{"id":2495,"date":"2025-03-23T15:19:36","date_gmt":"2025-03-23T14:19:36","guid":{"rendered":"http:\/\/magu-swiss.ch\/?page_id=2495"},"modified":"2025-03-23T20:55:44","modified_gmt":"2025-03-23T19:55:44","slug":"neopor-raw-material","status":"publish","type":"page","link":"https:\/\/magu-swiss.ch\/en\/bautechnik-oekobilanz\/rohstoff-neopor\/","title":{"rendered":"Neopor raw material"},"content":{"rendered":"<section class=\"bde-section-2495-102 bde-section\">\n  \n  \n\t\n\n\n\n<div class=\"section-container\"><div class=\"bde-columns-2495-103 bde-columns padding-elements\"><div class=\"bde-column-2495-104 bde-column\">\n  \n  \n\t\n\n\n\n<div class=\"bde-text-2495-105 bde-text\">\nThe basic component of our raw material, Neopor\u00ae, is a simple hydrocarbon that is also found as a flavoring agent in nuts, grapes, cinnamon, and kiwis: styrene.\n<\/div><div class=\"bde-div-2495-228 bde-div\">\n  \n  \n\t\n\n\n\n<h2 class=\"bde-heading-2495-229 bde-heading animated-underline\">\nHistory and Chemical Properties\n<\/h2><div class=\"bde-text-2495-230 bde-text\">\nThe first polystyrene was extracted from the resin of the sweetgum tree by pharmacist Eduard Simon in 1835. Through polymerization, long styrene chains formed\u2014polystyrene. In 1949, Fritz Stastny added pentane to polystyrene during polymerization. Pentane is an organic molecule that is also produced during natural fermentation processes. Pentane has no effect on the ozone layer because, due to its low chemical stability, it decomposes quickly, even in the lower layers of the atmosphere.\n<\/div>\n<\/div><div class=\"bde-div-2495-241 bde-div\">\n  \n  \n\t\n\n\n\n<h3 class=\"bde-heading-2495-242 bde-heading animated-underline\">\nManufacture of Expanded Polystyrene (EPS) Beads\n<\/h3><div class=\"bde-text-2495-243 bde-text\">\nJust as when corn is heated, pentane causes the long-chain polymers to expand, creating the familiar beads\u2014expanded polystyrene (EPS) beads\u2014commonly found in nursing pillows, beanbag chairs, and medical-grade vacuum mattresses.\n<\/div>\n<\/div>\n<\/div><div class=\"bde-column-2495-106 bde-column\">\n  \n  \n\t\n\n\n\n<img decoding=\"async\" class=\"bde-image2-2495-107 bde-image2\" src=\"https:\/\/magu-swiss.ch\/wp-content\/uploads\/2025\/03\/neopor-struktur-elektronenmikroskop.webp\" alt=\"Close-up of the Neopor structure under an electron microscope. Visible are the graphite layer, air pockets, and polymer chains, which are responsible for the material&#039;s unique properties.\" loading=\"lazy\" srcset=\"https:\/\/magu-swiss.ch\/wp-content\/uploads\/2025\/03\/neopor-struktur-elektronenmikroskop.webp 847w, https:\/\/magu-swiss.ch\/wp-content\/uploads\/2025\/03\/neopor-struktur-elektronenmikroskop-281x300.webp 281w, https:\/\/magu-swiss.ch\/wp-content\/uploads\/2025\/03\/neopor-struktur-elektronenmikroskop-768x819.webp 768w, https:\/\/magu-swiss.ch\/wp-content\/uploads\/2025\/03\/neopor-struktur-elektronenmikroskop-600x640.webp 600w\" sizes=\"(max-width: 847px) 100vw, 847px\">\n<\/div><\/div><div class=\"bde-div-2495-244 bde-div padding-elements\">\n  \n  \n\t\n\n\n\n<h3 class=\"bde-heading-2495-245 bde-heading animated-underline\">\nEnergy Efficiency and Structure\n<\/h3><div class=\"bde-text-2495-246 bde-text\">\nThe extent of the expansion demonstrates just how energy-efficient EPS is: the pentane expands the polymer cell structure to 50 times its original volume. This means that 1 liter of EPS raw material yields 50 liters of high-quality EPS insulation material, which is resistant to both compression and bending. A bathtub full of EPS beads weighs just 2 kg.