Showing posts with label political risk. Show all posts
Showing posts with label political risk. Show all posts

Saturday, June 7, 2014

Iran Triggers MENA Nuclear Programs

The revelation a decade ago of Iran’s extensive nuclear program (uranium enrichment) led not only to the contretemps with Europe and the United States about whether the Iranian nuclear program was purely for peaceful purposes, but also triggered strategic anxiety among its Arab neighbors.  This strategic unease among Arab nations in the Middle East and North Africa (MENA) in turn led to several of Iran’s neighbors moving toward their own nuclear programs and also has created an opening for Russia to expand its influence in the region through assisting countries develop nuclear power, as it did with Iran.

At present, Iran is the only MENA country with an operating nuclear power plant:  The Bushehr 1, 1000-MWe VVER reactor built by Russia’s Atomstroyexport, after several delays, finally started full commercial operation last September.  In February 2014 the Atomic Energy Organization of Iran (AEOI) announced that construction by Atomstroyexport of a similar unit—Bushehr 2—would begin this spring.  In addition, Iran operates uranium mining, milling, conversion and enrichment facilities and a heavy water production plant. A heavy water research reactor is under construction at Arak.

Research Reactors

A number of other MENA countries have had long-standing nuclear programs, generally operating one or more very small research reactors to provide nuclear training and medical radioactive isotopes.  Algeria commissioned a 1-MW Argentine unit in 1989 and a Chinese 15MW research reactor in 1992.  Egypt started up a USSR-supplied Egypt with a 2-MW in 1961.  A number of scholar’s believe that Egypt’s Atomic Energy Establishment (AEE), during the regime of President Gen. Gamal Nasser, developed technology and training in nuclear weapons.  Egypt did not bring its USSR reactor under International Atomic Energy Agency (IAEA) safeguards until the 1980s.

History has shown such research reactors can be less benign.  Israel bombed Iraq’s French-built Osirak 40-MW research reactor in 1981, just prior to first fuel loading, out of concern that Iraq planned to use the reactor for nuclear weapons’ fuel.  In 1991, the U.S. bombed a Russian reactor at the same site in the opening of the Desert Storm operation.  This despite Iraq’s having been a non-nuclear weapon state (NNWS) party to the Treaty on the Nonproliferation of Nuclear Weapons (NPT) since 1969. 

Also, in September 2007, Israel bombed and destroyed what Israeli and U.S. officials claimed was a Syrian plutonium production reactor.  Syria denied the claim, but failed to provide full IAEA access to the bombing site.  In May 2011, the IAEA said “It is very likely that the building…was a nuclear reactor which should have been declared to the Agency.”  Syria had signed the NPT in 1968 and ratified it a year later.  Syria also operates a 30KW Chinese-built miniature neutron source reactor, which went critical in 1996.
Israel itself maintains a policy of opacity regarding its nuclear program.  It is a party to neither the NPT nor the Missile Technology Control Regime.  It has signed, but not ratified, the CTBT.  Its nuclear program is centered at the Negev Nuclear Research Center, where a French plutonium production reactor reached criticality some 50 years ago.  While Israel does not acknowledge its nuclear weapons program, the Nuclear Threat Initiative notes that Israel is “believed to have produced enough weapons-grade plutonium for 100 to 200 nuclear warheads.” (http://www.nti.org/country-profiles/israel/)  Israel has no nuclear electric power generation reactors.

New Nuclear Power Programs

As mentioned above, the realization that Iran was covertly pursuing a nuclear program potentially capable of giving it a nuclear weapons capability, sharply aggravated existing geopolitical, religious and other tensions with Iran’s Arab neighbors.  The response, in part, focused on other countries pursuing nuclear power programs.

Algeria.  Between 2007 and 2010, Algeria signed nuclear cooperation agreements with Russia, the U.S., France, Argentina and South Africa.  Algeria told the IAEA in 2012 that it planned to have a nuclear power plant in operation by 2022, with a second by 2027.  In May 2013, Algerian Energy and Mines Minister Youcef Yousfi moved the target to 2025, while also establishing a Nuclear Engineering Institute to train Algerian personnel.  The country also is considering nuclear desalination.  Algeria has ratified the NPT and has had a full-scope safeguards agreement with the IAEA in place since 1995.  Algeria also is a party to the Treaty of Pelindaba (African Nuclear-Weapon-Free Zone).

