{"id":2187114,"date":"2025-06-11T06:00:03","date_gmt":"2025-06-11T05:00:03","guid":{"rendered":"https:\/\/focusingonwildlife.com\/news\/?p=2187114"},"modified":"2026-06-24T15:53:22","modified_gmt":"2026-06-24T14:53:22","slug":"birds-vs-wind-turbines-new-research-aims-to-prevent-deaths","status":"publish","type":"post","link":"https:\/\/focusingonwildlife.com\/news\/birds-vs-wind-turbines-new-research-aims-to-prevent-deaths\/","title":{"rendered":"Birds vs. Wind Turbines: New Research Aims to Prevent Deaths"},"content":{"rendered":"<p>Wind energy is an important tool for reducing carbon emissions. Hundreds of thousands of wind turbines now operate globally, and despite recent challenges in some countries, analysts predict that wind power capacity could grow tenfold by 2050. But wind turbines can have significant environmental impacts, particularly on birds.<\/p>\n<p>In 2021, the American Bird Conservancy estimated that collisions with wind turbines in the United States killed about 1.17 million birds that year, a fact often cited by wind power opponents. In response, climate activists often frame turbine deaths as a red herring, pointing out that many more birds are killed by free-ranging domestic cats or by flying into windows, and that climate change fueled by carbon emissions is a significant threat to birds.<\/p>\n<p>Ornithologists who study the problem agree that cats, windows, and climate change are serious threats to birds but say wind farm impacts must also be taken seriously. Turbines can kill different types of birds than windows and cats do \u2014 for example, ecologically important seabirds and birds of prey that breed slowly and whose populations can\u2019t quickly recover from losses (large raptors usually fly too high to hit windows). Research shows that some birds are strongly repelled by wind turbines; they won\u2019t fly or feed within miles of them, and so lose large areas of habitat. As wind farms proliferate, experts say, they could increasingly disrupt bird breeding and movements, including long-distance migrations.<\/p>\n<blockquote><p>Some companies are rolling out radar and cameras linked to A.I. that will shut down turbines when birds fly too close.<\/p><\/blockquote>\n<p>But scientists and entrepreneurs are finding ways of reducing these conflicts. They are researching bird behavior near turbines and devising and testing new technologies to keep birds safe. Some potential solutions are simple, like painting turbine blades in contrasting colors. Others are complex and expensive, like using cameras with A.I. technology to shut turbines down when birds approach. Although progress on solutions has been uneven, most researchers and conservationists believe that if the wind industry takes birds seriously \u2014 a big \u201cif\u201d because only some operators currently do \u2014 the conflicts can be significantly reduced.<\/p>\n<p>It can be hard to understand why birds fly into wind turbines. On a clear day they\u2019re obvious to human eyes from miles away. Why do eagles, for example, collide with turbines even though their large eyes resolve far finer details at much greater distances than ours do? Graham Martin, a bird vision expert at the University of Birmingham, says that birds don\u2019t see the world as humans do, and different species of birds see the world differently from each other.<\/p>\n<p>Small songbirds usually have all-round vision, while \u201clarge-eyed birds tend to have a blind area above their heads,\u201d he says. Birds like eagles and vultures \u201cspend a lot of time flying at reasonable altitudes, not particularly high, looking at the ground\u201d for food, so \u201cthey\u2019re effectively flying blind.\u201d Many species have not evolved behaviorally to regularly look ahead in their direction of travel, he says, because their ancestors have for millions of years \u201cflown in open airspace where there\u2019s never been anything [like a wind turbine] intruding.