<br><br>The pearls are so brilliantly white because their wafer-thin cell membrane reflects light in all spectral colors\u2014much like popcorn or snow.\n<\/div>\n<\/div><\/div>\n<\/section><section class=\"bde-section-2495-247 bde-section\">\n  \n  \n\t\n\n\n\n<div class=\"section-container\"><h2 class=\"bde-heading-2495-249 bde-heading animated-underline padding-elements\">\nThe cellular structure\u2014a simple hydrocarbon\n<\/h2><div class=\"bde-columns-2495-265 bde-columns padding-elements\"><div class=\"bde-column-2495-268 bde-column\">\n  \n  \n\t\n\n\n\n<img decoding=\"async\" class=\"bde-image2-2495-269 bde-image2\" src=\"https:\/\/magu-swiss.ch\/wp-content\/uploads\/2025\/03\/Summenformel-EPS.webp\" alt=\"Structural formula of expanded polystyrene (EPS), consisting of carbon, hydrogen, and styrene units. Illustration of the polymerized chemical structure of rigid EPS foam.\" loading=\"lazy\" srcset=\"https:\/\/magu-swiss.ch\/wp-content\/uploads\/2025\/03\/Summenformel-EPS.webp 448w, https:\/\/magu-swiss.ch\/wp-content\/uploads\/2025\/03\/Summenformel-EPS-234x300.webp 234w\" sizes=\"(max-width: 448px) 100vw, 448px\">\n<\/div><div class=\"bde-column-2495-266 bde-column\">\n  \n  \n\t\n\n\n\n<h3 class=\"bde-heading-2495-255 bde-heading animated-underline\">\nAir Pockets and Diffusion\n<\/h3><div class=\"bde-text-2495-250 bde-text\">\nUnder an electron microscope, you can see the multitude of air pockets. In expanded EPS panels, many small channels remain between the beads, through which air and water vapor can diffuse\u2014similar to many small balls in a container. This diffusion significantly influences the building physics properties and, consequently, the quality of our MAGU Wall.\n<\/div>\n<\/div><\/div><div class=\"bde-div-2495-252 bde-div padding-elements\">\n  \n  \n\t\n\n\n\n<h3 class=\"bde-heading-2495-253 bde-heading animated-underline\">\nDiffusion of Pentane and Material Behavior\n<\/h3><div class=\"bde-text-2495-254 bde-text\">\nThe volatile fermentation gas pentane diffuses out of the cell structure during the first few days and weeks after production and is replaced by our H\u00fcfinger Black Forest air. As long as this process is ongoing, the material shrinks by 1\u20132 %, depending on its density. Afterward, the EPS remains dimensionally stable, moisture-resistant, and resistant to compression and tension.\n<\/div>\n<\/div><div class=\"bde-div-2495-256 bde-div padding-elements\">\n  \n  \n\t\n\n\n\n<h3 class=\"bde-heading-2495-257 bde-heading animated-underline\">\nFlame Retardancy and Material Composition\n<\/h3><div class=\"bde-text-2495-258 bde-text\">\nTo prevent the EPS from catching fire, 1\u20132 % of a polymeric flame retardant, such as aluminum hydroxide or magnesium hydroxide, is added during the production of the raw material. These flame retardants are also used in cellulose or wood fiber boards. Bromine-containing flame retardants such as HBCD are no longer permitted, and we have not used them for years.\n<\/div>\n<\/div><div class=\"bde-div-2495-259 bde-div padding-elements\">\n  \n  \n\t\n\n\n\n<h3 class=\"bde-heading-2495-260 bde-heading animated-underline\">\nBenefits of the Graphite Content\n<\/h3><div class=\"bde-text-2495-261 bde-text\">\nOur silver-gray Neopor also contains 3\u20135 % of graphite\u2014that is, pure carbon. The graphite in Neopor acts like a mirror and additionally reflects long-wave thermal radiation. This makes the insulation material more efficient. This additive reduces material usage by 20 % and simultaneously saves up to 50 % of valuable raw materials during production.