Egypt.  Egyptian President Gamel Adbel Nasser created the Atomic Energy Commission in 1955.  Although Nassar was thought to have considered a nuclear weapons program, Egypt signed the NPT in 1968 and ratified it in 1981, followed in 1982 by a comprehensive safeguards agreement with the IAEA.  Egypt’s Inshas Nuclear Research Center outside Cairo has a USSR 2-MW research reactor, 22-MW Argentine light water research reactor, and fuel and waste facilities.  In 2006, the Mubarak government planned a program of 10 nuclear power reactors, which was supported by Mubarak’s successor Mohammed Morsi.  Any such program will have to await the view of the newly elected Egyptian president and an evaluation of whether the country, with its myriad economic challenges, can support an expensive nuclear power construction effort.

Iraq.  The United Nations Security Council in 2010, recognizing Iraq’s post-Saddam Hussein adherence to its nuclear nonproliferation commitments, lifted sanctions against a peaceful nuclear program.  Iraqi government officials reportedly contacted French nuclear industry officials about rebuilding one of the reactors bombed in 1991.  Iraq ratified the CTBT in Sept. 2013.  While some Iraqi government officials have stated support for a nuclear power program, no specific plans have been advanced as the country focuses on rehabilitating and expanding its oil and gas production and export capability.

Jordan.  A country that imports more than 95 percent of its energy, but has significant uranium resources, Jordan’s Committee for Nuclear Strategy has set out a program for nuclear to provide 30 percent of Jordan’s energy needs by 2030, plus potential power exports.  After a design and siting process involving seven offers from four reactor vendors, the Jordan Atomic Energy Commission (JAEC) in 2010 short-listed reactors from France’s Areva, Atomic Energy of Canada Ltd., and Russia’s Atomstroyexport.  In October 2013, JAEC selected Atomstroyexport to supply two 1000-MW AES-92 reactors, while Rusatom Overseas will operate the plant.  Russia will contribute at least 49 percent of the $10 billion project tab.  The first plant is targeted for operation in 2021, with the second in 2025.  Siting still is unresolved.  A 5-MW research reactor is being built by a South Korean consortium at the Jordan University for Science and Technology north of Amman, with low-enriched uranium to be supplied by Areva.

Kuwait.  Kuwait’s National Nuclear Energy Committee and Rosatom signed nuclear energy for peaceful uses memorandum of understanding and cooperation in 2010.  On March 27, 2014, Rosatom Deputy Director for International Activities Nikolai Spassky met in Moscow with Kuwait’s Ambassador Abdulaziz al-Adwani to offer assistance in the areas of national nuclear legislation, creation of supervisory and regulatory bodies, as well as construction of a nuclear research center and a nuclear power plant, when Kuwait reaches that point. [Itar-TASS]  Kuwait has signed (1968) and ratified (1989) the NPT and supports a Middle East Nuclear-Weapon-Free Zone (NWFZ).

Libya.  The USSR supplied Libya with a 10-MW IRT-1 research reactor in the 1980s.  Libya ratified the NPT in 1975, but pursued a clandestine nuclear weapons program with technology from the Pakistani AQ Khan network.  The renunciation of all Weapons of Mass Destruction (WMD) programs by Col. Muammar Qadhafi in 2003 ended Libya’s nuclear weapons program.  The following year Libya signed the Additional Protocol, to provide IAEA oversight of the dismantling of the program.  Prior to the overthrow of Qadhafi, the regime actively sought outside help for nuclear technology related to seawater desalination.

