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Investigation of Swelling and Dissolution Process of Natural Rubber in Aromatic Oil 被引量:4
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作者 Wang Feng Kuang Minming +2 位作者 Li Guanlong Zhou Xiaolong Li Chenglie 《China Petroleum Processing & Petrochemical Technology》 SCIE CAS 2015年第3期76-86,共11页
Aromatic oil has been used to promote the properties of crumb rubber modified asphalt which is an ideal method to deal with the resource utilization of waste rubber tires and by-product of refinery. Furfural extract o... Aromatic oil has been used to promote the properties of crumb rubber modified asphalt which is an ideal method to deal with the resource utilization of waste rubber tires and by-product of refinery. Furfural extract oil(FEO) was separated into the light fraction and the heavy fraction. Swelling and dissolution process of natural rubber sheet in these three oil samples was investigated to shed light on the interaction mechanism. Crumb rubber also interacted on FEO and asphalt respectively. Energy dispersive spectrometer(EDS), thermo-gravimetric analysis(TGA) and scanning electron microscope(SEM) were used to characterize the chemical and structural properties of processed rubber. The chemical composition of processed oils and asphalt was investigated by using the hydrocarbon group analysis(SARA) and gel permeation chromatography. The results revealed that the swelling rate and mass loss of rubber in oils were much higher than those in asphalt and rose with an increasing processing temperature. The heavy fraction of FEO had more diffusion and dissolving capability than the light fraction, whilst compatibility was observed between the heavy fraction and the light fraction. Selective absorption was not observed in the study and detachment of dissolved rubber was disseminated from the outside to the inside. The cross-linking degree of the residue rubber was unchanged with the processing time, and sulfur predominantly remained in the undissolved rubber. Dissolution of crumbed rubber in oils was attributed to devulcanization, while that in the asphalt was mainly attributed to depolymerization. 展开更多
关键词 rubber aromatic oil ASPHALT SWELLING DISSOLUTION
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Assessment of the Influence of Oil Palm and Rubber Plantations in Tropical Peat Swamp Soils Using Microbial Diversity and Activity Analysis 被引量:1
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作者 Yuana Nurulita Eric M. Adetutu +4 位作者 Krishna K. Kadali Esmaeil Shahsavari Delita Zul Mohamed Taha Andrew S. Ball 《Journal of Agricultural Chemistry and Environment》 2016年第2期53-65,共13页
In this study, tropical peat swamp soils from Giam Siak Kecil-Bukit Batu Biosphere Reserve (GSKBB) in Indonesia was evaluated to assess the impact of oil palm and rubber plantations on this unique organic soil through... In this study, tropical peat swamp soils from Giam Siak Kecil-Bukit Batu Biosphere Reserve (GSKBB) in Indonesia was evaluated to assess the impact of oil palm and rubber plantations on this unique organic soil through comparisons with soils from a natural forest using a polyphasic approach (chemical and molecular microbial assays). Changes in the ammonium, nitrate and phosphate concentration were observed in soils converted to agricultural use. Soil enzyme activities in plantation soils showed reduced β-glucosidase, cellobiohydrolase and acid phosphatase activities (50% - 55% decrease). PCR-DGGE based analysis showed that the soil bacterial community from agricultural soils exhibited the lowest similarity amongst the different microbial groups (fungi and Archaea) evaluated (34% similarity to the natural forest soil). Shannon Diversity index