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	<url>
		<loc>https://aquavitaeproject.cetmar.org/scien_publications/</loc>
		<lastmod>2024-06-11T08:43:45+00:00</lastmod>
	</url>
	<url>
		<loc>https://aquavitaeproject.cetmar.org/scien_publications/nannochloropsis-as-feed-additive-for-the-pacific-white-shrimp/</loc>
		<lastmod>2021-01-26T13:49:59+00:00</lastmod>
		<image:image>
			<image:loc>https://aquavitaeproject.cetmar.org/wp-content/uploads/2021/01/ufsc_paper_2.png</image:loc>
			<image:title><![CDATA[Nannochloropsis spp. as Feed Additive for the Pacific White Shrimp: Effect on Midgut Microbiology, Thermal Shock Resistance and Immunology, Ariane Martins Guimarães, Cristhiane Guertler, Gabriella do Vale Pereira, Jaqueline da Rosa Coelho, Priscila Costa Rezende, Renata Oselame Nóbrega, Felipe do Nascimento Vieira.]]></image:title>
			<image:caption><![CDATA[Nannochloropsis spp. as Feed Additive for the Pacific White Shrimp: Effect on Midgut Microbiology, Thermal Shock Resistance and Immunology]]></image:caption>
		</image:image>
	</url>
	<url>
		<loc>https://aquavitaeproject.cetmar.org/scien_publications/evidence-of-total-suspended-solids-control-by-mugil-eared-in-an-integrated-system-with-pacific-white-shrimp-using-biofloc-technology/</loc>
		<lastmod>2021-01-26T14:06:36+00:00</lastmod>
		<image:image>
			<image:loc>https://aquavitaeproject.cetmar.org/wp-content/uploads/2021/01/21_paper_furg.png</image:loc>
			<image:title><![CDATA[Evidence of total suspended solids control by Mugil liza reared in an integrated system with pacific white shrimp Litopenaeus vannamei using biofloc technology, by Mariana Holanda, Gabriel Santana, Plinio Furtado, Ricardo Vieira Rodrigues, Vinícius Ronzani Cerqueira, Luís André Sampaio, Wilson Wasielesky Jr., Luis Henrique Poersch.]]></image:title>
			<image:caption><![CDATA[Evidence of total suspended solids control by Mugil liza reared in an integrated system with pacific white shrimp Litopenaeus vannamei using biofloc technology]]></image:caption>
		</image:image>
	</url>
	<url>
		<loc>https://aquavitaeproject.cetmar.org/scien_publications/cultivtion-of-the-seaweed-ulva-with-affluent-from-a-shrimp-biofloc-rearing-system/</loc>
		<lastmod>2021-01-26T14:20:36+00:00</lastmod>
		<image:image>
			<image:loc>https://aquavitaeproject.cetmar.org/wp-content/uploads/2021/01/ufsc_paper_1.png</image:loc>
			<image:title><![CDATA[Cultivation of the Seaweed Ulva spp. With effluent from a shrimp Biofloc rearing system: different species and stocking density, Mateus Aranha Martins, Vitor Fernandes da Silva, Patricio René Tarapuez, Leila Hayashi, Felipe do Nascimento Vieira.]]></image:title>
			<image:caption><![CDATA[Cultivation of the Seaweed Ulva spp. With effluent from a shrimp Biofloc rearing system: different species and stocking density]]></image:caption>
		</image:image>
	</url>
	<url>
		<loc>https://aquavitaeproject.cetmar.org/scien_publications/comparison-of-the-growth-of-saccharina-latissima-at-a-cultivated-natural-area-and-an-aquaculture-site-in-sorvagsfjordur-faroe-islands/</loc>
		<lastmod>2022-07-13T10:55:50+00:00</lastmod>
		<image:image>
			<image:loc>https://aquavitaeproject.cetmar.org/wp-content/uploads/2022/07/comparison_growth_saccharina_latissima_mayleen_schlund.png</image:loc>
			<image:title><![CDATA[comparison_growth_saccharina_latissima_mayleen_schlund]]></image:title>
			<image:caption><![CDATA[comparison of the growth of Saccharina latissima at a cultivated natural area and an aquaculture site]]></image:caption>