Saudi Arabia.  Following a 2006 decision by the Gulf Cooperation Council to study peaceful uses of nuclear energy, in 2010 a royal Saudi degree stated that “…atomic energy is essential to meet the Kingdom’s growing requirements for energy…“ and the King Abdullah City for Nuclear and Renewable Energy (KA-CARE) commissioned a series of studies that, inter alia, short listed three potential sites for nuclear power plants:  Jubail on the Gulf, and Tabuk and Jizan on the Red Sea.  The Kingdom plans construction of 16 nuclear power plants over the next 20 years, costing more than $80 billion.  It expects the first reactor to commence operations in 2022.  GE Hitachi Nuclear Energy, Toshiba/Westinghouse, and Areva all have expressed interest in supplying nuclear technology.  Saudi Arabia has signed nuclear cooperation agreements with France, Argentina, South Korea and China, and is negotiating with Russia, the Czech Republic, the U.K. and the U.S.  Saudi Arabia is a NNWS party to the NPT and has a Comprehensive Safeguards Agreement with the IAEA.  Riyadh supports a Middle East Nuclear-Weapon-Free-Zone.

Turkey.  Turkey is not an Arab country, but shares a 499-kilometer (310 mile) border with Iran.  Turkey has explored nuclear power since the 1950s, but only in 1996 tendered for a 2000 MW plant at Akkuyu on the Mediterranean coast near Mersin.  Westinghouse with Mitsubishi, Atomic Energy of Canada Ltd., and France’s Framatome with Germany’s Siemens all submitted bids, but after years of delay in April 2000 Turkey abandoned the effort due to economics.  Turkey re-tendered in March 2008 and accepted the only bid, which came from Atomstroyexport, for four 1200 MW VVER reactors.  The Russians will finance the build, own and operate facility, and Rosatom expects to retain at least 51 percent, while Turkish entities can purchase part of the $20 billion project.  Construction permits are expected this year, with the plants coming online annually starting around 2020

Last year, Turkey accepted a proposal from a consortium led by Mitsubishi Heavy Industries and Areva, with Itochu, for four 1200 MW Atmea1 nuclear reactors to be built at Sinop on the Black Sea.  France’s GdF Suez will be the operator.  The Turkish Atomic Energy Authority anticipates construction to start on the first Atmea1 reactor in 2017, with operation beginning 2023.  ENEC contracted with Uranium One (Canada), Rio Tinto (UK), Areva and Techsnabexport (Tenex—Russia) for uranium concentrates supply; with Areva, Tenex and Converdyn (U.S) for conversion services; and with Areva, Tenex and the European Urenco for enrichment. 

United Arab Emirates (UAE).  Another member of the 2006 Gulf Cooperation Council nuclear energy studies decision, the U.A.E. has moved most quickly.  After the publication in 2008 of a comprehensive nuclear policy document, The Emirates Nuclear Energy Corp. (ENEC) was established to evaluate and implement U.A.E. nuclear power plans.  In 2009, it short-listed consortia from France and Korea, as well as GE-Hitachi, finally selecting Korea for four reactors.  Korea Electric Power Co. (KEPCO), with Samsung, Hydundai and Doosan will construct four Westinghouse APR-1400 reactors, for some $20 billion, at Barakah on the Gulf coast.  Construction commenced on unit 1 in July 2012 and unit 2 in May 2013; unit 3 is expected to start build this year.  Operation of the four units is projected for 2017, 2018, 2019 and 2020.


The U.A.E. is a NPT signatory and ratified a safeguards agreement with the IAEA in 2003, and signed the Additional Protocol in 2009.  In 2009 the U.A.E. also concluded a “Section 123” nuclear cooperation agreement with the U.S. foregoing nuclear fuel enrichment and reprocessing.

Conclusion. 

Many countries in the Middle East and North Africa can justify nuclear programs for desalination and electric power by either their lack of energy resources or by their need to maintain hydrocarbon production for export and to minimize global climate impacts of rapidly growing hydrocarbon combustion.  Nonetheless, concern about Iran’s ambitious atomic energy program clearly motivated many to move beyond mere consideration of nuclear power to actively pursuing it. 

Jordan, Turkey and the United Arab Emirates all have awarded contracts for construction of nuclear electric power plants.   Algeria and Saudi Arabia have announced plans for significant nuclear power sector development, but have not moved to specific plans for plants.  Egypt, Iraq and Libya all have broached nuclear power development, but have much more pressing economic, social and political problems to resolve.  Kuwait has begun preparing for a possible nuclear energy sector.

