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Showing posts with label Biofuel. Show all posts
Showing posts with label Biofuel. Show all posts

Saturday, October 28, 2017

Agriculture Biomass Gasifier System and Info

Technical parameters of biomass (straw) fluidized bed gasifier system





                 
 1. Straw storage, 2. Delivery 3. Silos 4. Fluidized bed gasifier, 5. Cyclone 6. Pipe dust collector 
7. Electric catcher 3. Spray tower 9. Circulating liquid separator 10. Fan 11. Buffer tank 12. Water seal tank 13. Generator set
                           Technical parameters of biomass (straw) fixed bed gasifier system
1. Straw storage, 2. Delivery 3. Fixed bed gasifier 4. Cyclone 5. Air cooler 6. Intercooler
7. Electric catcher 3. Intercooler 13. Fan 9. Separator 10. Buffer tank 11. Water seal 12. Generator set

    
    
After crushing the straw is applied with a biomass straw using a fluidized bed gasifier. Advantages: cost savings, shortcomings: do not use storage.

     
The briquettes are applied after the briquettes are used with the biomass straw fixed bed gasifier. Advantages: high efficiency, conducive to transport and storage, shortcomings: increase costs.
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1, the caloric value of straw biomass resources
      The caloric value of the straw was 3687 Kcal / kg (7.8% moisture, 69.11% volatiles, 5.71% ash, 17.38% fixed carbon)
     The caloric value of cotton stalk 3591Kcal / kg (13.4% moisture, 65.17% volatile, ash 3.20%, fixed carbon 18.23%)
     The caloric value of corn stalks was 3813 Kcal / kg (9.5% moisture, 70.31% volatiles, 4.01% ash, 16.18% fixed carbon)
     The caloric value of straw is 3139 Kcal / kg (11.6% moisture, 59.5% volatile, 14.1% ash, 14.8% fixed carbon)
3, the characteristics of straw biomass resources
   Widely distributed, small density, light weight.
   Can be compressed into particles or biomass blocks for easy transport and storage.  
        
   High fuel volatile, easy to fire, good combustion characteristics, high rate of burning ashes;
   Sulfur content is very low, only about 1/20 of the fuel oil, do not take any desulfurization and denitrification measures can meet environmental requirements;
   0 "Emissions: Health combustion exhaust substances CO.'s 2 and its absorption during growth CO.'s 2 the same, and instead of fossil energy, reducing the net emissions, in accordance with the" Kyoto Protocol "mechanism, biomass fuel CO.'s 2 ecological" 0 " emission.
4, Straw biomass resources analysis of economic benefits
Wuxi City to the Electrical and Mechanical Co., Ltd. biomass gasifier can be 1 kg of straw fuel into 2 cubic biomass gas = 2400-2600 kcal.
4.1.1 . In the case of natural gas calorific value of 8900 kcal / cubic cubic, the use of special energy TENENG biomass gasifier, 3.4-3.7Kg straw fuel can replace 1 cubic natural gas.
In the straw fuel price of 200 yuan when the replacement of a cubic natural gas need straw fuel costs 0.68-0.74 yuan,
Natural gas prices of 4.5 yuan per cubic, enterprises can save 84-85%.
4.1.2. In straw fuel price of $ 300 when the need to replace a natural cubic straw fuel feed cost 1.03-1.11 yuan,
Natural gas prices for 4.5 yuan per cubic, enterprises can save 75-77%.
4.1.3 . In straw fuel price price of $ 400 when the need to replace a natural cubic straw fuel pricescost 1.37-1.48 yuan,
Natural gas prices for 4.5 yuan per cubic, enterprises can save 67-70%.
Note: Some developed areas to encourage the local government to encourage straw burning, straw processing enterprises to subsidize 200 yuan a ton, so that enterprises can save more.
4.2.1. In the case of diesel fuel calorific value of 10,000 kcal / l, the use of special energy TENENG biomass gasifier, 3.8-4.2Kg straw fuel prices can replace 1 liter of diesel.
In straw fuel price of $ 200 when the need to replace one liter of diesel straw fuel prices cost 0.76-0.84 yuan,
Diesel prices for 7 yuan a liter, businesses can save 84-85%.
4.2.2. When theprice of the straw fuel is 300 yuan, the cost of replacing the 1 liter diesel oil requires the cost of straw fuel price of 1.14 -1.26 yuan,
Diesel prices for 7 yuan a liter , enterprises can save 82-84%.
4.2.3. When the price of straw fuel is 400 yuan , to replace 1 liter of diesel need straw fuel costs 1.52-1.68 yuan,
Diesel prices for 7 yuan a liter , enterprises can save 76-78%.
Note: Some developed areas to encourage the local government to encourage straw burning, straw processing enterprises to subsidize 200 yuan a ton, so that enterprises can save more.
To sum up, if the enterprise is still burning diesel oil to heat, you can use cheap and available biomass raw materials using special biomass gasifier to produce biomass syngas to replace fuel gas equipment.
Another for some gas furnace users and coal-fired boiler users, because some places due to government policy factors, need to burn natural gas users, biomass gasifier and biomass raw materials is also a good choice,
Because if the enterprise to take natural gas pipeline, then the cost is also great, and the current trend of natural gas, natural gas is not enough, so the possibility of price reduction is very small.