values showed that generally the conversion of tropical peatland natural forest to rubber plantation resulted in a greater impact on microbial diversity (ANOVA p < 0.05). Overall, this study indicated substantial shifts in the soil microbial activity and diversity upon conversion of natural peatland forest to agriculture, with a greater change being observed under rubber plantation compared to oil palm plantation. These findings provided important data for future peatland management by relating changes in the soil microbial community and activities associated to agricultural practices carried out on peatland. 展开更多
关键词 Tropical Peat Swamp Soil Microbial Community Soil Enzyme oil Palm Plantation rubber Plantation
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Rheological properties and microscopic mechanism of waste cooking oil activated waste crumb rubber modified asphalt 被引量:6
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作者 Xinjun Feng Hui Liang Zijian Dai 《Journal of Road Engineering》 2022年第4期357-368,共12页
In this paper,the surface activated crumb rubber with waste cooking oil(WCO)was studied to improve the performance of crumb rubber modified asphalt.The activated waste crumb rubber modified asphalt(OCRMA)with differen... In this paper,the surface activated crumb rubber with waste cooking oil(WCO)was studied to improve the performance of crumb rubber modified asphalt.The activated waste crumb rubber modified asphalt(OCRMA)with different amount of crumb rubber was prepared to study the microscopic appearance of OCRMA by scanning electron microscope and fluorescence microscope and analyze the surface performance.The rheological properties and microscopic mechanism of OCRMA were characterized by dynamic shear rheological test,multiple stress creep recovery(MSCR)test,BBR test and infrared spectroscopy.The results show that the dissolution degree of waste crumb rubber is improved after WCO activation,and the compatibility with asphalt components is enhanced,and the stable cross-linking structure is formed,which improves the asphalt performance.The several new absorption peaks,which were obvious,were all caused by the composition of WCO,that is,there was no significant chemical change during the interaction between the activated crumb rubber and base asphalt.Compared with the common waste crumb rubber modified asphalt(CRMA),activation with WCO can significantly reduce the viscosity of CRMA,decrease the difference of segregation softening point by 27%,and enhance the low temperature performance by 30%.The aging degree is greatly reduced,and the anti-aging performance of OCRMA is increased by about 20%with the same dosage.The high temperature performance,though higher than that of base asphalt,decreases to some extent.After comprehensive analysis,the optimal dosage of crumb rubber for OCRMA is 30%. 展开更多
关键词 Waste crumb rubber Waste cooking oil Surface activated crumb rubber Rheological properties Microcosmic mechanism
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Optimization of Lab-Scale Preparation of Biodiesel from Rubber Seed Oil Using Modified Calcium Oxide as Catalyst 被引量:1
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作者 Uma Krishnakumar V. Sivasubramanian 《Journal of Sustainable Bioenergy Systems》 2016年第3期55-65,共12页
