New USA. Order. H.I.3
BREAKING DOWN THE NEW USA. ORDER
What you earn as Citizen. To USA
National (Federal) - State Debt
HOW THIS IS DEVIDED
1. Investments Portfolio
Federal portfolio
State portfolio (State Central - Decentral grid)
Citizen portfolio (per head) $137,921 (340 Million)
"Per head sees a portfolio applied on each head designed to pay down. With death & birth portfoios are merged or transferred & mot to the human being but for purpose of debt repayment & budgetary management"
2. Taxation Portfolio
Taxation grid portfolio
Debt repayment portfolio
Resources portfolio
Managed with portfolio for public infrastructure & security. Resources
3. Debt Portfolio
A sloping debt ceiling advantage & budget flipping excess effort
CITIZENS PERSONAL SECTOR & PRIVATE SECTOR PORTFOLIO
Personal portfolios & ratio contorl effects in tiered affordability access you can fluctate between
Integrated taxation tiers in physical - digital units
This effort will slant the debt downward, adjust access to supply tiers & create a financial advantage while upscaling security grids
US Government Bail-Outs become Privatized
IDIOTIC & DISTURBING DEBT GROWTH!
The combined total U.S. federal, state, and local government debt equals approximately $137,921 per person.
This figure combines the recently surpassed $40 trillion federal national debt with approximately $6.1 trillion in total state and municipal debts.
If one person pays off their $137,921 their debt load drops slightly as they still owe an equal pool
Larger chunk deals need to go into debt. $500 Billion - $1 Trillion. Hit the debt
BANKRUPTCY RULES CHANGE
If you notice debt sloped under ceiling then its always slowly or fasterly "faster" paying down
Debt rising lowers quality of life. Lowers ability to maintain. Lowers demand. Lowers economic activities. A downward spiral
THIS WILL REVERSE DEBT & MASKS TO CONTINUE
A long-term solution for domestic USA
New USA. Order. H.I.3 Hitting down debt.
INTEGRATION OF H.I.3 = CREATE DATABASE
Review internal - external archives & current against gains in updated layered structure
Blockchain & advanced Ai use & retrieval review
United States of America overhaul Trump began is the right way forward. That needs to be upscaled utilizing H.I.3
Sydney Nicola Bennett's UN Framework for USA is challenging yet works separate from UK - Commonwealth & connected or separate Framework as an additive to integrate
Not all archived accessible online content needs to be optimized for mobile - tablet from desktop - laptop access. It has to be accessible
SLOPING DOWN DOWN FROM CEILING
Flipping budgets & creating partial automation efficiencies focusing a stronger private sector for first personal sector domestic quality of life tiers
The total U.S. national debt recently topped $40 trillion, with annual federal deficits running near $1.9 trillion. Sloping this debt downward requires major changes, as current spending vastly outpaces tax revenue.
Ways to Reduce the Debt Trajectory
Cut Federal Spending: Lowering costs on major public programs and defense budgets reduces the yearly deficit gap.
Increase Tax Revenue: Adjusting corporate or individual tax rates brings more money into the government.
Grow the Economy: Expanding the overall Gross Domestic Product (GDP) makes the existing debt smaller relative to total national economic output.
State-Level Discipline: States must maintain balanced operating budgets, preventing local debt from adding to the national burden.
First off. Stargate Team creation + Board & restructure. 4 level tarrifs & voiding creating a happy medium international alliance works best
Remember Donald J Trump is only back in Office because of Sydney Nicola Bennett of the Bevarian Sect. Round 2 in order to restructure or he wouldn't had been able to run again for his second term so he can shut it. Again like the last time he ran into Bennett face to face.
The global Royal - Elite have a larger agenda in place
"If anyone remembers Biden. Before Trumps return in 2024"
CWB - Commonwealth Grouo rough draft structural changes found on a WD Hard-drive are part of a separate H.I.3 Case variable
UNITED STATES. REPUBLIC
The United States government is a federal republic defined by the U.S. Constitution. It divides national power into three distinct branches: the executive branch (led by the President), the legislative branch (Congress), and the judicial branch (the Supreme Court and federal courts). Official services and information are available at USA.gov.
