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Distillation Apparatus Product List and Ranking from 26 Manufacturers, Suppliers and Companies

Last Updated: Aggregation Period:Sep 17, 2025~Oct 14, 2025
This ranking is based on the number of page views on our site.

Distillation Apparatus Manufacturer, Suppliers and Company Rankings

Last Updated: Aggregation Period:Sep 17, 2025~Oct 14, 2025
This ranking is based on the number of page views on our site.

  1. 日本ビュッヒ Tokyo//Testing, Analysis and Measurement
  2. 関西化学機械製作 Hyogo//Industrial Machinery
  3. null/null
  4. 4 SUGIYAMA-GEN Tokyo//others
  5. 5 中国精油 Okayama//Chemical

Distillation Apparatus Product ranking

Last Updated: Aggregation Period:Sep 17, 2025~Oct 14, 2025
This ranking is based on the number of page views on our site.

  1. Kjeldahl distillation apparatus 日本ビュッヒ
  2. Basic Knowledge of Thin Film Distillation (Wiped Film) - Equipment Specifications 中国精油
  3. Kjeldahl automatic distillation apparatus "Keltec 8100"
  4. 4 Water Quality Analysis Pre-treatment Distillation Equipment [Comprehensive Catalog] SUGIYAMA-GEN
  5. 5 Automatic Kjeldahl Distillation Apparatus K-375/376/377 日本ビュッヒ

Distillation Apparatus Product List

76~81 item / All 81 items

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Humidity and Partial Pressure

A clear explanation of the basic knowledge necessary to understand distillation, distillation towers, and distillation equipment!

Kansai Chemical will explain "Humidity and Partial Pressure." The atmosphere is a mixture of air and water, and the ratio of this mixture is humidity. Just above a boiling pot, there is no air, only 100% water vapor. Therefore, the pressure of that water vapor is equal to atmospheric pressure. Most liquids have a vapor pressure determined by temperature, and the vapor pressure of water at 30°C (saturated vapor pressure) is 42 hPa. If the atmospheric pressure on Earth were 42 hPa, water would boil at 30°C. However, the atmospheric pressure at ground level is considered to be an average of 1,013 hPa (neither high pressure nor low pressure). If the water in the pot is at 30°C, then the water vapor just above the surface of the water is 42 hPa, and the air pressure is (1,013 - 42) = 971 hPa. When several components are mixed, the total pressure is called the total pressure, and the pressure exerted by each component (air, water) is called the partial pressure. And this is known as "the total pressure is equal to the sum of the partial pressures (Dalton's Law of Partial Pressures)." *For more details, please refer to the PDF document or feel free to contact us.

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Partial pressure and total pressure

A clear explanation of the basic knowledge necessary to understand distillation, distillation towers, and distillation equipment!

Kansai Chemical will explain "partial pressure and total pressure." When it comes to pressure in distillation operations, it usually refers to the pressure limited on the gas side. Air is primarily composed of nitrogen and oxygen, with nitrogen making up about 80% and oxygen about 20% by volume. (The molar ratio is the same.) Now, let's consider a balloon inflated with air. Inside the balloon, nitrogen and oxygen molecules are moving vigorously. They are colliding violently and uniformly (according to Pascal's principle) against the inner walls of the balloon multiple times. The pressure inside the balloon can be said to be the result of these collision forces. One mole is a collection of 6.022×10^23 molecules, and for all gases, at 0°C and 1 atm, it occupies 22.4 L. This means that the force exerted by a single molecule on the wall during a collision is equal for both nitrogen and oxygen. While we have imagined a lot about gases, an important law regarding the handling of gases in distillation is Dalton's law of partial pressures: "Total pressure P (kPa) = Sum of partial pressures Σpi (kPa)." *For more details, please refer to the PDF document or feel free to contact us.

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What is an ideal gas?

A clear explanation of the basic knowledge necessary to understand distillation, distillation towers, and distillation devices!

Kansai Chemical will explain about "ideal gases." An ideal gas is defined as: - "The size of the molecules is negligible (therefore, the molecules do not collide with each other)" - "When colliding with walls, the direction changes but the speed remains the same (elastic collision)" - "There are no interactions between molecules" Based on these assumptions, the laws mainly related to the field of distillation are "Boyle's Law and Charles's Law" and "Dalton's Law of Partial Pressures." While we have imagined many aspects regarding gases, an important law in the handling of gases during distillation is Dalton's Law of Partial Pressures: "Total Pressure P (kPa) = Sum of Partial Pressures Σpi (kPa)." This law is derived from the properties of ideal gases, but it is a sufficiently reliable law within the range used in distillation. *For more details, please refer to the PDF materials or feel free to contact us.*

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What is an ideal solution?

A clear explanation of the basic knowledge necessary to understand distillation, distillation towers, and distillation equipment!

Kansai Chemical will explain about "ideal solutions." A solution in which "Raoult's Law" holds is called an ideal solution. The solutions that can be treated as ideal solutions are very limited combinations, such as methanol-ethanol and benzene-toluene, which have similar molecular structures. However, the existence of solutions that behave like ideal solutions is sufficient for understanding the concept of distillation operations when treated as ideal solutions. "Raoult's Law" states that the partial pressure \( p_i \) of a component in the vapor phase is equal to the product of the vapor pressure \( P_i \) of each pure component in the solution and the concentration \( x_i \) (mol-fraction) of that component in the solution. Here, it also relates to the ratio of the number of molecules in the liquid. *For more details, please refer to the PDF document or feel free to contact us.*

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What is precision distillation that you can't ask about now? We are currently offering materials that explain precision distillation.

"What is precision distillation?" We are currently offering explanatory materials that help you understand from the basics! It includes "types of distillation," "illustrations of distillation methods," and "examples of distillation applications"!

Osaka Yuka Kogyo, as a professional in distillation, has supported various product developments through distillation. However, many people may find distillation difficult to understand and may only have a vague idea about it. This document includes information on "What is precise distillation in the first place?" as well as "Types of distillation" and "Details about each distillation method." If you have any questions about precise distillation, please feel free to contact Osaka Yuka Kogyo. *For more information, please refer to the PDF document or feel free to contact us.

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[Performance Introduction] Maintenance

Daily maintenance work and regular maintenance work! Introduction of our achievements in maintenance.

We provide maintenance services. In daily maintenance work, we are responsible for inspecting and repairing the piping and equipment that make up the plant. In regular maintenance work, we carry out inspections and updates or modifications of equipment as mandated by law. In terms of daily maintenance work achievements, we have worked with clients such as AGC Inc. Chiba Plant and Cosmo Matsuyama Oil Co., Ltd. For regular maintenance work, we have experience with atmospheric distillation units and precision distillation units. [Daily Maintenance Work Achievements / By Client (Excerpt)] ■ AGC Inc. Chiba Plant ■ Cosmo Matsuyama Oil Co., Ltd. ■ Cosmo Oil Co., Ltd. Sakai Refinery ■ Taiyo Oil Co., Ltd. Shikoku Office ■ Cosmo Oil Co., Ltd. Sakaide Logistics Base *For more details, please refer to the PDF document or feel free to contact us.

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