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High-flux experimental platform for water/ salt transportation/ dissolution/ crystallization characterization

An experimental platform and high-throughput technology, applied in the field of high-throughput experimental platforms for water/salt migration/dissolution/crystallization characterization, to achieve the effects of improving accuracy and reliability, reducing errors, and improving reliability

Active Publication Date: 2017-11-07
SHANGHAI UNIV +1
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  • Summary
  • Abstract
  • Description
  • Claims
  • Application Information

AI Technical Summary

Problems solved by technology

However, there are still few reports on the experimental platform in the field of soil water and salt migration and salt crystallization, especially the application of cultural relics protection research.

Method used

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  • High-flux experimental platform for water/ salt transportation/ dissolution/ crystallization characterization
  • High-flux experimental platform for water/ salt transportation/ dissolution/ crystallization characterization
  • High-flux experimental platform for water/ salt transportation/ dissolution/ crystallization characterization

Examples

Experimental program
Comparison scheme
Effect test

Embodiment 1

[0043] see Figure 1~Figure 7 , a high-throughput experimental platform for water / salt migration / dissolution / crystallization characterization, including a platform box frame 1, a test sample placer 1, a top cover 7-a, a fully automatic liquid supply system 9 and a power supply unit 10 . It is characterized in that: the platform box frame 1 is a movable box structure, and the inner cavity of the box frame 1 is divided into two separate upper and lower parts by the two-dimensional slide rail A 6-a carrying the test sample placer 2 The cavity and the test sample placer 2 can move two-dimensionally on the slide rail A 6-a; the upper top and lower bottom of the platform box frame 1 are respectively provided with two-dimensional track systems B 6-b and C 6-c A top elevating mechanism 4 and a bottom elevating mechanism 3 equipped with test instruments are arranged respectively on the track B 6-b and C 6-c parallel to the track rail A 6-a on the upper top and the lower bottom; The f...

Embodiment 2

[0045] This embodiment is basically the same as Embodiment 1, and the special features are as follows:

[0046] see Figure 1~Figure 7 , the high-throughput experimental platform for water / salt migration / dissolution / crystallization characterization, characterized in that: the test sample placer 2 can be customized according to the change of the experimental object, and is composed of several small grid boxes 13, The quantity of the small grid box 13 is customized according to the requirements of the experiment. The top track C 6-c is designed as an L-shaped groove track, which is convenient for the instrument to hang upside down and move freely; The Y-axis width can be adjusted to facilitate the fixing of various instruments. The small lattice box 13 is shaped like a cylinder or a square; the small lattice box 13 is composed of a box main body, an external drainage device, a cover and a self-control unit. The internal environment of the small grid box is stable and adjustab...

Embodiment 3

[0048] see Figure 1~Figure 7 , which shows a schematic diagram of the outline structure of the high-throughput experimental platform according to the present invention. As shown in the figure, the present invention develops an efficient and rapid method for detecting the presence of fertilizers such as geotechnical engineering, soil salinity, and nitrogen in soil and silicon Environmental changes such as water and salt migration / dissolution / crystallization in acidic cultural relics, as well as high-throughput experimental platform equipment for calibration and fitting of laboratory and field data, to quickly obtain standard salts with concentration gradients under laboratory simulation conditions Solution-specific information, as well as specific information on the transport and crystallization behavior of standard salt solutions with concentration gradients in ceramic samples (soils, rocks). The experimental platform device consists of a platform box frame 1, a test sample p...

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Abstract

The invention relates to a high-flux experimental platform for water / salt transportation / dissolution / crystallization characterization. The platform includes a casing frame, a test sample placer, a top cover, an automatic liquid supply system and a power supply unit. A two-dimensional slide rail A, carrying the test sample placer, of the casing frame, is divided into two independent chambers up and down. The upper top part of the casing frame is provided with a two-dimensional rail system B, and a lower bottom part of the casing frame is provided with a two-dimensional rail system C. A top elevating mechanism with a test instrument installed is arranged on the rail system B and is parallel to the rail A, and a bottom elevating mechanism with a test instrument installed is arranged on the rail system C and is parallel to the rail A. The provided high-flux experimental platform for water / salt transportation / dissolution / crystallization characterization can fast efficiently complete batch fine experimental data, can greatly shorten the period of laboratory study, and is saved in time and labor.

Description

technical field [0001] The invention belongs to the field of water / salt and environmental standard detection equipment manufacturing, and specifically relates to a high-throughput experimental platform for water / salt migration / dissolution / crystallization characterization, which is used to detect soil, rock soil, halophytes and silicic acid Salt cultural relics (including murals, grottoes, earthen relics, ceramics, etc.) samples of water and salt migration and crystallographic behavior and simulation of its interaction with multiple environmental factors, as well as detection and calibration, fitting laboratory and field data related data. Background technique [0002] With the continuous growth of the world population, the acceleration of urbanization, the pollution and land degradation caused by the irrational use of land, the agricultural land is decreasing at an unimaginable speed. Therefore, the efficient use of barren land within limited resources is particularly importa...

Claims

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Application Information

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IPC IPC(8): G01N21/84G01N21/3581G01N21/25G01N21/65
CPCG01N21/25G01N21/3581G01N21/65G01N21/84
Inventor 罗宏杰李强赵静
Owner SHANGHAI UNIV
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