#Biofuel

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Analysis: Biofuel (Chemical Energy) as an Alternative Source in RWBY’s Remnant

Overview in Canon (from RWBY Wiki and Lore) Dust remains the unchallenged energy cornerstone of Remnant, powering transport (airships, vehicles via Combustion/Gravity Dust), heating (Fire Dust), electricity (Lightning Dust), and more. Biofuels — derived from organic matter like crops, algae, or waste — are never referenced. Agriculture exists (farms in Vale/Mistral, Menagerie subsistence), but vast wilderness outside walled kingdoms is Grimm-dominated. Villages beyond protections (e.g., Oniyuri ruins, early settlements) are frequently destroyed, emphasizing the danger of rural expansion.

How Biofuel Could Work in Remnant

  • Mechanism: Grow energy crops (e.g., corn, sugarcane, switchgrass) or algae, then ferment/distill into ethanol/biodiesel, or gasify biomass for syngas. Plant Dust could accelerate growth; Fire Dust aid processing.
  • Potential: Medium efficiency for liquid fuels suited to transport/heating. ‘Carbon neutral’ in theory (CO₂ absorbed during growth offsets emissions). Could use marginal lands or waste (e.g., Grimm bone meal?).
  • Primary Uses: Transport (vehicle fuel), heating (biogas), electricity (generators).

glbrc.org

agriculture.com

Many Issues with Biofuel in Remnant Context

  • Technical/Deployment Challenges:
  • Requires enormous land for viable yields — competing with food production (Remnant’s limited safe farmland already strained).
  • Processing needs refineries/factories (vulnerable to raids). Low energy return on investment compared to Dust’s density.
  • Environmental and Societal Barriers:
  • Land use conflict: Growing biofuels diverts arable land from food, risking shortages in kingdoms.
  • 'Carbon neutral’ claim flawed — deforestation/monoculture for crops releases stored carbon; fertilizer runoff pollutes.
  • The Obvious Fatal Flaw: Grimm Infestation
  • Large-scale fields require vast rural areas outside kingdom walls — exactly where Grimm thrive, attracted by negative emotions (fear, isolation, labor stress).
  • Villages/settlements beyond protections are canonically doomed (constant attacks, as seen in World of Remnant and early volumes). Biofuel farms would become permanent Grimm magnets, drawing hordes and requiring constant Huntsmen escorts (unsustainable). Workers/farmers face annihilation; any despair spirals into larger breaches.

rwby.fandom.com

rwby.fandom.com


  • Grimm/Salem’s Group Sabotage Potential
  • Extremely high: Farms are soft, spread-out targets. Salem could direct Grimm swarms (Beowolves for fields, flying types for workers) or use Seers to amplify attacks. Her faction (Tyrian for terror, Watts for arson hacks) would prioritize destruction to cause famine/despair, weakening kingdoms. Likelihood very high — fits her goal of eroding humanity’s hope and expansion.

Summary Table Fit (Matching Your Format)

  • Source: Biofuel
  • Type: Chemical
  • Renewability: Renewable
  • Primary Use: Transport, heating, electricity generation
  • Efficiency: Medium
  • Energy Density: 'Carbon neutral’ - little or no effect on the environment. Although growing biofuels can take up land that could be used for farming.

Biofuel’s land hunger makes it disastrously incompatible with Remnant’s Grimm ecology — rural expansion invites destruction, rendering it worse than useless without total societal overhaul.

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amoliinternational
amoliinternational

What Are Export Policies for Biofuels?

India’s biofuel sector is growing quickly, and knowing the export rules is essential for companies planning to enter global markets. Bio Fuel Exporters must understand how India balances international trade with its own clean-energy goals. The government classifies most biofuels as ‘Restricted’, which means exporters need a DGFT license before shipping abroad. This system helps India safeguard domestic supplies, especially with major targets like 20% ethanol blending by 2025–26. At the same time, it encourages industries to produce advanced fuels such as 2G ethanol that do not compete with food resources.

A major advantage exists for SEZ and EOU units. Biofuels produced in these export-focused factories using imported raw materials can usually be exported without separate DGFT approval. This creates a smooth “green lane” for international shipments and motivates companies to build dedicated export facilities.

