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Enhancing Rice Straw Fibers for Pulp Films Using DES and Streptomyces rochei Synergy
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作者 Cheng Yong enhui sun +8 位作者 Xiaodong Fan Zhiping Zhang Jing Zhang Ling Chen Ping Qu Qiujun Wang Hongying Huang Hongmei Jin Mingjie Guan 《Journal of Renewable Materials》 2025年第9期1803-1817,共15页
Long-time fermentation has always been one of the reasons restricting the development of straw biological pulping.This study aimed to develop a novel straw pulp film with shortened solid-state fermentation time with l... Long-time fermentation has always been one of the reasons restricting the development of straw biological pulping.This study aimed to develop a novel straw pulp film with shortened solid-state fermentation time with less than 20%mass loss rate by bio-pulping synergistic treatment of straw fibers with deep eutectic solvent(DES)and Streptomyces rochei(S.rochei).Results illustrated that at 3%S.rochei concentration with 7-day fermentation,both cellulose and hemicellulose enzyme activities of the treated rice straw fiber reached peak values with a fiber mass loss rate of 17.01%.Microstructural morphology revealed that S.rochei colonization initiated on straw surfaces and progressively penetrated internal structures,resulting in surface loosening and distinct disruption of cell wall tissues within vascular bundles in transverse sections.The treated rice straw strip indicated a maximum tensile strength of 46.22 MPa for(Bacteria)BA 3%at day 7,attributed to optimized synergistic effects of microfibril angle(MFA)and cellulose/hemicellulose relative content ratio.The modified straw pulp film exhibited significant enhancement in the tensile index(44.9%increase),burst index(10.3%increase),and tear index(60%increase)compared to untreated groups.This work demonstrated the important role ofDES and S.rochei bio-pulping synergistic treatment in improving rice straw pulp performance,suggesting an eco-friendly,novel,and efficient biomass pretreatment technology for potential application prospects in sustainable agricultural mulching materials. 展开更多
关键词 DES Streptomyces rochei BIO-PULPING straw pulp film FERMENTATION
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Investigating Load Regulation Characteristics of a Wind-PV-Coal Storage Multi-Power Generation System 被引量:1
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作者 Zhongping Liu enhui sun +3 位作者 Jiahao Shi Lei Zhang Qi Wang Jiali Dong 《Energy Engineering》 EI 2024年第4期913-932,共20页
There is a growing need to explore the potential of coal-fired power plants(CFPPs)to enhance the utilization rate of wind power(wind)and photovoltaic power(PV)in the green energy field.This study developed a load regu... There is a growing need to explore the potential of coal-fired power plants(CFPPs)to enhance the utilization rate of wind power(wind)and photovoltaic power(PV)in the green energy field.This study developed a load regulation model for a multi-power generation system comprising wind,PV,and coal energy storage using realworld data.The power supply process was divided into eight fundamental load regulation scenarios,elucidating the influence of each scenario on load regulation.Within the framework of the multi-power generation system with the wind(50 MW)and PV(50 MW)alongside a CFPP(330 MW),a lithium-iron phosphate energy storage system(LIPBESS)was integrated to improve the system’s load regulation flexibility.The energy storage operation strategy was formulated based on the charging and discharging priority of the LIPBESS for each basic scenario and the charging and discharging load calculation method of LIPBESS auxiliary regulation.Through optimization using the particle swarm algorithm,the optimal capacity of LIPBESS was determined to be within the 5.24-4.88 MWh range.From an economic perspective,the LIPBESS operating with CFPP as the regulating power source was 49.1% lower in capacity compared to the renewable energy-based storage mode. 展开更多
关键词 Wind power coal-fired power PV multi-power generation system lithium-iron phosphate energy storage system
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Analysis of Factors Influencing Shut in Pressure Cone in Offshore Strong Bottom Water Reservoir
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作者 Jie Tan enhui sun +2 位作者 Dongdong Yang Wentong Zhang Songru Mou 《Journal of Geoscience and Environment Protection》 2021年第4期166-175,共10页