\u201d<\/p>\n<p>Many bird species are also less able than humans to detect contrast. Turbines are often painted white or pale gray to be less visually intrusive to humans, but that can make them harder for birds to see against the sky. Martin says that ducks and geese often fly at high speed in low light \u2014 before dawn and at twilight \u2014 or in foggy weather. Although they have good forward vision, their habit of flying fast in low-visibility conditions places them at risk. And small songbirds often migrate at night, adding another layer of complexity to the problem.<\/p>\n<p>One thing is clear from the growing body of research on wind turbines and birds: The impacts of these machines vary by place, time, and species of bird. Some wind farms kill large numbers of birds; others do not. Some types of birds, like gulls, are killed at some wind farms and not at others; researchers don\u2019t always know why. Corvids \u2014 crows, ravens, and their relatives \u2014 generally do not collide with wind turbines, while birds of prey often do. Weather conditions and surrounding habitats also influence the effects of turbines; for example, turbines on the Dutch coast, which hosts high concentrations of migratory species, kill many more birds than inland turbines do.<\/p>\n<blockquote><p>Wind farms in South Africa already kill an average of 3.8 endangered black harriers per year, a rate that must be reduced.<\/p><\/blockquote>\n<p>The Sm\u00f8la Wind Farm consists of 68 turbines on an island off the Norwegian coast. It was completed in 2005, and researchers began using trained dogs to search for dead birds under its turbines in 2006. Over the following six years, the dogs found dozens of carcasses, including those of six white-tailed eagles, which are legally protected in Norway. Then, in 2013, ornithologists led by Roel May of the Norwegian Institute for Nature Research selected four bird-killing turbines and painted one blade of each black, a color that earlier lab experiments had indicated would be highly visible to raptors. They left four neighboring turbines that had also killed birds unchanged as experimental controls.<\/p>\n<p>The Sm\u00f8la researchers continued recording dead birds until the end of 2016, when they found that overall bird deaths at the black-bladed turbines were more than 70 percent lower than at control turbines, and that the black-bladed turbines had killed no white-tailed eagles. Their data, published in 2020, received global media attention: Perhaps a simple coat of paint could solve this problem?<\/p>\n<p>In 2021, inspired by the Sm\u00f8la work, researchers began documenting bird collisions at 14 turbines at Eemshaven, on the Dutch coast. The turbines are situated in an area with high bird traffic, between wetlands, agricultural fields, and industrial sites. In 2022, one blade on each of seven turbines was painted black, and the collision monitoring continued. The outcomes so far have been disappointing; there has been no large reduction in bird fatalities at the black-bladed turbines.<\/p>\n<figure class=\"thumbnail wp-caption alignnone\" style=\"width: 1083px\"><img decoding=\"async\" src=\"data:image\/gif;base64,R0lGODlhAQABAIAAAAAAAP\/\/\/ywAAAAAAQABAAACAUwAOw==\" fifu-lazy=\"1\" fifu-data-sizes=\"auto\" fifu-data-srcset=\"https:\/\/i2.wp.com\/www.tno.nl\/publish\/pages\/9587\/website_image_1484x835_3_.jpg?ssl=1&amp;w=75&amp;resize=75&amp;ssl=1 75w, https:\/\/i2.wp.com\/www.tno.nl\/publish\/pages\/9587\/website_image_1484x835_3_.jpg?ssl=1&amp;w=100&amp;resize=100&amp;ssl=1 100w, https:\/\/i2.wp.com\/www.tno.nl\/publish\/pages\/9587\/website_image_1484x835_3_.jpg?ssl=1&amp;w=150&amp;resize=150&amp;ssl=1 150w, https:\/\/i2.wp.com\/www.tno.nl\/publish\/pages\/9587\/website_image_1484x835_3_.jpg?ssl=1&amp;w=240&amp;resize=240&amp;ssl=1 240w, https:\/\/i2.wp.com\/www.tno.nl\/publish\/pages\/9587\/website_image_1484x835_3_.jpg?ssl=1&amp;w=320&amp;resize=320&amp;ssl=1 320w, https:\/\/i2.wp.com\/www.tno.nl\/publish\/pages\/9587\/website_image_1484x835_3_.jpg?ssl=1&amp;w=500&amp;resize=500&amp;ssl=1 500w, https:\/\/i2.wp.com\/www.tno.nl\/publish\/pages\/9587\/website_image_1484x835_3_.jpg?ssl=1&amp;w=640&amp;resize=640&amp;ssl=1 