Global interest is rising as Europe, the US, and other regions push for low-carbon fuels. This opens strong opportunities for reliable Biofuel Exporters from India. However, success requires strict compliance: proper licensing, adherence to international quality standards, sustainability documentation, and clear traceability of raw materials.

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amoliinternational
amoliinternational

What Are top the Uses of Biofuels?

What do you think of when you hear the term biofuels? Do you have a futuristic vision or is it a vision of pure science? The fact is that they’re already in our lives and are quietly influencing the future of energy around the globe. So what are the uses of biofuels? Let’s keep it simple and clear it up together.

  • Fuelling vehicles- Perhaps the biggest area where biofuels can be used first is in transportation. Cars, buses, and even trucks can run on biodiesel or ethanol blends. 
  • Making Electricity- That’s right! Biofuels can make electricity too. Utility companies can burn biomass like crop waste, wood chips, or specially grown plants to produce power. 
  • Aviation and Shipping- Here’s something interesting, planes and ships are also testing biofuels. Airlines are exploring biofuel blends to cut down on their massive carbon emissions.
  • Daily Products You Didn’t Think About- The fossil fuel component of biofuels is just one part of biofuels products are produced as well. Glycerin, which is produced from biodiesel, is used in soaps, cosmetics, and even medicines.

So in conclusion, biofuels can power vehicles, generate electricity, heat homes, run industries, and even create everyday products. More importantly, biofuels are a big step towards a cleaner and greener future.

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imagella-blog
imagella-blog

Eco-friendly 1980 Range Rover conversion running on biofuel

Range Rover 1980 #RangeRover #conversion #biofuel #rollinghills #renewableenergy

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commoditypricessupates
commoditypricessupates

Ethanol Price Trend Collapse Why Energy And Drink Companies Face Soaring Costs

The ethanol price trend is experiencing significant volatility in 2025 as this biofuel and industrial alcohol responds to complex agricultural, energy, and policy market forces. Ethanol pricing remains heavily dependent on corn and sugarcane feedstock costs, both of which have experienced considerable fluctuation due to agricultural challenges and supply chain disruptions. The current ethanol price trend reflects these upstream pressures combined with evolving demand from fuel blending, beverage, and industrial sectors, creating a dynamic pricing environment for producers and end-users. 

Please Submit Your Query for ethanol price trend Weekly Price Forecasting, Trends, Demand-Supply, Suppliers, Plant Shutdowns, Disruptions, And Capacity Expansions: https://www.price-watch.ai/contact/

Several critical factors are influencing the ethanol price trend. Corn availability has been affected by global harvest conditions and competing usage in food and feed markets, creating supply constraints that directly impact the ethanol price trend. Sugar prices have shown volatility due to production changes and export limitations. These agricultural challenges are being compounded by energy prices for distillation processes and transportation costs that contribute to the ethanol price trend. 

Industrial demand patterns are creating distinct effects on the ethanol price trend. The fuel industry remains the largest consumer, with ethanol blending mandates driving substantial demand. Beverage alcohol production shows stable consumption patterns, while industrial and chemical applications maintain steady demand for solvent and processing uses. These diverse demand sources create competing pressures on the ethanol price trend across different market segments. 

Regional variations in the ethanol price trend have become increasingly pronounced. North American markets face corn price volatility but benefit from established production infrastructure. Brazilian prices reflect sugarcane availability and export dynamics, while European markets show higher compliance costs. These geographic differences are creating varied pricing environments within the global ethanol price trend. 

Production capacity considerations are significantly influencing the ethanol price trend. Biofuel plant utilization rates respond to energy market conditions, while beverage-grade production faces additional purification costs. The balance between fuel and beverage ethanol production creates market segmentation within the ethanol price trend structure. 

Grade differentiation plays a crucial role in current pricing structures. Fuel-grade ethanol has shown more moderate price increases compared to beverage and pharmaceutical grades. High-purity grades command substantial premiums due to additional processing requirements and regulatory compliance within the ethanol price trend structure. 

Current projections suggest the ethanol price trend will maintain volatility, with most forecasts anticipating 5-8% annual increases for fuel grades. The second half of 2025 may see additional pressure as agricultural harvest reports and energy market developments unfold, potentially affecting the ethanol price trend. 

