CN106053284A - Environment adaptability test apparatus for absorption performance of granular oil-absorbing material - Google Patents

Environment adaptability test apparatus for absorption performance of granular oil-absorbing material Download PDF

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Publication number
CN106053284A
CN106053284A CN201610677796.3A CN201610677796A CN106053284A CN 106053284 A CN106053284 A CN 106053284A CN 201610677796 A CN201610677796 A CN 201610677796A CN 106053284 A CN106053284 A CN 106053284A
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China
Prior art keywords
oil absorption
absorption material
test device
tank
environmental suitability
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CN201610677796.3A
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Chinese (zh)
Inventor
周然
张兆阳
彭士涛
王晓丽
张嘉琪
陈汉宝
周志博
刘针
刘嫣然
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Tianjin Research Institute for Water Transport Engineering MOT
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Tianjin Research Institute for Water Transport Engineering MOT
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Priority to CN201610677796.3A priority Critical patent/CN106053284A/en
Publication of CN106053284A publication Critical patent/CN106053284A/en
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    • GPHYSICS
    • G01MEASURING; TESTING
    • G01NINVESTIGATING OR ANALYSING MATERIALS BY DETERMINING THEIR CHEMICAL OR PHYSICAL PROPERTIES
    • G01N5/00Analysing materials by weighing, e.g. weighing small particles separated from a gas or liquid
    • G01N5/02Analysing materials by weighing, e.g. weighing small particles separated from a gas or liquid by absorbing or adsorbing components of a material and determining change of weight of the adsorbent, e.g. determining moisture content

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  • Physics & Mathematics (AREA)
  • Health & Medical Sciences (AREA)
  • Life Sciences & Earth Sciences (AREA)
  • Chemical & Material Sciences (AREA)
  • Analytical Chemistry (AREA)
  • Biochemistry (AREA)
  • General Health & Medical Sciences (AREA)
  • General Physics & Mathematics (AREA)
  • Immunology (AREA)
  • Pathology (AREA)
  • Sampling And Sample Adjustment (AREA)

Abstract

The invention provides an environment adaptability test apparatus for absorption performance of a granular oil-absorbing material. The apparatus includes a sinking and floatation dynamic test system, a water tank, an environment factor monitoring system, a wave forming system, a temperature control system, an oil-absorbing material feeding and sampling system, and a data collection system. The environment factor monitoring system, the wave forming system, the temperature control system and the oil-absorbing material feeding and sampling system are arranged in the water tank and are connected to the data collection system. Under laboratory conditions, the apparatus is used for simulating a real environment to carry out environment adaptability test analysis for the absorption performance of the granular oil-absorbing material. The absorption performance data acquired in the test is more scientific and effective, and meanwhile, work efficiency is also increased.