Wednesday, October 25, 2017

Biodiesel saves the day $$$

Northern Oil's biorefinery looking to biodiesel as way to go off-grid and save power bills
In Australia, Northern Oil's biorefinery that produces biodiesel from tires is looking to use some of that biodiesel to produce its own power in an effort to significantly reduce or completely eliminate it's $1.5 million annual power bill. The company's power bill went up 10% last year, money that could have been spent on creating two additional jobs at the facility instead.  See more st link:
http://www.biofuelsdigest.com/bdigest/2017/10/23/northern-oils-biorefinery-looking-to-biodiesel-as-way-to-go-off-grid-and-save-power-bills/

Thursday, December 24, 2015

Investor Business Partner Adviser Update


Dear Future Investors, Business Partners, and Advisers,




I'm glad you came by the mohempenergyblog.  To be clear the proposed business 
MOhemp Energy has discovered new avenues for generating income that will protect your investment, in the short and long term. 

The new proposed avenues to generate income will come from MOhemp Energy Non Profit Hazmat Division as well as growing Medical Cannabis Division to supply the undeserved markets of the growing Medical Marijuana Industry and their needed to serve patients a healthy and proven alternative to taking a pill

Map Bridgeton Landfill Radioactive Soil Manhattan Project EPA neglected location
Bridgeton Landfill Contaminated Radioactive Soil Map Location
The greatest potential to help people avoid the health hazards caused by nuclear radiation from the Nuclear Waste that were deposited in the Bridgeton Landfill of the St Louis region during the Manhattan Project (as mentioned in the Rolling Stone- St Louis is Burning) will come from the natural and most affordable way of removing soil contaminants using Green Remediation

 Epa Study Green Remediation by Phytoextraction affordable proven technology
Phytoextraction is the affordable way to remove soil contaminants

Phytoextraction using phytoremediation of contaminated soils. Such as the Bridgeton Landfill and Cold Water Creek areas of the St Louis Region.

This what sustainability is all about.  

Not only are the plants beneficial in removing the heavy metals from the soil.  They can also be a source for sustainable biomass energy.  For me this is the best of both worlds: Healing the Soil and Creating Sustainable Non Polluting Energy.  see Hemp for Income and Soil Remediation of Nuclear Waste in Bridgeton Missouri and the Cold Water Creek area of the St. Louis Region


I will be the first to admit- I do not have all the answers needed.  That is why 

I am requesting Business Partners who are knowledgeable or who have connections in dealing with Nuclear Radiation.

From all the complex scientific studies I've discovered and read.  I do not feel I will have any trouble getting an Industrial Hemp or Kenaf Plant to grow on this radioactive soil.   This process is being used currently in The Chernobyl phytoremediation project of the Soviet Union as well as bordering area in Ukraine who touts its biomass as the preferred remedy, has been studied for a much needed solution at Fukishima, and with some of the latest information coming out of my favorite hemp organizations Hemp Technologies Nuclear Waste and Hemp and the Decontamination of Radioactive Soil-
For over a decade, industrial hemp growing in the environs of the abandoned Chernobyl nuclear power plant in Pripyat, Ukraine has been helping to reduce soil toxicity.

All of the above endeavors are awesome but its MOhemp Energys way of removing Lignin from the Hemp plant that is my personal favorite.  In addition to the energy and tree saving ability to utilize Hempcrete in a Post Frame Building Design that not only saves energy but saves the resources mankind needs for the generation of oxygen- TREES.  Because without trees and plants creating oxygen and removing carbon dioxide for and from the air.  Mankind faces a very dim future.

Its for all the aforementioned income producing endeavors of MOhemp Energy sends out this invitation to the World, to join in these much needed endeavors.  We can make some money, help people and the planet at the same time!





Wednesday, December 16, 2015

ROI Bridgeton Landfill Phytoremediation Proposal

MOhemp Energy- Hemp for Income and Phytoremediation of the Bridgeton Landfill will utilize the Industrial Hemp plants abilities to neutralize the heavy metals absorbed by the root system of the hemp plant.



In many studies done by the division of ag, biofuel industry, renewable energy industry professionals all tout Hemp and its ability to produce valuable pollution free biomass energy options.

Biomass is a broad term that includes many forms of energy.  In the the case with the Hemp Plant grown on the site of the nuclear radiation and heavy metals, many studies have been done and listed the biodiesel as an end product to the seeds is a cost effective way to offset the investment costs of hemp production.

MOhemp Proposes-not only will the seeds be used for biodiesel as an end product- the additional biomass resource from the fibers, bast, and hurd of the hemp plant can also be combined into a sustainable biomass fuel source-that burns hotter and cleaner than traditional energy sources.

The Biomass of the Industrial Hemp plant grown on the toxic soil will finance the endeavor.

