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Thursday, 8 August 2013

New paper finds existing cropland could feed an additional 4 billion people if not wasted on biofuels

Posted on 12:13 by Unknown
Paging Paul Ehrlich:

Existing cropland could feed four billion more

by Staff WritersMinneapolis MN (SPX) Aug 08, 2013







Demand for crops is expected to double by 2050 as population grows and increasing affluence boosts meat consumption.



The world's croplands could feed 4 billion more people than they do now just by shifting from producing animal feed and biofuels to producing exclusively food for human consumption, according to new research from the Institute on the Environment at the University of Minnesota.





Even a smaller, partial shift from crop-intensive livestock such as feedlot beef to food animals such as chicken or pork could increase agricultural efficiency and provide food for millions, the study says.





"We essentially have uncovered an astoundingly abundant supply of food for a hungry world, hidden in plain sight in the farmlands we already 


cultivate," says graduate research assistant Emily Cassidy, lead author of the paper published in Environmental Research Letters. "Depending on the extent to which farmers and consumers are willing to change current practices, existing croplands could feed millions or even billions more people."





Demand for crops is expected to double by 2050 as population grows and increasing affluence boosts meat consumption. Meat takes a particularly big toll on food security because it takes up to 30 crop calories to produce a single calorie of meat.





In addition, crops are increasingly being used for biofuels [which don't even reduce emissions] rather than food production. This study sought to quantify the benefit to food security that would accrue if some or all of the lands used to produce animal feed and fuel were reallocated to directly produce food for people.





To get at that question, Cassidy and colleagues first mapped the extent and productivity of 41 major crops between 1997 and 2003, adjusting numbers for imports and exports and calculating conversion efficiencies of animal feed using U.S. Department of Agriculture data. 





The researchers assumed humans need an average of 2,700 calories per day, and grazing lands and animals were not included in the study. Among the team's findings:





+ Only 12 percent of crop calories used for animal feed end up as calories consumed by humans.





+ Only 55 percent of crop calories worldwide directly nourish people.





+ Growing food exclusively for direct human consumption could boost available food calories up to 70 percent





+ U.S. agriculture alone could feed an additional 1 billion people by shifting crop calories to direct human consumption.





+ When calculated on the basis of protein rather than calories, results were similar. For instance, of all plant protein produced, 49 percent ends up in human diets.





In addition to the global findings, the research team looked at allocation of crop calories in four key countries: India, China, Brazil and the U.S. They found that while India allocates 90 percent of calories to feeding people, the other three allocate 58 percent, 45 percent, and 27 percent, respectively.





Noting the major cultural and economic dimensions involved, the researchers acknowledged that while a complete shift from animal to plant-based diets may not be feasible, even a partial shift would benefit food security. Quantifying the impact of various strategies, they found that a shift from crop-intensive beef to pork and chicken could feed an additional 357 million people, and a shift to nonmeat diets that include eggs and milk could feed an additional 815 million people.





The researchers emphasized that they are not making diet prescriptions or recommendations, just pointing out opportunities for gains in food production. They noted that humans can completely meet protein needs with plant-based diets, but that crop systems would need to shift (e.g., toward more production of protein-rich legumes) to meet human dietary needs.





"The good news is that we already produce enough calories to feed a few billion more people," Cassidy says. "As our planet gets more crowded or we experience disasters like droughts and pests, we can find ways of using existing croplands more efficiently."


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Wednesday, 7 August 2013

New paper finds ice ages explained even with constant levels of CO2

Posted on 12:44 by Unknown
A paper published today in Nature finds that ice ages in the Northern Hemisphere can be explained by Milankovitch cycles and the unique geography of the North American ice sheet, finding, "the crucial mechanism for the 100,000 year cycles is the delayed glacial isostatic rebound which keeps the ice elevation low, and, therefore,  the ice ablation high, while the ice sheet retreats." The authors are able to reproduce the saw-tooth pattern of ice ages using a model that assumes a constant level of atmospheric CO2. The prior 'consensus' was that Milankovitch cycles and CO2 were the primary drivers of ice age cycles, but this paper finds CO2 played a minor role, stating, "Carbon dioxide is involved, but is not determinative, in the evolution of the 100,000-year glacial cycles." Still unexplained, however, is that ice ages were approximately synchronous between the Northern and Southern hemispheres, even though by Milankovitch theory an increase in solar radiation in the Northern Hemisphere is offset by an equal decrease of solar radiation in the Southern Hemisphere.