Description

Graininess oil absorption material absorption property environmental suitability test device
Technical field
The invention belongs to environmental suitability technical field of measurement and test, especially relate to a kind of graininess oil absorption material absorption property Environmental suitability test device.
Background technology
Sea-freight is the main mode of petroleum transportation, along with the high speed development of oil shipping, too increases marine oil overflow thing Therefore probability of happening.Marine environment can be caused harm greatly by oil spill accident, along with ocean and the technology of bay spill response Development, the kind of oil absorption material also becomes increasingly abundant, the hydrophilic oleophobic property to oil absorption material, swelling rate, oil suction multiplying power and The mensuration of sink-float performance etc. is the key of screening oil absorption material.
During concrete mensuration, inventor finds that oil absorption material performance test is based substantially on static environment, and real Border marine environment is complicated and changeable, the conditions such as the stormy waves in ocean, the variations in temperature of sea water, pH value, salinity is not examined Including Lving, so that the experimental determination performance of oil absorption material fails to agree with completely actual environment.
The environmental suitability of oil absorption material is had higher requirement by the particularity of marine environment, adsorbs at oil spilling at present The subject matter that material absorption property exists during measuring has: 1. there is unicity in experimental design, simply simply carries out Stable state absorption property is tested, and fails to take environmental factors and dynamic changing process into account;2. experimentation loss of learning, due to The unicity of experimental design, insufficient to Environmental factor analysis, experiment sensor is arranged unreasonable, causes experimentation information to lack Lose;3. experimental cost is high, inefficiency.
Summary of the invention
In view of this, it is contemplated that propose a kind of graininess oil absorption material absorption property environmental suitability test device, Fully environmental factors and dynamic changing process are taken into account, it is possible to simulating real environment, experimental result is more reliable.
For reaching above-mentioned purpose, the technical scheme is that and be achieved in that:
A kind of graininess oil absorption material absorption property environmental suitability test device, including sink-float property dynamic test system, Tank, envirment factor monitor system, wave making system, temperature control system, oil absorption material sample introduction sampler, data acquisition system System, arranges envirment factor monitoring system, wave making system, the temperature control system being connected with data collecting system in described tank, And oil absorption material sample introduction sampler.
Further, also include sink-float property dynamic test system, described sink-float dynamic test system by vibration table and its Can constituting by airtight column type glass container of upper setting.
Further, described wave making system uses push-plate type wave maker, including servomotor, drives controller, ball wire Thick stick, push wave plate etc. form, and the outfan of servomotor connects one end of ball-screw, and described ball-screw is provided with containing following The nut of ring ball, is provided with the guide rail of setting in parallel below ball-screw, described slide on rails arranges slide block;Described cunning Push arm on block links together with the pair of nut of nut, and described push wave plate is connected with slide block by link, and push wave plate is vertical It is arranged in tank;Described servomotor is connected with driving controller, drives controller to be connected with making ripple control system.
Further, described temperature control system includes air source heat pump, air source heat pump controller and temperature sensor, Described air source heat pump is arranged on the water circulating pipe connected with tank, and air source heat pump is with air source heat pump controller even Connect;Described temperature sensor is fixed on basin sidewall by clip.
Further, described envirment factor monitoring system includes pH sensor, conductivity sensor, temperature sensor, Wall-mounted mode is all used to be placed in the side-walls of tank.
Further, described oil absorption material sample introduction sampler is mainly by rolling ring, rustless steel steel pole, adsorption material magazine group Becoming, support is individually fixed in the medium position of the tank left and right sides, is fixed by smooth rustless steel steel pole, on rustless steel steel pole Through smooth rolling ring, the rolling ring making circle can be with being intended on rustless steel steel pole slip;Described adsorption material magazine is for golden Belong to what silk screen was made, connect adsorption material magazine and rolling ring with suspension line.
Further, described data collecting system is mainly made up of computer and computer control interface assembly.
Further, described tank is the cuboid large container of safety glass material, which is provided with water inlet and water outlet Mouthful, its outer wall reference mark, wave absorption material is placed at two ends.
Relative to prior art, present invention have the advantage that
(1) under laboratory condition, use this unit simulation actual environment, carry out graininess oil absorption material absorption property environment Compatibility test is analyzed, and is its laboratory gained adsorption performance data more science, effectiveness, improves work efficiency simultaneously;
(2) simple in construction, reasonable in design, it is widely used.
Accompanying drawing explanation
The accompanying drawing of the part constituting the present invention is used for providing a further understanding of the present invention, and the present invention's is schematic real Execute example and illustrate for explaining the present invention, being not intended that inappropriate limitation of the present invention.In the accompanying drawings:
Fig. 1 is the structural representation testing device described in the embodiment of the present invention.
Description of reference numerals:
1. open mouth glass container 2. drives controller 3. servomotor 4. ball-screw 5. push wave plate 6. rustless steel steel Bar 7. rolling ring 8. adsorbing material carrying case 9.pH value sensor 10. conductivity sensor 11. temperature sensor 12. water Groove 13. water inlet 14. water circulating pipe 15. air source heat pump 16. air source heat pump controller 17. outlet 18. disappears Wave material 19. vibration table 20. computer 21. data acquisition interface assembly 22. Serve Motor Control interface 23. air source Heat pump controller interface 24. computer control interface I 25. computer control interface II 26. computer control interface III 27. Computer control interface IV 28. computer control interface V
Detailed description of the invention
It should be noted that in the case of not conflicting, the embodiment in the present invention and the feature in embodiment can phases Combination mutually.
Describe the present invention below with reference to the accompanying drawings and in conjunction with the embodiments in detail.