\n<\/div>\n<\/div><div class=\"bde-div-2495-262 bde-div padding-elements\">\n  \n  \n\t\n\n\n\n<h3 class=\"bde-heading-2495-263 bde-heading animated-underline\">\nStable Cell Structure and Life Cycle Assessment\n<\/h3><div class=\"bde-text-2495-264 bde-text\">\nThe excellent environmental performance of our insulation material is due to the strong and stable cell structure of the polymer chains. This cellular structure makes Neopor not only lightweight, but also dimensionally stable and durable. Since it requires very little raw material but contains many air pockets, this allows for a particularly economical use of valuable raw materials.<br><br>Much like a beehive, cork, or a bamboo stalk, the honeycomb-like cellular structure ensures high stability thanks to millions of air pockets. These trapped air bubbles prevent heat loss, much like an air mattress: lightweight, yet filled with a large volume of air, making it an effective heat reservoir.<br><br>One cubic meter of Neopor weighs only 30 kg. Three buckets of raw material are enough to produce 5 to 10 m\u00b2 of building insulation. By contrast, a wood fiber board with similar insulating properties requires ten times as much material\u2014about 300 kg per cubic meter. This means ten times the amount of material, which must be sourced from wood, processed, and pressed into a wood fiber board using resins and flame retardants.\n<\/div>\n<\/div><\/div>\n<\/section><section class=\"bde-section-2495-270 bde-section\">\n  \n  \n\t\n\n\n\n<div class=\"section-container\"><h2 class=\"bde-heading-2495-285 bde-heading animated-underline padding-elements\">\nBreathable, just like performance clothing\n<\/h2><div class=\"bde-columns-2495-271 bde-columns padding-elements\"><div class=\"bde-column-2495-272 bde-column\">\n  \n  \n\t\n\n\n\n<div class=\"bde-text-2495-273 bde-text\">\nJust as modern functional clothing\u2014such as sports jackets or shoes with soles made of high-quality plastics\u2014has replaced traditional materials like cotton underwear, wool sweaters, or leather soles, EPS has become indispensable in the insulation and construction industries. This insulation material combines practical, ecological, and economic benefits.\n<\/div>\n<\/div><div class=\"bde-column-2495-274 bde-column\">\n  \n  \n\t\n\n\n\n<img decoding=\"async\" class=\"bde-image2-2495-275 bde-image2\" src=\"https:\/\/magu-swiss.ch\/wp-content\/uploads\/2025\/03\/Goretex-Diffusionsoffen.webp\" alt=\"Illustration of a breathable Gore-Tex jacket with a schematic representation of air and moisture permeability through the membrane. The graphic illustrates the principle of vapor diffusion, similar to that seen in EPS insulation materials.\" loading=\"lazy\" srcset=\"https:\/\/magu-swiss.ch\/wp-content\/uploads\/2025\/03\/Goretex-Diffusionsoffen.webp 679w, https:\/\/magu-swiss.ch\/wp-content\/uploads\/2025\/03\/Goretex-Diffusionsoffen-300x224.webp 300w, https:\/\/magu-swiss.ch\/wp-content\/uploads\/2025\/03\/Goretex-Diffusionsoffen-600x448.webp 600w\" sizes=\"(max-width: 679px) 100vw, 679px\">\n<\/div><\/div><div class=\"bde-div-2495-276 bde-div padding-elements\">\n  \n  \n\t\n\n\n\n<h3 class=\"bde-heading-2495-277 bde-heading animated-underline\">\nEnergy Savings Through Efficient Thermal Insulation\n<\/h3><div class=\"bde-text-2495-278 bde-text\">\nEPS is a material that poses no health risks and is used millions of times worldwide. Although the raw material comes from fossil fuels such as petroleum, it achieves significant energy savings when used as thermal insulation. Within just 1\u20132 years, EPS can already save more energy than is required for its entire extraction, production, and intended recycling (see life cycle assessment).