The long-term outlook for the ethanol price trend suggests continued sensitivity to agricultural markets and energy policies. While new production capacity may eventually ease supply constraints, ethanol’s essential role in renewable fuel blending suggests prices will remain responsive to market fundamentals. Companies that develop flexible sourcing strategies and maintain supply chain resilience will be best positioned to navigate the ethanol price trend. 

Key factors to monitor include corn and sugar price trends, energy market developments, biofuel policy changes, and agricultural harvest reports. These metrics provide valuable insights into potential shifts in the ethanol price trend, enabling informed decision-making in a dynamic market environment.

About PriceWatch

PriceWatch is an independent raw material price reporting agency that provides real-time price forecasts and data-driven insights into global raw material markets. PriceWatch specializes in tracking raw material prices, analyzing market trends, and delivering timely updates on plant shutdowns, supply disruptions, capacity expansions, and demand-supply dynamics. The PriceWatch platform empowers manufacturers, traders, and procurement professionals to make faster, smarter decisions. Leveraging AI-powered forecasting and over a decade of historical data, PriceWatch transforms market volatility into actionable opportunity.

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adalidda
adalidda

This comprehensive article serves as a definitive guide to leveraging premium Nigerian dried cassava chips as a strategic asset in global manufacturing. It begins by outlining the rigorous quality standards that set these chips apart, including exceptionally high starch content for maximum yield, controlled moisture for better logistics, and certifications that guarantee safety for sensitive applications.

The piece then delves into the tangible economic benefits, providing clear Return on Investment scenarios across three key sectors: reducing raw material costs in food production by 25-35%, lowering feed costs by 20-30% in animal agriculture, and boosting ethanol yield by 15-20% in biofuel operations. It thoroughly explains the “why” behind the cost savings, focusing on superior efficiency and reduced processing expenses.

Beyond the product itself, the article introduces a groundbreaking Corporate Farming Program, a unique partnership model that allows companies to secure a transparent, scalable, and dedicated supply chain from the ground up, starting from a 100-hectare proof of concept to massive commercial-scale operations.

To fully understand the scope of this opportunity—including detailed technical specifications, logistics solutions, and the profound sustainability impact—reading the full article is indispensable. We encourage all industry professionals to explore the complete document to learn how a partnership with a leading Nigerian supplier can provide a decisive and sustainable advantage in an increasingly competitive market.

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dr-afsaeed
dr-afsaeed

AI workflow could help biofuel crops grow on infertile soil and protect plants from infectious diseases - New Study/Science Updates

Biologists and computational scientists at the U.S. Department of Energy’s (DOE) Brookhaven National Laboratory recently refined two artificial intelligence (AI) programs originally built by Meta, the company that owns Facebook, to predict protein shapes. Their new combined model, called ESMBind, can predict the 3D structure of proteins to reveal how they bind to nutrient metals like zinc and…

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amoliinternational
amoliinternational

What Regions Are Driving the Demand for Biofuels?

The use of biofuel is growing fast in many parts of the world. Some regions are leading this change more than others.

Europe is one of the biggest users because it wants to cut down pollution and protect the environment.

North America especially the United States uses a lot of ethanol and biodiesel for cars and trucks.

Asian countries like India and China are pushing biofuel to reduce oil use.

South America and Africa are also important because they grow crops that can be used for making biofuels.

With more demand many businesses are now looking for trusted biofuel suppliers. This helps the world move toward clean and green energy for the future.

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newstech24
newstech24

The Plan to Flip the Caribbean’s Glut of Sargassum Into Biofuel

Esteban Amaro, director of the Quintana Roo Sargassum Monitoring Community, agrees that gas is one of the best product to concentrate on. Processing the seaweed into different shopper merchandise is feasible, however inadvisable provided that the well being dangers of doing so haven’t but been sufficiently studied.
“I imagine that sargassum’s goal is to provide vitality, as a result of when it…

