensor Electronic sensor Optoelectronic sensor Flexible and wearable sensor Artificial intelligence
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芪玉三龙方调控LncRNA GAS5及FAS/FADD通路促进肺癌荷瘤小鼠肿瘤凋亡的作用
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作者 刘桐 张星星 +3 位作者 高雅婷 黄谭谭 童佳兵 李泽庚 《中华中医药杂志》 北大核心 2025年第5期2291-2297,共7页
目的:基于动物实验和长链非编码RNA(LncRNA)转录组学,探究芪玉三龙方治疗肺癌荷瘤小鼠的潜在作用机制。方法:构建肺癌A549皮下瘤模型,选择模型组及芪玉三龙方组的肿瘤组织进行LncRNA高通量测序,结合生物信息学分析寻找差异基因,进行基... 目的:基于动物实验和长链非编码RNA(LncRNA)转录组学,探究芪玉三龙方治疗肺癌荷瘤小鼠的潜在作用机制。方法:构建肺癌A549皮下瘤模型,选择模型组及芪玉三龙方组的肿瘤组织进行LncRNA高通量测序,结合生物信息学分析寻找差异基因,进行基因本体(GO)生物过程富集分析,构建内源性竞争RNA(ceRNA)网络,最后使用动物肿瘤组织进行验证。结果:动物实验中,芪玉三龙组肿瘤组织可见片状坏死细胞。与模型组比较,芪玉三龙方组能够抑制Ki67蛋白表达。LncRNA测序结果筛选出667个差异mRNAs,234个差异LncRNAs,其中,LncRNA GAS5有显著的差异表达水平。对差异mRNA进行GO生物学过程分析筛选出细胞的凋亡过程。构建的ceRNA网络结果显示,LncRN GAS5能够与miR-23a-3p作用,影响下游的FAS/FADD凋亡信号通路。TUNEL结果显示,使用芪玉三龙方后肿瘤组织的细胞凋亡增加。RT-qPCR结果显示,与模型组比较,芪玉三龙高剂量组显著促进LncRNA GAS5、FAS、FADD mRNA表达(P<0.01)。结论:芪玉三龙方能够抑制肺癌肿瘤组织的生长,促进肿瘤组织的凋亡,其作用机制可能是通过上调LncRNA GAS5表达,调控miR-23a-3p表达水平,继而影响下游FAS/FADD凋亡通路。 展开更多
关键词 芪玉三龙方 肺癌 转录组学 LncRNA gas5 凋亡 机制 FAS/FADD通路 内源性竞争RNA
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A multi-scale and multi-mechanism coupled model for carbon isotope fractionation of methane during shale gas production 被引量:1
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作者 Jun Wang Fang-Wen Chen +4 位作者 Wen-Biao Li Shuang-Fang Lu Sheng-Xian Zhao Yong-Yang Liu Zi-Yi Wang 《Petroleum Science》 2025年第7期2719-2746,共28页
Prediction of production decline and evaluation of the adsorbed/free gas ratio are critical for determining the lifespan and production status of shale gas wells.Traditional production prediction methods have some sho... Prediction of production decline and evaluation of the adsorbed/free gas ratio are critical for determining the lifespan and production status of shale gas wells.Traditional production prediction methods have some shortcomings because of the low permeability and tightness of shale,complex gas flow behavior of multi-scale gas transport regions and multiple gas transport mechanism superpositions,and complex and variable production regimes of shale gas wells.Recent research has demonstrated the existence of a multi-stage isotope fractionation phenomenon during shale gas production,with the fractionation characteristics of each stage associated with the pore structure,gas in place(GIP),adsorption/desorption,and gas production process.This study presents a new approach for estimating shale gas well production and evaluating the adsorbed/free gas ratio throughout production using isotope fractionation techniques.A reservoir-scale carbon isotope fractionation(CIF)model applicable to the production process of shale gas wells was developed for the first time in this research.In contrast to the traditional model,this model improves production prediction accuracy by simultaneously fitting the gas production rate and δ^(13)C_(1) data and provides a new evaluation method of the adsorbed/free gas ratio during shale gas production.The results indicate that the diffusion and adsorption/desorption properties of rock,bottom-hole flowing pressure(BHP)of gas well,and multi-scale gas transport regions of the reservoir all affect isotope fractionation,with the diffusion and adsorption/desorption parameters of rock having the greatest effect on isotope fractionation being D∗/D,PL,VL,α,and others in that order.We effectively tested the universality of the four-stage isotope fractionation feature and revealed a unique isotope fractionation mechanism caused by the superimposed coupling of multi-scale gas transport regions during shale gas well production.Finally,we applied the established CIF model to a shale gas well in the Sichuan Basin,China,and calculated the estimated ultimate recovery(EUR)of the well to be 3.33×10^(8) m^(3);the adsorbed gas ratio during shale gas production was 1.65%,10.03%,and 23.44%in the first,fifth,and tenth years,respectively.The findings are significant for understanding the isotope fractionation mechanism during natural gas transport in complex systems and for formulating and optimizing unconventional natural gas development strategies. 展开更多