\n<\/div>\n<\/div><div class=\"bde-div-2495-279 bde-div padding-elements\">\n  \n  \n\t\n\n\n\n<h3 class=\"bde-heading-2495-280 bde-heading animated-underline\">\nMinimal primary energy consumption and recyclability\n<\/h3><div class=\"bde-text-2495-281 bde-text\">\nThe amount of gray energy\u2014that is, the energy required for manufacturing\u2014is generally negligible for insulation materials, especially when compared to the enormous energy-saving potential during their use. Even wood fiber boards, which require twice as much gray energy to manufacture as Neopor, still save many times the energy used in the long run.<br><br>EPS also stands out for its excellent recyclability:<br>Thanks to its simple chemical structure, EPS can be easily separated using modern machinery in a water bath. This makes it possible to recycle EPS 100 % as a raw material without any loss of quality.\n<\/div>\n<\/div><div class=\"bde-div-2495-282 bde-div padding-elements\">\n  \n  \n\t\n\n\n\n<h3 class=\"bde-heading-2495-283 bde-heading animated-underline\">\nThermal recycling as a last resort\n<\/h3><div class=\"bde-text-2495-284 bde-text\">\nIf EPS is ultimately incinerated at the end of its life cycle\u2014similar to cellulose, wood fiber boards, or straw\u2014it releases the stored CO\u2082 back into the atmosphere. Nevertheless, thermal insulation remains one of the most efficient methods of saving energy throughout its entire service life, meaning that even the least environmentally friendly form of disposal\u2014incineration for energy recovery\u2014is more climate-friendly than direct heating with fossil fuels such as gas, coal, or oil.\n<\/div>\n<\/div><\/div>\n<\/section><section class=\"bde-section-2495-286 bde-section\">\n  \n  \n\t\n\n\n\n<div class=\"section-container\"><h2 class=\"bde-heading-2495-287 bde-heading animated-underline padding-elements\">\nBees feel right at home in EPS\n<\/h2><div class=\"bde-columns-2495-288 bde-columns padding-elements\"><div class=\"bde-column-2495-289 bde-column\">\n  \n  \n\t\n\n\n\n<img decoding=\"async\" class=\"bde-image2-2495-290 bde-image2\" src=\"https:\/\/magu-swiss.ch\/wp-content\/uploads\/2025\/03\/EPS-Bienenstock-Nachhaltigkeit.webp\" alt=\"A beekeeper inspects a beehive made of rigid EPS foam. These durable and mold-resistant EPS beehives have provided bees with a stable and hygienic environment for decades.\" loading=\"lazy\" srcset=\"https:\/\/magu-swiss.ch\/wp-content\/uploads\/2025\/03\/EPS-Bienenstock-Nachhaltigkeit.webp 689w, https:\/\/magu-swiss.ch\/wp-content\/uploads\/2025\/03\/EPS-Bienenstock-Nachhaltigkeit-281x300.webp 281w, https:\/\/magu-swiss.ch\/wp-content\/uploads\/2025\/03\/EPS-Bienenstock-Nachhaltigkeit-600x640.webp 600w\" sizes=\"(max-width: 689px) 100vw, 689px\">\n<\/div><div class=\"bde-column-2495-291 bde-column\">\n  \n  \n\t\n\n\n\n<h3 class=\"bde-heading-2495-292 bde-heading animated-underline\">\nEPS as a Sustainable Raw Material for Beehives\n<\/h3><div class=\"bde-text-2495-293 bde-text\">\nAs already described under \u201eLife Cycle Assessment,\u201c the total amount of raw materials used to build a MAGU KFW 40 house is comparable to the energy contained in 2,500 liters of heating oil. This amount is roughly equivalent to the energy required by a mid-size car to travel a distance of 15,000 km.