The Country
  • The Country home
  • Latest news
  • Audio & podcasts
  • Opinion
  • Dairy farming
  • Sheep & beef farming
  • Rural business
  • Rural technology
  • Rural life
  • Listen on iHeart radio

Subscriptions

  • Herald Premium
  • Viva Premium
  • The Listener
  • BusinessDesk

Sections

  • Latest news
  • Coast & Country News
  • Opinion
  • Dairy farming
  • Sheep & beef farming
  • Horticulture
  • Animal health
  • Rural business
  • Rural technology
  • Rural life

Media

  • Podcasts
  • Video

Weather

  • Kaitaia
  • Whāngarei
  • Dargaville
  • Auckland
  • Thames
  • Tauranga
  • Hamilton
  • Whakatāne
  • Rotorua
  • Tokoroa
  • Te Kuiti
  • Taumurunui
  • Taupō
  • Gisborne
  • New Plymouth
  • Napier
  • Hastings
  • Dannevirke
  • Whanganui
  • Palmerston North
  • Levin
  • Paraparaumu
  • Masterton
  • Wellington
  • Motueka
  • Nelson
  • Blenheim
  • Westport
  • Reefton
  • Kaikōura
  • Greymouth
  • Hokitika
  • Christchurch
  • Ashburton
  • Timaru
  • Wānaka
  • Oamaru
  • Queenstown
  • Dunedin
  • Gore
  • Invercargill

NZME Network

  • Advertise with NZME
  • OneRoof
  • Driven Car Guide
  • BusinessDesk
  • Newstalk ZB
  • Sunlive
  • ZM
  • The Hits
  • Coast
  • Radio Hauraki
  • The Alternative Commentary Collective
  • Gold
  • Flava
  • iHeart Radio
  • Hokonui
  • Radio Wanaka
  • iHeartCountry New Zealand
  • Restaurant Hub
  • NZME Events

SubscribeSign In
Advertisement
Advertise with NZME.
Home / The Country

From rocket to rocket fuel: Plant waste could power planes

The Country
24 Mar, 2019 11:15 PM3 mins to read

Subscribe to listen

Access to Herald Premium articles require a Premium subscription. Subscribe now to listen.
Already a subscriber?  Sign in here

Listening to articles is free for open-access content—explore other articles or learn more about text-to-speech.
‌
Save

    Share this article

New research may help reduce CO2 emissions from airplanes and rockets. Photo / File

New research may help reduce CO2 emissions from airplanes and rockets. Photo / File

Scientists in China have developed a process for converting plant waste from agriculture and timber harvesting into high-density aviation fuel.

Their research, published March 21 in the journal Joule, may help reduce CO2 emissions from airplanes and rockets.

Cellulose, the main component in the biofuel, is a cheap, renewable, and highly abundant polymer that forms the cell walls of plants.

While chain alkanes (such as branched octane, dodecane, and hexadecane) have previously been derived from cellulose for use in jet fuel, the researchers believe this is the first study to produce more complex polycycloalkane compounds that can be used as high-density aviation fuel.

Ning Li, a research scientist at the Dalian Institute of Chemical Physics and an author of the study, believes this new biofuel could be instrumental in helping aviation "go green."

Advertisement
Advertise with NZME.
Advertisement
Advertise with NZME.

"Our biofuel is important for mitigating CO2 emissions because it is derived from biomass and it has higher density (or volumetric heat values) compared with conventional aviation fuels," says Li.

"As we know, the utilisation of high-density aviation fuel can significantly increase the range and payload of aircraft without changing the volume of oil in the tank."

To produce this biofuel, Li and his team found that cellulose can be selectively converted to 2,5-hexanedione using the chemical reaction hydrogenolysis.

Advertisement
Advertise with NZME.

They then developed a method of separating the compound 2,5-hexanedione by converting the 5-methylfurfural in hydrogenolysis product to 2,5-hexanedione, while keeping 2,5-hexanedione in the product unchanged.

This resulted in a 71 per cent isolated carbon yield - a 5 per cent increase from the product yield in their initial work.

Photo / File
Photo / File

Finally, they reacted hydrogen with the 2,5-hexanedione from wheatgrass cellulose to obtain the final product: a mixture of C12 and C18 polycycloalkanes with a low freezing point and a density about 10 per cent higher than that of conventional jet fuels.