640w, https:\/\/i2.wp.com\/www.tno.nl\/publish\/pages\/9587\/website_image_1484x835_3_.jpg?ssl=1&amp;w=800&amp;resize=800&amp;ssl=1 800w, https:\/\/i2.wp.com\/www.tno.nl\/publish\/pages\/9587\/website_image_1484x835_3_.jpg?ssl=1&amp;w=1024&amp;resize=1024&amp;ssl=1 1024w, https:\/\/i2.wp.com\/www.tno.nl\/publish\/pages\/9587\/website_image_1484x835_3_.jpg?ssl=1&amp;w=1280&amp;resize=1280&amp;ssl=1 1280w, https:\/\/i2.wp.com\/www.tno.nl\/publish\/pages\/9587\/website_image_1484x835_3_.jpg?ssl=1&amp;w=1600&amp;resize=1600&amp;ssl=1 1600w\" class=\"\" fifu-data-src=\"https:\/\/i2.wp.com\/www.tno.nl\/publish\/pages\/9587\/website_image_1484x835_3_.jpg?ssl=1\" alt=\"Workers paint a turbine blade black in an effort to deter birds in Eemshaven, the Netherlands. RWE\" width=\"1073\" height=\"603\" title=\"\"><figcaption class=\"caption wp-caption-text\">Workers paint a turbine blade black in an effort to deter birds in Eemshaven, the Netherlands. RWE<\/figcaption><\/figure>\n<p>Eric Klop, a Dutch ornithologist who has worked at Eemshaven, tells Yale Environment 360 that perhaps black blades don\u2019t stand out against the nearby industrial landscape as well as they do against an often-snowy Norwegian island. And Eemshaven birds may have become accustomed to vehicle activity and are therefore less sensitive to movement than birds in rural Norway.<\/p>\n<p>Another blade-patterning experiment, halfway around the world, is showing promise, though. In South Africa, several bird species are at significant risk from wind farms, among them the endangered black harrier, a striking, medium-sized raptor with a declining population of fewer than 1,300 birds. A recent study estimates that a loss of just three to five adults per year will drive the species extinct in less than a century. BirdLife South Africa research shows that wind farms already kill an average of at least 3.8 black harriers per year, a rate that must be reduced.<\/p>\n<p>The Hopefield wind farm, north of Cape Town, is known to kill 10 species of raptors, including black harriers. In early 2023, University of Cape Town ornithologist Rob Simmons selected 20 turbines within the wind farm for an experiment. He arranged for one blade on each of four particularly lethal turbines to be painted with broad red bands, leaving the remaining 16 turbines as controls. (He\u2019d wanted black, but South African aviation safety authorities allowed only signal red.)<\/p>\n<blockquote><p>In Africa, some wind farms rely on human observers to shut down individual turbines when at-risk birds approach.<\/p><\/blockquote>\n<p>Bird deaths at Hopefield were monitored for 24 months before painting and 24 months after. According to Simmons, bird deaths went down by more than 80 percent at the four red-banded turbines, with the control turbines showing much less of a reduction. Significantly, Simmons says, the patterned turbines have killed only one bird of prey since painting, compared to seven before painting.<\/p>\n<p>Graham Martin, the vision expert, says that the most effective pattern for making turbines maximally visible to the widest range of birds would likely be broad black and white stripes across blades and on the tower \u2014 although this might be visually annoying to people and is prohibited by aviation rules in some countries. Like others interviewed for this article, he emphasizes that more research on blade patterning must be done to establish its efficacy in different contexts.<\/p>\n<p>Another way to reduce bird deaths at turbines is to stop or slow blade rotation when birds are nearby, a process called \u201cbird curtailment.\u201d Turbines can be shut down for days or weeks when, for example, large numbers of birds are expected to be migrating through or breeding in an area. If a specific at-risk bird (like a low-flying eagle) is passing nearby, the turbines can be stopped or slowed for just a few minutes, a process known as \u201cshutdown on demand.