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Last Updated: July 12, 2019
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Market Watch 

Headline crude prices for the week beginning 8 July 2019 – Brent: US$64/b; WTI: US$57/b

  • Bolstered by the renewed OPEC+ supply pact but rattled by increasing tensions between Iran and the US, oil prices started the week steady after gaining over the previous week
  • With the OPEC+ supply deal extended to March 2020, focus will now shift to adherence and in particular, Russian commitments to the agreement that previously wavered over 1H19
  • More critical to the market is the escalating standoff between the US and Iran around the Straits of Hormuz and even beyond; British forces seized an oil tanker off Gibraltar that was suspected to carrying Iranian crude to Syria, drawing share criticism from Iran
  • Iran itself confirmed that it was raising its level of nuclear enrichment above levels agreed to in the 2015 deal that ended sanctions, and accused European signatories to the deal of ‘not doing enough’
  • Iranian forces also confronted a British tanker escorted by a warship in the Persian Gulf, with the narrow channel now a flashpoint for action
  • As a recipient of Middle Eastern crude, China has also raised security levels for its vessel passing through the Straits of Malacca after doing the same for the Straits of Hormuz, raising some eyebrows
  • While the confrontation – or lack of – between the US and Iran will be the main driver behind oil prices movement in the second half of 2019, the trade policies of the Trump administration that may now hit secondary Asian manufacturing nations such as Vietnam is also leaving the global economy increasingly fragile
  • Against this backdrop, the US active oil and gas rig count fell again, dropping five oil sites and gaining one gas site for a net loss of four rigs
  • As the Iranian situation deteriorates, the market will be pricing more risk premiums into traded prices, which should inch up towards the US$65-67/b range for Brent and US$59-61/b for WTI

Headlines of the week

Upstream

  • Marathon Oil has completed the sale of its UK businesses to RockRose Energy, handing over the Brae and Foinaven area fields for US$345 million
  • Despite pulling out from the UK North Sea, ConocoPhillips is still active in Norway, recently submitting a new plan to re-develop the Tor field in Great Ekofisk, which was shut down in 2015 despite only 20% of resources extracted
  • In a bit to boost national production, Nigerian independent Aiteo Eastern E&P has announced plans to spend up to US$15 billion over the next five years to drill new wells and re-visit existing assets
  • Eni and Vitol have been awarded rights to Block WB03 in the offshore Tano basin in Ghana, with Eni holding 70% and expanding its presence in the country
  • Total has approved Phase 3 development at the onshore Dunga field in Kazakhstan that will increase capacity by 10% to some 20,000 b/d by 2022
  • Eni has launched production from the Mizton field in Mexico’s Bay of Campeche Area 1 – the first new offshore new field development by an international firm since reforms in 2008
  • Halliburton and Kuwait Oil have signed an agreement to explore for oil offshore Kuwait which makes Kuwait’s first foray in offshore upstream services
  • Energean Oil & Gas has purchased Electricite de France’s Italian unit for US$850 million, gaining assets in Egypt, Italy, Algeria, Croatia and the North Sea to complement its existing fields in Israel and Greece

Midstream/Downstream

  • China will be launching a new low-sulfur bunker fuel oil contract on the Shanghai Futures Exchange by the end of 2019, just as new IMO regulations on marine fuel oil sulfur content caps kick into effect in 2020
  • Just as American crude production hits new highs, American refining capacity has also reached a new record high of 18.8 million b/d
  • China has issued a new round of crude oil import quotas for private oil refiners, allowing them to bring in an additional 56.85 million tonnes (~1 mmb/d) over the remainder of 2019
  • In the fallout over the contaminated crude scandal at the Druzhba pipeline, Russian pipeline operator Transneft has capped volumes of Rosneft crude that can be transported to Germany and Poland on the pipeline
  • The US Environmental Protection Agency (EPA) has proposed an increased biodiesel mandate to 20.04 billion gallons in 2020 up from 19.92 billion gallons in 2019, but may not extend the hardship waiver program which drew criticism
  • Iraq and Oman have signed a new MoU to cooperate in the oil and gas sector which includes plans for a shared Omani refinery processing Iraqi crude