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dr-afsaeed
dr-afsaeed

Climate-smart biofuel policy as a pathway to decarbonize agriculture - New Study

Science, Volume 389, Issue 6761, Page 687-689, August 2025.
Summary
Without knowing the actual content of Science, Volume 389, Issue 6761, pages 687-689, from August 2025, I can only provide a generic summary.
This issue of Science (Vol. 389, Issue 6761, Aug 2025) likely presents peer-reviewed research articles, perspectives, and editorials covering a range of scientific disciplines. Pages…

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progressgroup
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melmika45
melmika45

Energetic and Chemical Analysis of Human Flatulence as a Potential Micro-Scale Biofuel Source

M.D. Perry, Department of Environmental Sciences, Independent Researcher

Abstract

Human flatulence is a biological byproduct of digestive processes involving microbial fermentation in the gastrointestinal tract. This paper evaluates the feasibility of harnessing the energy content of flatulence—particularly the combustible gases methane (CH₄) and hydrogen (H₂)—as a micro-scale fuel source. Chemical composition, average volumetric emissions, combustion energy, and potential collection methods are examined. While quantum mechanical effects are typically negligible at the macroscopic scale of gas behavior, molecular-scale interactions may contribute to a more detailed understanding of gas release and energy potential. The paper concludes that while human flatulence has theoretical energetic value, practical use as a fuel source is limited due to scale, variability, and collection inefficiencies.

1. Introduction

The search for alternative and renewable fuel sources has led researchers to explore a wide range of biological emissions. Flatulence, typically dismissed as waste gas, contains several flammable components such as methane and hydrogen. These gases have known energy content and are already used in various renewable fuel applications (e.g., biogas from sewage and landfills). This study evaluates whether similar principles can be applied on a smaller, more personal scale using human emissions.

2. Composition of Human Flatulence

The chemical makeup of flatulence varies depending on diet, gut microbiota, and health. A 1998 study by Levitt et al. established the average gas composition:


Gas | Volume % | Combustible

—————–|———-|————

Nitrogen (N₂) | 20–90% | No

Hydrogen (H₂) | 0–50% | Yes

Carbon dioxide | 10–30% | No

Methane (CH₄) | 0–10% | Yes

Oxygen (O₂) | 0–10% | Yes (supporting)

Hydrogen sulfide | trace | Yes (toxic)


3. Energy Content Analysis

Using standard values for the combustion energy of methane and hydrogen:

- Methane: ~39 MJ/m³

- Hydrogen: ~10.8 MJ/m³


Assuming an average human expels ~0.5–1.5 liters of flatulence per day, with about 7% methane and 9% hydrogen:

- Methane/day = 0.07 L × 39 MJ/m³ = ~2.73 kJ

- Hydrogen/day = 0.09 L × 10.8 MJ/m³ = ~0.972 kJ

Total ≈ 3.7 kJ/day or 0.001 kWh/day, enough to power a 10W LED for ~6 minutes.

4. Quantum Mechanical Considerations

At molecular scales, quantum effects such as tunneling and rotational-vibrational energy states influence gas molecule interactions. While these effects are critical in spectroscopy and reaction chemistry, they have negligible impact on the macro-level collection or combustion of flatulence gases.


However, understanding electron orbital behavior and bond-breaking in CH₄ and H₂ during combustion is fundamentally rooted in quantum theory, especially regarding reaction kinetics and energy transfer at ignition.

5. Practicality and Challenges

Collection:

- Low pressure, random emissions, mixed with inert gases.

- Requires sealed systems, impractical outside lab environments.


Variability:

- Composition depends on diet, gut flora, and health.


Scale:

- 1,000 people generate less than 4 MJ/day—roughly enough to boil a pot of water.

6. Broader Implications

- Enhances understanding of gut gas production for medical diagnosis.

- Supports microbial methane generation from sewage or agricultural waste.

- Encourages molecular quantum modeling to improve combustion efficiency.

7. Conclusion

Human flatulence contains measurable amounts of combustible gases such as methane and hydrogen. The theoretical energy yield is real but extremely low—approximately 3.7 kJ per person per day. From a quantum mechanics standpoint, while underlying gas behavior is governed by molecular quantum rules, such effects do not impact practical usage for fuel extraction. Thus, while the concept may capture interest, human flatulence is not a viable energy solution at scale. However, it reinforces the potential of biologically-sourced methane in broader renewable energy systems.