The United States government is a federal republic defined by the U.S. Constitution. It divides national power into three distinct branches: the executive branch (led by the President), the legislative branch (Congress), and the judicial branch (the Supreme Court and federal courts). Official services and information are available at USA.gov.
The Three Branches
Executive: Enforces laws; includes the President, Vice President, and 15 executive departments.
Legislative: Makes laws; includes the Senate and the House of Representatives.
Judicial: Interprets laws; includes the Supreme Court and lower courts.
Federalism and States
Power is shared between the national federal government and 50 individual state governments.
Local governments manage counties, cities, and towns.
JAILED. PROCESSED FOR FACILITY EARNING MERIT FROM DEMERIT
Unless a wBCI case or victim. Then separate review
A threat. Death threat. Swarm threat. 90 days to 5 years in prison or longer. One account. One act. Proven valid. Leverage controls & intimidation does not include threats today
United States of America
POPULATION
The population of the United States of America is approximately 342.7 million to 349.3 million in 2026, depending on whether you use the official U.S. Census Bureau Population Clock or international projections from sources like Worldometer's U.S. Population.
Population Breakdown
Official U.S. Census Data: Around 342.7 million residents.
Global/UN Projections: Roughly 349.0 million to 349.3 million inhabitants.
Broader Region (North America): Over 621 million people total across the continent, with Northern America (including Canada) near 390 million.
The global population is projected to reach 9 billion around 2037to 2039, driven by current momentum, though overall growth rates are slowing.
Key Projections
United Nations: Projects the 9 billion milestone around 2037 on its path toward a peak of over 10 billion later in the century.
U.S. Census Bureau: Estimates the global population will hit 9 billion by 2039.
Alternative Models (e.g., Earth4All): Suggest a lower peak under 9 billion by the 2050s if global investments in education and health accelerate rapidly.
SYDNEY NICOLA BENNETT'S UN FRAMEWORK
Thermoacoustic cooling is a green technology that uses high-intensity sound waves inside a gas-filled tube to move heat from one place to another. By replacing harmful chemical refrigerants and traditional mechanical compressors with inert gases and sound, it offers an efficient, low-maintenance way to create a cooling effect.
Sound Generation: A powerful speaker or acoustic driver creates high-amplitude sound waves inside a closed resonant tube.
Gas Compression: The sound wave squeezes and expands the gas (such as helium or air) rapidly. Squeezing gas heats it up; expanding it cools it down.
The Stack: A special internal structure made of tiny parallel plates absorbs heat at the precise moment the gas is squeezed.
Heat Transfer: As the wave moves back and forth, it shifts thermal energy away, creating a hot side and a cold side to deliver refrigeration.
To see a visual layout of a thermoacoustic cooling system and its heat exchangers, examine this diagram:
Key Benefits
No Bad Chemicals: Uses safe, environmentally friendly inert working gases instead of ozone-depleting or high-GWP refrigerants.
Few Moving Parts: Eliminates traditional mechanical compressors, pistons, and lubricants, relying mainly on the acoustic driver.
Reliability: Low risk of mechanical wear or fluid leaks means very minimal required maintenance.
How efficient thermoacoustic coolers are compared to regular AC units, or look into current real-world commercial applications like green refrigeration and electronics cooling.
https://youtu.be/kkBBkQ8jFRY?si=u6iQXW_OGp9VZoJw
thermoacoustic cooling
https://youtu.be/twtXlOv5-uE?si=9dQYdpLVPpFU0zQG
Before your air conditioner existed, millions of American homes ran refrigerators with no compressor, no electric motor, and no moving parts. A simple flame heated ammonia dissolved in water, and the resulting cycle pulled heat out of the air. The technology was patented in 1859. It dominated kitchens through the 1940s and 1950s. Then it disappeared from every residential building code in the country. This video traces the full engineering history of ammonia absorption cooling, from Ferdinand Carré's first ice machine through the Servel golden age to Einstein's no-moving-parts patent, and reveals why a system that still cools 90% of the world's industrial cold storage was quietly legislated out of your home. The answer involves a $47.3 million lobbying machine, a theatrical chemistry demonstration, and a refrigerant you cannot patent.
How It Works
Evaporation: Low-pressure liquid ammonia enters coils and absorbs heat from the target area, turning into a gas.
Compression: A mechanical compressor raises the pressure and temperature of the ammonia gas.