<br><br>Our EPS is physiologically safe and is even approved for use as food packaging. It does not provide a breeding ground for mold or microorganisms and is therefore also suitable for sensitive beehives. For decades, bee colonies have thrived in EPS beehives.\n<\/div>\n<\/div><\/div><div class=\"bde-div-2495-294 bde-div padding-elements\">\n  \n  \n\t\n\n\n\n<h3 class=\"bde-heading-2495-295 bde-heading animated-underline\">\nStability and Biodegradability of EPS\n<\/h3><div class=\"bde-text-2495-296 bde-text\">\nEPS is resistant to aqueous alkalis and mineral acids, but is susceptible to nonpolar solvents such as gasoline or certain ketones. UV light breaks down the polymer chains in styrofoam, causing the surface to yellow and the material to slowly decompose into its basic components\u2014carbon and water. When exposed to the elements, EPS decomposes within a few years and is therefore environmentally sustainable in the long term.\n<\/div>\n<\/div><div class=\"bde-div-2495-297 bde-div padding-elements\">\n  \n  \n\t\n\n\n\n<h3 class=\"bde-heading-2495-298 bde-heading animated-underline\">\nMealworms as Natural EPS Recyclers\n<\/h3><div class=\"bde-text-2495-299 bde-text\">\nMealworms can also break down EPS. Studies show that these insects can use polystyrene as a food source. They consume about 35 mg of EPS daily, digest it efficiently, and excrete it as biodegradable feces. These findings could influence future sustainable recycling methods.\n<\/div>\n<\/div><div class=\"bde-div-2495-210 bde-div padding-elements\">\n  \n  \n\t\n\n\n\n<div class=\"bde-button-2495-211 bde-button\">\n        \n    \n    \n    \n    \n            \n                    \n            \n            \n\n    \n    \n    \n    \n    \n    <a class=\"breakdance-link button-atom button-atom--custom bde-button__button\" href=\"https:\/\/magu-swiss.ch\/en\/construction-technology-life-cycle-assessment\/fire-safety\/\" target=\"_self\" data-type=\"url\"  >\n\n    \n        <span class=\"button-atom__text\">Chapter 8: Fire Safety<\/span>\n\n                            \n        \n                <\/a>\n\n    \n\n\n<\/div>\n<\/div><\/div>\n<\/section><section class=\"bde-section-2495-306 bde-section padding-elements\">\n  \n  \n\t\n\n\n\n<div class=\"section-container\"><h2 class=\"bde-heading-2495-307 bde-heading animated-underline\">\nConstruction Technology &amp; Life Cycle Assessment \u2013 Our Key Topics\n<\/h2><div class=\"bde-columns-2495-308 bde-columns\"><div class=\"bde-column-2495-309 bde-column\">\n  \n  \n\t\n\n\n\n<div class=\"bde-button-2495-310 bde-button\">\n        \n    \n    \n    \n    \n            \n                    \n            \n            \n\n    \n    \n    \n    \n    \n    <a class=\"breakdance-link button-atom button-atom--custom bde-button__button\" href=\"https:\/\/magu-swiss.ch\/en\/construction-technology-life-cycle-assessment\/why-do-we-build-houses\/\" target=\"_self\" data-type=\"url\"  >\n\n    \n        <span class=\"button-atom__text\">Chapter 1: Why Do We Build Houses?