		</image:image>
	</url>
	<url>
		<loc>https://aquavitaeproject.cetmar.org/scien_publications/biofloc-removal-by-the-oyster-crassostrea-gasar-as-a-candidate-species-to-an-imta-system-with-the-marine-shrimp-litopenaeus-vannamei/</loc>
		<lastmod>2022-07-13T11:22:17+00:00</lastmod>
		<image:image>
			<image:loc>https://aquavitaeproject.cetmar.org/wp-content/uploads/2022/07/Biofloc-removal-oyster-Crassostrea-IMTA-litopenaeus-vannamei.pdf</image:loc>
			<image:title><![CDATA[Biofloc-removal-oyster-Crassostrea-IMTA-litopenaeus-vannamei]]></image:title>
		</image:image>
	</url>
	<url>
		<loc>https://aquavitaeproject.cetmar.org/scien_publications/live-transport-of-the-green-sea-urchin-in-air-and-immersed-in-seawater-and-the-impact-on-subsequent-roe-enhancement-after-in-water-transport/</loc>
		<lastmod>2022-07-15T11:12:10+00:00</lastmod>
		<image:image>
			<image:loc>https://aquavitaeproject.cetmar.org/wp-content/uploads/2022/07/live_transport_green_seaurchin_philip_james.png</image:loc>
			<image:title><![CDATA[live_transport_green_seaurchin_philip_james]]></image:title>
		</image:image>
	</url>
	<url>
		<loc>https://aquavitaeproject.cetmar.org/scien_publications/assessing-the-impac-of-bivalve-aquacuture-on-the-carbon-circular-economy/</loc>
		<lastmod>2024-01-22T11:09:48+00:00</lastmod>
		<image:image>
			<image:loc>https://aquavitaeproject.cetmar.org/wp-content/uploads/2019/06/21_figure_paper_csic-1.jpg</image:loc>
			<image:title><![CDATA[Graphical abstract “Assessing the impact of bivalve aquaculture on the carbon circular economy”. A.A.Alonso, X.A.Álvarez-Salgado, L.T.Antelo]]></image:title>
			<image:caption><![CDATA[Graphical abstract “Assessing the impact of bivalve aquaculture on the carbon circular economy”. A.A.Alonso, X.A.Álvarez-Salgado, L.T.Antelo]]></image:caption>
		</image:image>
	</url>
	<url>
		<loc>https://aquavitaeproject.cetmar.org/scien_publications/increased-resistance-to-thermal-shock-in-pacific-white-shrimp-fed-on-green-algae-and-its-effect-in-conjunction-with-probiotics/</loc>
		<lastmod>2024-01-29T11:48:12+00:00</lastmod>
		<image:image>
			<image:loc>https://aquavitaeproject.cetmar.org/wp-content/uploads/2024/01/felipedonascimento_increased_resistance_pacificwhiteshrimp.png</image:loc>
			<image:title><![CDATA[felipedonascimento_increased_resistance_pacificwhiteshrimp]]></image:title>
		</image:image>
	</url>
	<url>
		<loc>https://aquavitaeproject.cetmar.org/scien_publications/modeling-particulate-waste-assimilation-by-blue-mussels-within-the-spatial-constraints-of-a-commercial-fish-farm-implications-for-multitrophic-aquaculture/</loc>
		<lastmod>2024-01-29T12:09:24+00:00</lastmod>
		<image:image>
			<image:loc>https://aquavitaeproject.cetmar.org/wp-content/uploads/2024/01/gunnvor_waste_imta.png</image:loc>
			<image:title><![CDATA[gunnvor_waste_imta]]></image:title>
		</image:image>
	</url>
	<url>
		<loc>https://aquavitaeproject.cetmar.org/scien_publications/effects-of-salinity-on-the-reproductive-cycle-of-the-mangrove-oyster-crassostrea-tulipa-in-hatchery-conditions/</loc>
		<lastmod>2024-01-29T12:16:51+00:00</lastmod>
		<image:image>
			<image:loc>https://aquavitaeproject.cetmar.org/wp-content/uploads/2024/01/Suhnel_salinity_crassostrea.png</image:loc>
			<image:title><![CDATA[Suhnel_salinity_crassostrea]]></image:title>
		</image:image>
	</url>
	<url>
		<loc>https://aquavitaeproject.cetmar.org/scien_publications/comparative-description-and-analysis-of-oyster-aquaculture-in-selected-atlantic-regions-production-market-dynamics-and-consumption-patterns/</loc>