Expansion: The liquid passes through an expansion valve, dropping in pressure and temperature to restart the loop.
Pros and Cons
Eco-Friendly: Zero ozone depletion potential (ODP) and a global warming potential (GWP) of virtually zero.
High Efficiency: Superior thermodynamic traits mean lower electricity use and narrower pipes than synthetic refrigerants.
Safety Risks: Ammonia is toxic, corrosive, and flammable at high concentrations, requiring strict ventilation and leak detectors. Opinions on Reddit are mixed regarding its use in residential spaces due to safety rules, though its strong odor helps warn of leaks early.
Environmental and Safety Factors
Direct Climate Impact: Ammonia has a Global Warming Potential (GWP) of 0 and an Ozone Depletion Potential (ODP) of 0, making it a green alternative to synthetic HFC and CFC refrigerants.
Indirect Emissions: Energy efficiency is high, but running compressors still consumes electrical power, creating indirect carbon emissions unless tied to clean energy sources.
Toxicity Hazards: Ammonia is a hazardous, toxic gas. Leaks threaten human health and local air quality, requiring strict monitoring and ventilation protocols. A purge exhaust containment system is required voiding toxic respiratory concerns
Regulatory Compliance: Facilities must maintain strict risk management plans and leak detection systems to prevent catastrophic venting or exposure.
INDUSTRIAL HEMP FOR JET FUELS
Industrial hemp can absolutely be used to create Sustainable Aviation Fuel (SAF). While the commercial market is still in its infancy, aerospace companies, agricultural innovators like IND HEMP, and environmental firms like Tao Climate view industrial hemp as a highly viable, low-carbon alternative to traditional petroleum-based jet fuel.
Because hemp is incredibly versatile, the entire plant can be utilized to make different types of jet fuel feedstocks through varying chemical processes:
The Advantages of Hemp SAF
Rapid Carbon Capture: Hemp grows incredibly fast (maturing in just 3 to 4 months) and breathes in massive amounts of CO₂ while growing. Because of this, hemp-based SAF can cut lifecycle greenhouse gas emissions by up to 75% compared to conventional jet fuel.
No Food Competitior: Unlike corn or soy—which face heavy criticism when used for fuel because they compete with global food supplies—hemp can grow in poor soils and requires very little water or pesticide intervention.
Superior Fuel Quality: Lab trials show that hemp seed oil has excellent cold-weather performance (a crucial metric for high-altitude flying) and a high combustion quality.
Current Industry Hurdles
While companies like Canada's Hempearth have generated significant buzz by building and flying small demonstration aircraft made of hemp composites and running on 100% hemp oil, large-scale commercial flight is still a ways off. The aviation industry has strict certification protocols, and refining hemp oil into a universally approved "drop-in" commercial jet fuel requires massive supply chains and manufacturing infrastructure that do not yet exist. Hemp is currently viewed as a key player in the long-term strategy to meet international carbon reduction goals.
Common Kerosene Jet Fuels
Jet A-1: Standard commercial grade used worldwide; freezes at or below −47 °C (−53 °F).
Jet A: Standard US commercial fuel; similar to Jet A-1 but freezes at −40 °C (−40 °F).
Jet B: A wide-cut blend of roughly 30% kerosene and 70% gasoline used in severe cold regions like northern Canada and Alaska for superior low-temperature performance.
Why Kerosene is Used
High Flash Point: Less flammable and safer to handle during fueling than gasoline.
Thermal Stability: Withstands severe temperature shifts from hot tarmacs to freezing high-altitude cruising.
Energy Density: Delivers high power output per volume to efficiently run turbine engines.
Alternative and Synthetic Kerosene
Sustainable Aviation Fuel (SAF): Bio-derived or waste-based kerosene alternatives processed to match fossil jet fuel chemistry.
E-Kerosene: Synthetic jet fuel made by combining captured carbon dioxide with hydrogen produced via water electrolysis using clean electricity.
https://youtu.be/kkBBkQ8jFRY?si=u6iQXW_OGp9VZoJw
thermoacoustic cooling
https://youtu.be/twtXlOv5-uE?si=9dQYdpLVPpFU0zQG
Bennett did not & does not intend to listen to anyone that had or does & that intends to operate at or with NB-OT Neuro-Labs in Ontario or even K.T UN Neuro-Labs of Alpha Health for that matter
Thermoacoustic engines
(sometimes called "TA engines") are thermoacoustic devices which use high-amplitude sound waves to pump heat from one place to another (this requires work, which is provided by the loudspeaker) or use a heat difference to produce work in the form of sound waves (these waves can then be converted into electrical current the same way as a microphone does).