<\/span>\n\n        \n        \n                <\/a>\n\n    \n\n\n<\/div><div class=\"bde-button-2495-311 bde-button\">\n        \n    \n    \n    \n    \n            \n                    \n            \n            \n\n    \n    \n    \n    \n    \n    <a class=\"breakdance-link button-atom button-atom--custom bde-button__button\" href=\"https:\/\/magu-swiss.ch\/en\/construction-technology-life-cycle-assessment\/soundproofing\/\" target=\"_self\" data-type=\"url\"  >\n\n    \n        <span class=\"button-atom__text\">Chapter 2: Sound Insulation<\/span>\n\n        \n        \n                <\/a>\n\n    \n\n\n<\/div><div class=\"bde-button-2495-312 bde-button\">\n        \n    \n    \n    \n    \n            \n                    \n            \n            \n\n    \n    \n    \n    \n    \n    <a class=\"breakdance-link button-atom button-atom--custom bde-button__button\" href=\"https:\/\/magu-swiss.ch\/en\/construction-technology-life-cycle-assessment\/heat-protection\/\" target=\"_self\" data-type=\"url\"  >\n\n    \n        <span class=\"button-atom__text\">Chapter 3: Thermal Insulation <\/span>\n\n        \n        \n                <\/a>\n\n    \n\n\n<\/div><div class=\"bde-button-2495-313 bde-button\">\n        \n    \n    \n    \n    \n            \n                    \n            \n            \n\n    \n    \n    \n    \n    \n    <a class=\"breakdance-link button-atom button-atom--custom bde-button__button\" href=\"https:\/\/magu-swiss.ch\/en\/construction-technology-life-cycle-assessment\/construction-engineering\/\" target=\"_self\" data-type=\"url\"  >\n\n    \n        <span class=\"button-atom__text\">Chapter 4: Construction Technology<\/span>\n\n        \n        \n                <\/a>\n\n    \n\n\n<\/div><div class=\"bde-button-2495-314 bde-button\">\n        \n    \n    \n    \n    \n            \n                    \n            \n            \n\n    \n    \n    \n    \n    \n    <a class=\"breakdance-link button-atom button-atom--custom bde-button__button\" href=\"https:\/\/magu-swiss.ch\/en\/construction-technology-life-cycle-assessment\/magu-building-system\/\" target=\"_self\" data-type=\"url\"  >\n\n    \n        <span class=\"button-atom__text\">Chapter 5: MAGU Building System <\/span>\n\n        \n        \n                <\/a>\n\n    \n\n\n<\/div>\n<\/div><div class=\"bde-column-2495-315 bde-column\">\n  \n  \n\t\n\n\n\n<div class=\"bde-button-2495-316 bde-button\">\n        \n    \n    \n    \n    \n            \n                    \n            \n            \n\n    \n    \n    \n    \n    \n    <a class=\"breakdance-link button-atom button-atom--custom bde-button__button\" href=\"https:\/\/magu-swiss.ch\/en\/construction-technology-life-cycle-assessment\/magu-life-cycle-assessment\/\" target=\"_self\" data-type=\"url\"  >\n\n    \n        <span class=\"button-atom__text\">Chapter 6: Life Cycle Assessment of MAGU <\/span>\n\n        \n        \n                <\/a>\n\n    \n\n\n<\/div><div class=\"bde-button-2495-317 bde-button\">\n        \n    \n    \n    \n    \n            \n                    \n            \n            \n\n    \n    \n    \n    \n    \n    <a class=\"breakdance-link button-atom button-atom--custom bde-button__button\" href=\"https:\/\/magu-swiss.ch\/en\/construction-technology-life-cycle-assessment\/neopor-raw-material\/\" target=\"_self\" data-type=\"url\"  >\n\n    \n        <span class=\"button-atom__text\">Chapter 7: Neopor as a Raw Material <\/span>\n\n        \n        \n                <\/a>\n\n    \n\n\n<\/div><div class=\"bde-button-2495-318 bde-button\">\n        \n    \n    \n    \n    \n            \n                    \n            \n            \n\n    \n    \n    \n    \n    \n    <a class=\"breakdance-link button-atom button-atom--custom