X oilfield is an offshore strong bottom water reservoir with water cut up to 96% at present, and liquid extraction has become one of the main ways to increase oil production. However, the current liquid production of ... X oilfield is an offshore strong bottom water reservoir with water cut up to 96% at present, and liquid extraction has become one of the main ways to increase oil production. However, the current liquid production of the oilfield reaches 60,000 m</span><sup><span style="font-family:Verdana;">3</span></sup><span style="font-family:Verdana;">/d due to the limitation of offshore platform, well trough and equipment, the oilfield is unable to continue liquid extraction. In order to maximize the oil production of the oilfield, it is necessary to study the strategy of shut in and cone pressure. Through numerical simulation, this paper analyzes the influence of different factors, such as crude oil density, viscosity, reservoir thickness, interlayer, permeability and so on, on the drop height of water cone and the effect of precipitation and oil increase after well shut in. At the same time, the weight of each factor is analyzed by combining the actual dynamic data with the fuzzy mathematics method, and the strategy of well shut in and cone pressure is formulated for the offshore strong bottom water reservoir. It provides the basis and guidance for the reasonable use of shut in pressure cone when the reservoir with strong bottom water meets the bottleneck of liquid volume. 展开更多
关键词 OFFSHORE Strong Bottom Water Reservoir Shut in Pressure Cone Precipitation to Increase Oil Production Fuzzy Mathematics
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An Investigation of Battery Energy Storage Aided Wind-Coal Integrated Energy System 被引量:2
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作者 enhui sun Jiahao Shi +3 位作者 Lei Zhang Hongfu Ji Qian Zhang Yongyi Li 《Energy Engineering》 EI 2023年第7期1583-1602,共20页
This paper studies the feasibility of a supply-side wind-coal integrated energy system.Based on grid-side data,the load regulation model of coal-fired power and the wind-coal integrated energy system model are establi... This paper studies the feasibility of a supply-side wind-coal integrated energy system.Based on grid-side data,the load regulation model of coal-fired power and the wind-coal integrated energy system model are established.According to the simulation results,the reasons why the wind-coal combined power supply is difficult to meet the grid-side demand are revealedthrough scenario analysis.Basedon thewind-coal combinedoperation,a wind-coalstorage integrated energy system was proposed by adding lithium-iron phosphate battery energy storage system(LIPBESS)to adjust the load of the system.According to the four load adjustment scenarios of grid-side instructions of the wind-coal system,the difficulty of load adjustment in each scenario is analyzed.Based on the priority degree of LIPBESS charge/discharge in four scenarios at different time periods,the operation mode of two charges and two discharges per day was developed.Based on the independent operation level of coal-fired power,after the addition of LIPBESS(5.5 MWh),the average qualified rate of multi-power operation in March and June reached the level of independent operation of coal-fired power,while the average qualified rate of the remaining months was only 5.4%different from that of independent operation of coal-fired power.Compared with the wind storage mode,the energy storage capacity and investment cost of wind-coal-storage integrated energy system are reduced by 54.2%and 53.7%,respectively. 展开更多
关键词 Wind power lithium-iron phosphate battery energy storage system coal-fired power integrated energy system
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Study on Productivity Model of Herringbone-Like Laterals Wells and Optimization of Morphological Parameters Considering Threshold Pressure Gradient in Heavy Oil Reservoirs
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作者 enhui sun Jie Tan +2 位作者 Dong Zhang Wei Wang Songru Mu 《World Journal of Engineering and Technology》 2019年第2期302-313,共12页
Compared with conventional well, herringbone-like laterals wells can increase the area of oil release, and can reduce the number of wellhead slots of platforms,?and?also can greatly improve the development efficiency.... Compared with conventional well, herringbone-like laterals wells can increase the area of oil release, and can reduce the number of wellhead slots of platforms,?and?also can greatly improve the development efficiency. Based on threshold pressure gradient in heavy oil reservoir,?and?the applied principle of mirror reflection and superposition, the pressure distribution equation of herringbone-like laterals wells is obtained in heavy oil reservoir. Productivity model of herringbone-like laterals wells is proposed by reservoir-wellbore steady seepage. The example shows that the productivity model is great accuracy?to?predict the productivity of herringbone-like laterals wells. The model is used to analyze the branching length, branching angle, branching symmetry, branching position and spacing and their effects on productivity of herringbone-like laterals wells. The principle of optimizing the well shape of herringbone-like laterals wells is proposed. 展开更多