关键词 Shale gas Isotope fractionation MULTI-SCALE Production prediction Adsorbed/free gas ratio
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Enhancing carbon sequestration and greenhouse gas mitigation in semiarid farmland:The promising role of biochar application with biodegradable film mulching 被引量:2
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作者 Jinwen Pang Zhonghong Tian +9 位作者 Mengjie Zhang Yuhao Wang Tianxiang Qi Qilin Zhang Enke Liu Weijun Zhang Xiaolong Ren Zhikuan Jia Kadambot H.M.Siddique Peng Zhang 《Journal of Integrative Agriculture》 2025年第2期517-535,共19页
Long-term mulching has improved crop yields and farmland productivity in semiarid areas,but it has also increased greenhouse gas(GHG)emissions and depleted soil fertility.Biochar application has emerged as a promising... Long-term mulching has improved crop yields and farmland productivity in semiarid areas,but it has also increased greenhouse gas(GHG)emissions and depleted soil fertility.Biochar application has emerged as a promising solution for addressing these issues.In this study,we investigated the effects of four biochar application rates(no biochar(N)=0 t ha^(-1),low(L)=3 t ha^(-1),medium(M)=6 t ha^(-1),and high(H)=9 t ha^(-1))under film mulching and no mulching conditions over three growing seasons.We assessed the impacts on GHG emissions,soil organic carbon sequestration(SOCS),and maize yield to evaluate the productivity and sustainability of farmland ecosystems.Our results demonstrated that mulching increased maize yield(18.68-41.80%),total fixed C in straw(23.64%),grain(28.87%),and root(46.31%)biomass,and GHG emissions(CO_(2),10.78%;N_(2)O,3.41%),while reducing SOCS(6.57%)and GHG intensity(GHGI;13.61%).Under mulching,biochar application significantly increased maize yield(10.20%),total fixed C in straw(17.97%),grain(17.69%)and root(16.75%)biomass,and SOCS(4.78%).Moreover,it reduced the GHG emissions(CO_(2),3.09%;N_(2)O,6.36%)and GHGI(12.28%).These effects correlated with the biochar addition rate,with the optimal rate being 9.0 t ha^(-1).In conclusion,biochar application reduces CO_(2) and N_(2)O emissions,enhances CH_(4) absorption,and improves maize yield under film mulching.It also improves the soil carbon fixation capacity while mitigating the warming potential,making it a promising sustainable management method for mulched farmland in semiarid areas. 展开更多
关键词 BIOCHAR film mulching greenhouse gas emissions carbon sequestration
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Research progress and application of carbon sequestration in industrial flue gas by microalgae: A review 被引量:3
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作者 Rui Wang Xue Wang Tingyu Zhu 《Journal of Environmental Sciences》 2025年第6期14-28,共15页
Global warming caused by the emission of CO_(2) in industrial flue gas has attractedmore and more attention.Therefore,to fix CO_(2) with high efficiency and environmentally friendly had become the hot research field.C... Global warming caused by the emission of CO_(2) in industrial flue gas has attractedmore and more attention.Therefore,to fix CO_(2) with high efficiency and environmentally friendly had become the hot research field.Compared with the traditional coal-fired power plant flue gas emission reduction technology,carbon fixation and emission reduction by microalgae is considered as a promising technology due to the advantages of simple process equipment,convenient operation and environmental protection.When the flue gas is treated by microalgae carbon fixation and emission reduction technology,microalgae cells can fix CO_(2) in the flue gas through photosynthesis,and simultaneously absorb NO_(x) and SO_(x) as nitrogen and sulfur sources required for growth.Meanwhile,they can also absorb mercury,selenium,arsenic,cadmium,lead and other heavy metal ions in the flue gas to obtain microalgae biomass.The obtained microalgae biomass can be further transformed into high valueadded products,which has broad development prospects.This paper reviews the mechanisms and pathways of CO_(2) sequestration,the mechanism and impacts of microalgal emission reduction of flue gas pollutants,and the applications of carbon sequestration in industrial flue gas by microalgae.Finally,this paper provides some guidelines and prospects for the research and application of green emission reduction technology for industrial flue gas. 展开更多
