Biodiesel production method

A biodiesel and production method technology, applied in the direction of microorganism-based methods, biochemical equipment and methods, fat oil/fat production, etc., can solve the problems of low biodiesel yield, low catalytic efficiency, long reaction time, etc., and achieve environmental adaptation Strong ability, improved catalytic efficiency, and large reaction interface

Inactive Publication Date: 2016-11-23
南宁华侨投资区政孙贸易有限公司
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  • Summary
  • Abstract
  • Description
  • Claims
  • Application Information

AI Technical Summary

Problems solved by technology

The existing biodiesel production process generally has the following problems: low catalytic efficiency, low biodiesel yield, long reaction time, corrosion equipment, complex process, high energy consumption, high cost, etc.

Method used

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Examples

Experimental program
Comparison scheme
Effect test

Embodiment 1

[0026] Preparation of Cryptidinium culture medium: Glucose 15mg / L, NaNO 3 3.0mg / L, KH 2 PO 4 1.6mg / L, chitosan 1.4mg / L, biogas slurry 10mg / L, f2 vitamin 3mL and seawater 1L;

[0027] A method for producing biodiesel, comprising the steps of:

[0028] S1. Cryptidinium culture: use Cryptodinium as raw material, inoculate it into the culture medium at an inoculation density of 6 million cells / mL, and irradiate it with red and blue LED fill light for 14h / day, and the red light in the LED fill light The ratio with the blue light is 1:2, the light intensity is controlled at 2000LX, the culture temperature is controlled at 23°C, cultured for 7 days, the density of Cryptidinosa can reach 70 million cells / mL, and the Cryptidinosa cells are collected;

[0029] S2. Grease extraction: After concentrating and drying the Cryptidinosa cells collected in step S1, ultrasonic waves are used to break the walls of the Cryptidinosa, the ultrasonic power is controlled to 180W, and the ultrasonic...

Embodiment 2

[0034] Preparation of Cryptidinium culture medium: Glucose 17mg / L, NaNO 3 2.8mg / L, KH 2 PO 4 1.7mg / L, chitosan 1.3mg / L, biogas slurry 7mg / L, f2 vitamin 1mL and seawater 1L;

[0035] A method for producing biodiesel, comprising the steps of:

[0036] S1. Cryptidinium culture: use Cryptodinium as raw material, then inoculate the culture medium at an inoculation density of 6 million cells / mL, and irradiate with red and blue LED supplementary light for 12h / day, and the red light in the LED supplementary light The ratio with the blue light is 1:1, the light intensity is controlled at 2200LX, the culture temperature is controlled at 24°C, cultured for 6 days, the density of Cryptidinosa can reach 70 million cells / mL, and the Cryptidinosa cells are collected;

[0037] S2. Oil extraction: After concentrating and drying the Cryptidinosa cells collected in step S1, ultrasonic waves are used to break the walls of Cryptidinosa, the ultrasonic power is controlled to 190W, and the ultrason...

Embodiment 3

[0042] Preparation of Cryptidinium culture medium: Glucose 20mg / L, NaNO 3 2.6mg / L, KH 2 PO 4 1.8mg / L, chitosan 1.2mg / L, biogas slurry 8mg / L, f2 vitamin 2mL and seawater 1L;

[0043] A method for producing biodiesel, comprising the steps of:

[0044] S1. Cryptidinium culture: use Cryptodinium as raw material, inoculate it into the culture medium at an inoculation density of 5 million cells / mL, and irradiate it with red and blue LED fill light for 10h / day, and the red light in the LED fill light The ratio with blue light is 1:1, the light intensity is controlled at 2500LX, the culture temperature is controlled at 26°C, cultured for 7 days, the density of Cryptidinosa can reach 70 million cells / mL, and the Cryptidinosa cells are collected;

[0045] S2. Oil extraction: After concentrating and drying the Cryptidinosa cells collected in step S1, ultrasonic waves are used to break the walls of Cryptidinosa, the ultrasonic power is controlled to 200W, and the ultrasonic reaction is...

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PUM

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Abstract

The invention discloses a biodiesel production method which comprises the following steps: inoculating crypthecodinium cohnii to a medium; irradiating for 10-14h per day with a red-blue double-color LED fill light; culturing for 6-7 days at 23-26 DEG C to obtain organic crypthecodinium cohnii cells; performing wall breaking treatment of the collected crypthecodinium cohnii cells, and extracting with an organic solvent to obtain microalgae oil; adding the microalgae oil, methanol and a zeolite molecular sieve catalyst into a reactor according to a mass ratio of 1:(5-7):(0.01-0.04) for an esterification reaction to obtain an esterified product; and separating and purifying the esterified product to obtain the biodiesel. In the method disclosed by the invention, by adopting the crypthecodinium cohnii with short production cycle, wide distribution, strong photosynthesis and high oil content as a raw material, the problems of vegetable oil raw material in biodiesel development are solved. The method also has the advantages of simple preparation technology, high catalysis efficiency, high oil extraction rate, high product yield and the like and lays a good foundation for the industrial and large-scale production of biodiesel.

Description

technical field [0001] The invention belongs to the technical field of biomass energy, in particular to a method for producing biodiesel. Background technique [0002] With the increasing depletion of fossil fuels and the sharp rise in oil prices, the search for renewable energy has become a solution to human survival and to maintain the sustainable development of the world economy. As a new alternative energy, biodiesel is developing rapidly in countries all over the world. Biodiesel refers to oil crops such as soybeans, rapeseed, cotton, palm, etc., wild oil plants and engineering microalgae and other aquatic vegetable oils, animal fats, and catering waste oils, etc. Renewable diesel fuel to replace petrodiesel. The advantages of biodiesel are not limited to renewability. Compared with existing diesel, it also has the following advantages: high cetane number, which makes the combustion performance better; better wetting performance, which makes the fuel injection pump, en...

Claims

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Application Information

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Patent Type & Authority Applications(China)
IPC IPC(8): C11B1/04C11B1/10C11C3/10C11B3/00C11B3/12C10L1/02C12P7/64C12R1/89
CPCC10L1/02C11B1/04C11B1/10C11B1/108C11B3/001C11B3/12C11C3/10C12P7/6463Y02E50/10
Inventor 黄健峻其他发明人请求不公开姓名
Owner 南宁华侨投资区政孙贸易有限公司
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