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Soil heavy metal detector HED-ZSE
Soil heavy metal detector HED-ZSE
Product details
Food, soil, and water quality are gradually polluted by industrial waste gas, wastewater, and waste residue. Some people even directly use industrial wastewater to irrigate crops, causing a large accumulation of heavy metals such as cadmium, copper, arsenic, chromium, mercury, nickel, iron, aluminum, zinc, manganese, and copper in the soil tillage layer, especially in suburban areas where the phenomenon is more serious; In addition, the extensive use of inorganic chemical pesticides has led to serious exceedance of heavy metal content in vegetables and fish, continuously accumulating in the human body, resulting in chronic heavy metal poisoning among consumers. There have been multiple incidents of collective heavy metal poisoning in China, which have attracted high attention from the government and various sectors of society. However, the current heavy metal determination methods have slow determination speed, complicated steps, and expensive instruments. Based on this situation, we have developed a rapid determination method for heavy metals, which can be used for rapid combined determination of lead, arsenic, chromium, cadmium, mercury, etc. in samples such as vegetables, food, soil, organic fertilizers, and tobacco leaves.
Instrument function:
1. The Android intelligent operating system adopts more efficient and user-friendly operation. The instrument has Ethernet connection, WiFi network upload, 4G wireless remote transmission function, and can quickly upload data.
2. Adopting high-precision filter technology and independent patent analysis method (patent number: ZL.7), The colorimetric groove adopts a standard 1cm colorimetric dish, with no mechanical displacement or wear. The optical path testing positioning is accurate, ensuring that the test results are better than the national standard requirements.
3. The instrument has 12 detection channels, which can detect and compare multiple samples at once, reducing detection costs.
4. The instrument is equipped with a new generation high-speed thermal printer, which can automatically print inspection reports and QR codes upon completion of testing.
5. Each channel is equipped with a four wavelength cold light source, which can expand more detection elements. All light sources achieve constant current and voltage stabilization, ensuring wavelength stability, good reproducibility, and high accuracy.
6. Display mode: 7-inch LCD touch screen display, user-friendly Chinese operation interface, intuitive and simple reading. 7. AC/DC dual-use, can be connected to car power supply, equipped with a 6-hour high-capacity rechargeable lithium battery, convenient for outdoor mobile testing.
8. The instrument is equipped with a regulatory platform. The detection data can be uploaded to the regulatory platform for data monitoring and statistics.
9. The main control chip adopts ARM Cortex-A7, RK3288/4-core processor, with a main frequency of 1.88GHz, faster operation speed and stronger stability.
1、 Detection principle of soil heavy metal detector:
(1) After digestion of the sample, all forms of heavy metals (including arsenic, lead, cadmium, chromium, mercury, nickel, iron, aluminum, zinc, manganese, copper, etc.) are converted into ionic forms. After adding relevant detection reagents, the color develops. Within a certain concentration range, the depth of the solution color is proportional to the content of heavy metals, following the Lambert Beer law. The content value is then measured by instruments and compared with the national standard for the safety and quality of agricultural products and the allowable limit for pollution-free vegetable safety requirements to determine the content of heavy metals in vegetable samples.
(2) Detection principles and standards for various heavy metals
1. The detection principle and adopted standards of heavy metal arsenic
Adopting the national standard (GB/T50091.1-2003) borohydride reduction colorimetric method, the sample is digested, potassium iodide thiourea is added and heated to reduce pentavalent arsenic to trivalent arsenic. Under acidic conditions, potassium borohydride reduces trivalent arsenic to negative trivalent, forming arsine, which is introduced into the absorption solution and appears yellow. The arsenic content is detected by the instrument.
2. The detection principle and adopted standards of heavy metal lead
The national standard (GB/T5009.12-2003) dithizone colorimetric method is adopted, which means that after digestion of the sample, under weakly alkaline conditions, lead ions form a red complex with dithizone, dissolve in chloroform, and perform colorimetric determination.
3. The detection principle and adopted standards of heavy metal chromium
After digestion of the sample, in the presence of divalent manganese, chromium ions react with diphenylcarbazide to form a purple red complex. The color of the complex is directly proportional to the hexavalent chromium content, and the chromium content can be determined by colorimetric analysis.
4. The detection principle and adopted standards of heavy metal cadmium
Using the national standard (GB/T5009.15-2003) colorimetric method, after digestion of the sample, under alkaline conditions, cadmium ions react with 6-bromophenylthiazolylazo naphthol to form a red complex, which is dissolved in chloroform for colorimetric determination.
5. The detection principle and adopted standards of heavy metal mercury
The national standard (GB/T5009.17-2003) dithizone colorimetric method is adopted, which means that after digestion of the sample, under acidic conditions, mercury ions form an orange red complex with dithizone, dissolve in chloroform, and perform colorimetric determination.
2、 Testing process
Refer to the user manual
3、 Instrument technical specifications
1. Instrument transmittance accuracy ≥ ± 0.5%
2. Instrument repeatability ≤± 0.05%
3. Instrument stability without drift/30 minutes (after preheating the instrument for 5 minutes)
4. Linear error ≤ 0.2%
4. Instrument power consumption ≤ 5W
5. Power supply AC220V/50Hz or DC12V
6. The built-in new thermal printer can automatically print out the detection results, which is convenient and intuitive.
7. Size 43 × 35 × 20cm
8. Host weight 5.2kg
4、 Instrument measurement items
1. Instrument measurement items
Determination of heavy metals (lead, arsenic, chromium, cadmium, mercury, iron, zinc, manganese, copper) in soil, fertilizers, food, vegetables, and fruits.
2. Instrument expansion testing project
The instrument can be extended to measure the nutrient content of soil and fertilizers.
5、 Instrument testing characteristics
1. The performance is reliable, and the working stability is 5-6 times better than the national standard JJG79-90. The repeatability reaches the index of grating spectrophotometers. It adopts microprocessor technology, microcontroller control, touch buttons, and is easy to operate.
2. The heavy metal testing adopts joint digestion and sub item testing techniques, simplifying the testing process, reducing testing time, greatly improving testing efficiency, and enhancing testing accuracy.
3. Strong scalability, this instrument can not only be used for heavy metal detection but also for testing nutrients in soil, fertilizers, and plants, making it versatile.
4. The soil heavy metal detector integrates medicine, equipment, and instruments into one, equivalent to a small laboratory with two aluminum alloy boxes, easy to carry, convenient for on-site testing, and mobile service. Suitable for grassroots testing departments to screen vegetables, fruits, and other foods containing heavy metal pollution.
Article address: https://www.turangsuceyi.com/trzjs/20.html Shandong Horde Electronic Technology Co., Ltd. produces and wholesales soil nutrient detectors, soil fertilizer rapid testers, soil measuring instruments, and soil fertilizer nutrient rapid testers. The manufacturer provides free prices for soil nutrient rapid testers and shares knowledge about the use and application of fertilizer rapid testers; If you need to reprint, please indicate the source of this article!
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