		<lastmod>2024-01-29T12:28:53+00:00</lastmod>
		<image:image>
			<image:loc>https://aquavitaeproject.cetmar.org/wp-content/uploads/2024/01/AsaStrand_Suhel_Hannon.png</image:loc>
			<image:title><![CDATA[AsaStrand_Suhel_Hannon]]></image:title>
		</image:image>
	</url>
	<url>
		<loc>https://aquavitaeproject.cetmar.org/scien_publications/efficacy-of-microplastic-depuration-on-two-commercial-oyster-species-from-the-west/</loc>
		<lastmod>2024-01-29T12:37:41+00:00</lastmod>
		<image:image>
			<image:loc>https://aquavitaeproject.cetmar.org/wp-content/uploads/2024/01/microplastic_depuration_oyster_ireland.png</image:loc>
			<image:title><![CDATA[microplastic_depuration_oyster_ireland]]></image:title>
			<image:caption><![CDATA[microplastic_depuration_oyster_ireland]]></image:caption>
		</image:image>
	</url>
	<url>
		<loc>https://aquavitaeproject.cetmar.org/scien_publications/mussel-meal-as-a-promotor-of-growth-performance-for-the-whiteleg-shrimp-litopenaeus-vannamei/</loc>
		<lastmod>2024-01-29T12:42:29+00:00</lastmod>
		<image:image>
			<image:loc>https://aquavitaeproject.cetmar.org/wp-content/uploads/2024/01/mussel_meal_whitelegShrimp.png</image:loc>
			<image:title><![CDATA[mussel_meal_whitelegShrimp]]></image:title>
			<image:caption><![CDATA[mussel meal_ whiteleg Shrimp]]></image:caption>
		</image:image>
	</url>
	<url>
		<loc>https://aquavitaeproject.cetmar.org/scien_publications/fish-size-correlates-to-size-and-morphology-of-intermuscular-bones-in-tambaqui-colossoma-macropomum-as-shown-by-dissection-and-x-ray-imaging-methods/</loc>
		<lastmod>2024-01-29T12:47:42+00:00</lastmod>
		<image:image>
			<image:loc>https://aquavitaeproject.cetmar.org/wp-content/uploads/2024/01/tambaqui_size.png</image:loc>
			<image:title><![CDATA[tambaqui_size]]></image:title>
			<image:caption><![CDATA[Tambaqui]]></image:caption>
		</image:image>
	</url>
	<url>
		<loc>https://aquavitaeproject.cetmar.org/scien_publications/biofloc-removal-by-the-oyster-crassostrea-gasar-as-a-candidate-species-to-an-integrated-multi-trophic-aquaculture-imta-system-with-the-marine-shrimp-litopenaeus-vannamei/</loc>
		<lastmod>2024-01-29T12:52:38+00:00</lastmod>
		<image:image>
			<image:loc>https://aquavitaeproject.cetmar.org/wp-content/uploads/2024/01/Biofloc_removal_oyster_crassostrea.png</image:loc>
			<image:title><![CDATA[Biofloc_removal_oyster_crassostrea]]></image:title>
			<image:caption><![CDATA[Biofloc removal_oyster_crassostrea]]></image:caption>
		</image:image>
	</url>
	<url>
		<loc>https://aquavitaeproject.cetmar.org/scien_publications/prospects-of-low-trophic-marine-aquaculture-contributing-to-food-security-in-a-zero-carbon-world/</loc>
		<lastmod>2024-01-29T12:56:56+00:00</lastmod>
		<image:image>
			<image:loc>https://aquavitaeproject.cetmar.org/wp-content/uploads/2024/01/low_trophic_species_food_security.png</image:loc>
			<image:title><![CDATA[low_trophic_species_food_security]]></image:title>
		</image:image>
	</url>
	<url>
		<loc>https://aquavitaeproject.cetmar.org/scien_publications/co2-budget-of-cultured-mussels-metabolism-in-the-highly-productive-northwest-iberian-upwelling-system/</loc>
		<lastmod>2024-01-29T13:04:14+00:00</lastmod>
		<image:image>
			<image:loc>https://aquavitaeproject.cetmar.org/wp-content/uploads/2024/01/co2budget_mussels.png</image:loc>
			<image:title><![CDATA[co2budget_mussels]]></image:title>
		</image:image>
	</url>
	<url>
