List of Contract Services products
- classification:Contract Services
2191~2205 item / All 4766 items
Presentation of explanatory materials on JIS and ISO standards. We propose suitable safety barriers from a rich product series! Free rental of demo kits.
- Other safety and hygiene products
Amino acid-derived natural cationic polymer that can be used in food preservatives, hygiene materials, and daily necessities. It is a safe material as it is a fermentation product produced by natural ...
- Shelf life enhancer
Introduction of the preservative polylysine / fermented polyamino acids that contribute to food poisoning prevention.
We provide easy-to-understand materials explaining the natural preservative polylysine, which prevents food poisoning. ε-Polylysine (hereafter referred to as polylysine) is an amino acid-derived preservative widely used as a food preservative. By adding polylysine, the growth of microorganisms that cause food poisoning can be prevented. Every year, food poisoning caused by microorganisms is a significant issue and is frequently reported in the news. Even foods that do not appear to be spoiled can rapidly proliferate microorganisms if the growth environment is suitable, so caution is necessary. Even if something looks clean, contamination by bacteria can progress, posing a risk of food poisoning. By ensuring hygiene management during the manufacturing process, proper storage at appropriate temperatures, and the appropriate use of the preservative polylysine, food safety can be more effectively protected. 【Features】 ■ A safe material produced through fermentation by natural microorganisms (not genetically modified organisms) ■ Provides a good image as a natural fermented product ■ Listed in the existing additive registry as a food preservative ■ A safe domestic product *Please feel free to contact us.
Shear the sample for a specified time using ultrasound! The JASO method is performed with high voltage irradiation.
- Contract Analysis
Evaluate the degree of thermal oxidative degradation of the sample! Observe the presence or absence of precipitates at the bottom of the test container.
- Contract Analysis
Evaluate the rust prevention performance of the sample! Immerse a steel test piece in a mixture of the sample heated to 60°C and artificial seawater.
- Contract Analysis
Engine oil, automotive gear oil, etc.! Compare the weight of the panel and measure the amount of sludge.
- Contract Analysis
Evaluate the load-bearing capacity of the lubricant! Determine the maximum load without seizure.
- Contract Analysis
Continuous rotation in an oil bath at 150℃! Evaluating the oxidation stability of the sample.
- Contract Analysis
Oxidize the sample at 165.5℃ for 24 hours! Determine the increase in viscosity ratio and acid value.
- Contract Analysis
Machine oil and grease, etc.! Traction measurements can be made at any load, speed, and temperature.
- Contract Analysis
For engine oil and automotive gear oil! Measured using optical interference method.
- Contract Analysis
Utilizing the damped oscillation of a pendulum! Determining the coefficient of friction of a sample.
- Contract Analysis
Measured the wear scar diameter of three fixed balls in the container! Evaluating wear resistance.
- Contract Analysis
Measuring the load capacity of lubricating oil! Determining the load at which steel balls fuse together.
- Contract Analysis
For machine oil! Quantifying the color difference between the filtered filter and the original filter.
- Contract Analysis
Calculate from the results of refractive index, density, molecular weight, and sulfur content! Determine the ratio of each carbon number, such as aromatic compounds.
- Contract Analysis
The required amount is 5ml! Measure the amount of gasoline mixed in and determine the dilution rate.
- Contract Analysis