\u201d<\/p>\n<figure class=\"thumbnail wp-caption alignnone\" style=\"width: 1035px\"><img decoding=\"async\" src=\"data:image\/gif;base64,R0lGODlhAQABAIAAAAAAAP\/\/\/ywAAAAAAQABAAACAUwAOw==\" fifu-lazy=\"1\" fifu-data-sizes=\"auto\" fifu-data-srcset=\"https:\/\/i2.wp.com\/africanbirdlife.org.za\/wp-content\/uploads\/2025\/06\/IdentiFlight-System_IdentiFlight.jpg.webp?ssl=1&amp;w=75&amp;resize=75&amp;ssl=1 75w, https:\/\/i2.wp.com\/africanbirdlife.org.za\/wp-content\/uploads\/2025\/06\/IdentiFlight-System_IdentiFlight.jpg.webp?ssl=1&amp;w=100&amp;resize=100&amp;ssl=1 100w, https:\/\/i2.wp.com\/africanbirdlife.org.za\/wp-content\/uploads\/2025\/06\/IdentiFlight-System_IdentiFlight.jpg.webp?ssl=1&amp;w=150&amp;resize=150&amp;ssl=1 150w, https:\/\/i2.wp.com\/africanbirdlife.org.za\/wp-content\/uploads\/2025\/06\/IdentiFlight-System_IdentiFlight.jpg.webp?ssl=1&amp;w=240&amp;resize=240&amp;ssl=1 240w, https:\/\/i2.wp.com\/africanbirdlife.org.za\/wp-content\/uploads\/2025\/06\/IdentiFlight-System_IdentiFlight.jpg.webp?ssl=1&amp;w=320&amp;resize=320&amp;ssl=1 320w, https:\/\/i2.wp.com\/africanbirdlife.org.za\/wp-content\/uploads\/2025\/06\/IdentiFlight-System_IdentiFlight.jpg.webp?ssl=1&amp;w=500&amp;resize=500&amp;ssl=1 500w, https:\/\/i2.wp.com\/africanbirdlife.org.za\/wp-content\/uploads\/2025\/06\/IdentiFlight-System_IdentiFlight.jpg.webp?ssl=1&amp;w=640&amp;resize=640&amp;ssl=1 640w, https:\/\/i2.wp.com\/africanbirdlife.org.za\/wp-content\/uploads\/2025\/06\/IdentiFlight-System_IdentiFlight.jpg.webp?ssl=1&amp;w=800&amp;resize=800&amp;ssl=1 800w, https:\/\/i2.wp.com\/africanbirdlife.org.za\/wp-content\/uploads\/2025\/06\/IdentiFlight-System_IdentiFlight.jpg.webp?ssl=1&amp;w=1024&amp;resize=1024&amp;ssl=1 1024w, https:\/\/i2.wp.com\/africanbirdlife.org.za\/wp-content\/uploads\/2025\/06\/IdentiFlight-System_IdentiFlight.jpg.webp?ssl=1&amp;w=1280&amp;resize=1280&amp;ssl=1 1280w, https:\/\/i2.wp.com\/africanbirdlife.org.za\/wp-content\/uploads\/2025\/06\/IdentiFlight-System_IdentiFlight.jpg.webp?ssl=1&amp;w=1600&amp;resize=1600&amp;ssl=1 1600w\" class=\"\" fifu-data-src=\"https:\/\/i2.wp.com\/africanbirdlife.org.za\/wp-content\/uploads\/2025\/06\/IdentiFlight-System_IdentiFlight.jpg.webp?ssl=1\" alt=\"A monitoring system (right) uses A.I. to determine if birds are in danger of colliding with turbines in Alameda County, California. IdentiFlight\" width=\"1025\" height=\"695\" title=\"\"><figcaption class=\"caption wp-caption-text\">A monitoring system (right) uses A.I. to determine if birds are in danger of colliding with turbines in Alameda County, California. IdentiFlight<\/figcaption><\/figure>\n<p>Longer-duration bird curtailment is not popular among wind farm operators as it can significantly reduce their income, but it\u2019s been identified as a vital strategy to protect migratory birds. Project Start\/Stop in the Netherlands aims to protect birds while minimizing turbine downtime. Its predictive models combine bird radar and weather data to finely forecast peak bird migration periods and shut down offshore turbines when large numbers of migrants are flying over the North Sea, as millions do every spring and autumn.<\/p>\n<p>Shutdown on demand of individual turbines usually results in far less generation loss than longer-term curtailment, but it can be more technically challenging to implement. A large shutdown on demand project in Spain, which covered 269 turbines at 20 wind farms, dropped mortalities of large soaring birds like storks and raptors by more than 60 percent but cut energy production by only 0.51 percent.<\/p>\n<p>In Africa, where labor costs are low, a small number of wind farms are using human observers to monitor bird movement and shut down individual turbines when at-risk birds approach. The Excelsior Wind Farm in South Africa, for example, has used this technique to completely eliminate mortality of large birds of prey while losing less than 1 percent of energy production, although two fast-flying, harder-to-see black harriers have been killed there.<\/p>\n<blockquote><p>A.I. systems must be trained on specific species at specific sites \u2014 this takes months or years and can be expensive.