Graininess oil absorption material absorption property environmental suitability test device, as it is shown in figure 1, include sink-float property dynamic experiment System, tank, envirment factor monitoring system, wave making system, temperature control system, oil absorption material sample introduction sampler, data acquisition Collecting system;
The envirment factor being connected with data collecting system is set in described tank and monitors system, wave making system, temperature control System, and oil absorption material sample introduction sampler.
Described sink-float dynamic test system can airtight column type glass container 1 structure by vibration table 18 and its upper setting Become, can a diameter of 200mm, a height of 200mm of airtight column type glass container 1, volume is 6L, the vibration frequency of vibration table 18, Adjustable amplitude, native system purpose be in order to make oil absorption material and liquid be fully contacted with the vibrations of single factor test vibration table 18 after, inspection Survey the sink-float of graininess oil absorption material, so that it is determined that with or without the necessity carrying out next step analysis of environmental adaptability experiment.
The a length of 12m of described tank 4 of the present embodiment, a width of 0.25m, a height of 0.55m, water inlet is arranged at the bottom of tank 12 13, outlet 17, outer wall reference mark, precision is 1mm.
Described wave making system mainly by driving controller 2, servomotor 3, ball-screw 4, push wave plate 5 to form, described in watch Taking motor 3 to be fixedly mounted on the vertical fixed support of tank 12 side, the outfan of servomotor 3 is fixing even by shaft coupling Connecing one end of ball-screw 4, the two ends of ball-screw 4 are fixed on bearing block, described ball-screw 4 are provided with containing circulation The nut of ball, is provided with the guide rail of setting in parallel below ball-screw 4, described slide on rails arranges slide block, can do Linear reciprocating motion;Push arm on described slide block links together with the pair of nut of nut;Described push wave plate 5 utilizes steel formula framework Fixing, then be connected with slide block by link, described push wave plate 5 is vertically arranged in tank 12;Nut is fixing even by slide block Connect push wave plate 5;Described servomotor 3 is connected with driving controller 2 by wire;Described driving controller 2 controls system with making ripple System connects, concrete, and drive controller 2 drives control unit interface 22 by the computer control interface of wire with computer 20 IV 27 connect;
Described in the present embodiment, envirment factor monitoring system includes pH sensor 9, conductivity sensor 10, temperature sensor 11, the rear wall of tank 12 the most from left to right it is placed in by wall-mounted mode, the probe of sensor all should be positioned under liquid level.PH value The flat pH value of liquid monitored in real time by sensor 9, and by computer control software record pH value;Conductivity sensor 10 is used for measuring Salinity in sea water, and by computer control software record electrical conductivity;Temperature of liquid is monitored in temperature sensor 11 in real time, according to Requirement of experiment is controlled air source heat pump by computer control software and carries out heating/refrigerating, thus changes temperature value.
Described temperature control system, including air source heat pump 15, air source heat pump controller 16 and temperature sensor 11, institute Stating air source heat pump 15 to be arranged on water circulating pipe 14, air source heat pump 15 is by wire with air source heat pump controller 16 even Connecing, air source heat pump control unit interface 23 is connected with computer control interface V 28 by wire;Described temperature sensor 11 sets Put in the liquid in tank 12, and be connected with computer control interface III 26 by wire;Native system utilizes air source heat pump 15 pairs of temperature of liquid are controlled, and temperature of liquid change is monitored in temperature sensor 11 in real time, and water circulating pipe 14 ensures liquid The recycle stream general character, the temperature information that computer 20 feeds back according to temperature sensor 11, control air source heat by LabVIEW software Pump 15 freezes or heats.
Selecting air source heat pump 15, because during simulated seawater temperature, laboratory room temperature is generally 25 DEG C, and extra large Coolant-temperature gage generally-5~40 DEG C, thus need a kind of device to realize can the function of cooling and warming simultaneously to temperature.
Described oil absorption material sample introduction sampler is made up of rustless steel steel pole 6, rolling ring 7, adsorption material magazine 8, and support divides It is not fixed on the medium position of tank 12 left and right sides, the diameter smooth rustless steel steel pole 6 less than 10mm is fixed, not Rust steel steel pole 6 is through described rolling ring 7 smooth for a diameter of 20mm, and the rolling ring 7 making circle can be with being intended on rustless steel steel pole 6 Slide.
Described adsorption material magazine 22 is the cube adsorption material of a height of 10cm*5cm*5cm of length and width with metal gauze customization Magazine, this wire netting selects 10,20,60,100 4 kind of different meshes, select corresponding absorption according to adsorbing material different-grain diameter Material cartridge 8, and the side of adsorption material magazine 8 wears hook, suspension line is connected with hook, chooses properly according to difference liquid levels The suspension line of length makes adsorption material magazine 8 be connected with rolling ring 7, and suspension line is non-stretchable and length just makes adsorption material magazine 8 float Float on liquid level.This system makes graininess oil absorption material can float on liquid level and fully contact with liquid, adsorption material magazine 8 Side wear hook, can directly take out after experiment and weigh, be not required to separately take suspension measure, be greatly improved work effect Rate.
Described data collecting system, including the computer 20 linked together and computer control interface assembly 21, described LabVIEW is installed on computer and controls software;Described computer control interface assembly 25 is provided with five computers and controls to connect Mouthful, respectively computer control interface I 24, computer control interface II 25, computer control interface III 26, computer controls to connect Mouth IV 27, computer control interface V 28.
The present invention takes into full account the actual environment influence factor to material property, tests material property in simulated environment, Computer software is used to carry out experimentation operation and dynamic test process data recording analysis, to significantly improve graininess oil suction Material environment compatibility test work efficiency and the experiment science of the data obtained, effectiveness.
The foregoing is only presently preferred embodiments of the present invention, not in order to limit the present invention, all essences in the present invention Within god and principle, any modification, equivalent substitution and improvement etc. made, should be included within the scope of the present invention.

