{"id":46794,"date":"2015-03-02T04:21:00","date_gmt":"2015-03-02T03:21:00","guid":{"rendered":"https:\/\/www.sonnenseite.com\/science\/agricultural-insecticides-pose-a-global-risk-to-surface-water-bodies.html"},"modified":"2015-03-02T04:21:00","modified_gmt":"2015-03-02T03:21:00","slug":"agricultural-insecticides-pose-a-global-risk-to-surface-water-bodies","status":"publish","type":"post","link":"https:\/\/www.sonnenseite.com\/en\/science\/agricultural-insecticides-pose-a-global-risk-to-surface-water-bodies\/","title":{"rendered":"Agricultural insecticides pose a global risk to surface water bodies"},"content":{"rendered":"<p>The first global map to be produced on potential insecticide contamination<\/p>\n<p> <!--more--> <\/p>\n<p>Streams within approx. 40% of the global land surface are at risk  from the application of insecticides. These were the results from the  first global  map to be modelled on insecticide runoff to surface waters, which has  just been published in the journal Environmental Pollution by  researchers from the Helmholtz Center  for Environmental Research (UFZ) and the University of Koblenz-Landau  together with the University of Milan, Aarhus University and Aachen  University .  According to the publication, particularly streams in the Mediterranean,  the USA, Central America and Southeast Asia are at risk.<strong><br \/><\/strong><\/p>\n<p>Unlike other chemicals, agricultural pesticides are intentionally  applied to the environment to help farmers control insects, weeds and  other potentially harmful pests threatening agricultural  production. They can therefore affect land ecosystems but also surface  waters from runoff. According to estimates, ca. 4 million tons of  agricultural pesticides are applied annually, equating  to an average of 0.27 kilograms per hectare of the global land surface.  &bdquo;We know from earlier investigations for example that pesticides can  reduce the <span class=\"iconoff\">biodiversity<\/span> of invertebrates in  freshwater ecosystems by up to 42 percent and that we can expect an increased application of pesticides as a result of <span class=\"iconoff\">climate<\/span>  change&ldquo;, explains Prof. Dr. Matthias Liess from the UFZ,  who was recently appointed to a term of five years on the scientific  advisory board &#8220;National Action Plan on Sustainable Use of Plant  Protection Products&#8221; where he advises the Federal  Ministry of Food and Agriculture. Liess warns of an increase in the  application of pesticides in many developing countries as farmers  increasingly switch from traditionally extensive  agricultural practices to more intensive ones. Until now the global  extent of the potential water pollution from the application of  insecticides has remained largely unknown.<\/p>\n<p>The international team of scientists therefore came up with a global  model with a raster of ca. ten kilometres, into which agricultural data  from FAO and land use data from NASA among other data  were entered. Annual average temperatures and monthly maximum  precipitation measurements from around 77,000 weather stations were also  taken into account. Following that, the researchers then  estimated the so-called runoff potential (RP), in other words the amount  of insecticides that enters streams and rivers through the rainwater  from agricultural land. &bdquo;In this respect, daily  rainfall intensity, terrain slope, and insecticide application rate play  an equally important role as well as the crops cultivated&ldquo;, explains  junior professor Dr. Ralf B. Sch&auml;fer from the  University of Koblenz-Landau. &bdquo;In order to test such complex models, we  therefore carried out control measurements of insecticide contamination  in freshwater ecosystems from four different regions&ldquo;.<\/p>\n<p>Several world maps were produced: the vulnerability map only takes  into account the geographic and climatic background. The risk map on the  other hand shows the risks from this natural  vulnerability through anthropogenic land use. In Central Europe,  scientists largely assessed the risk for water bodies as medium to high.  In the northern hemisphere, insecticide runoff  presented an overall more significant latitudinal gradient. &bdquo;The risks  of insecticide <span class=\"iconoff\">exposure<\/span>  to water bodies increased significantly the further South one travelled  on a North-South gradient in  Europe, North America and Asia, mainly driven by a higher insecticide  application rate as a result of higher average temperatures&ldquo;, Dr. Mira  Kattwinkel reports, who is now conducting research at  the Swiss Federal Institute of Aquatic Science and Technology (Eawag).  