关键词 Threshold Pressure Gradient Herringbone-Like Laterals WELLS Heavy Oil RESERVOIRS PRODUCTIVITY Model Optimization of MORPHOLOGICAL Parameters
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Study on Production Regulation of Reservoir under Different Demand
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作者 Jie Tan enhui sun +2 位作者 Wei Wang Jingmin Guo Wei Yang 《Journal of Power and Energy Engineering》 2019年第7期39-49,共11页
Natural gas production is related to the demand for gas, which is low in summer and high in winter. While the gas storage is still being demonstrated and constructed, oil and gas fields should formulate and implement ... Natural gas production is related to the demand for gas, which is low in summer and high in winter. While the gas storage is still being demonstrated and constructed, oil and gas fields should formulate and implement production control schemes suitable for gas reservoirs. The realization of natural gas production can not only meet the demand of gas consumption, but also ensure the scientific and efficient development of gas reservoirs, and meet the needs of dynamic analysis of gas reservoirs at different development stages and scientific research of gas reservoirs. In this paper, KAPPA Workstation 5.20 software is used to determine the inflow dynamic model of a single well. The nodal method is used to determine the reasonable production and peak shaving capacity in combination with the critical fluid carrying capacity of gas wells and the erosion rate of gas wells. The reasonable production allocation in each period, i.e. the production control scheme, is obtained. It solves the scientific and efficient development of natural gas in X gas field, which is still under the construction of gas storage, and provides guidance for gas reservoir development management and regulation. 展开更多
关键词 GAS RESERVOIR Regulation of PRODUCTION EROSION Velocity The Critical Liquid Carrying Capacity of GAS Well REASONABLE PRODUCTION
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The Productivity Model of Horizontal Well Considering Acidification Effect in Anisotropic Reservoirs
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作者 enhui sun Wei Yang +2 位作者 Qin Peng Peng Meng Songru Mu 《World Journal of Engineering and Technology》 2020年第1期19-32,共14页
When the horizontal well was acidized, in order to predict the productivity, through coordinate transformation method, based on the formation seepage model of horizontal well after acidification,?wededuced the formula... When the horizontal well was acidized, in order to predict the productivity, through coordinate transformation method, based on the formation seepage model of horizontal well after acidification,?wededuced the formula of horizontal well local skin factor,?established the coupling model of reservoir and horizontal wellbore flow,?and?deduced the semi-analytical productivity model of horizontal well considering the change of local skin factor. Based on the example, the effect of horizontal well length, reservoir anisotropy coefficient, mud damage depth and damage degree on the production-increasing ratio after acidification were studied. The results showed reservoir with greater anisotropy, serious wellbore pollution and deeper mud invasion near wellbore,?and?that the stimulation effect of horizontal well after acidification was better. 展开更多
关键词 ANISOTROPY ACIDIFICATION EFFECT COORDINATE Transformation SKIN Factor PRODUCTIVITY of Horizontal Well
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Evaluation of Early High Speed Development of Bottom Water Heavy Oil Reservoir
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作者 Xiujuan Zhao Songru Mou +2 位作者 Jie Tan Bowei Liu enhui sun 《Journal of Geoscience and Environment Protection》 2020年第11期201-208,共8页
