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<h2 class="page-header">Abstract</h2> | <h2 class="page-header">Abstract</h2> | ||
− | < | + | <h3 class="lead">Acrylic acid is a bulk chemical raw material, which is widely used in many fields because of its excellent |
polymerization capacity, such as paint, glue, and even mobile phone screen protective film. The average | polymerization capacity, such as paint, glue, and even mobile phone screen protective film. The average | ||
annual market demand of acrylic acid is up to 8 million tons, and the market value is nearly 10 billion | annual market demand of acrylic acid is up to 8 million tons, and the market value is nearly 10 billion | ||
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friendly carbon source, glycerol to achieve all green production of acrylic acid. Compared to traditional | friendly carbon source, glycerol to achieve all green production of acrylic acid. Compared to traditional | ||
chemical synthesis methods, Synbio is green and sustainable, and glycerol is cheaper than ethylene. | chemical synthesis methods, Synbio is green and sustainable, and glycerol is cheaper than ethylene. | ||
− | </ | + | </h3> |
</div> | </div> | ||
</div> | </div> |
Revision as of 13:50, 18 October 2017
Abstract
Acrylic acid is a bulk chemical raw material, which is widely used in many fields because of its excellent
polymerization capacity, such as paint, glue, and even mobile phone screen protective film. The average
annual market demand of acrylic acid is up to 8 million tons, and the market value is nearly 10 billion
US dollars. It has broad market prospect. At present, acrylic acid is made from propylene (which
is obtained by petroleum cracking) after multi-step treatment. The production process causes pollution,
high energy consumption and it is unsustainable.
This year, we aim to use a green and environmentally
friendly carbon source, glycerol to achieve all green production of acrylic acid. Compared to traditional
chemical synthesis methods, Synbio is green and sustainable, and glycerol is cheaper than ethylene.
Some fk
Project One
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Project Two
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Project Three
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Project Four
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