关键词 MICROALGAE Bio-mitigation Flue gas Carbon sequestration Carbon emission reduction Photosynthetic carbon fixation
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Key techniques for precise measuring gas content in deep coal mine:In-situ pressure-and gas-preserved coring 被引量:1
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作者 Ju Li Jianan Li +4 位作者 Tianyu Wang Guikang Liu Zhiqiang He Cong Li Heping Xie 《International Journal of Mining Science and Technology》 2025年第4期589-607,共19页
Gas content serves as a critical indicator for assessing the resource potential of deep coal mines and forecasting coal mine gas outburst risks.However,existing sampling technologies face challenges in maintaining the... Gas content serves as a critical indicator for assessing the resource potential of deep coal mines and forecasting coal mine gas outburst risks.However,existing sampling technologies face challenges in maintaining the integrity of gas content within samples and are often constrained by estimation errors inherent in empirical formulas,which results in inaccurate gas content measurements.This study introduces a lightweight,in-situ pressure-and gas-preserved corer designed to collect coal samples under the pressure conditions at the sampling point,effectively preventing gas loss during transfer and significantly improving measurement accuracy.Additionally,a gas migration model for deep coal mines was developed to elucidate gas migration characteristics under pressure-preserved coring conditions.The model offers valuable insights for optimizing coring parameters,demonstrating that both minimizing the coring hole diameter and reducing the pressure difference between the coring-point pressure and the original pore pressure can effectively improve the precision of gas content measurements.Coring tests conducted at an experimental base validated the performance of the corer and its effectiveness in sample collection.Furthermore,successful horizontal coring tests conducted in an underground coal mine roadway demonstrated that the measured gas content using pressure-preserved coring was 34%higher than that obtained through open sampling methods. 展开更多
关键词 Pressure-and gas-preserved coring Deep coal mines coring gas migration model In-situ gas content
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Coal-rock gas accumulation mechanism and the whole petroleum system of coal measures 被引量:1
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作者 LI Guoxin JIA Chengzao +2 位作者 ZHAO Qun ZHOU Tianqi GAO Jinliang 《Petroleum Exploration and Development》 2025年第1期33-49,共17页
Coal measures are significant hydrocarbon source rocks and reservoirs in petroliferous basins.Many large gas fields and coalbed methane fields globally are originated from coal-measure source rocks or accumulated in c... Coal measures are significant hydrocarbon source rocks and reservoirs in petroliferous basins.Many large gas fields and coalbed methane fields globally are originated from coal-measure source rocks or accumulated in coal rocks.Inspired by the discovery of shale oil and gas,and guided by“the overall exploration concept of considering coal rock as reservoir”,breakthroughs in the exploration and development of coal-rock gas have been achieved in deep coal seams with favorable preservation conditions,thereby opening up a new development frontier for the unconventional gas in coal-rock reservoirs.Based on the data from exploration and development practices,a systematic study on the accumulation mechanism of coal-rock gas has been conducted.The mechanisms of“three fields”controlling coal-rock gas accumulation are revealed.It is confirmed