Statistical analysis of product yield for biodiesel preparation by transesterification process was performed using the Minitab software. A standard RSM Design tool known as CCD was applied to study the transesterifica... Statistical analysis of product yield for biodiesel preparation by transesterification process was performed using the Minitab software. A standard RSM Design tool known as CCD was applied to study the transesterification reaction variables. The obtained parameters were verified experimentally for the transesterification reaction of rubber seed oil using solid metal oxide catalyst. The factors affecting the methyl ester yield during transesterification reaction were identified as the catalyst content, molar ratio of oil to alcohol and reaction time. High methyl ester yield and fast reaction rate could be obtained even if reaction temperature was relatively low, which is quite favorable to the industrial production of biodiesel from the rubber seed oil. 98.54% of methyl ester was formed from the transesterification of RSO with methanol. R-squared is a statistical measure of how close the data are to the fitted regression line. It is also known as the coefficient of determination, or the coefficient of multiple determination for multiple regression. In this study, an R<sup>2</sup> value of 0.98 is obtained. 展开更多
关键词 BIODIESEL rubber Seed oil TRANSESTERIFICATION Calcium Oxide
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Interaction of Chloroprene and Nitrile-Butadiene Rubber with Lubricating Greases and Base Oils 被引量:1
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作者 Gunnar Stang Linda Salomonsson Boris Zhmud 《润滑油》 CAS 2006年第3期54-60,共7页
The present communication addresses compatibility of two synthetic rubber types,chloroprene and nitrile-butadiene ones,with a number of base oils of petroleum origin and lubricating greases produced thereof.Four base ... The present communication addresses compatibility of two synthetic rubber types,chloroprene and nitrile-butadiene ones,with a number of base oils of petroleum origin and lubricating greases produced thereof.Four base oils,including three naphthenic products with varying degrees of refining and one paraffinic product,were compared with each other in terms of their effect on the rubbers.Degenerative changes occurring in the rubbers on contact with the oils and greases were studied using accelerated ageing tests.Alterations in rubber parameters,such as hardness,weight and glass transition temperature,caused by interaction with oil were monitored.The main physicochemical mechanisms standing behind the changes observed in the rubber properties were found to be(i) migration of plasticizer from rubber into the oil phase,(ii) absorption of oil by rubber,and(iii) oxidation of rubber.An increase in glass transition temperature(Tg) of rubber aged in a base oil or grease was considered as an indirect indication that the plasticizer had migrated out of rubber;the plasticizer accumulation in the oil phase being directly confirmed by gas chromatography.In order to suppress the plasticizer migration,oil additivation with dioctyl adipate(DOA),a common plasticizer used in rubber formulations,was attempted.However,the DOA-additivated oils,while reducing plasticizer migration,were found to cause more swelling than the original oils in the case of chloroprene rubber.As an alternative,replacement of DOA by an alkylated aryl phosphate in nitrile-butadiene rubber formulations was considered,but it did not solve the problem either.The results of this study suggest conclusively that the type of rubber,the plasticizer,and the base oil are all the crucial parameters that should be considered when matching rubber with oil in real-life applications.Interaction of rubber with base oils and with greases produced thereof is largely controlled by(i) solvency of the base oils and(ii) polarity and cross-linking density of the rubber matrix.Higher temperatures accelerate ageing in all cases. 展开更多
关键词 环烷基油 橡胶相容性 溶解能力 油脂 基油
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CHARACTERIZATION OF POLAR COMPONENTS IN HYTROTREATED NAPHTHENIC RUBBER PROCESS OIL 被引量:1