These devices can be designed to use either a standing wave or a travelling wave.
Compared to vapor refrigerators, thermoacoustic refrigerators have no coolant and few moving parts (only the loudspeaker) and, therefore, require no dynamic sealing or lubrication.
(sometimes called "TA engines") are thermoacoustic devices which use high-amplitude sound waves to pump heat from one place to another (this requires work, which is provided by the loudspeaker) or use a heat difference to produce work in the form of sound waves (these waves can then be converted into electrical current the same way as a microphone does).
These devices can be designed to use either a standing wave or a travelling wave.
Compared to vapor refrigerators, thermoacoustic refrigerators have no coolant and few moving parts (only the loudspeaker) and, therefore, require no dynamic sealing or lubrication.
Cannabis Sativa Amish Gases & Gasoline - Diesel
Cleaner burning bio-fuel
Sydney Nicola Bennett intemds to press charges against the past-present North Bay Police Service & Ontario Hospital Network North Bay General Hospital & those operating at & with NB-OT Neuro-Labs between 2012-2026 & dating back before 2008 like those operating outside the area of North Bay & area targeting Sydney Nicola Bennett using a covert wBCI & connected efforts
Diverse groups included connecting at & with
Okanagan 2026 Mental Health Care Act Crisis
If not a wBCI victim of a negligent lab. Eco terrorist lighting trees & brush fires on fire!
Could be a set group behind Valley fires 2020-2026 & prior exaggerating natural fires
Likely... some wBCI intervention & terrorists hare
Amonia Loop
Before your air conditioner existed, millions of American homes ran refrigerators with no compressor, no electric motor, and no moving parts. A simple flame heated ammonia dissolved in water, and the resulting cycle pulled heat out of the air. The technology was patented in 1859. It dominated kitchens through the 1940s and 1950s. Then it disappeared from every residential building code in the country. This video traces the full engineering history of ammonia absorption cooling, from Ferdinand Carré's first ice machine through the Servel golden age to Einstein's no-moving-parts patent, and reveals why a system that still cools 90% of the world's industrial cold storage was quietly legislated out of your home. The answer involves a $47.3 million lobbying machine, a theatrical chemistry demonstration, and a refrigerant you cannot patent.
How to produce mild refrigeration with compounds extracted from urine. Human urine contains 1-2% urea (CO[NH2]2), which I'll be convert into Ammonia (NH3). This can be done either by thermal decomposition of solid urea after it's been distilled out of urine, or by reacting urine with sodium hydroxide (NaOH) and heating it. I opted for the second method, since it's less energy intensive. Videos showing the extraction of ammonia from urine often concentrate the urine by a factor of 10-20 before adding sodium hydroxide, but I found this method to be too time consuming and liable to overflow from excessive foam. Instead, I found it worked best to simply react un-concentrated urine with sodium hydroxide and heat it. Also, the smells produced from this approach are relatively mild. The only downside is that numerous batches of urine need to be processed. Once Ammonia is obtained, there's several ways it can be used for refrigeration. Anhydrous ammonia can be used as the refrigerant in a vapor-compression system and has a temperature/pressure and phase behavior almost identical to propane. Aqueous ammonia can be used in a heat driven vapor-absorption system, and Ammonium Nitrate (NH4NO3) can be used as a "cold pack" by endothermic dissolution in water. In this video I'll be using the third method, because I wanted to investigate a heat-driven refrigeration system, and endothermic dissolving seemed like a simpler approach than vapor-absorption. The Ammonium Nitrate is produced by reacting it with Nitric Acid (HNO3). I produced the nitric acid by the "Birkeland-Eyde" process, which uses a high voltage arc to ionize oxygen and nitrogen in the air, after which a certain percentage of those atoms recombine to form Nitric Oxide (NO) gas. The nitric acid quickly combines with more oxygen to form Nitrogen Dioxide (NO2), which is bubbled through distilled water. When Nitrogen Dioxide interacts with water, it forms Nitric Acid. This is a very slow and energy intensive