Natural Gas/LNG

  • Kosmos Energy has struck new gas at the Greater Tortue Ahmeyim-1 well in the Albian reservoir offshore Mauritania and Senegal, which will support the Greater Tortue Ahmeyim LNG project that is on track for a 2022 start
  • Kenya and Tanzania have entered into talks to explore cross-border natural gas trading, aimed at delivering Tanzanian natural gas to Kenya to bypass requiring and building facilities for LNG imports
  • Energean Oil & Gas is reportedly looking to sell its stake in the major Glengorn gas discovery in the UK once its acquisition of Edison E&P is completed
  • Saudi Aramco has started work on the Jafurah gas terminal that will take unconventional gas from the Ghawar oil field to the coast for processing

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The United States consumed a record amount of renewable energy in 2019

In 2019, consumption of renewable energy in the United States grew for the fourth year in a row, reaching a record 11.5 quadrillion British thermal units (Btu), or 11% of total U.S. energy consumption. The U.S. Energy Information Administration’s (EIA) new U.S. renewable energy consumption by source and sector chart published in the Monthly Energy Review shows how much renewable energy by source is consumed in each sector.

In its Monthly Energy Review, EIA converts sources of energy to common units of heat, called British thermal units (Btu), to compare different types of energy that are more commonly measured in units that are not directly comparable, such as gallons of biofuels compared with kilowatthours of wind energy. EIA uses a fossil fuel equivalence to calculate primary energy consumption of noncombustible renewables such as wind, hydro, solar, and geothermal.

U.S. renewable energy consumption by sector

Source: U.S. Energy Information Administration, Monthly Energy Review

Wind energy in the United States is almost exclusively used by wind-powered turbines to generate electricity in the electric power sector, and it accounted for about 24% of U.S. renewable energy consumption in 2019. Wind surpassed hydroelectricity to become the most-consumed source of renewable energy on an annual basis in 2019.

Wood and waste energy, including wood, wood pellets, and biomass waste from landfills, accounted for about 24% of U.S. renewable energy use in 2019. Industrial, commercial, and electric power facilities use wood and waste as fuel to generate electricity, to produce heat, and to manufacture goods. About 2% of U.S. households used wood as their primary source of heat in 2019.

Hydroelectric power is almost exclusively used by water-powered turbines to generate electricity in the electric power sector and accounted for about 22% of U.S. renewable energy consumption in 2019. U.S. hydropower consumption has remained relatively consistent since the 1960s, but it fluctuates with seasonal rainfall and drought conditions.

Biofuels, including fuel ethanol, biodiesel, and other renewable fuels, accounted for about 20% of U.S. renewable energy consumption in 2019. Biofuels usually are blended with petroleum-based motor gasoline and diesel and are consumed as liquid fuels in automobiles. Industrial consumption of biofuels accounts for about 36% of U.S. biofuel energy consumption.

Solar energy, consumed to generate electricity or directly as heat, accounted for about 9% of U.S. renewable energy consumption in 2019 and had the largest percentage growth among renewable sources in 2019. Solar photovoltaic (PV) cells, including rooftop panels, and solar thermal power plants use sunlight to generate electricity. Some residential and commercial buildings heat with solar heating systems.

October, 20 2020
Natural gas generators make up largest share of U.S. electricity generation capacity

operating natural-gas fired electric generating capacity by online year

Source: U.S. Energy Information Administration, Annual Electric Generator Inventory

Based on the U.S. Energy Information Administration's (EIA) annual survey of electric generators, natural gas-fired generators accounted for 43% of operating U.S. electricity generating capacity in 2019. These natural gas-fired generators provided 39% of electricity generation in 2019, more than any other source. Most of the natural gas-fired capacity added in recent decades uses combined-cycle technology, which surpassed coal-fired generators in 2018 to become the technology with the most electricity generating capacity in the United States.

Technological improvements have led to improved efficiency of natural gas generators since the mid-1980s, when combined-cycle plants began replacing older, less efficient steam turbines. For steam turbines, boilers combust fuel to generate steam that drives a turbine to generate electricity. Combustion turbines use a fuel-air mixture to spin a gas turbine. Combined-cycle units, as their name implies, combine these technologies: a fuel-air mixture spins gas turbines to generate electricity, and the excess heat from the gas turbine is used to generate steam for a steam turbine that generates additional electricity.