bde-button__button\" href=\"https:\/\/magu-swiss.ch\/en\/construction-technology-life-cycle-assessment\/fire-safety\/\" target=\"_self\" data-type=\"url\"  >\n\n    \n        <span class=\"button-atom__text\">Chapter 8: Fire Safety <\/span>\n\n        \n        \n                <\/a>\n\n    \n\n\n<\/div><div class=\"bde-button-2495-319 bde-button\">\n        \n    \n    \n    \n    \n            \n                    \n            \n            \n\n    \n    \n    \n    \n    \n    <a class=\"breakdance-link button-atom button-atom--custom bde-button__button\" href=\"https:\/\/magu-swiss.ch\/en\/about-us\/\" target=\"_self\" data-type=\"url\"  >\n\n    \n        <span class=\"button-atom__text\">Chapter 9: About Us<\/span>\n\n        \n        \n                <\/a>\n\n    \n\n\n<\/div><div class=\"bde-button-2495-320 bde-button\">\n        \n    \n    \n    \n    \n            \n                    \n            \n            \n\n    \n    \n    \n    \n    \n    <a class=\"breakdance-link button-atom button-atom--custom bde-button__button\" href=\"https:\/\/magu-swiss.ch\/en\/references\/40-years-of-references\/\" target=\"_self\" data-type=\"url\"  >\n\n    \n        <span class=\"button-atom__text\">Chapter 10: In 40 Years\u20141.2 Million Square Meters of MAGU Wall <\/span>\n\n        \n        \n                <\/a>\n\n    \n\n\n<\/div>\n<\/div><\/div><\/div>\n<\/section>","protected":false},"excerpt":{"rendered":"<p>Der Grundstoff unseres Rohmaterials Neopor\u00ae ist ein einfacher Kohlenwasserstoff, der auch als Aromastoff in N\u00fcssen, Weintrauben, Zimt oder Kiwis vorkommt: das Styrol. Geschichte und chemische Eigenschaften Das erste Polystyrol wurde aus dem Harz des Amberbaums durch den Apotheker Eduard Simon 1835 gewonnen. Durch Polymerisation bildeten sich lange Styrolketten \u2013 das Polystyrol. 1949 wurde dem Polystyrol [&hellip;]<\/p>\n","protected":false},"author":1,"featured_media":2497,"parent":2150,"menu_order":0,"comment_status":"closed","ping_status":"closed","template":"","meta":{"_breakdance_hide_in_design_set":false,"_breakdance_tags":"","footnotes":""},"categories":[],"tags":[116],"class_list":["post-2495","page","type-page","status-publish","has-post-thumbnail","hentry","tag-bautechnik-oekobilanz"],"_links":{"self":[{"href":"https:\/\/magu-swiss.ch\/en\/wp-json\/wp\/v2\/pages\/2495","targetHints":{"allow":["GET"]}}],"collection":[{"href":"https:\/\/magu-swiss.ch\/en\/wp-json\/wp\/v2\/pages"}],"about":[{"href":"https:\/\/magu-swiss.ch\/en\/wp-json\/wp\/v2\/types\/page"}],"author":[{"embeddable":true,"href":"https:\/\/magu-swiss.ch\/en\/wp-json\/wp\/v2\/users\/1"}],"replies":[{"embeddable":true,"href":"https:\/\/magu-swiss.ch\/en\/wp-json\/wp\/v2\/comments?post=2495"}],"version-history":[{"count":10,"href":"https:\/\/magu-swiss.ch\/en\/wp-json\/wp\/v2\/pages\/2495\/revisions"}],"predecessor-version":[{"id":2703,"href":"https:\/\/magu-swiss.ch\/en\/wp-json\/wp\/v2\/pages\/2495\/revisions\/2703"}],"up":[{"embeddable":true,"href":"https:\/\/magu-swiss.ch\/en\/wp-json\/wp\/v2\/pages\/2150"}],"wp:featuredmedia":[{"embeddable":true,"href":"https:\/\/magu-swiss.ch\/en\/wp-json\/wp\/v2\/media\/2497"}],"wp:attachment":[{"href":"https:\/\/magu-swiss.ch\/en\/wp-json\/wp\/v2\/media?parent=2495"}],"wp:term":[{"taxonomy":"category","embeddable":true,"href":"https:\/\/magu-swiss.ch\/en\/wp-json\/wp\/v2\/categories?post=2495"},{"taxonomy":"post_tag","embeddable":true,"href":"https:\/\/magu-swiss.ch\/en\/wp-json\/wp\/v2\/tags?post=2495"}],"curies":[{"name":"wp","href":"https:\/\/api.w.org\/{rel}","templated":true}]}}