Claims (9)

1. graininess oil absorption material absorption property environmental suitability test device, it is characterised in that: include sink-float property dynamic experiment System, tank, envirment factor monitoring system, wave making system, temperature control system, oil absorption material sample introduction sampler, data acquisition Collecting system;
Envirment factor monitoring system, wave making system, the temperature control system being connected with data collecting system is set in described tank, And oil absorption material sample introduction sampler.
Graininess oil absorption material absorption property environmental suitability the most according to claim 1 test device, it is characterised in that: Described sink-float dynamic test system can be made up of by airtight column type glass container arrange on vibration table and its.
Graininess oil absorption material absorption property environmental suitability the most according to claim 1 test device, it is characterised in that: Described wave making system uses push-plate type wave maker, including servomotor, drives controller, ball-screw, push wave plate, servomotor Outfan connect ball-screw one end, described ball-screw is provided with the nut containing circulating ball, under ball-screw Side is provided with the guide rail of setting in parallel, and described slide on rails arranges slide block;Push arm on described slide block and the nut of nut Pair links together, and described push wave plate is connected with slide block by link, and push wave plate is vertically arranged in tank;Described servo electricity Machine is connected with driving controller, drives controller to be connected with making ripple control system.
Graininess oil absorption material absorption property environmental suitability the most according to claim 1 test device, it is characterised in that: Described temperature control system includes air source heat pump, air source heat pump controller and temperature sensor, and described air source heat pump is pacified Being contained on the water circulating pipe connected with tank, air source heat pump is connected with air source heat pump controller;Described temperature sensor It is fixed on basin sidewall by clip, and is connected with data collecting system.
Graininess oil absorption material absorption property environmental suitability the most according to claim 1 test device, it is characterised in that: Described envirment factor monitoring system includes pH sensor, conductivity sensor, temperature sensor, all uses wall-mounted mode to put Side-walls in tank.
Graininess oil absorption material absorption property environmental suitability the most according to claim 1 test device, it is characterised in that: Described oil absorption material sample introduction sampler is mainly made up of rolling ring, rustless steel steel pole, adsorption material magazine, and two supports are solid respectively Due to the medium position of the tank left and right sides, being fixed by rustless steel steel pole, described rolling ring is slidably arranged on rustless steel steel pole; Described adsorption material magazine is to make with metal gauze, connects adsorption material magazine and rolling ring with suspension line.
Graininess oil absorption material absorption property environmental suitability the most according to claim 1 test device, it is characterised in that: Described data collecting system is mainly made up of computer and computer control interface assembly.
Graininess oil absorption material absorption property environmental suitability the most according to claim 1 test device, it is characterised in that: Described tank is the cuboid large container of safety glass material, which is provided with water inlet and outlet, its outer wall reference mark, Wave absorption material is placed at two ends.
Graininess oil absorption material absorption property environmental suitability the most according to claim 6 test device, it is characterised in that: Hook is worn in the side of described adsorption material magazine, and one end of suspension line is connected with hook.
CN201610677796.3A 2016-08-15 2016-08-15 Environment adaptability test apparatus for absorption performance of granular oil-absorbing material Pending CN106053284A (en)