that the coal-rock gas is different from CBM in accumulation process.The whole petroleum systems in the Carboniferous–Permian transitional facies coal measures of the eastern margin of the Ordos Basin and in the Jurassic continental facies coal measures of the Junggar Basin are characterized,and the key research directions for further developing the whole petroleum system theory of coal measures are proposed.Coal rocks,compared to shale,possess intense hydrocarbon generation potential,strong adsorption capacity,dual-medium reservoir properties,and partial or weak oil and gas self-sealing capacity.Additionally,unlike other unconventional gas such as shale gas and tight gas,coal-rock gas exhibits more complex accumulation characteristics,and its accumulation requires a certain coal-rock play form lithological and structural traps.Coal-rock gas also has the characteristics of conventional fractured gas reservoirs.Compared with the basic theory and model of the whole petroleum system established based on detrital rock formations,coal measures have distinct characteristics and differences in coal-rock reservoirs and source-reservoir coupling.The whole petroleum system of coal measures is composed of various types of coal-measure hydrocarbon plays with coal(and dark shale)in coal measures as source rock and reservoir,and with adjacent tight layers as reservoirs or cap or transport layers.Under the action of source-reservoir coupling,coal-rock gas is accumulated in coal-rock reservoirs with good preservation conditions,tight oil/gas is accumulated in tight layers,conventional oil/gas is accumulated in traps far away from sources,and coalbed methane is accumulated in coal-rock reservoirs damaged by later geological processes.The proposed whole petroleum system of coal measures represents a novel type of whole petroleum system. 展开更多
关键词 coal measure coal-rock gas coalbed methane tight gas coal-rock play accumulation mechanism whole petroleum system whole petroleum system of coal measures
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Study and application of the influence of inclination angle on the cross-fusion mechanism of high gas thick coal seam 被引量:1
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作者 Pengxiang Zhao Zechen Chang +4 位作者 Shugang Li Risheng Zhuo Yongyong Jia Qiudong Shao Wen Lei 《International Journal of Mining Science and Technology》 2025年第1期69-85,共17页
In this study,to better decide the effect of coal seam dip angle upon the dynamic change of the crossfusion in gas transport and storage areas during the progress of working face in the high gas thick coal seam,a two-... In this study,to better decide the effect of coal seam dip angle upon the dynamic change of the crossfusion in gas transport and storage areas during the progress of working face in the high gas thick coal seam,a two-dimensional physical simulation experiment regarded as the theoretical research was conducted to properly explore the variation law of overburden fracture.The results demonstrated that the boundary of the gas transport zone was located in the region of fracture separation.The boundary of the gas storage area was located in the abrupt penetration zone.Also,according to the information theory,the state of the gas transport and storage areas was determined by the changing trend of the fracture rate and fracture entropy.The mathematical representation model of the dip effect in gas transport and storage areas was established.The criteria upon which the regional location of the gas transport area and gas storage area can be based were put forward.The cross-fusion evolution process of the dip effect in gas transport and storage areas was revealed as well.The research results could provide guidance for realising directional and accurate gas extraction. 展开更多
关键词 Coal seam dip angle Cross fusion High gas thick coal seam Overburden fracture gas transport and storage areas
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GAS6促进肥胖相关性骨关节炎机制研究
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作者 朱永康 赵斌 +2 位作者 杨挺 余振阳 穆彦志 《中华实验外科杂志》 2025年第10期2039-2042,共4页