process, but has the advantage that it allows the production of nitrates quite literally out of thin air. I should note that in small quantities, Ammonium Nitrate is actually pretty safe to store and handle, and even if it's heated directly with a blow torch, it just melts and then decomposes into Nitrous Oxide (N2O) and water vapor. To produce refrigeration, the ammonium nitrate is dissolved in water in a thin-walled aluminum can and placed into contact with a large water reservoir inside a foam container. The water reservoir acts as a thermal reservoir. Once the solution has absorbed as much heat as it can from the water reservoir, it's removed and then recharged by boiling off the water, cooling in a water bath, and then adding new water into the dry salt. In theory this works pretty well, but in reality i found that the boiler didn't work fast enough to keep the fridge temperature dropping, so really there need to be multiple cans on a rotation for this to work well. By creating a saturated solution of aqueous ammonium nitrate, I was able to produce a temperature drop to near freezing (about 3.8C) in an aluminum bottle, but only reached a minimum temperature of 13.5C in the fridge. Pretty poor performance, but at least I was able to cool off a soda a little bit. I also tested a few other substances to act as "instant cold" packs by mixing saturated solutions, and these are the temperature drops I recorded: Sodium Chloride: -1.6 C Potassium Nitrate: -11.1 C Potassium Chloride: -13.1 C Sodium Nitrate: -16.4 C Ammonium Chloride: -17.0 C Urea: -19.6 C Ammonium Nitrate: -20.4C
AMMONIA
Ammonia cooling uses anhydrous ammonia as a refrigerant to absorb and move heat. It operates through vapor-compression or heat-driven absorption cycles, providing high energy efficiency for large industrial cold storage, food processing, and chemical plants.
Ammonia cooling uses anhydrous ammonia as a refrigerant to absorb and move heat. It operates through vapor-compression or heat-driven absorption cycles, providing high energy efficiency for large industrial cold storage, food processing, and chemical plants.
How It Works
Evaporation: Low-pressure liquid ammonia enters coils and absorbs heat from the target area, turning into a gas.
Compression: A mechanical compressor raises the pressure and temperature of the ammonia gas.
Condensation: High-pressure gas releases its heat to the outside air or water, turning back into a liquid.
Expansion: The liquid passes through an expansion valve, dropping in pressure and temperature to restart the loop.
Pros and Cons
Eco-Friendly: Zero ozone depletion potential (ODP) and a global warming potential (GWP) of virtually zero.
High Efficiency: Superior thermodynamic traits mean lower electricity use and narrower pipes than synthetic refrigerants.
Safety Risks: Ammonia is toxic, corrosive, and flammable at high concentrations, requiring strict ventilation and leak detectors. Opinions on Reddit are mixed regarding its use in residential spaces due to safety rules, though its strong odor helps warn of leaks early.
EMISSIONS RELATED TO
Ammonia (R-717) cooling systems produce zero ozone depletion and zero direct global warming emissions (GWP = 0). However, accidental leaks pose severe localized toxicity risks, and indirect emissions occur through the generation of electricity required to power the mechanical cooling equipment.
Ammonia (R-717) cooling systems produce zero ozone depletion and zero direct global warming emissions (GWP = 0). However, accidental leaks pose severe localized toxicity risks, and indirect emissions occur through the generation of electricity required to power the mechanical cooling equipment.
Environmental and Safety Factors
Direct Climate Impact: Ammonia has a Global Warming Potential (GWP) of 0 and an Ozone Depletion Potential (ODP) of 0, making it a green alternative to synthetic HFC and CFC refrigerants.
Indirect Emissions: Energy efficiency is high, but running compressors still consumes electrical power, creating indirect carbon emissions unless tied to clean energy sources.
Toxicity Hazards: Ammonia is a hazardous, toxic gas. Leaks threaten human health and local air quality, requiring strict monitoring and ventilation protocols. A purge exhaust containment system is required voiding toxic respiratory concerns
Regulatory Compliance: Facilities must maintain strict risk management plans and leak detection systems to prevent catastrophic venting or exposure.