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作者 HAN Sheng CHEN GXing-guo +1 位作者 MA Shu-jie REN Tian-hui 《润滑油》 CAS 2005年第1期52-56,共5页
Polar components play a very important role toward light stability of hydrotreated naphthenic rubber process oil. Polar components in hydrotreated naphthenic rubber process oil are analyzed in detail. Polar components... Polar components play a very important role toward light stability of hydrotreated naphthenic rubber process oil. Polar components in hydrotreated naphthenic rubber process oil are analyzed in detail. Polar components are firstly isolated from rubber process oil by column chromatography of silica gel, and then characterized by a series of instrument technology including elemental analysis, infrared spectroscopy, APCI/MS and XPS. The results show that the polar components comprise some hetero atoms compounds of sulfur, nitrogen and oxygen. Oxygen-containing compounds such as hydroxyl, carbonyl, and carboxyl groups constitute the main body of polar components. Nitrogen-containing compounds (NH2, NH, or NO2 and-N=N-) and sulfur-containing compounds (SO42- and PHSSPH) only account for minor percent of polar components. The molecular weight distribution of polar components mainly concentrates between 300 and 500 and a minor portion distributes from 180 to 300. 展开更多
关键词 色谱分析 极性配合剂 加氢精制 环烷烃 橡胶加工油 化学分析
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Physicochemical properties of lard oil and rubber seed oil blends and their comprehensive characterization
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作者 Amonrat Thangthong Wuttichai Roschat +7 位作者 Phongsakorn Pholsupho Aekkaphon Thammayod Sunti Phewphong Tappagorn Leelatam Preecha Moonsin Boonyawan Yoosuk Pathompong Janetaisong Vinich Promarak 《Chinese Journal of Chemical Engineering》 SCIE EI CAS CSCD 2024年第11期1-13,共13页
This research investigates the potential of blending complementary lard oil with rubber seed oil as feedstock for biodiesel production.Rubber seed oil,obtained through hexane extraction using the Soxhlet method,contai... This research investigates the potential of blending complementary lard oil with rubber seed oil as feedstock for biodiesel production.Rubber seed oil,obtained through hexane extraction using the Soxhlet method,contains the major fatty acids of oleic acid(C_(18:1)),palmitic acid(C_(16:0)),linoleic acid(C_(18:2)),and stearic acid(C_(18:0)),while rubber seed oil primarily consists of linoleic acid(C_(18:2)),oleic acid(C_(18:1)),linolenic acid(C_(18:3)),palmitic acid(C_(16:0)),and stearic acid(C_(18:0)).The least acid value of lard oil(0.55 mg KOH/g)can benefit of reducing soap formation of rubber seed oil during transesterification process in biodiesel production due to its substantial-high acid value(16.28 mg KOH/g).Blending at ratios below 80:20 volume ratio produced biodiesel exceeding 85%,utilizing CaO as a catalyst.Lard oil demonstrated a higher reaction rate constant(11.88×10^(-3)min^(-1))than rubber seed oil(2.11×10^(-3)min^(-1)),indicating a significant difference in performance.High acid value and free fatty acids in rubber seed oil correlated with lower reaction rates.Maintaining a mixture ratio below 80:20 volume ratio optimized reaction rates during biodiesel production.Biodiesel obtained from blends below 80:20 volume ratio met ASTM D6751 and EN 14214 standards,demonstrating suitability for bio-auto fuel.The drawbacks of using rubber seed oil as a raw material for biodiesel production are overcome by blending with lard oil,giving rise to expanding renewable energy options for rural communities,community enterprises,and large-scale biodiesel production. 展开更多
关键词 Biodiesel oil rubber seed oil Lard oil High free fatty acid Physicochemical properties Liquid biofuels