References

1. Levitt, M. D., et al. (1998). “Volume and composition of human intestinal gas.” Gastroenterology, 74(4), 683–689.

2. Rees, T. A. (2000). “Gas production in the human colon.” European Journal of Clinical Nutrition, 54(6), 470–475.

3. Lide, D. R. (2005). CRC Handbook of Chemistry and Physics.

4. Atkins, P., & de Paula, J. (2010). Physical Chemistry, 9th Ed. Oxford University Press.

5. Ternes, T., et al. (2012). “Energy potential from anaerobic digestion of human waste.” Waste Management, 32(11), 2065–2070.

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alyfoxxxen
alyfoxxxen

Congress, state lawmakers move to juice aviation biofuel production • Idaho Capital Sun

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ilbioeconomista
ilbioeconomista

Eni and BMW Italia form an alliance for sustainable mobility

Massimiliano Di Silvestre, President and CEO of BMW Italia and Claudio Descalzi, CEO of Eni. Source: Eni

Eni and BMW Italia signed a Letter of Intent (LOI) to develop joint initiatives aimed at supporting the energy transition of the road transport sector. In particular, this agreement seeks to integrate biofuels with an increasingly broad offering of electric mobility services. HVO…


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rutkdm
rutkdm

Growth Prospects of the Global Algae Market

The $29.8 Billion Algae Market: A Strategic Investment Opportunity for US Business Leaders

The algae industry is experiencing unprecedented growth, presenting a compelling investment opportunity that business leaders can no longer ignore. With the global algae market projected to reach $29.8 billion by 2032 at a robust 9.3% CAGR, North America emerges as the fastest-growing regional market, creating a strategic imperative for US companies to evaluate their position in this expanding sector.

The Financial Case: Beyond Green Marketing

The numbers tell a compelling story. The algae market’s growth trajectory significantly outpaces many traditional sectors, driven by fundamental demographic and consumer shifts rather than fleeting trends. The aging population’s focus on preventative healthcare, combined with rising consumer awareness of natural alternatives, creates sustained demand drivers that executives can build long-term strategies around.

What makes this opportunity particularly attractive is the market’s resilience. Even during COVID-19 disruptions, demand for immune-boosting algae products like spirulina actually increased, demonstrating the sector’s defensive characteristics during economic uncertainty. This counter-cyclical behavior provides portfolio diversification benefits that investment-focused companies value.Strategic Segment Analysis: Where to Deploy Capital

Nutraceuticals: The Growth Engine

The nutraceuticals segment represents the fastest-growing application area, capitalizing on the intersection of healthcare costs and consumer empowerment. Unlike pharmaceutical investments requiring lengthy regulatory approval processes, nutraceutical algae products can reach market faster while commanding premium pricing due to their natural positioning.

The US nutraceuticals market benefits from established distribution channels and consumer acceptance, reducing go-to-market risks. Companies can leverage existing relationships with health food retailers, supplement distributors, and e-commerce platforms to scale rapidly.

Natural Colorants: The Regulatory Advantage

The natural colorants segment presents a unique value proposition driven by regulatory tailwinds. Increasing restrictions on synthetic colors create captive demand for natural alternatives, with algae-derived phycocyanin commanding premium prices in the blue colorant market.

This regulatory-driven demand provides pricing power and market protection that pure consumer preference trends cannot match. Forward-thinking companies recognize that positioning ahead of regulatory changes creates sustainable competitive advantages.

Operational Excellence: Navigating Complexity for Competitive Advantage

The complex production processes that characterize algae manufacturing initially appear as barriers, but sophisticated operators recognize them as moats protecting market share. Once production expertise is developed, these complexities create significant switching costs for customers and entry barriers for competitors.

The B2B channel’s dominance in algae distribution favors companies with strong commercial capabilities over consumer marketing expertise. This shift toward business-to-business relationships means success depends more on operational excellence, supply chain reliability, and technical service capabilities than traditional consumer brand building.

Form Factor Strategy: Dry Products Lead

The market’s preference for dry algae products reflects practical logistics advantages including extended shelf life, reduced shipping costs, and easier inventory management. Companies focusing on dry processing capabilities can achieve better unit economics while serving broader geographic markets.