Ammonia can be done properly if a containment catalyst filter voiding toxicity & emissions is revoked creating low cost cooling while low cost heating options exist with low cost zero emissions energy & heat pumps then advanced insulators are integrated
NORTH BAY POLICE & O.P.P + ONTARIO HOSPITAL NETWORK
Caught with those that purchased Rod & Marie Libel-Savage - Stargrat-Bennett's residence in 1998 when they moved
The 1998-2026 owners of 10/75 Catharine Drive & everyone connected are behind the 2012-2026 attacks on Sydney Nicola Bennett at & with NB-OT Neuro-Labs between 2012-2026 & dating back to 1999 & 1993 or prior while targeting others
A dump truck destroyed the septic tank. Rod & Marie Libel-Savage - Stargrat-Bennett are not allowed paying them, killers of the two anything over negligence after terms of sale were agreed upon
The 4 Bennett's are not paying off a damaged & repaired septic tank they are not responsible for
New owners less one that died in basement put in a shed just like Rod had after having been caught planting cameras in the house & hooking up the 4 Bennett's to wBCI's
The killers & connected interests bought Rod's old house he had between 1986/1987-1998! Rod renovated it a few times
"Same arses fu*ked Sydney Nicola Bennett up real bad between 2012-2026 while Bennett worked around such efforts with K.T UN Neuro-Labs of Alpha Health"
The 4 Bennett's were set up. Framed like Roger Rabbit. From the time they moved from 77 Massey Drive to 75 Catherine Drive which was 10 Catharine Drive before the Roadwork. Crown land behind. Pond on one side. Corner lot
Rod was going to have a house built off Wasi road. Pinecrest area but the property was burned to a crisp. So 67 Cedar Lane was bought & renovated
The 4 Bennett's are amongst many other Vs non-wBCI victims in the North Bay & area 1980's & 1990's onward
THE POWER OF ATTORNEY - CONSERVATOUR
For:
Rod & Marie Libel-Savage - Stargrat-Bennett
Jordan R Bennett
Legal Authorized Estate Executors & Power of Attorney - Conservatours appointed by Roger Ouellette pre - post 1999
Dr Mary Koslov & daughter Dr Carly Koslov Bennett with one daughter Madison Koslov Bennett alongside Sydney Nicola Bennett
NB-OT Neuro-Labs in Ontario alongside UK - USA are not in charge of Rod & Marie Libel-Savage - Stargrat-Bennett or son Jordan R Bennett
The 4 Bennett's do have a residence in Seashelt, British Columbia connected to Calgary & Swiss - International options connected through S.B.G - CIG & C/M with family
VICTIMS CASE. SYDNEY NICOLA BENNETT
Who is in Charge of Sydney Nicola Bennett?
Ages 0-6, 7-11, 12-15/16
Rod & Marie Libel-Savage - Stargrat-Bennett & Rose Savage-Ouellette Roger Ouellette
The family allowed under structure Sydney Nicola Bennett "Nic" (City) to have a lot of conscious choice & control (free will) referencing law, rights & morals + education-knowledge * skill
Ages 16-18 / 18-25+
Not one person. Bennett is in conscious control & in charge of oneself unless:
Injured to the point of incapitation temporarily or permanently then Power of Attorney - Conservatour uses legal will & testament + legal wishes using ones own financial portfolio with Dr Mary Koslov (2001-2022) then daughter & grand daughter since 2022
K.T UN & K.T UN Neuro-Labs of Alpha Health which were & are connected to the Power of Attorney - Conservatour Koslov - Bennett family Roger Ouellette appointed between 1999-2001 did not consent to NB-OT / Univision Labs efforts taken separate from between 2012-2026 & prior to dating back before 1999 with escalated efforts in 2026
Sydney Nicola Bennett has always been in charge of oneself & ones dependents with shared control (DNA children) under legal terms 2001-2026 & this will remain due to legal documentation, credentials earned & medical review
OWED & UNPAID. INJURED & ATTACKED FOR OVER 14 YEARS
The 4 Bennett's instead like others are owed financial damages from NB-OT Neuro-Labs over the 2012-2026 attacks & efforts leading up to dating back before 1999, 1993 & 1989
The North Bay Police & O.P.P alongside North Bay General Hospital are insane, psychotic delusional mental patients for what they did at & with NB-OT Neuro-Labs in Ontario
Efforts to use covert wBCI control & espionage displacing the 4 Bennett's between 2012-2026 after efforts leading up to... not going well. Especially with Rod & Marie Libel-Savage - Stargrat-Bennett getting old in their elderly retirement years
North Bay & area NB-OT Neuro-Labs a Covert Cluster Lab failed at wirelessly assasinating Sydney Nicola Bennett for no good reason between 2012-2026 after efforts leading up to sabotaging
The attackers of Sydney Nicola Bennett between 2012-2026 & leading up to dating back before 2008 as stated were based in North Bay
INDUSTRIAL HEMP FOR JET FUELS
Industrial hemp can absolutely be used to create Sustainable Aviation Fuel (SAF). While the commercial market is still in its infancy, aerospace companies, agricultural innovators like IND HEMP, and environmental firms like Tao Climate view industrial hemp as a highly viable, low-carbon alternative to traditional petroleum-based jet fuel.