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Phosphorus Containing Rubber Seed oil as a Flame Retardant Plasticizer for Polyvinyl Chloride
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作者 Hongying Chu Huabei Li +1 位作者 Xiaoyan Sun Yaowang Zhang 《Journal of Renewable Materials》 SCIE EI 2023年第4期1731-1743,共13页
The application of phthalate plasticizers has been restricted around the world due to their poor migration and potential harm to the human body.Hence,producing functional bio-based plasticizers via exploiting clean an... The application of phthalate plasticizers has been restricted around the world due to their poor migration and potential harm to the human body.Hence,producing functional bio-based plasticizers via exploiting clean and reusable resources meets the satisfaction of current demands.In this study,flame-retardant rubber seed oil-based plasticize(FRP)was prepared via epoxidation reaction and ring opening addition reactions,which was used as a flame-resistant plasticizer for polyvinyl chloride to replace petroleum-based phthalate plasticizer.When DOP was replaced with FRP,the torque of PVC blends increased from 11.4 to 18.4 N⋅m,the LOI value increased from 24.3%for PVC-FRP-0%to 33.1%for PVC-FRP-20.The THR value diminished from 39 MJ/m^(2)(pertaining to PVC-FRC-0)to 22 MJ/m^(2)Tg increased from 23°C to 47°C,the weight loss of plasticized PVC blends significantly reduced from 22.6%to 2.8%in leaching tests.The study provided a new way to prepare flame retardant plasticizer using rubber seed oil as raw material. 展开更多
关键词 PLASTICIZER rubber seed oil polyvinyl chloride vegetable oil modification
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Thermal Behavior and UV Properties of Organomodified Kaolin Oleochemically Derived from Rubber Seed Oils (<i>Hevea brasiliensis</i>) and Tea Seed Oils (<i>Camellia sinensis</i>)
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作者 Chinedum Ogonna Mgbemena Naboth O. Ibekwe +2 位作者 Abdul Azeez Peer Mohamed Rugmini Sukumar Aryiappallil Ramankuttymenon Ravindranatha Menon 《Journal of Surface Engineered Materials and Advanced Technology》 2013年第3期163-168,共6页
Kaolin was modified using a chemical complex of hydrazine hydrate and oleochemical sodium salts derived from rubber seed oil (SRSO) and tea seed oil (STSO) respectively. Characterization of the pristine kaolin and the... Kaolin was modified using a chemical complex of hydrazine hydrate and oleochemical sodium salts derived from rubber seed oil (SRSO) and tea seed oil (STSO) respectively. Characterization of the pristine kaolin and the modified kaolins were performed using Scanning Electron Microscopy (SEM), Simultaneous Thermogravimetric/Differential Thermal Analysis (TG/DTA) and UV Spectrophotometry. TG/DTA revealed that the incorporation of the oleochemical salts enhanced thermal decomposition of kaolin into metakaolin. Ultraviolet spectrophotometric studies conducted on the modified kaolin show for the first time that the SRSO-modified kaolin and STSO-modified kaolin have a peak absorbance wavelengths of 312.72 nm and 314.26 nm respectively. This shows that the modified kaolin is a promising candidate for sunscreen applications. 展开更多
关键词 KAOLIN rubber SEED oil Tea SEED oil Characterization Ultraviolet
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Optimization of Rubber Seed Oil Transesterification to Biodiesel Using Experimental Designs and Artificial Neural Networks
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作者 Konan Edmond Kouassi Abollé Abolle Abolle +4 位作者 Kouassi Benjamin Yao David Boa Kopoin Adouby Patrick Drogui Rajeshwar Dayal Tyagi 《Green and Sustainable Chemistry》 2018年第1期39-61,共23页