The expanding interest by MENA countries in nuclear power has provided a double benefit for Russia.  First, it has moved quickly to expand its influence and intelligence gathering in the region by signing nuclear cooperation agreements with any and all comers.  Second, it sees the Middle East as critical to maintaining viability of the Russian nuclear technology, engineering and construction industry as domestic energy growth plateaus.  It already has contracts worth tens of billions of dollars to supply nuclear reactors to Jordan and Turkey.  It no doubt will try to use the nuclear research reactors the USSR built in Egypt, Iraq, Libya and Syria as further leverage.


So far, no other countries in the region appear interested in developing nuclear weapons programs.  Many have emphatically rejected their own nuclear weapons programs, as well as calling for Nuclear-Weapons-Free Zones in Africa and in the Middle East.  But the seeds are sown and will require increased U.S. vigilance. 

Monday, July 29, 2013

China, India Raise Gas Prices. Part 2--India.

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On June 27, the Government of India announced a decision by the Cabinet Committee on Economic Affairs (CCEA) to approve pricing of domestic natural gas at an overage cost of imported liquefied natural gas (LNG) into India and international gas hub rates.  The new formula comes into effect on April 1, 2014, at which time the price is expected to be about US$8.40 per million British thermal units (MMBtu) or double the current price.

The new pricing formula for each quarter will be calculated based on the 12-month trailing average price, with a lag of one month.  This means that the price for April through June 2014 will be calculated on the 12-month averages ending Dec. 31, 2013.  The newly approved gas pricing formula will be in effect for five years.

The impact of the natural gas price rise in India will differ greatly from a gas price hike China announced at about the same time: 

1.  Although both countries came to a similar price, in China the new price represents a 15 percent raise vs. a doubling in India.
2.  China’s gas price change was effective July 10, while India’s will not bite until April 1, 2014.
3.  While China consumes two and one-half times more gas than India (146 billion cubic metres vs. 55 bcm in 2012—BP), gas represents a larger share of total primary energy requirements in India (8.5%) than in China (4.8%)(BP:2012).
4.  Sectoral use of natural gas varies widely, with China using nearly 30 percent of its gas in residences and India nearly none.  In contrast, China’s non-energy use of gas (primarily refining and petrochemical production, especially fertilizers) amounted to 17 percent compared to 59 percent in India, where gas for fertilizer production is steeply subsidized (IEA:2009).  Finally, gas use in the electric power sector is minimal in China, while gas represents some 10 percent of India’s installed power capacity.

Although the decision to raise Indian wholesale gas prices was taken by the CCEA and not just the Ministry of Petroleum and Natural Gas (MPNG), other ministers lost no time in objecting.  The Ministry of Finance noted that Reliance Industries, Ltd. (RIL), led by Mukesh Ambani, had produced from its KG-D6 offshore gas field well below target and should have to sell targeted production, as well as the cumulative shortfall, at the old $4.20/MMBtu price.  MPNG head M. Veerappa Moily rejected the Finance Ministry critique, noting “There is no confusion; there is no vagueness.  And I don’t think there is scope for any interpretation whatsoever.”  India’s Planning Commission had been pushing for such a gas price boost for two and one-half years.

The Indian Power Ministry already called a meeting with the states and other stakeholders to seek suggestions on easing the impact of the proposed gas price jump.  The Power Ministry also has questioned setting the price in U.S. dollar terms, as that adds volatility given the depreciation of the Indian rupee (Rs).  Finance Minister P. Chidambaram has reassured the power and fertilizer sectors, which receive state-set allocations of natural gas at subsidized prices, that their concerns would be addressed before the price increase takes effect next year.

The power industry has borne the brunt of the production collapse at RIL’s Krishna-Godavari fields from nearly 70 million cubic metres of gas per day (2.4 billion cubic feet per day) in 2010 to some 14 mmcm/d recently.  RIL had committed 29.7 mmcm/d of KG-D6 gas production to 25 power plants, but in Nov. 2011, their allocation was reduced and in March 2013 cut off completely.  A July 18 meeting of the Empowered Group of Ministers, led by Defence Minister A.K. Antony, rejected an Oil & Gas Ministry proposal to abolish the priority ranking and instead confirmed the priority for the fertilizer industry, then liquefied petroleum gas production, power, and city gas.  Practically, this means that unless RIL can turn around KG-D6 production, only the fertilizer industry will be supplied with Krishna-Godavari gas. 