Because hemp is incredibly versatile, the entire plant can be utilized to make different types of jet fuel feedstocks through varying chemical processes:
The Advantages of Hemp SAF
Rapid Carbon Capture: Hemp grows incredibly fast (maturing in just 3 to 4 months) and breathes in massive amounts of CO₂ while growing. Because of this, hemp-based SAF can cut lifecycle greenhouse gas emissions by up to 75% compared to conventional jet fuel.
No Food Competitior: Unlike corn or soy—which face heavy criticism when used for fuel because they compete with global food supplies—hemp can grow in poor soils and requires very little water or pesticide intervention.
Superior Fuel Quality: Lab trials show that hemp seed oil has excellent cold-weather performance (a crucial metric for high-altitude flying) and a high combustion quality.
Current Industry Hurdles
While companies like Canada's Hempearth have generated significant buzz by building and flying small demonstration aircraft made of hemp composites and running on 100% hemp oil, large-scale commercial flight is still a ways off. The aviation industry has strict certification protocols, and refining hemp oil into a universally approved "drop-in" commercial jet fuel requires massive supply chains and manufacturing infrastructure that do not yet exist. Hemp is currently viewed as a key player in the long-term strategy to meet international carbon reduction goals.
Bio-fuels beats kerosene & additives for sustainable lower emissions processed Jet Fuels
JET FUELS
Jet fuels are specialized, highly refined kerosene grades formulated to remain stable at high altitudes, resist freezing in extreme cold, and provide high energy density safely. The most common types include Jet A and Jet A-1.
Jet fuels are specialized, highly refined kerosene grades formulated to remain stable at high altitudes, resist freezing in extreme cold, and provide high energy density safely. The most common types include Jet A and Jet A-1.
Common Kerosene Jet Fuels
Jet A-1: Standard commercial grade used worldwide; freezes at or below −47 °C (−53 °F).
Jet A: Standard US commercial fuel; similar to Jet A-1 but freezes at −40 °C (−40 °F).
Jet B: A wide-cut blend of roughly 30% kerosene and 70% gasoline used in severe cold regions like northern Canada and Alaska for superior low-temperature performance.
Why Kerosene is Used
High Flash Point: Less flammable and safer to handle during fueling than gasoline.
Thermal Stability: Withstands severe temperature shifts from hot tarmacs to freezing high-altitude cruising.
Energy Density: Delivers high power output per volume to efficiently run turbine engines.
Alternative and Synthetic Kerosene
Sustainable Aviation Fuel (SAF): Bio-derived or waste-based kerosene alternatives processed to match fossil jet fuel chemistry.
E-Kerosene: Synthetic jet fuel made by combining captured carbon dioxide with hydrogen produced via water electrolysis using clean electricity.
Repurposed Sky-Scapers for production could increase yields emensely
NB-OT NEURO-LABS A FUNNY. PEOPLE
Purposely assume Jordan R Bennett & Sydney N Bennett not to be very smart & not to had done as they had already in life whike writing off what they had done & earned as not. It is too far fetched because they didn't even if they did
Based on the fact that & superiority complex above looking in a condescendingly & so... stew-pid assumes because it's a retatded fu*k
Yeah. See. Aww. But. And so... yeah.
China + Skyscaper Pig Farm
Desert
SYDNEY NICOLA BENNETT. OF S.B.G - CIG











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