The development of biofuels is driven both by concern about the greenhouse effect and by interest in the opportunities for exploitation of biomass of agricultural origin. In order to improve the yield and quality of b... The development of biofuels is driven both by concern about the greenhouse effect and by interest in the opportunities for exploitation of biomass of agricultural origin. In order to improve the yield and quality of biodiesel through modeling and optimization, several studies are in progress. In this paper, biodiesel produced from rubber seed oil in the homogeneous transesterification is studied using a Plackett-Burman experimental design, a full factorial design, a central composite design and an Artificial Neural Network (ANN) coupled with a Genetic Algorithm (GA).Variables such as temperature, stirring speed, reaction time, type of alcohol, and type of catalyst are studied to obtain the best specific gravity and kinematic viscosity. Type of alcohol and type of catalyst have the greatest effect on the two responses, with ethanol (alcohol) and sulphuric acid (catalyst) producing the best results. The specific gravity and kinematic viscosity changes recorded during the transesterification process followed the first and second order polynomial models, respectively. The ANN coupled with GA was used to optimize the two responses simultaneously. Global optimal values of specific gravity (0.883) and kinematic viscosity (6.76 cSt) were recorded when a temperature of 90&#176;C, a stirring speed of 305 rpm, and a treatment time of 141 min were imposed. 展开更多
关键词 rubber SEED oil BIODIESEL TRANSESTERIFICATION Specific GRAVITY Kinematicviscosity
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Physical and Chemical Characterizations of Rubber Latex Cup Bottom Oil
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作者 Kouassi Konan Edmond Abolle Abollé +3 位作者 Aketchi Tanoé Lucien Konan Affoué Tindo Sylvie Boa David Yao Kouassi Benjamin 《Advances in Bioscience and Biotechnology》 CAS 2024年第9期511-521,共11页
Rubber latex is an important economic resource. However, the residues from its harvesting are thrown away, even though they contain lipids that can be recycled. This recovery of the residues from the bottom of the cup... Rubber latex is an important economic resource. However, the residues from its harvesting are thrown away, even though they contain lipids that can be recycled. This recovery of the residues from the bottom of the cup requires first and foremost their characterization. The aim of this study is therefore to determine the main physical and chemical characteristics of rubber latex cup bottom oil. Oil’s physical parameters determination shows that it has a density of 951 kg∙m−3, a kinematic viscosity of 48.57 cSt and a water content of 0.0845%. Chemical parameters, meanwhile, indicate that this cup bottom residue has a fat content of 95.96%, an acid number of 2.805 mg KOH/g and an iodine number of 92.42 g I2/100g. Therefore, rubber latex cup bottom oil can be used in the formulation of biofuels, biolubricants, paints, varnishes, alkyd resins, polishing oils, soaps, and insecticides. 展开更多
关键词 rubber Latex Cup Bottoms oil Density Viscosity CHARACTERIZATIONS
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Oil Gels Based on Styrene Butadiene Rubber
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作者 周美华 徐静波 Won-jei CHO 《Journal of Donghua University(English Edition)》 EI CAS 2004年第1期51-56,共6页