目的探讨GAS6信号通路在肥胖性骨关节炎(OA)中的激活机制及其对软骨细胞炎性反应的调控作用。方法建立高脂饮食联合前交叉韧带横断术(ACLT)诱导的SD大鼠肥胖性OA模型(10例),以普通饲料喂养大鼠为对照组(10例)。通过Micro-CT、步态分析(C... 目的探讨GAS6信号通路在肥胖性骨关节炎(OA)中的激活机制及其对软骨细胞炎性反应的调控作用。方法建立高脂饮食联合前交叉韧带横断术(ACLT)诱导的SD大鼠肥胖性OA模型(10例),以普通饲料喂养大鼠为对照组(10例)。通过Micro-CT、步态分析(CatWalk系统)和血清酶联免疫吸附试验(ELISA)检测评估模型表型;分离大鼠原代软骨细胞,通过白细胞介素(IL)-1β诱导炎症并构建GAS6过表达模型,检测炎性因子[IL-6、肿瘤坏死因子-α(TNF-α)]表达。采用独立样本t检验进行统计学分析。结果肥胖OA组大鼠体重高于对照组[(568.3±32.1)g比(382.5±28.4)g,t=15.732,P<0.01]、血清瘦素及骨赘体积显著升高;步态分析显示关节功能障碍(步幅缩短29.4%,站立相时间延长37.2%,P<0.01)。肥胖OA组血清GAS6水平高于对照组[(12.37±1.85)ng/ml比(5.23±0.94)ng/ml,t=8.327,P<0.01],且与软骨损伤评分呈正相关(r=0.813,P<0.01);细胞实验中,GAS6过表达使IL-1β诱导的IL-6和TNF-α分泌进一步增加63.7%和71.9%(P<0.01)。结论GAS6信号通路在肥胖性OA中被激活,通过正向调控IL-6、TNF-α等炎症因子加剧软骨细胞炎症反应。 展开更多
关键词 骨关节炎 肥胖 gas6
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Gas production characteristics of oats and tritical silages and techniques for reducing gas emissions 被引量:1
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作者 Jing Tian Rong Tian +2 位作者 Juanyan Wu Liying Huang Jianguo Zhang 《Journal of Integrative Agriculture》 2025年第4期1246-1258,共13页
Greenhouse gas(GHG)production during ensiling not only causes the nutrient losses of silage but also promotes climate warming.However,there is little information on the production of GHG and strategies for mitigating ... Greenhouse gas(GHG)production during ensiling not only causes the nutrient losses of silage but also promotes climate warming.However,there is little information on the production of GHG and strategies for mitigating GHG emissions during ensiling.This work aimed to study the gas production characteristics and techniques for reducing gas emissions during ensiling.Oats and triticale,with Lactiplantibacillus plantarum(LP)or corn meal(CM)addition,were ensiled.The cumulative gas volume rapidly increased and reached to the peak within the first 9 d of ensiling for both forage crops.The highest cumulative gas volume of triticale silage was twice as much as that of oats silage.Triticale silage produced lower carbon dioxide(CO_(2))concentration,higher methane(CH_(4))and nitrous oxide(N_(2)O)concentrations than oats silage within the 28 d of ensiling.Adding LP or CM significantly improved the fermentation quality and decreased the gas volume and GHG concentrations of 2 silages on d 56(except CH_(4)of triticale).At the early stage of ensiling,more Enterobacter,Lactococcus and Leuconostoc related to gas production were observed,and adding LP increased the abundance of Lactobacillus and decreased the abundance of bacteria like Kosakonia,Pantoea,Enterobacter and Lactococcus positively correlated with gas volume,CO_(2)and N_(2)O concentrations.These results suggest that gas formation during ensiling mainly occurs in the first 9 d.Adding LP or CM can significantly improve the fermentation quality and decrease the gas volume.This would benefit to reducing GHG emissions in silage production. 展开更多
关键词 bacterial community ENSILING fermentation quality greenhouse gas OATS TRITICALE
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Revealing the thermal stability of sodium-ion battery from material to cell level using combined thermal-gas analysis 被引量:1
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作者 Anqi Teng Yue Zhang +9 位作者 Lihua Jiang Yue Zhang Hongbin Dang Chenchen Wang Zheng Fang Yong Liu Xuefeng Wang Huang Li Wenxin Mei Qingsong Wang 《Journal of Energy Chemistry》 2025年第4期838-849,共12页
The future large-scale application of sodium-ion batteries(SIBs)is inseparable from their excellent electrochemical performance and reliable safety characteristics.At present,there are few studies focusing on their sa... The future large-scale application of sodium-ion batteries(SIBs)is inseparable from their excellent electrochemical performance and reliable safety characteristics.At present,there are few studies focusing on their safety performance.The analysis of thermal stability and structural changes within a single material cannot systematically describe the complex interplay of components within the battery