  •  $100,000 loan divided by $80/ton (market determined) equals=  1,250 Tons.
  • 1250 Tons divided by 5 years = 250 Tons per year.
  • 250 Tons divided by 9 tons per acre= 27.77 acres. 
Lets don't forget to factor in the Renewable Energy Tax Credits, Renewable Fuel Tax Credits, Government Backed RFS low interest loan options for Lenders, Alternative Farming Loan Guaranty, Department of Agriculture 9003 renewable fuel grants, Department of Energy Small.....





Friday, July 3, 2015

Mobile Biodiesel Production Page 36



Biodiesel Processor (450 Gallons Per Day) $10,952.80
MOhemp Mobile Hemp Processing System


Biomass Pellet Machine Example Page 31


Biomass Pellet Machine turns the Hemp Stalk into fiber pellets-replacement for coal and wood.

Power: 30HP Diesel, 2 Cylinder Self Contained / Radiator with Fan / Electric Start
Weight: 1,350 lbs.
Production Capacity: Up to 1,000 Lbs. Per Hour
Dimensions: 72"long X 30" wide X 59" high with the muffler and 38" high without the muffler
Fuel Usage: Approximately 1 US gallon Per Hour
Material Use: All Biomass Products
Price: $10,500.00

Hemp Biomass Pellet Machine 



Wednesday, July 1, 2015

Hemp Plant Biomass Energy Value Page 19



Biofuel Energy, January 2012-There’s a New Biofuel Crop in Town Work by Agricultural Research Service scientists in Florence, South Carolina, suggests that farmers in the Southeast could use the tropical legume sunn hemp (Crotalaria juncea) in their crop rotations by harvesting the fast-growing annual for biofuel. In 2004, when there was ample rainfall, the resulting sunn hemp biomass yield exceeded 4.5 tons per acre. This is equivalent to 82.4 gigajoules of energy per acre—close to the energy contained in 620 gallons of gasoline and well in the ballpark of other bioenergy crops, which have yields of anywhere from 30 to 150 gigajoules per acre. The higher heating value of sunn hemp biomass exceeded that of switchgrass, Bermudagrass, reed canarygrass, and alfalfa. And although reduced rainfall resulted in lower hemp biomass yields in 2006, sunn hemp’s higher heating value for both study years was 4 to 5 percent greater than that of cowpea.



Monday, June 29, 2015

IndustrialHemp Methane Energy Yield Harvest Times

Article

Anaerobic digestion of industrial hemp–Effect of harvest time on methane energy yield per hectare

Biomass and Bioenergy (Impact Factor: 3.41). 02/2011; 35(2):893-900. DOI: 10.1016/j.biombioe.2010.11.005

ABSTRACT There is a worldwide emphasis to increase the share of renewable transportation fuels. When using agricultural land for production of renewable transportation fuels, the energy output per hectare for different crops and transportation fuels is a crucial factor. In this study, the gross methane energy yield per hectare from anaerobic digestion of industrial hemp (Cannabis sativa L.), was determined at four different harvest times between July and October in Southern Sweden, a cold climate region. The biomass yield was determined for three years and the methane yield was determined for two years through the biochemical methane potential test.

  • The highest biomass yield, 16 tonnes dry matter per hectare on an average, and the highest methane energy yield per hectare was achieved when the hemp was harvested in September or October, with an average gross methane energy yield of 136 ± 24 GJ per hectare. 
  • There was no significant difference in the specific methane yield between the harvest times; the average being 234 ± 35 m3 per tonne volatile solids. 
  • Biogas from hemp turned out to be a high yielding alternative to the currently dominating renewable transportation fuels produced from crops grown in Sweden: ethanol from wheat and biodiesel from rapeseed.

Anaerobic digestion of industrial hemp–Effect of harvest time on methane energy yield per hectare (PDF Download Available). Available from: http://www.researchgate.net/publication/251628713_Anaerobic_digestion_of_industrial_hempEffect_of_harvest_time_on_methane_energy_yield_per_hectare [accessed Jun 29, 2015].

Missouri Corn and Bean Acres Converted to Hemp Page 10


Bean Acres + Corn Acres equals 9,150,000 total acres

A. 10% converted to hemp= 915,000 acres
B. 20% converted to hemp= 1,830,000 acres
 C. 30% converted to hemp= 2,745,000 acres



 
A: 915,000 acres
B. 1,830,000 acres
C. 2,745,000 acres
Fiber in Tons
4,575,000
9,150,000
13,725,000
Hemp Oil Raw Gals
33,855,000
67,710,000
101,565,000
Hemp seed cake Lbs
654,225,000
1,308,450,000
1,962,675,000
 
Gallons Biodiesel @80% recovery
$ 2.00 / gal
$3.00 / gal
$4.00 / gal
A: 27,084,000
$ 54,168,000
$  81,252,000
$ 108,336,000
B: 54,168,000
$ 108,336,000
$ 162,504,000
$ 270,840,000
C: 81,252,000
$ 162,504,000
$ 243,756,000
$ 325,008,000

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