Excerpts:






The 100-kyr periodicity, the sawtooth pattern and the timing of the terminations are reproduced with constant CO2 levels 20,24 (for example  220 p.p.m.; Fig. 1e), and are robust for a range of model parameters (Supplementary Fig. 4).  



By contrast, the spectral peak of ,100-kyr cycles is greatly reduced,  and permanent large ice sheets remain, with the imposition of instantaneous isostatic rebound (Fig. 1f). This result supports the idea that the  crucial mechanism for the 100-kyr cycles is the delayed glacial isostatic rebound 14,15, which keeps the ice elevation low, and, therefore,  the ice ablation high, while the ice sheet retreats. We note, however,  that CO2 variations can result in amplification of the full magnitude of ice-volume changes during the 100-kyr cycles, but do not drive the cycles. Ice-sheet changes may induce variations in CO2 through changing sea surface temperature, affecting the solubility of CO2 (ref. 25), and through changing sea level, affecting the stratification of and CO2 storage in the Southern Ocean18. During deglaciation, the melt water may affect ocean circulation, leading to an increase in atmospheric  CO2 (refs 23, 26, 27). 



A remarkable conclusion from our model results is therefore that  the 100,000 year glacial cycle exists only because of the unique geographic  and climatological setting of the North American ice sheet with respect to received insolation. Only for the North American ice sheet is the  upper hysteresis branch moderately inclined; that is, there is a gradual  change between large and small equilibrium ice-sheet volumes over a large range of insolation forcings. For this reason, as demonstrated in  Fig. 2b, the amplitude modulation of summer insolation variation in  the precessional cycle, due primarily to eccentricity, is able to generate the 100-kyr cycles with large amplitude, gradual growth and rapid  terminations.






Insolation-driven 100,000-year glacial cycles and hysteresis of ice-sheet volume



  • Ayako Abe-Ouchi,

  • Fuyuki Saito,

  • Kenji Kawamura,

  • Maureen E. Raymo,

  • Jun’ichi Okuno,

  • Kunio Takahashi

  • & Heinz Blatter



  • Affiliations

  • Contributions

  • Corresponding author




Nature
 
500,
 
190–193
 
(08 August 2013)
 
doi:10.1038/nature12374


Received

 
19 February 2013 

Accepted

 
10 June 2013 

Published online

 
07 August 2013



Article tools


    The growth and reduction of Northern Hemisphere ice sheets over the past million years is dominated by an approximately 100,000-year periodicity and a sawtooth pattern1, 2 (gradual growth and fast termination). Milankovitch theory proposes that summer insolation at high northern latitudes drives the glacial cycles3, and statistical tests have demonstrated that the glacial cycles are indeed linked to eccentricity, obliquity and precession cycles4, 5. Yet insolation alone cannot explain the strong 100,000-year cycle, suggesting that internal [natural] climatic feedbacks may also be at work4, 5, 6, 7. Earlier conceptual models, for example, showed that glacial terminations are associated with the build-up of Northern Hemisphere ‘excess ice’5, 8, 9, 10, but the physical mechanisms underpinning the 100,000-year cycle remain unclear. Here we show, using comprehensive climate and ice-sheet models, that insolation and internal feedbacks between the climate, the ice sheets and the lithosphere–asthenosphere system explain the 100,000-year periodicity. The responses of equilibrium states of ice sheets to summer insolation show hysteresis11, 12, 13, with the shape and position of the hysteresis loop playing a key part in determining the periodicities of glacial cycles. The hysteresis loop of the North American ice sheet is such that after inception of the ice sheet, its mass balance remains mostly positive through several precession cycles, whose amplitudes decrease towards an eccentricity minimum. The larger the ice sheet grows and extends towards lower latitudes, the smaller is the insolation required to make the mass balance negative. Therefore, once a large ice sheet is established, a moderate increase in insolation is sufficient to trigger a negative mass balance, leading to an almost complete retreat of the ice sheet within several thousand years. This fast retreat is governed mainly by rapid ablation due to the lowered surface elevation resulting from delayed isostatic rebound14, 15, 16, which is the lithosphere–asthenosphere response. Carbon dioxide is involved, but is not determinative, in the evolution of the 100,000-year glacial cycles.





