An important research progress on the key technical methods for measuring marine biological elements in Anguang

[ China Instrument Network Instrument Development ] In 2018, the research project of “National Key Research and Development Program for Marine Biochemicals” and “Industrialization of Marine Biochemicals” Significant progress has been made in research on key technical methods of measurement.

Underwater in situ measuring instrument prototype
In the aspect of on-line measurement of seawater chlorophyll, the method of marine phytoplankton identification and chlorophyll classification measurement based on three-dimensional fluorescence spectroscopy was studied. The core technology of seawater chlorophyll weak fluorescence signal detection was solved. The method based on discrete three-dimensional fluorescence spectroscopy was designed for the first time in the world. The underwater in-situ measuring instrument has higher precision than the existing measuring means.
In the measurement of marine primary productivity, the fluorescence kinetics measurement and inversion methods of phytoplankton photosynthesis fluorescence parameters, photosynthesis rate, effective photosynthetic reaction center concentration and other factors were studied, and the variable light pulse regulation of photosynthetic electron transfer process was developed. The key techniques of phase and relaxation fluorescence kinetics signal detection, preliminary establishment of the marine primary productivity fluorescence kinetics measurement model, the first design of underwater in situ measurement instrument based on fluorescence kinetics method. In addition, a time-domain detection method for seawater dissolved oxygen based on fluorescence lifetime and a two-point integral fluorescence lifetime rapid detection technique were developed.
Currently, relevant instruments are being tested, and the results are published in Optics Express, 2018, 26(6): A251-A259; Optics Express, 2018, 26(6): A293-A300; Journal of Optics, 2018, 38(10): 1001005 and so on. The project was approved at the end of August through the mid-term inspection of the project organized by the Oceans Division of China's Agenda 21 Management Center.
(Original title: Important progress in research on key technical methods for measurement of marine biological elements)

JIS" Stands for Japanese Industrial Standard and are published by the Japanese Standards Association (JSA) which is the equivalent of ANSI in the United States. They are created and updated by the Committee of the Japanese Industrial Standards (JISC). Like JSA to ANSI, the JISC is similar to the American Society of Mechanical Engineers (ASME).

 

Japan Industrial Standard is yet another option for metric sizes.  Provided in JIS5K, JIS10K, JIS15K, and JISK20K pressure classes, we can offer Slip On, Blind, and Weld Neck varieties in Raised Face or Flat Face configurations. These are typically made of 316/L or A105, but as usual, all alloys are available!


Much like DIN / metric flanges, the JIS Flange specification offers a slightly wider variety of slip weld configurations for the purposes of space limitations and suitability for existing pipeline equipment. For instance, a customer can request a slip on with or without a hub as standard, or even a ring type flange, and all of this within the same B2220 specification.

JIS flanges are commonly found in exported pressure equipment and pipe assemblies from Japan. Many large ships and sea vessels which travel through international waters and service the Pacific rim will utilize equipment made to this standard, as parts and servicing for this specification are widely available.    



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