Four oil absorbents based on styrene butadiene (SBR), i.e., pure SBR (PS), 4. tert-butylstyrene-SBR (PBS), EPDM-SBR network (PES) and 4.tert-butylstyrene-EPDMSBR (PBES), were produced from crosslinking polymerization ... Four oil absorbents based on styrene butadiene (SBR), i.e., pure SBR (PS), 4. tert-butylstyrene-SBR (PBS), EPDM-SBR network (PES) and 4.tert-butylstyrene-EPDMSBR (PBES), were produced from crosslinking polymerization of uncured styrene butadiene rubber (SBR), 4-tert-butylstyrene (tBS) and ethylene-propylenc-diene terpolymer (EPDM). The reaction took place in toluene using benzoyl peroxide (BPO) as an initiator. Uncured SBR was used as both a pre-polymer and a crosslink agent in this work, and the crosslinked polymer was identified by IR spectroscopy. The oil absorbency of the crosslinked polymer was evaluated with the method ASTM (F726-81). The order of maximum oil absorbency was PBES>PBS>PES>PS. The maximum values of oil absorbency of PBES and PBS were 74.0g/g and 69.5g/g, respectively. Gel fractions and swelling kinetic constants, however, had the opposite sequences. The swelling kinetic constant of PS evaluated by an experimental equation was 49. 97×10^(-2)h^(-1). 展开更多
关键词 oil gel styrene butadiene rubber swelling kinetic constant
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一株石油降解赤红球菌(Rhodococcus rubber)特性及处理含油废水研究 被引量:10
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作者 刘猛 陈吉祥 +4 位作者 周永涛 赵霞 孔令姣 刘元利 周敏 《环境科学学报》 CAS CSCD 北大核心 2016年第10期3651-3657,共7页
从石油污染土壤筛选出一株高效石油降解菌JC-106,经细菌形态学、生理生化及16S r DNA序列分析鉴定为赤红球菌(Rhodococcus rubber).在温度15~40℃、初始p H 6~8、盐度0~4%条件下培养生长良好.该菌能利用十二烷、二十四烷、正辛烷、邻苯... 从石油污染土壤筛选出一株高效石油降解菌JC-106,经细菌形态学、生理生化及16S r DNA序列分析鉴定为赤红球菌(Rhodococcus rubber).在温度15~40℃、初始p H 6~8、盐度0~4%条件下培养生长良好.该菌能利用十二烷、二十四烷、正辛烷、邻苯二酚、蒽、萘为唯一碳源生长.在较低温度下能有效降解原油,在15和35℃培养15 d对原油降解率分别为41.61%和58.18%,GC-MS分析发现原油组分中正构烷烃(C14~C44)降解率达到96.13%.在含1000 mg·L^(-1)原油的人工废水中加入2%(V/V)赤红球菌JC-106菌悬液,采用SBR间歇式活性污泥法处理含油废水,15 d后出水COD、NH_4+-N、TP平均去除率分别为96.49%、96.88%、99.15%,原油去除率为92.43%,对照组原油去除率仅为53.80%.JC-106在含油废水中稳定生长,数量维持在4.8×1010~1.0×1011cfu·mL^(-1)左右. 展开更多
关键词 石油降解 赤红球菌 GC-MS 含油废水
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氟醚唇形油封摩擦磨损及老化性能试验分析
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作者 梁校瑞 陈立杉 +2 位作者 孟凡明 高致远 杨圣 《重庆大学学报》 北大核心 2026年第1期32-39,共8页
针对氟醚橡胶材质的唇形油封,基于多用途传动摩擦试验台,结合唇形油封不同过盈量与耐介质老化时间参数,开展变转速干摩擦试验,分析耐介质老化时间、过盈量对油封安装主轴转矩、振动及摩擦磨损的影响。试验结果表明:在本试验选用的参数... 针对氟醚橡胶材质的唇形油封,基于多用途传动摩擦试验台,结合唇形油封不同过盈量与耐介质老化时间参数,开展变转速干摩擦试验,分析耐介质老化时间、过盈量对油封安装主轴转矩、振动及摩擦磨损的影响。试验结果表明:在本试验选用的参数范围内,随着老化时间延长,主轴转矩随之降低,振动呈先减后增的趋势;随着过盈量的增大,主轴转矩、振动随之增大;老化时间越长,过盈量越低,油封磨损量越小。此外,随着耐介质老化时间增长,试件摩擦区域表面越光滑,溶胀现象越显著。 展开更多
关键词 油封 摩擦磨损 耐介质老化 氟醚橡胶 振动试验
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LPB与TDAE增塑剂对不同比例SSBR/BR并用胶Payne效应及动态力学性能的影响
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作者 刘紫妍 王庆颖 +4 位作者 翟晓康 于磊磊 尹文娜 韩兴旺 刘广永 《特种橡胶制品》 2026年第1期15-19,共5页
研究了低分子量聚丁二烯(LPB)替代芳烃油(TDAE)对不同比例溶聚丁苯橡胶(SSBR)/顺丁橡胶(BR)并用胶Payne效应及动态力学性能的影响,以及硫化剂用量是否会影响LPB的取代效果。结果表明:LPB有利于白炭黑在SSBR/BR中分散;降低了SSBR/BR混炼... 研究了低分子量聚丁二烯(LPB)替代芳烃油(TDAE)对不同比例溶聚丁苯橡胶(SSBR)/顺丁橡胶(BR)并用胶Payne效应及动态力学性能的影响,以及硫化剂用量是否会影响LPB的取代效果。结果表明:LPB有利于白炭黑在SSBR/BR中分散;降低了SSBR/BR混炼胶的最大扭矩(M_(H));高硫黄组分中LPB与TDAE增塑的SSBR/BR(80/20)硫化胶的损耗因子(tanδ)曲线高度重合。 展开更多
关键词 溶聚丁苯橡胶 顺丁橡胶 低分子量聚丁二烯 芳烃油 PAYNE效应
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飞机液压油箱压力调节器改进设计
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作者 刘政宏 《液压气动与密封》 2026年第1期109-112,共4页
介绍了飞机液压油箱的分类,并对非隔离式液压油箱的油箱增压系统功能进行了说明。针对起落架收放过程中出现的瞬时掉压现象进行原因分析,分析结果表明,液压油箱增压系统中的油箱压力调节器故障是导致液压系统瞬时掉压的直接原因,同时对... 介绍了飞机液压油箱的分类,并对非隔离式液压油箱的油箱增压系统功能进行了说明。针对起落架收放过程中出现的瞬时掉压现象进行原因分析,分析结果表明,液压油箱增压系统中的油箱压力调节器故障是导致液压系统瞬时掉压的直接原因,同时对油箱压力调节器产品的分解检查结果也表明,其内部活门上的橡胶材料有较明显的膨胀情况。经分析研究,提出更改活门橡胶材料的办法,通过试验证明效果明显,达到了预期目标。 展开更多
关键词 液压油箱 液压系统 油箱增压系统 压力调节器 橡胶材料
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含富油细集料的复合改性应力吸收层性能研究
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作者 梁绍旺 林永康 +2 位作者 谭有为 展冰洋 马玲玲 《公路与汽运》 2026年第1期90-95,共6页