Excerpts:





 


 




 



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New paper finds CO2 emissions self-regulate as economic prosperity increases, without carbon taxes

Posted on 11:46 by Unknown
A paper published today in Global Environmental Change finds that CO2 emissions are essentially self-regulating, that after countries reach a higher GDP level, CO2 emissions stabilize or even decrease, without the imposition of carbon taxes. According to the authors, "Evidence from recent four decades indicates that per capita carbon dioxide emission first significantly and monotonously increase at low income level and flattens after per capita income reaches at about 22,000 $ (2005 constant price)." "A 'first-rise-then-flat' relationship of carbon dioxide per capita and GDP per capita was found", which suggests carbon taxes are unnecessary to stabilize emissions in higher GDP countries.





How does carbon dioxide emission change with the economic development? Statistical experiences from 132 countries



  • Hua Liaoa, b, Corresponding author contact information, E-mail the corresponding author, E-mail the corresponding author, 

  • Huai-Shu Caoa, b



  • a School of Management and Economics, Beijing Institute of Technology, Beijing 100081, China

  • b Center for Energy and Environmental Policy Research, Beijing Institute of Technology, Beijing 100081, China







Highlights





•


Historical carbon dioxide-GDP relationship was examined using a flexible linear spline model.


•


A “first-rise-then-flat” relationship of carbon dioxide per capita and GDP per capita was found.


•


Conclusions are robust to model specifications, econometric methods and data sources.









Abstract



Issues concerning what measures should be adopted to achieve a sustainable world with less carbon dioxide emission and in what magnitude should we reduce our emission have been on agenda in both international negotiations and countries’ policy making aimed at coping with potential global climate change. These issues cannot be easily addressed unless comprehensive understanding about the countries’ status quo as well as historical relationship between economic development and carbon dioxide emission are gained. In this paper, we examine the historical relationship between economic development and carbon dioxide emission; the ex ante restrictions on function forms and the poorly handled robustness issues rife in economics literature are synthetically addressed. Evidence from recent four decades indicates that per capita carbon dioxide emission first significantly and monotonously increase at low income level and flattens after per capita income reaches at about 22,000 $ (2005 constant price). We perform various robustness checks by employing different data sources, different model specifications and different econometric estimates. The captured development–emission relationship is robust. Our empirical results indicate factors such as urbanization, population density, trade, energy mix and economic environment impact the absolute level of carbon dioxide emission not the overall income elasticity structure of carbon dioxide emission.


Related post from Dr. Judith Curry:


JC comments:  For the sake of argument, lets assume that the IPCC consensus is roughly correct regarding dangerous anthropogenic climate change, with the dangers becoming apparent in the latter half of the 21st century, and mitigation of CO2 emissions from burning fossil fuels  is necessary, urgent, imperative (or whatever the latest word being used in professional society advocacy statements).


How do you square this climate policy ‘imperative’ with the real need right now of the majority of the people on the planet for greater access to energy?  Further, the potential development associated with increased energy could make these societies far more resilient to natural disasters (whatever the cause) than they currently are now. Not to mention that developed countries have lower population growth rates and pay more attention to their environment. 


Which imperative is more ‘moral’ – to insist on reduced fossil fuel emissions over concern about what might happen > 50 years hence, in a future world that we can hardly imagine, or to support energy equity in the developing world and concretely improve lives in the here and now?  How would cost/benefit analysis of this tradeoff even be conducted?  What is the ‘morality’ here? 


To those scientists that are advocating for a global emissions reduction policy, have you thought this one through (Jim Hansen seems to have)?  This is one of the issues that makes the climate change problem so wicked.





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New paper finds ocean along Baja California coast is a net source of CO2 to the atmosphere

Posted on 10:59 by Unknown
A new paper published in the Journal of Geophysical Research Oceans finds the near-shore region in Baja California (Mexico) "was a weak annual net source of CO2 to the atmosphere." The paper joins at least 3 other peer-reviewed publications based on careful in-situ ocean measurements finding the oceans may act as a source rather than a sink for CO2, calling into question the belief that man is entirely responsible for the increase of CO2 levels. Prior work by Salby, Humlum et al, Frölicher et al, Cho et al, Calder et al, Francey et al, Ahlbeck, Pettersson, and others have demonstrated that man-made CO2 is not the driver of atmospheric CO2.