system during the thermal runaway process.Furthermore,the reaction between the battery materials themselves and their counterparts within the system can stimulate more intense exothermic behavior,thereby affecting the safety of the entire battery system.Therefore,this study delved into the thermal generation and gas evolution characteristics of the positive electrode(Na_(x)Ni_(1/3)Fe_(1/3)Mn_(1/3)O_(2),NFM111)and the negative electrode(hard carbon,HC)in SIBs,utilizing various material combinations.Through the integration of microscopic and macroscopic characterization techniques,the underlying reaction mechanisms of the positive and negative electrode materials within the battery during the heating process were elucidated.Three important results are derived from this study:(Ⅰ)The instability of the solid electrolyte interphase(SEI)leads to its decomposition at temperatures below 100℃,followed by extensive decomposition within the range of 100-150℃,yielding heat and the formation of inorganic compounds,such as Na_(2)CO_(3)and Na_(2)O;(Ⅱ)The reaction between NFM111 and the electrolyte constitutes the primary exothermic event during thermal abuse,with a discernible reaction also occurring between sodium metal and the electrolyte throughout the heating process;(Ⅲ)The heat production and gas generation behaviors of multi-component reactions do not exhibit complete correlation,and the occurrence of gas production does not necessarily coincide with thermal behavior.The results presented in this study can provide useful guidance for the safety improvement of SIBs. 展开更多
关键词 Sodium-ion battery safety Thermal stability gas generation DECOMPOSITION
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Oscillation mechanism and predictive model of explosion load for natural gas in confined tube 被引量:1
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作者 Chengjun Yue Li Chen Linfeng Xu 《Defence Technology(防务技术)》 2025年第3期13-27,共15页
Gas explosion in confined space often leads to significant pressure oscillation.It is widely recognized that structural damage can be severe when the oscillation frequency of the load resonates with the natural vibrat... Gas explosion in confined space often leads to significant pressure oscillation.It is widely recognized that structural damage can be severe when the oscillation frequency of the load resonates with the natural vibration frequency of the structure.To reveal the oscillation mechanism of gas explosion load,the experiment of gas explosion was conducted in a large-scale confined tube with the length of 30 m,and the explosion process was numerically analyzed using FLACS.The results show that the essential cause of oscillation effect is the reflection of the pressure wave.In addition,due to the difference in the propagation path of the pressure wave,the load oscillation frequency at the middle position of the tunnel is twice that at the end position.The average sound velocity can be used to calculate the oscillation frequency of overpressure accurately,and the error is less than 15%.The instability of the flame surface and the increase of flame turbulence caused by the interaction between the pressure wave and the flame surface are the main contributors to the increase in overpressure and amplitude.The overpressure peaks calculated by the existing flame instability model and turbulence disturbance model are 31.7%and 34.7%lower than the numerical results,respectively.The turbulence factor model established in this work can describe the turbulence enhancement effect caused by flame instability and oscillatory load,and the difference between the theoretical and numerical results is only 4.6%.In the theoretical derivation of the overpressure model,an improved model of dynamic turbulence factor is established,which can describe the enhancement effect of turbulence factor caused by flame instability and self-turbulence.Based on the one-dimensional propagation theory of pressure wave,the oscillatory effect of the load is derived to calculate the frequency and amplitude of pressure oscillation.The average error of amplitude and frequency is less than 20%. 展开更多