Because the economy and the population are growing rapidly in many  countries of the southern hemisphere, scientists  expect a higher insecticide application rate in those countries in the  future to cover an increase in agricultural production. The map could  therefore still change colour considerably in other  parts of the world. At the moment it is water bodies in the  Mediterranean, the USA, Central America and Southeast Asia that are  particularly vulnerable.<\/p>\n<p>In Southeast Asia, countries such as the Philippines or Vietnam are  greatly affected for example. UFZ researchers are looking into solutions  for such regions within the framework of the  LEGATO-project together with the International Rice Research Institute  (IRRI), in an attempt to reduce pesticide application rates. One  approach for example could be to revitalise the functioning  of ecosystems so that the natural competitors of rice pests can help to  avoid their mass reproduction and subsequent harvest yield losses.<\/p>\n<p>&bdquo;Our analysis provides a global map of hotspots for insecticide contamination that are a major risk for <span class=\"iconoff\">biodiversity<\/span>  in water bodies. To our knowledge this is the first study that assesses   insecticide contamination of water bodies on a global scale&ldquo;, Prof. Dr.  Matthias Liess summarizes the significance of the new investigation. The  researchers intend to use the global map to  sensitize citizens and authorities about this issue in vulnerable  regions and to incite local investigations. Buffer zones along the edge  of water bodies can significantly reduce negative impacts  for example. Efficient environmental management and conservation efforts  in the future should focus on informing authorities and farmers about  the costs, impacts and alternatives. Ultimately,  mitigation and management takes place at the local level, determining  the extent to which a water body will be affected under the application  of such chemicals.<br \/> Tilo Arnhold<\/p>\n<h3 class=\"top15\">Publications:<\/h3>\n<p>Alessio Ippolito, Mira Kattwinkel, Jes J. Rasmussen, Ralf B. Sch&auml;fer, Riccardo Fornaroli, Matthias Liess (2015):<br \/> <a class=\"iconoff\" href=\"http:\/\/www.ufz.de\/index.php?en=12245&amp;www_gloss[gloss_id]=174#174\" target=\"_blank\" rel=\"noopener noreferrer\">Modeling<\/a>  global distribution of agricultural insecticides in surface waters.  Environmental Pollution, Volume 198, March 2015, Pages 54-60, ISSN  0269-7491,<br \/> <a href=\"http:\/\/dx.doi.org\/10.1016\/j.envpol.2014.12.016\" title=\"Modeling global distribution of agricultural insecticides in surface waters\">http:\/\/dx.doi.org\/10.1016\/j.envpol.2014.12.016<\/a><\/p>\n<p>J.H. Spangenberg, J.-M. Douguet, J. Settele, K.L. Heong (2015):<br \/> Escaping the lock-in of continuous insecticide spraying in rice.  Developing an integrated ecological and socio-political DPSIR analysis.  Ecological Modelling, Volume 295, 10 January 2015, Pages 188-195, ISSN  0304-3800,<br \/> <a href=\"http:\/\/dx.doi.org\/10.1016\/j.ecolmodel.2014.05.010\" title=\"Escaping the lock-in of continuous insecticide spraying in rice. Developing an integrated ecological and socio-political DPSIR analysis.\">http:\/\/dx.doi.org\/10.1016\/j.ecolmodel.2014.05.010<\/a><\/p>\n<div class=\"article-images\"><img loading=\"lazy\" decoding=\"async\" width=\"640\" height=\"349\" src=\"https:\/\/www.sonnenseite.com\/wp-content\/uploads\/2015\/03\/ufz_pestizideinsatz_landwir.jpg\" class=\"alignleft\" alt=\"ufz.de | Andr&eacute; K&uuml;nzelmann | Use of insecticides in the West Bank. The investigation showed that with higher average temperatures even more insecticides are used and therefore streams are more at risk in warmer regions than in colder.\" srcset=\"https:\/\/www.sonnenseite.com\/wp-content\/uploads\/2015\/03\/ufz_pestizideinsatz_landwir.jpg 770w, https:\/\/www.sonnenseite.com\/wp-content\/uploads\/2015\/03\/ufz_pestizideinsatz_landwir-300x164.jpg 300w, https:\/\/www.sonnenseite.com\/wp-content\/uploads\/2015\/03\/ufz_pestizideinsatz_landwir-768x419.jpg 768w\" sizes=\"auto, (max-width: 640px) 100vw, 640px\" \/><\/div>\n<h5 class=\"green\">Source<\/h5>\n<p><a href=\"http:\/\/www.ufz.de\/index.php?en=33597\" target=\"_blank\" rel=\"noopener noreferrer\">Helmholtz Centre for Environmental Research (UFZ) 2015<\/a><\/p>\n<div class=\"shariff shariff-align-flex-start shariff-widget-align-flex-start\"><div class=\"ShariffHeadline\">Diese Meldung teilen<\/div><ul class=\"shariff-buttons theme-round orientation-horizontal buttonsize-medium\"><li 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