Air-sea CO2 fluxes in the near-shore and intertidal zones influenced by the California Current


Janet J. Reimer 1,2, Rodrigo Vargas 3,*,Stephen V. Smith 4, Ruben Lara-Lara 2,Gilberto Gaxiola-Castro 2, J. Martin Hernandez-Ayon 5, Angel Castro 6, Martin Escoto-Rodriguez 7, Juan Martínez-Osuna 2

Abstract: The study of air-sea CO2 fluxes (FCO2) in the coastal region is needed to better understand the processes which influence the direction and magnitude of FCO2 and to constrain the global carbon budget. We implemented a one-year (January through December, 2009) paired study to measure FCO2 in the intertidal zone (the coastline to 1.6 km offshore) and the near-shore (~3 km offshore) off the north-western coast of Baja California (Mexico); a region influenced by year-round upwelling. FCO2 was determined in the intertidal zone via eddy covariance; while in the near-shore using mooring buoy sensors then calculated with the bulk method. The near-shore region was a weak annual net source of CO2 to the atmosphere (0.043 mol CO2 m-2 y-1); where 91% of the outgassed FCO2 was contributed during the upwelling season. SST and ΔpCO2(from upwelling) showed the strongest relationship with FCO2 in the near-shore suggesting the importance of meso-scale processes (upwelling). FCO2 in the intertidal zone were up to four orders of magnitude higher than FCO2 in the near-shore. Wind speed showed the strongest relationship with FCO2 in the intertidal zone suggesting the relevance of micro-scale processes. Results show that there are substantial spatial and temporal differences in FCO2 between the near-shore and intertidal zone; likely a result of spatial differences. We suggest that detailed spatial and temporal measurements are needed across the coastal oceans and continental margins to better understand the mechanisms which control FCO2, as well as reduce uncertainties and constrain regional and global ocean carbon balances.

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New paper finds the Sun controls sea levels of the Caspian Sea

Posted on 10:02 by Unknown
A new paper published in Climate of the Past reconstructs sea levels in the Caspian Sea [the world's largest landlocked sea] over the past millenium and finds sea levels were controlled by solar activity. According to the authors, "A comparison of the Caspain Sea Level curve with other lake systems and proxy records suggests that the main sea-level oscillations are essentially paced by solar irradiance." The authors find decreased solar activity leads to higher Caspian sea levels and vice-versa, and show a long-term increase in total solar irradiance over the past 500 years. The present sea level is found to be not high or low in comparison to the past millenium. The findings raise several points of interest in the current climate debate, namely that tiny variations in solar activity can have large, amplified effects upon the hydrological cycle and climate, and that there is no evidence of an influence of CO2 levels on the hydrological cycle.






Caspian Sea Levels shown in bottom graph, Total solar irradiance is shown in 3rd graph from bottom on an inverse scale.








Clim. Past, 9, 1645-1665, 2013

www.clim-past.net/9/1645/2013/

doi:10.5194/cp-9-1645-2013






Caspian sea-level changes during the last millennium: historical and geological evidence from the south Caspian Sea



A. Naderi Beni1, H. Lahijani2, R. Mousavi Harami1, K. Arpe3,4, S. A. G. Leroy4, N. Marriner5, M. Berberian6, V. Andrieu-Ponel7, M. Djamali7, A. Mahboubi1, and P. J. Reimer8

1Geology Department, Faculty of Science, Ferdowsi University of Mashhad, Mashhad, Iran
2Marine Geology Department, Iranian National Institute for Oceanography (INIO), Tehran, Iran
3Max Planck Institute for Meteorology, Hamburg, Germany
4Institute for the Environment, Brunel University, UB8 3PH Uxbridge, London, UK
5Aix-Marseille Université, CNRS, CEREGE, UMR6635 – IRD, CEREGE, UMR161 – Collège de France, CEREGE, 13545 Aix en Provence cedex 4, France
6School of Mathematics, Science, and Technology, Ocean County College, Toms River, NJ 08754-2001, USA
7Institut Méditerranéen de Biodiversité et d'Ecologie UMR7263 CNRS/Aix-Marseille Université – Europôle Méditerranéen de l'Arbois – Pavillon Villemin – BP 80, 13545 Aix-en-Provence Cedex 04, France
8School of Geography, Archaeology and Palaeoecology, Queen's University Belfast, Belfast, BT7 1NN, Northern Ireland, UK