<\/p><\/blockquote>\n<p>In places with high labor costs, like Europe and North America, companies are rolling out high-resolution radar and cameras linked to artificial intelligence image analyzers to detect birds and automatically shut down turbines when they fly too close. Different systems have different strengths. Radar can\u2019t normally identify birds to species level, but it can tell large birds from small and operate around the clock and in inclement weather. A.I.-supported camera systems can be trained to identify species, but they don\u2019t work well in poor weather or at night. Jonne Kleyheeg-Hartman, a Dutch ornithologist with experience in these systems, says that A.I. camera systems must be trained on specific species at specific sites \u2014 this takes months or years and can be expensive, which currently limits their utility.<\/p>\n<p>Longer-term curtailment and shutdown on demand can hugely reduce bird deaths at wind farms, experts say, but there is currently insufficient regulatory pressure in many parts of the world to push operators to use these methods.<\/p>\n<p>Experts agree that the most important factor in determining how dangerous a wind turbine will be to birds is its location. They say turbine site selection should include close study, for several years, of how birds use an area before a project moves forward, but this often is not done due to pressure from investors to speed projects along or the lack of enforceable laws. Roel May says the key to building bird-friendly wind farms is clear regulation: Governments must ensure that impacts on birds are researched in advance, monitored during operation and, if necessary, reduced, as they increasingly are in some European countries.<\/p>\n<p>\u201cIf you\u2019re painting blades black or doing curtailment that means you know you have a problem,\u201d says May \u2014 a problem that could have been avoided by placing turbines elsewhere. He says that in many countries, wind developers consider social and environmental impacts only after they\u2019ve settled on sites with good wind and access to electricity distribution networks, which is too late. \u201cThe more research you do early in the planning process, the better.\u201d<\/p>\n<p><em>This <a href=\"https:\/\/e360.yale.edu\/features\/wind-turbine-bird-collision-solutions\" target=\"_blank\" rel=\"noopener nofollow external noreferrer\" data-wpel-link=\"external\">article<\/a> by Adam Welz was first published by e360.yale.edu on 4 June 2025. Lead Image:\u00a0A red kite at a wind farm in Sieversdorf-Hohenofen, Germany. Red kites are particularly at risk of colliding with turbines. Patrick Pleul \/ dpa.<\/em><\/p>\n<h2>Wildlife in catastrophic decline<\/h2>\n<p>The 73% decline in vertebrate wildlife populations during the last 50 years (mammals, birds, amphibians, reptiles and fish), is primarily driven by human activities that threaten biodiversity.<\/p>\n<p><em>Habitat Loss and Degradation<\/em> &#8211; human activities like deforestation, urbanization, and agriculture have led to the destruction and fragmentation of natural habitats, reducing the space and resources available for wildlife.<\/p>\n<p><em>Pollution<\/em> &#8211; air, water, and soil pollution from industrial activities, agriculture, and other sources can harm wildlife directly or indirectly by affecting their habitats and food sources.<\/p>\n<p><em>Climate Change<\/em> &#8211; changing weather patterns, rising temperatures, and sea levels are disrupting ecosystems and impacting species&#8217; ability to adapt and survive.<\/p>\n<p><em>Overexploitation of Resources<\/em> &#8211; unsustainable hunting, fishing, and logging practices can lead to the depletion of populations and the loss of biodiversity.<\/p>\n<p><em>Invasive Species<\/em> &#8211; the introduction of non-native species can disrupt ecosystems, compete with native species, and threaten their survival.