The bottom water heavy oil reservoir has high natural energy, and the bottom water body multiple of the reservoir is 300 times or even higher. The natural energy of the reservoir can keep the superior condition that t... The bottom water heavy oil reservoir has high natural energy, and the bottom water body multiple of the reservoir is 300 times or even higher. The natural energy of the reservoir can keep the superior condition that the formation energy does not decrease under the condition of large liquid volume and high recovery rate. In view of this reservoir condition, we take C oilfield as an example to carry out the oilfield development effect under the condition of large liquid volume and high-speed production, and analyze the influence of high-speed production and medium low-speed production on recovery rate of similar heavy oil bottom water-reservoir. The results show that the rising trend of water cut in oilfield is the same whether high-speed development with large liquid volume or conventional low-speed development is adopted. Under the condition of high liquid production, the sweep efficiency of water flooding is high in the same period of time, which has certain advantages of enhanced oil recovery. The development mode of early large liquid production is explored, which provides certain guidance for the efficient development of heavy oil reservoir with bottom water. 展开更多
关键词 Bottom Water Heavy Oil High Speed Development
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Study on the Microstructure and Properties of Rice Straw with Streptomyces Rochei
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作者 Hongying Huang Xiaochen Jin +2 位作者 Guofeng Wu enhui sun Wanying Tang 《功能材料信息》 2016年第3期47-47,共1页
关键词 英语 阅读 理解 生态环境材料
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超临界CO_2再压缩/再热燃煤发电系统热力循环 被引量:10
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作者 孙恩慧 郑雅文 +1 位作者 王鸽 徐进良 《科学通报》 EI CAS CSCD 北大核心 2019年第2期234-244,共11页
煤在我国处于基础能源地位,发展变革性燃煤发电技术具有重要意义.与超临界水蒸气朗肯循环相比,超临界二氧化碳(S-CO_2)布雷顿循环具有效率高及系统紧凑等优点,是未来动力循环的发展方向,但S-CO_2燃煤发电面临循环构建、锅炉压降及烟气... 煤在我国处于基础能源地位,发展变革性燃煤发电技术具有重要意义.与超临界水蒸气朗肯循环相比,超临界二氧化碳(S-CO_2)布雷顿循环具有效率高及系统紧凑等优点,是未来动力循环的发展方向,但S-CO_2燃煤发电面临循环构建、锅炉压降及烟气余热吸收等关键难题.为此,本文发展了热力学、CO_2流动传热及烟气余热能量分布综合模型,研究了S-CO_2再压缩/再热燃煤发电系统热力学特性,首次发现热效率曲线对于一次再热和二次再热出现交叉,进而提出了S-CO_2循环采用一次再热或二次再热的筛选准则.针对锅炉烟气余热吸收问题,本文通过揭示主蒸气温度和压力间的内在关系,提出了调节主蒸气压力方法,结果表明该方法可有效吸收烟气余热,但受材料耐压极限所制约,因而本文在S-CO_2再压缩/再热循环基础上,引入烟气冷却器,以解决烟气余热吸收问题,给出了烟气冷却器与热力系统间的最佳集成模式,所构建的燃煤发电系统热效率达50.82%,锅炉效率达94.43%.本文为发展S-CO_2燃煤发电系统奠定了理论和技术基础. 展开更多
关键词 超临界二氧化碳循环 燃煤发电 烟气余热 烟气冷却器
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Formable porous biochar loaded with La-Fe(hydr)oxides/montmorillonite for efficient removal of phosphorus in wastewater:process and mechanisms 被引量:4
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作者 enhui sun Yanyang Zhang +8 位作者 Qingbo Xiao Huayong Li Ping Qu Cheng Yong Bingyu Wang Yanfang Feng Hongying Huang Linzhang Yang Charles Hunter 《Biochar》 SCIE 2022年第1期296-314,共19页
The development of biochar-based granule-like adsorbents suitable for scaled-up application has been attracting increasing attention in the field of water treatment.Herein,a new formable porous granulated biochar load... The development of biochar-based granule-like adsorbents suitable for scaled-up application has been attracting increasing attention in the field of water treatment.Herein,a new formable porous granulated biochar loaded with La-Fe(hydr)oxides/montmorillonite(LaFe/MB)was fabricated via a granulation and pyrolysis process for enhanced phosphorus(P)removal from wastewater.Montmorillonite acted as a binder that increased the size of the granulated biochar,while the use of Fe promoted the surface charge and facilitated the dispersion of La,which was responsible for selective phosphate removal.LaFe/MB exhibited rapid phosphate adsorption kinetics and a high maximum adsorption capacity(Langmuir model,52.12 mg P g^(−1)),which were better than those of many existing granulated materials.The desorption and recyclability experiments showed that LaFe/MB could be regenerated,and maintained 76.7%of its initial phosphate adsorption capacity after four adsorption cycles.The high hydraulic endurance strength retention rate of the developed material(91.6%)suggested high practical applicability in actual wastewater.Electro-static attraction,surface precipitation,and inner-sphere complexation via ligand exchange were found to be involved in selective P removal over a wide pH range of 3-9.The thermodynamic parameters were determined,which revealed the feasibility and spontaneity of adsorption.Based on approximate site energy distribution analyses,high distribution frequency contributed to efficient P removal.The research results provide a new insight that LaFe/MB shows great application prospects for advanced phosphate removal from wastewater. 展开更多
关键词 Formable porous biochar MONTMORILLONITE Metal(hydr)oxide Wastewater phosphate removal Adsorption mechanism
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