Cnr-Istituto di Scienze Marine

L’Istituto di Scienze Marine del Consiglio Nazionale delle Ricerche svolge attività di ricerca fondamentale e applicata in oceanografia fisica, chimica e biologica e in geologia marina.

L’obiettivo è contribuire allo studio dei processi oceanici e della variabilità climatica, allo sviluppo di sistemi/servizi per l’osservazione, la protezione e la gestione sostenibile dell’ambiente marino e delle coste.

                               L’Istituto di Scienze Marine del Consiglio Nazionale delle Ricerche (CNR-ISMAR) svolge attività di

Ricerca Fondamentale e Applicata

in oceanografia fisica, chimica e biologica e in geologia marina con l’obiettivo di contribuire sia allo studio dei processi oceanici e della variabilità climatica che allo sviluppo di sistemi/servizi per l’osservazione, la protezione e la gestione sostenibile dell’ambiente marino e delle coste

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Dati presto disponibili

Misteriosi e affascinanti ambienti polari. Imola 28 marzo

Misteriosi e affascinanti ambienti polari, Antartide e cenni su Artico.

Vita estrema, alcune ricerche e fauna presente

Progetto “Agenda 2030 delle bambine e bambini« 2025

28 marzo 2025  dalle 8.30 alle 10.30 scuola presso Scuola primaria PONTICELLI, IC7, via Punta 87, Imola (BO)Interviene Mariangela Ravaioli (CNR-ISMAR) con la collaborazione di Mila D’Angelantonio.

Partecipano al progetto con un importante impegno le docenti Elisabetta Sarti e Pasqua Loglisci con la classe 3A dell’a.s. 2024/25Si ringrazia la dirigente Dr.ssa Rossana Neri.

In collegamento con le attività per le scuole della Città metropolitana di Bologna www.cittametropolitana.bo.it/scuola/Scuola_e_lavoro

L’attività è propedeutica per il progetto agenda 2030 bambine e bambine e anche il Progetto Mase finanziato dal Ministero Mase stesso, sempre sul tema delle Primarie

Vedi anche sito di Donne e Scienza https://www.donnescienza.it/misteriosi-e-affascinanti-ambienti-polari-antartide-e-cenni-su-artico/

Scarica la locandina >>

Dr Helena I. Gomes, Assistant Professor in the Faculty of Engineering at the University of Nottingham, in visita a Ismar

ISMAR CNR Bologna will host Dr Helena I. Gomes, Assistant Professor in the Faculty of Engineering at the University of Nottingham (UoN), from the 26th March to the 9th April!

This mobility is in the context of a bilateral International Exchange IEC\R2\222015 named “Biomining precious metals” between Faculty of Engineering of UoN and ISMAR-CNR.

Project’s lay summary

Metals are essential in our daily lives and have a finite supply. For example, smartphones are pocket-sized vaults of precious metals. An iPhone contains 0.034 g gold, 0.34 g silver, and less than one-thousandth of a gram platinum. The current CO2 emissions and environmental impact of mining those metals are untenable. We pursue reclaiming mineral resources from waste to meet the present needs of raw materials and metals without compromising future generations to meet their own needs. Platinum-group elements (PGE), in particular platinum, palladium, and rhodium, are precious metals we need to secure supply, as they are essential for catalysts, electronics, and medical therapies/diagnostics. One of the primary uses of PGE is in cars to reduce the harmful substances in exhaust fumes from gasoline burning. Recycling car catalysts has huge environmental benefits, enabling the recovery of up to 95% of platinum and saving high amounts of energy compared to mining the primary ores. Current recycling technologies are expensive, energy-intensive, and can generate pollution. In this project, we will study nature-inspired processes for recovering PGE from waste materials to counteract traditional mining of natural resources, which is often inefficient under the new circularity requirements. Acid-producing bacteria and bacteria that grow in contaminated land and under extreme conditions will be tested. Collaborating with Italy will enable us to compare different microbes and whether they can be used to upcycle critical metals. The goal is to develop a new and cleaner method to recover precious metals from wastes, avoiding overmining and its pollution.

Helena will give a seminar on the 4th April at ISMAR-CNR terzo piano sala riunioni (more info will follow, also a remote link will be available). If you are curious or want to chat and network, please feel free to email us (Helena.Gomes1@nottingham.ac.uk; valerio.funari@cnr.it).

Next seminar

Giovedì 8 maggio ore 14:30    –    ON LINE LINK

Gian Marco Palamara, CNR-ISMAR-Roma
“Integrated Modelling for Integrative Ecology”

ABSTRACT: Ecology is a discipline with flexible boundaries, where characterizing species interactions and ecosystem responses often requires accounting for the complexity, nonlinearity, and stochastic nature of biological and environmental processes.
In this talk, I will present different ecological case studies combining experimental and theoretical approaches to explore population and community dynamics under environmental stress and spatial heterogeneity. In the first part of the talk, we analyse long-term experiments on Daphnia galeata exposed to sublethal pesticide concentrations using a stochastic, age-structured population model. Bayesian inference reveals significant treatment effects — particularly for the insecticide Diazinon — on mortality and fertility, with clone-specific responses reflecting potential adaptation. The model also accounts for strong demographic stochasticity, supporting more reliable interpretation of ecotoxicological data. In a second case study, we develop stochastic models for multi-species systems, including food webs and metacommunities. Using continuous-time Markov processes, we revisit functional response theory, predator prey equations, and finally explore biodiversity dynamics in dynamic landscapes modelled as time-varying random geometric graphs with neutral dynamics. Among other things, our findings show that fluctuating connectivity can enhance both local and regional species richness, offering new theoretical insights into spatiotemporal drivers of biodiversity.
Together, these studies demonstrate how stochastic models can reveal hidden mechanisms in ecological systems — from controlled experiments to complex landscapes.

Gian Marco Palamara was born in Rome and trained as a physicist. For over a decade, he has worked internationally at the intersection of theoretical ecology and ecological modelling, collaborating closely with empiricists to develop robust theoretical frameworks for understanding the drivers of biological diversity. More recently, Gian Marco has been exploring integrative approaches to ecology that bridge disciplinary boundaries, drawing together insights from the mathematical, natural, and social sciences.

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