<\/p>\n<p><script type=\"text\/javascript\" defer=\"\" src=\"https:\/\/donorbox.org\/install-popup-button.js\" id=\"donorbox-popup-button-installer\"> <\/script><a id=\"preview_inline_popup_button\" class=\"dbox-donation-button\" style=\"background: #0dc5dc; color: #ffffff; text-decoration: none; font-family: Verdana, sans-serif; display: flex; gap: 8px; width: fit-content; font-size: 16px; border-radius: 5px; line-height: 24px; padding: 8px 24px;\" href=\"https:\/\/donorbox.org\/focusing-on-wildlife-needs-your-support?amount=50\" data-reminder-widget-enabled=\"true\" target=\"_blank\" rel=\"noopener nofollow external noreferrer\" data-wpel-link=\"external\"><img decoding=\"async\" src=\"data:image\/gif;base64,R0lGODlhAQABAIAAAAAAAP\/\/\/ywAAAAAAQABAAACAUwAOw==\" fifu-lazy=\"1\" fifu-data-sizes=\"auto\" fifu-data-srcset=\"https:\/\/donorbox.org\/images\/white_logo.svg 75w, https:\/\/donorbox.org\/images\/white_logo.svg 100w, https:\/\/donorbox.org\/images\/white_logo.svg 150w, https:\/\/donorbox.org\/images\/white_logo.svg 240w, https:\/\/donorbox.org\/images\/white_logo.svg 320w, https:\/\/donorbox.org\/images\/white_logo.svg 500w, https:\/\/donorbox.org\/images\/white_logo.svg 640w, https:\/\/donorbox.org\/images\/white_logo.svg 800w, https:\/\/donorbox.org\/images\/white_logo.svg 1024w, https:\/\/donorbox.org\/images\/white_logo.svg 1280w, https:\/\/donorbox.org\/images\/white_logo.svg 1600w\" fifu-data-src=\"https:\/\/donorbox.org\/images\/white_logo.svg\" alt=\"\" title=\"\">Donate<\/a><\/p>\n<p><em>Help to protect wildlife by donating as little as $5. Our <a href=\"https:\/\/focusingonwildlife.com\/news\/wildlife-charities-supported-by-focusing-on-wildlife\/\" target=\"_blank\" rel=\"noopener noreferrer\" data-wpel-link=\"internal\">conservation partners<\/a> spend at least 80 percent of the money raised on actual fieldwork rather than administration and fundraising.<\/em><\/p>\n<hr style=\"border-top: 1px solid white;\" \/>\n","protected":false},"excerpt":{"rendered":"<p>Wind energy is an important tool for reducing carbon emissions. Hundreds of thousands of wind turbines now operate globally, and despite recent challenges in some countries, analysts predict that wind power capacity could grow tenfold by 2050. But wind turbines can have significant environmental impacts, particularly on birds. In 2021, the American Bird Conservancy estimated [&hellip;]<\/p>\n","protected":false},"author":1178,"featured_media":2204415,"comment_status":"open","ping_status":"closed","sticky":false,"template":"","format":"standard","meta":{"fifu_image_url":"https:\/\/www.repstatic.it\/content\/contenthub\/img\/2025\/03\/10\/083431264-a30ae87e-5d8a-4873-a0e6-e7afab29e6bb.jpg?webp","fifu_image_alt":"","footnotes":""},"categories":[6985,5],"tags":[7821,872,1827,610],"class_list":["post-2187114","post","type-post","status-publish","format-standard","has-post-thumbnail","hentry","category-news","category-wildlife","tag-bird-of-prey","tag-black-necked-stilt","tag-kites","tag-white-tailed-eagle"],"_links":{"self":[{"href":"https:\/\/focusingonwildlife.com\/news\/wp-json\/wp\/v2\/posts\/2187114","targetHints":{"allow":["GET"]}}],"collection":[{"href":"https:\/\/focusingonwildlife.com\/news\/wp-json\/wp\/v2\/posts"}],"about":[{"href":"https:\/\/focusingonwildlife.com\/news\/wp-json\/wp\/v2\/types\/post"}],"author":[{"embeddable":true,"href":"https:\/\/focusingonwildlife.com\/news\/wp-json\/wp\/v2\/users\/1178"}],"replies":[{"embeddable":true,"href":"https:\/\/focusingonwildlife.com\/news\/wp-json\/wp\/v2\/comments?post=2187114"}],"version-history":[{"count":0,"href":"https:\/\/focusingonwildlife.com\/news\/wp-json\/wp\/v2\/posts\/2187114\/revisions"}],"wp:featuredmedia":[{"embeddable":true,"href":"https:\/\/focusingonwildlife.com\/news\/wp-json\/wp\/v2\/media\/2204415"}],"wp:attachment":[{"href":"https:\/\/focusingonwildlife.com\/news\/wp-json\/wp\/v2\/media?parent=2187114"}],"wp:term":[{"taxonomy":"category","embeddable":true,"href":"https:\/\/focusingonwildlife.com\/news\/wp-json\/wp\/v2\/categories?post=2187114"},{"taxonomy":"post_tag","embeddable":true,"href":"https:\/\/focusingonwildlife.com\/news\/wp-json\/wp\/v2\/tags?post=2187114"}],"curies":[{"name":"wp","href":"https:\/\/api.w.org\/{rel}","templated":true}]}}