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Cited By (1)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
CN106932299A (en) * 2017-02-28 2017-07-07 中国石油天然气股份有限公司 Method for evaluating adsorption performance of floating oil product/hazardous chemical substance adsorption material

Citations (10)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
JPS502684A (en) * 1973-05-14 1975-01-11
JP2003065892A (en) * 2001-08-24 2003-03-05 Mitsubishi Heavy Ind Ltd Wave making device
CN202358953U (en) * 2011-11-24 2012-08-01 北京师范大学 Simulation device for adsorption and microbial enhanced degradation of marine oil spill pollution
CN103115862A (en) * 2013-01-22 2013-05-22 江苏大学 Simulated corrosion test device and method for abyssal environment
CN103245598A (en) * 2013-04-03 2013-08-14 中国石油天然气股份有限公司 Oil absorption performance evaluation device for particle adsorption material
CN103645303A (en) * 2013-12-17 2014-03-19 中国海洋大学 Experimental device for ocean mud flat oil spilling
CN104458205A (en) * 2014-12-08 2015-03-25 国家海洋技术中心 Circulating-water-flow wave flow testing device
CN205209909U (en) * 2015-12-16 2016-05-04 中国建筑第七工程局有限公司 Water absorbing material absorbs water moisture absorption and surveys device in real time
CN105618009A (en) * 2016-03-18 2016-06-01 天津大学 Longitudinally distributed marine spilled oil adsorbing material, preparation method thereof and simulation device
CN205941252U (en) * 2016-08-15 2017-02-08 交通运输部天津水运工程科学研究所 Graininess oil absorption material adsorptivity can environmental suitability testing arrangement

Patent Citations (10)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
JPS502684A (en) * 1973-05-14 1975-01-11
JP2003065892A (en) * 2001-08-24 2003-03-05 Mitsubishi Heavy Ind Ltd Wave making device
CN202358953U (en) * 2011-11-24 2012-08-01 北京师范大学 Simulation device for adsorption and microbial enhanced degradation of marine oil spill pollution
CN103115862A (en) * 2013-01-22 2013-05-22 江苏大学 Simulated corrosion test device and method for abyssal environment
CN103245598A (en) * 2013-04-03 2013-08-14 中国石油天然气股份有限公司 Oil absorption performance evaluation device for particle adsorption material
CN103645303A (en) * 2013-12-17 2014-03-19 中国海洋大学 Experimental device for ocean mud flat oil spilling
CN104458205A (en) * 2014-12-08 2015-03-25 国家海洋技术中心 Circulating-water-flow wave flow testing device
CN205209909U (en) * 2015-12-16 2016-05-04 中国建筑第七工程局有限公司 Water absorbing material absorbs water moisture absorption and surveys device in real time
CN105618009A (en) * 2016-03-18 2016-06-01 天津大学 Longitudinally distributed marine spilled oil adsorbing material, preparation method thereof and simulation device
CN205941252U (en) * 2016-08-15 2017-02-08 交通运输部天津水运工程科学研究所 Graininess oil absorption material adsorptivity can environmental suitability testing arrangement

Non-Patent Citations (5)

* Cited by examiner, † Cited by third party
Title
尹丽丽 等: "有机改性膨润土对海水中石油的吸附效果及其影响因素研究", 《环境保护科学》 *
李文森 等: "影响海水中矿物颗粒对石油烃吸附过程的因素研究", 《海洋环境科学》 *
纪召启: "舟山海域海洋悬浮颗粒物对重质燃料油的吸附研究", 《中国优秀硕士学位论文全文数据库 工程科技Ⅰ辑(月刊)》 *
陈丽丽 等: "吸油草对海水中柴油的吸附及其影响因素研究", 《环境工程学报》 *
陈丽丽: "可降解材料及钙基膨润土对海水中石油的吸附研究", 《中国优秀硕士学位论文全文数据库 工程科技Ⅰ辑(月刊)》 *

Cited By (2)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
CN106932299A (en) * 2017-02-28 2017-07-07 中国石油天然气股份有限公司 Method for evaluating adsorption performance of floating oil product/hazardous chemical substance adsorption material
CN106932299B (en) * 2017-02-28 2019-05-07 中国石油天然气股份有限公司 Method for evaluating adsorption performance of floating oil product/hazardous chemical substance adsorption material

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Application publication date: 20161026