Supply Chain Resilience: Learning from Crisis

COVID-19 revealed both vulnerabilities and opportunities in algae supply chains. While production disruptions occurred globally, the crisis accelerated demand for immune-supporting natural products, validating the market’s long-term thesis.

Smart investors are applying these lessons by building supply chain redundancy and developing flexible production capabilities that can adapt to disruption. The companies that emerge stronger have invested in automation, multiple sourcing strategies, and direct supplier relationships.Market Entry Strategies: Timing and Approach

Partnership-First Approach

Given the B2B market dominance, successful market entry often begins with strategic partnerships rather than direct consumer engagement. Companies can accelerate growth by partnering with established manufacturers in food, beverage, and supplement industries, providing immediate scale without extensive infrastructure investment.

Geographic Advantages

North America’s position as the fastest-growing regional market creates home-field advantages for US companies. Proximity to key customers, established regulatory frameworks, and existing distribution networks reduce execution risks compared to international expansion strategies.

Investment Priorities: Where Capital Creates Value

Technology and Automation

Addressing production complexity through automation investments generates multiple returns: improved quality consistency, reduced labor costs, enhanced scalability, and better regulatory compliance. These technology investments create sustainable competitive advantages that justify premium valuations.

Regulatory Preparedness

Early investment in regulatory compliance capabilities positions companies advantageously as oversight increases. Rather than viewing regulation as constraint, proactive companies use compliance excellence as competitive differentiation.

Market Development

The persistent challenge of low consumer awareness about algae benefits creates opportunities for companies willing to invest in education and market development. These investments build brand equity while expanding total addressable market size.

Risk Management: Building Antifragile Strategies

Diversification across multiple application areas—food and beverages, nutraceuticals, cosmetics, and animal feed—reduces dependence on single industry cycles. This application diversity provides natural hedging against sector-specific downturns while capturing growth across multiple end markets.

The secular trend toward natural and plant-based products provides sustainable demand drivers beyond short-term health trends. Companies positioning within these mega-trends benefit from tailwinds that compound over multiple business cycles.

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probablyasocialecologist
probablyasocialecologist

Prices of palm oil and soyabean oil have surged after the conflict between Israel and Iran pushed up energy costs and the Trump administration proposed increasing the amount of biofuels mixed into diesel and petrol.

Soyabean oil has jumped 11 per cent since Thursday, hitting its highest level since October 2023 at more than 55 cents a pound. Palm oil, which had been falling this year due to a supply glut, has gained more than 6 per cent to almost 4,100 ringgit a ton this week.

These edible oils are in demand amid a hunt for cheaper energy sources, driven by a roughly 8 per cent jump in the price of Brent crude since Israel launched air strikes against Tehran’s nuclear programme and military facilities at the end of last week.

“The major factor for this jump is due to energy prices, prices of crude, because of this conflict,” said Darren Lim, a commodities strategist at Singapore-based brokerage Phillip Nova, adding that edible oil prices are tracking the grains in crude.

19 June 2025

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newstech24
newstech24

Biofuel costs leap as Israel-Iran battle drives hunt for oil alternate options

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Roula Khalaf, Editor of the FT, selects her favorite tales on this weekly e-newsletter.

Costs of palm oil and soyabean oil have surged after the battle between Israel and Iran pushed up vitality prices and the Trump administration proposed rising the quantity of biofuels combined into diesel and petrol.
Soyabean oil has jumped 11 per cent since Thursday,…

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davesanalytics
davesanalytics

A couple of plots dealing with coal used for electricity by continent.

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aakhirtak
aakhirtak

Nitin Gadkari: New Toll Policy Before April 1

Aakhir Tak – In Shorts

Nitin Gadkari announced a new toll policy before April 1.

Consumers will receive reasonable concessions on tolls.

India’s toll collection rose 35% to Rs 64,809.86 crore in 2023-24.

Gadkari emphasized strengthening the rural economy and reducing dependence on fossil fuels.

Focus will be on biofuel production and alternative energy sources.

Aakhir Tak – In Depth

Union…

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davesanalytics
davesanalytics

Electricity generated from coal(by income groups.)