Combined-cycle generators generally operate for extended periods; combustion turbines and steam turbines are typically only used at times of peak load. Relatively few steam turbines have been installed since the late 1970s, and many steam turbines have been retired in recent years.

natural gas-fired electric gnerating capacity by retirement year

Source: U.S. Energy Information Administration, Annual Electric Generator Inventory

Not only are combined-cycle systems more efficient than steam or combustion turbines alone, the combined-cycle systems installed more recently are more efficient than the combined-cycle units installed more than a decade ago. These changes in efficiency have reduced the amount of natural gas needed to produce the same amount of electricity. Combined-cycle generators consume 80% of the natural gas used to generate electric power but provide 85% of total natural gas-fired electricity.

operating natural gas-fired electric generating capacity in selected states

Source: U.S. Energy Information Administration, Annual Electric Generator Inventory

Every U.S. state, except Vermont and Hawaii, has at least one utility-scale natural gas electric power plant. Texas, Florida, and California—the three states with the most electricity consumption in 2019—each have more than 35 gigawatts of natural gas-fired capacity. In many states, the majority of this capacity is combined-cycle technology, but 44% of New York’s natural gas capacity is steam turbines and 67% of Illinois’s natural gas capacity is combustion turbines.

October, 19 2020
EIA’s International Energy Outlook analyzes electricity markets in India, Africa, and Asia

Countries that are not members of the Organization for Economic Cooperation and Development (OECD) in Asia, including China and India, and in Africa are home to more than two-thirds of the world population. These regions accounted for 44% of primary energy consumed by the electric sector in 2019, and the U.S. Energy Information Administration (EIA) projected they will reach 56% by 2050 in the Reference case in the International Energy Outlook 2019 (IEO2019). Changes in these economies significantly affect global energy markets.

Today, EIA is releasing its International Energy Outlook 2020 (IEO2020), which analyzes generating technology, fuel price, and infrastructure uncertainty in the electricity markets of Africa, Asia, and India. A related webcast presentation will begin this morning at 9:00 a.m. Eastern Time from the Center for Strategic and International Studies.

global energy consumption for power generation

Source: U.S. Energy Information Administration, International Energy Outlook 2020 (IEO2020)

IEO2020 focuses on the electricity sector, which consumes a growing share of the world’s primary energy. The makeup of the electricity sector is changing rapidly. The use of cost-efficient wind and solar technologies is increasing, and, in many regions of the world, use of lower-cost liquefied natural gas is also increasing. In IEO2019, EIA projected renewables to rise from about 20% of total energy consumed for electricity generation in 2010 to the largest single energy source by 2050.

The following are some key findings of IEO2020:

  • As energy use grows in Asia, some cases indicate more than 50% of electricity could be generated from renewables by 2050.
    IEO2020 features cases that consider differing natural gas prices and renewable energy capital costs in Asia, showing how these costs could shift the fuel mix for generating electricity in the region either further toward fossil fuels or toward renewables.
  • Africa could meet its electricity growth needs in different ways depending on whether development comes as an expansion of the central grid or as off-grid systems.
    Falling costs for solar photovoltaic installations and increased use of off-grid distribution systems have opened up technology options for the development of electricity infrastructure in Africa. Africa’s power generation mix could shift away from current coal-fired and natural gas-fired technologies used in the existing central grid toward off-grid resources, including extensive use of non-hydroelectric renewable generation sources.
  • Transmission infrastructure affects options available to change the future fuel mix for electricity generation in India.
    IEO2020 cases demonstrate the ways that electricity grid interconnections influence fuel choices for electricity generation in India. In cases where India relies more on a unified grid that can transmit electricity across regions, the share of renewables significantly increases and the share of coal decreases between 2019 and 2050. More limited movement of electricity favors existing in-region generation, which is mostly fossil fuels.

IEO2020 builds on the Reference case presented in IEO2019. The models, economic assumptions, and input oil prices from the IEO2019 Reference case largely remained unchanged, but EIA adjusted specific elements or assumptions to explore areas of uncertainty such as the rapid growth of renewable energy.

Because IEO2020 is based on the IEO2019 modeling platform and because it focuses on long-term electricity market dynamics, it does not include the impacts of COVID-19 and related mitigation efforts. The Annual Energy Outlook 2021 (AEO2021) and IEO2021 will both feature analyses of the impact of COVID-19 mitigation efforts on energy markets.

Asia infographic, as described in the article text


Source: U.S. Energy Information Administration, International Energy Outlook 2020 (IEO2020)
Note: Click to enlarge.

With the IEO2020 release, EIA is publishing new Plain Language documentation of EIA’s World Energy Projection System (WEPS), the modeling system that EIA uses to produce IEO projections. EIA’s new Handbook of Energy Modeling Methods includes sections on most WEPS components, and EIA will release more sections in the coming months.

October, 16 2020