关键词 gas explosion Oscillatory load Oscillation frequency Turbulence factor
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Ammonia-induced CuO/13X for H_(2)S removal from simulated blast furnace gas at low temperature
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作者 Erping Cao Yuhua Zheng +6 位作者 Hao Zhang Jianshan Wang Yuran Li Tingyu Zhu Zhan-guo Zhang Guangwen Xu Yanbin Cui 《Green Energy & Environment》 SCIE EI CAS 2025年第1期139-149,共11页
Blast furnace gas(BFG)is an important by-product energy for the iron and steel industry and has been widely used for heating or electricity generation.However,the undesirable contaminants in BFG(especially H_(2)S)gene... Blast furnace gas(BFG)is an important by-product energy for the iron and steel industry and has been widely used for heating or electricity generation.However,the undesirable contaminants in BFG(especially H_(2)S)generate harmful environmental emissions.The desulfurization of BFG is urgent for integrated steel plants due to the stringent ultra-low emission standards.Compared with other desulfurization materials,zeolite-based adsorbents represent a viable option with low costs and long service life.In this study,an ammonia-induced CuO modified 13X adsorbent(NH_(3)–CuO/13X)was prepared for H_(2)S removal from simulated BFG at low temperature.The XRD,H_(2)-TPR and TEM analysis proved that smaller CuO particles were formed and the dispersion of Cu on the surface of 13X zeolite was improved via the induction of ammonia.Evaluation on H_(2)S adsorption performance of the adsorbent was carried out using simulated BFG,and the results showed that NH_(3)–CuO/13X-3 has better breakthrough sulfur capacity,which was more than twice the sulfur capacity of CuO/13X.It is proposed that the enhanced desulfurization performance of NH_(3)–CuO/13X is attributed to an abundant pore of 13X,and combined action of 13X and CuO.This work provided an effective way to improve the sulfur capacity of zeolite-based adsorbents via impregnation method by ammonia induction. 展开更多
关键词 Blast furnace gas DESULFURIZATION Ammonia-induced CUO 13X zeolite
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A model for predicting marine shale gas sweet spots based on relative sea-level changes and its application 被引量:1
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作者 Hongyan Wang Zhensheng Shi +2 位作者 Xi Yang Qun Zhao Changmin Guo 《Energy Geoscience》 2025年第2期142-154,共13页
Gas-bearing shales have become a major source of future natural gas production worldwide.It has become increasingly urgent to develop a reliable prediction model and corresponding workflow for identifying shale gas sw... Gas-bearing shales have become a major source of future natural gas production worldwide.It has become increasingly urgent to develop a reliable prediction model and corresponding workflow for identifying shale gas sweet spots.The formation of gas-bearing shales is closely linked to relative sealevel changes,providing an important approach to predicting sweet spots in the Wufeng-Longmaxi shale in the southern Sichuan Basin,China.Three types of marine shale gas sweet spots are identified in the shale based on their formation stages combined with relative sea-level changes:early,middle,and late transgression types.This study develops a prediction model and workflow for identifying shale gas sweet spots by analyzing relative sea-level changes and facies sequences.Predicting shale gas sweet spots in an explored block using this model and workflow can provide a valuable guide for well design and hydraulic fracturing,significantly enhancing the efficiency of shale gas exploration and development.Notably,the new prediction model and workflow can be utilized for the rapid evaluation of the potential for shale gas development in new shale gas blocks or those with low exploratory maturity. 展开更多
关键词 Shale gas Sweet spot Relative sea-level change Wufeng-longmaxi shale Southern sichuan basin
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