Abstract. Historical literature may constitute a valuable source of information to reconstruct sea-level changes. Here, historical documents and geological records have been combined to reconstruct Caspian sea-level (CSL) changes during the last millennium. In addition to a comprehensive literature review, new data from two short sediment cores were obtained from the south-eastern Caspian coast to identify coastal change driven by water-level changes and to compare the results with other geological and historical findings. The overall results indicate a high-stand during the Little Ice Age, up to −21 m (and extra rises due to manmade river avulsion), with a −28 m low-stand during the Medieval Climate Anomaly, while presently the CSL stands at −26.5 m. A comparison of the CSL curve with other lake systems and proxy records suggests that the main sea-level oscillations are essentially paced by solar irradiance. Although the major controller of the long-term CSL changes is driven by climatological factors, the seismicity of the basin creates local changes in base level. These local base-level changes should be considered in any CSL reconstruction.
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Tuesday, 6 August 2013

MIT's Dr. Richard Lindzen defeats warmist opponents in rare debate

Posted on 13:55 by Unknown
MIT Professor of Atmospheric Science Dr. Richard Lindzen was recently featured in a recommended debate at the Oxford Union broadcast by Al Jazeera. Dr. Lindzen defeats his hysterical opponents with calm logic and scientific reasoning, including the 'moderator' Mehdi Hasan, pie-throwing activist Mark Lynas, and warmist Myles Allen. Also included is journalist David Rose, author of skeptical articles published in the Daily Mail. Dr. Lindzen [and ironically even his warmist opponents] dismiss the notion of a 97% scientific 'consensus' or IPCC 'consensus'. It is one of the very few debates in existence in which an eminent scholar & skeptic is allowed to express his views without biased editing and is well worth the 46 minute viewing time. 


"If I'm wrong, we'll know it in 50 years and can then do something." -Professor Richard Lindzen 







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Review paper finds warming causes fewer hurricanes & little to no change of intensity

Posted on 13:16 by Unknown
A review paper by SPPI & CO2 Science finds, contrary to claims by climate alarmists, that warming causes fewer Atlantic hurricanes and has little to no impact upon the intensity of hurricanes.




tropical_cyclones


For the Full Report in PDF Form, please click here.


[Illustrations, footnotes and references available in PDF version]


Excerpts:


Climate alarmists continue to claim that rising temperatures lead to ever more intense Atlantic Basin hurricanes. But are they correct? We here review the results of a number of studies that are germane to this question.


Several studies have actually found yearly hurricane numbers to decline as temperatures rise.


When all is said and done, they report that their results "show no significant trend in potential intensity from 1980 to 1995 and no consistent trend from 1975 to 1995." What is more, they report that between 1975 and 1980, "while SSTs rose, PI decreased, illustrating the hazards of predicting changes in hurricane intensity from projected SST changes alone."


The comparison of SSTs actually encountered by individual storms performed by Michaels et al. refutes the idea that anthropogenic activity has detectably influenced the severity of Atlantic basin hurricanes over the past quarter-century.


While some researchers have hypothesized that increases in long-term sea surface temperature may lead to marked increases in TC storm intensity, our findings demonstrate that various indicators of TC intensification show no significant trend over the recent three decades.


In addition to the growing body of empirical evidence that indicates global warming has little to no impact on the intensity of hurricanes, there is now considerable up-to-date model-based evidence for the same conclusion.


Clearly, the temperature/hurricane connection is nowhere near as "one-dimensional" as Al Gore and others make it out to be. Warming alone does not imply that hurricanes are getting stronger.


A future where relative SST controls Atlantic hurricane activity is a future similar to the recent past, with periods of higher and lower hurricane activity relative to present-day conditions due to natural climate variability, but with little long-term trend.



Prior posts on hurricanes and cyclones

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