Much of the biofuel's magic lies in this high density, it can be used as either a wholesale replacement fuel or as an additive to improve the efficiency of other jet fuels.

Discover more

Leafy greens key to maintaining muscles - Research

25 Mar 09:30 PM

Research centre to focus on robotics in agriculture

02 Apr 02:00 AM

Petting zoos harbour nasty bugs - research

13 Apr 10:30 PM

Moa poo secrets revealed

14 Apr 10:48 PM

"The aircraft using this fuel can fly farther and carry more than those using conventional jet fuel, which can decrease the flight number and decrease the CO2 emissions during the taking off (or launching) and landing," says Li.

Although the researchers produced the biofuel at a laboratory scale in this study, Li and his team believe the process' cheap, abundant cellulose feedstock, fewer production steps, and lower energy cost and consumption mean it will soon be ready for commercial use.

They also predict it will yield higher profits than conventional aviation fuel production because it requires lower costs to produce a higher-density fuel.

The biggest issue holding the process back is its use of dichloromethane to break down cellulose into 2,5-hexanedione; the compound is traditionally used as a solvent in paint removers and is considered an environmental and health hazard.

"In the future, we will go on to explore the environmentally friendly and renewable organic solvent that can replace the dichloromethane used in the hydrogenolysis of cellulose to 2,5-hexanedione," says Li.

"At the same time, we will study the application of 2,5-hexanedione in the synthesis of other fuels and value-added chemicals."

Advertisement
Advertise with NZME.

ABOUT THE RESEARCH

'Integrated Conversion of Cellulose to High-Density Aviation Fuel', by Yanting Liu, Guangyi Li, Yancheng Hu, Aiqin Wang, Fang Lu, Ji-Jun Zou, Yu Cong, Ning Li and Tao Zhang.

Save

    Share this article

Latest from The Country

The Country

One dead, three injured in Central Otago ATV accident

20 Jun 02:29 AM
The Country

Tonnes of promise: Angus Bull Week set to make millions

20 Jun 12:00 AM
Premium
The Country

50 years on the ice: How an Olympic gold medal kickstarted a couple's business

19 Jun 11:00 PM

Jono and Ben brew up a tea-fuelled adventure in Sri Lanka

sponsored
Advertisement
Advertise with NZME.

Latest from The Country

 One dead, three injured in Central Otago ATV accident

One dead, three injured in Central Otago ATV accident

20 Jun 02:29 AM

One adult died at the scene and three people suffered minor to moderate injuries.

Tonnes of promise: Angus Bull Week set to make millions

Tonnes of promise: Angus Bull Week set to make millions

20 Jun 12:00 AM
Premium
50 years on the ice: How an Olympic gold medal kickstarted a couple's business

50 years on the ice: How an Olympic gold medal kickstarted a couple's business

19 Jun 11:00 PM
Why a 'cute' pet is now included in a pest management plan

Why a 'cute' pet is now included in a pest management plan

19 Jun 10:00 PM
Help for those helping hardest-hit
sponsored

Help for those helping hardest-hit

NZ Herald
  • About NZ Herald
  • Meet the journalists
  • Newsletters
  • Classifieds
  • Help & support
  • Contact us
  • House rules
  • Privacy Policy
  • Terms of use
  • Competition terms & conditions
  • Our use of AI
Subscriber Services
  • NZ Herald e-editions
  • Daily puzzles & quizzes
  • Manage your digital subscription
  • Manage your print subscription
  • Subscribe to the NZ Herald newspaper
  • Subscribe to Herald Premium
  • Gift a subscription
  • Subscriber FAQs
  • Subscription terms & conditions
  • Promotions and subscriber benefits
NZME Network
  • The New Zealand Herald
  • The Northland Age
  • The Northern Advocate
  • Waikato Herald
  • Bay of Plenty Times
  • Rotorua Daily Post
  • Hawke's Bay Today
  • Whanganui Chronicle
  • Viva
  • NZ Listener
  • Newstalk ZB
  • BusinessDesk
  • OneRoof
  • Driven Car Guide
  • iHeart Radio
  • Restaurant Hub
NZME
  • About NZME
  • NZME careers
  • Advertise with NZME
  • Digital self-service advertising
  • Book your classified ad
  • Photo sales
  • NZME Events
  • © Copyright 2025 NZME Publishing Limited
TOP