Currently only one-third of the 72 mmcm/d needed for the 18.7 gigawatts (GW) of gas-based power plants throughout India is being met; a further 8 GW of capacity is nearing commissioning without firm gas supplies.  Oil Minister Moily has urged the EGoM to explore other gas supply options for the power sector, including using uncontracted volumes produced by state-owned Oil and Natural Gas Corp. 

An analysis by Bank of America Merrill Lynch, reported a week after the CCEA gas price decision, suggested that the Government of India will collect some Rs 13,000 crore (US$ 2.2 billion) in higher taxes, royalties and dividends, particularly from state-owned gas producers ONGC and Oil India Ltd. (OIL).  Privately-owned RIL would pay about 10 percent of the increased central government revenues.  The analysis opined that much of the additional government revenue from the higher gas price would be funneled into subsidies to protect sectors such as fertilizer and power.

If the government keeps the cost of natural gas to the fertilizer industry unchanged, CRISIL (Credit Rating Information Services of India Limited)
estimates that, even after receiving the higher tax and royalty payments, the central government will lose an additional net Rs 2000-2500 crore (US$335-420 million) for subsidies just for the fertilizer sector.  During 2009-2011, Indian government subsidies for natural gas have varied from $2-3 billion.  This pales in comparison to oil subsidies, which leaped from $11.5 billion in 2009 to $30.9 billion in 2011 (IEA).
The higher natural gas prices should improve the incentive for exploration and development of domestic natural gas in India by domestic private and public companies, as well as foreign firms.  Repeated delays in formulating government policy on shale gas development have kept India from conducting its first shale gas tract leases, unlike China, which conducted its first shale gas bid round in June 2011 and its second in 2012 with 19 blocks awarded in January 2013.  This may not impact India dramatically as it has relatively modest shale gas resources of 2,718 bcm (96 tcf), compared with China, the global leader with 31,573 bcm (1115 tcf USEIA:2013).
The government decision to double natural gas prices represents nothing more than a belated nod to reality.  India increasingly must turn to imported LNG to meet growing, and still not fully satisfied, demand for natural gas.  Indian domestic gas production rose from 27 bcm in 2002 to 51 bcm in 2010, only to fall back to 40 bcm last year.  It commenced imports of LNG in 2004 and reached 20.5 bcm in 2012 (BP), making it the world’s fifth largest LNG importer.  Average prices of imported LNG run some $11-12/MMBtu or three times the current regulated natural gas price in India. 
The disconnect can be seen in the failure of Petronet LNG’s new terminal in Kochi to sign up customers.  The Rs 4200 crore (US$700 million) terminal, due to start operation next month, will initially operate at less than 10 percent of its 5 million tons (6.75 bcm) per year capacity.  Gas Authority of India, Ltd. is seeking renegotiation of its 1.5 MMTY deal for LNG from Australia’s Gorgon project, scheduled to start delivery to Kochi in 2015, as the cost delivered to GAIL customers could approach $17/MMBtu under the current contract.
On the demand side, the continuing subsidies for natural gas use in the power and fertilizer sectors will increase the already significant burden on the central government budget deficit.  Union and state governments in India share a constant concern over feeding the population and an attitude that power—when and where it’s available—should be a “free good,” especially in the agricultural sector.  With these political pressures, it will be difficult to restrain, less alone reduce, gas price subsidies and government volume allocations.   Ironically, this will only expand the gap between notional demand for gas in India and available supply; continue curtailed and unreliable electric power; and maintain coal as the dominant and most polluting fuel.  The timing of elections for the Union Parliament—May 2014, the month after the natural gas price rises—makes these issues even touchier.
India has taken an important step to bring its domestic producer prices of natural gas closer to world levels.  The next important step, admittedly a much more difficult one, is to increase the natural gas price for domestic consumers.