		<loc>https://aquavitaeproject.cetmar.org/scien_publications/defining-nature-based-solutions-within-the-blue-economy-the-example-of-aquaculture/</loc>
		<lastmod>2024-01-29T13:06:41+00:00</lastmod>
		<image:image>
			<image:loc>https://aquavitaeproject.cetmar.org/wp-content/uploads/2021/09/21_table_policy_brief_sams-1.png</image:loc>
			<image:title><![CDATA[Policy brief by Adam Hughes (SAMS) on the defining Nature-Based Solutions Within the Blue Economy: The Example of Aquaculture.]]></image:title>
			<image:caption><![CDATA[Defining Nature-Based Solutions Within the Blue Economy: The Example of Aquaculture.]]></image:caption>
		</image:image>
	</url>
	<url>
		<loc>https://aquavitaeproject.cetmar.org/scien_publications/effects-of-microalgae-addition-and-fish-feed-supplementation-in-the-integrated-rearing-of-pacific-white-shrimp-and-nile-tilapia-using-biofloc-technology/</loc>
		<lastmod>2024-01-30T15:32:28+00:00</lastmod>
		<image:image>
			<image:loc>https://aquavitaeproject.cetmar.org/wp-content/uploads/2022/07/effects-microalgae-addition-fish-feed-supplementation-picture-1-e1657616616358.png</image:loc>
			<image:title><![CDATA[effects-microalgae-addition-fish-feed-supplementation-picture]]></image:title>
			<image:caption><![CDATA[effects microalgae addition fish feed supplementation]]></image:caption>
		</image:image>
		<image:image>
			<image:loc>https://aquavitaeproject.cetmar.org/wp-content/uploads/2022/07/effects-microalgae-addition-fish-feed-supplementation-picture.png</image:loc>
		</image:image>
	</url>
	<url>
		<loc>https://aquavitaeproject.cetmar.org/scien_publications/new-marine-low-trophic-resources-as-food-nutritional-and-food-safety-aspects/</loc>
		<lastmod>2024-02-14T13:34:48+00:00</lastmod>
		<image:image>
			<image:loc>https://aquavitaeproject.cetmar.org/wp-content/uploads/2024/02/new_marine-lowtrophic-resources.png</image:loc>
			<image:title><![CDATA[new_marine-lowtrophic-resources]]></image:title>
		</image:image>
	</url>
	<url>
		<loc>https://aquavitaeproject.cetmar.org/scien_publications/optimising-abalone-settlement-and-metamorphosis-a-red-macroalgae-candidate-as-an-alternative-to-existing-algal-substrates/</loc>
		<lastmod>2024-02-20T08:32:01+00:00</lastmod>
		<image:image>
			<image:loc>https://aquavitaeproject.cetmar.org/wp-content/uploads/2024/02/Optimising-abalone-settlement_g_courtois_img.png</image:loc>
			<image:title><![CDATA[Optimising abalone settlement_g_courtois_img]]></image:title>
			<image:caption><![CDATA[Optimising abalone settlement Gercende Courtois]]></image:caption>
		</image:image>
	</url>
	<url>
		<loc>https://aquavitaeproject.cetmar.org/scien_publications/haliotis-tuberculata-coccinea-grow-out-performances-according-to-diet-and-production-systems/</loc>
		<lastmod>2024-06-11T06:42:03+00:00</lastmod>
		<image:image>
			<image:loc>https://aquavitaeproject.cetmar.org/wp-content/uploads/2024/06/haliotis-tuberculata-g-courtois.png</image:loc>
			<image:title><![CDATA[haliotis-tuberculata-g-courtois]]></image:title>
		</image:image>
	</url>
	<url>
		<loc>https://aquavitaeproject.cetmar.org/scien_publications/aurantiochytrium-sp-and-nannochloropsis-spp-meals-as-substitutes-for-fish-oil-in-practical-diets-for-pacific-white-shrimp-penaeus-vannamei/</loc>
		<lastmod>2024-06-11T08:43:45+00:00</lastmod>
		<image:image>
			<image:loc>https://aquavitaeproject.cetmar.org/wp-content/uploads/2024/06/felipe-vieira.png</image:loc>
			<image:title><![CDATA[felipe-vieira]]></image:title>
		</image:image>
	</url>
</urlset>
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