为评估富油细集料在道路工程中的应用潜力,分析0、10%、20%3种富油细集料掺量下应力吸收层高温性能、抗裂性能等的变化规律及沥青胶结料对应力吸收层路用性能的影响,并基于室内试验结果铺设含富油细集料复合改性应力吸收层试验段。结果... 为评估富油细集料在道路工程中的应用潜力,分析0、10%、20%3种富油细集料掺量下应力吸收层高温性能、抗裂性能等的变化规律及沥青胶结料对应力吸收层路用性能的影响,并基于室内试验结果铺设含富油细集料复合改性应力吸收层试验段。结果表明,随着富油细集料掺量的增加,应力吸收层的路用性能逐渐降低,但10%掺量下仍具有较好的性能;复合改性橡胶沥青对应力吸收层的路用性能具有增强作用,相较于SBS改性沥青应力吸收层和橡胶沥青应力吸收层,复合改性橡胶沥青应力吸收层的高温性能及抗裂性能均显著提升;试验段的铺筑效果良好,验证了含富油细集料应力吸收层在防止反射裂缝方面的工程适用性。 展开更多
关键词 公路 富油细集料 复合改性橡胶沥青 应力吸收层 路用性能 反射裂缝
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Preparation and Characterization of Flame Retardant and Low Smoke Releasing Oil-resistant EVA/NBR Blends 被引量:8
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作者 Huan Zou Jun Sun +3 位作者 Xiao-yu Gu Peng Jiang Xi-shan Liu 张胜 《Chinese Journal of Polymer Science》 SCIE CAS CSCD 2015年第4期554-563,共10页
Nano-SiO2 and/or MoO3 were introduced to ethylene-vinyl acetate/nitrile butadiene rubber (EVA/NBR) blends containing magnesium hydroxide (MH) and red phosphorus (RP) to further improve the mechanical properties,... Nano-SiO2 and/or MoO3 were introduced to ethylene-vinyl acetate/nitrile butadiene rubber (EVA/NBR) blends containing magnesium hydroxide (MH) and red phosphorus (RP) to further improve the mechanical properties, oil resistance, smoke suppression and flame retardancy. The results indicated that the tensile strength and oil resistance were significantly improved by incorporating nano-SiO2. Smoke suppression tests for EVA/NBR blend samples showed that both nano-SiO2 and MoO3 can significantly reduce smoke release amount. The flammability characterization indicated that the blended sample with an LOI value of 33.0 could achieve V-0 level in the UL-94 test. Cone calorimetry test data showed the peak heat release rate was 67% lower than that for pure EVA/NBR. Thermal analysis showed that the presence of both nano-SiO2 and MoO3 was beneficial to promoting char formation of the EVA/NBR blends. Char residual analysis suggested that MoO3 aggregated in solid phase during combustion. 展开更多
关键词 Ethylene-vinyl acetate/nitrile butadiene rubber Tensile properties oil resistance Smoke suppression Flame retardancy.
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Diffusion Kinetics of Components of Asphalt Into Waste Rubber 被引量:1
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作者 LI X CHENG J QUE G H 《武汉理工大学学报》 CAS CSCD 北大核心 2010年第17期26-29,共4页
The use of waste crumb rubber powder as a modifier for modified asphalt can recycle waste rubber to ease pressure on the environment and improve the performance of asphalt. Diffusion of components of asphalt into wast... The use of waste crumb rubber powder as a modifier for modified asphalt can recycle waste rubber to ease pressure on the environment and improve the performance of asphalt. Diffusion of components of asphalt into waste rubber is of vital importance to improve the performance of rubber modified asphalt,while the related researches are scarce. Diffusion of components of asphalt into waste rubber at different temperatures has been investigated in this work. Rectangle rubber was immersed in asphalt at certain temperature for a period of time. And the mass increment of rubber was measured to determine the diffusion rate of components of asphalt into rubber. The experimental results indicated that the diffusion rate of components of asphalt into waste rubber increases along the temperature,but the diffusion rate of components of fractions oil which is distillated from catalytic cracking slurry is much higher than that of components of asphalt. Compared with asphalt,fractions oil enjoys lower viscosity and better permeability with higher content of saturates and aromatics. All the characteristics are contributed to the efficient diffusion of components of fractions into waste rubber. 展开更多
关键词 diffusion kinetics COMPONENTS fractions oil ASPHALT waste rubber
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