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Papilio Alexanor Esper from Italian Maritime Alps: a New Subspecies (Lepldoptera: Papilionldae) 75-79 ©Ges
ZOBODAT - www.zobodat.at Zoologisch-Botanische Datenbank/Zoological-Botanical Database Digitale Literatur/Digital Literature Zeitschrift/Journal: Atalanta Jahr/Year: 1991 Band/Volume: 22 Autor(en)/Author(s): Sala Giovanni, Bollino Maurizio Artikel/Article: Papilio alexanor Esper from Italian Maritime Alps: a new subspecies (Lepldoptera: Papilionldae) 75-79 ©Ges. zur Förderung d. Erforschung von Insektenwanderungen e.V. München, download unter www.zobodat.at Atalanta (Dec. 1991) 22(2/4):75-79, colour plates XVII-XVIII, Würzburg, ISSN 0171-0079 Papilio alexanor Esper from Italian Maritime Alps: a new subspecies (Lepldoptera: Papilionldae) by Giovanni Sala & maurizio Bollino received 2.1.1991 Riassunto: li autori descrivono Papilio alexanor radighierii nov. subspec. della Val Gesso (CN), Alpi Marittime Italiane. Vengono fornite alcune notizie sulla biología ed ecologia della nuova sottospecie. Abstract: A new subspecies of Papilio alexanor Esper from Val Gesso (Cuneo Province), Italian Maritime Alps, is described and named radighierii. Some notes about its biology and ecology are given. Introduction The presence and distribution of Papilio alexanor Esper in Italy have not been modified from 1927 until today, except for its confirmed presence in Sicily (Henricksen , 1981) and the Italian Maritime Alps (Balletto & Toso, 1976). Verity (1947) had reported the species in Sicily (Nizza di Sicilia), Calabria (S. Luca) and the oriental Maritime Alps. During some investigations into the Italian Papilionidae the authors, especially because of indications and the kind cooperation of Elvio Córtese and Camillo Forte , put together a significant number of specimens collected in Val Gesso (Cuneo Province) and made observations about their larval and imaginal stages. The results of the morphological analysis compared with those obtained from the nominal subspecies and P. -
The Demonte Terrace in the Stura Valley (Maritime Alps) Between Climatic Changes and Tectonic Movements
Geogr. Fis. Dinam. Quat. 31 (2008), 5-12, 5 figg. MARCO CAPITANI (*) & MONICA MARRUCCI (*) THE DEMONTE TERRACE IN THE STURA VALLEY (MARITIME ALPS) BETWEEN CLIMATIC CHANGES AND TECTONIC MOVEMENTS ABSTRACT: CAPITANI M. & MARRUCCI M., The Demonte terrace in the putabili all’alternarsi di fasi glaciali e interglaciali e ai movimenti tettonici Stura Valley (Maritime Alps) between climatic changes and tectonic move- che hanno interessato l’area in esame. ments. (IT ISSN 1724-4757, 2008). Per comprendere i meccanismi che hanno portato all’aggradazione del terrazzo di Demonte sono state analizzate, in particolare, le relazioni The lower part of the Stura valley, which from the Maritime Alps tra questa superficie e i depositi glaciali presenti nella Valle Stura. I rap- flows into the Cuneo plain, is characterized by several orders of fluvial porti stratigrafici e le recenti datazioni hanno consentito di attribuire alla terraces. superficie in questione una genesi prevalentemente climatica collocando- This paper discusses the genesis and the subsequent erosion of the la temporalmente in un periodo tipicamente paraglaciale, più precisa- third order terrace (Demonte terrace) in relation to climatic changes due to succession of glacial and interglacial phases and to tectonic movements mente nel passaggio dall’ultimo Glaciale all’Interglaciale. that have involved the study area. Per quanto concerne l’incisione del terrazzo di Demonte, i profili In order to understand the mechanisms that led to the aggradation of longitudinali dei terrazzi presenti nell’area e i rapporti geometrici che il the Demonte terrace, the relations between this surface and the glacial terrazzo di Demonte presenta con quelli di ordini superiori ed inferiori, deposits located in Stura Valley have been analysed. -
S.S. N.21 "Della Maddalena" Variante Agli Abitati Di Demonte, Aisone E Vinadio Lotto 1
S.S. n.21 "della Maddalena" Variante agli abitati di Demonte, Aisone e Vinadio Lotto 1. Variante di Demonte PROGETTO DEFINITIVO PROGETTAZIONE: I PROGETTISTI: ing. Vincenzo Marzi Ordine Ing. di Bari n.3594 ing. Achille Devitofranceschi Ordine Ing. di Roma n.19116 geol. Flavio Capozucca Ordine Geol. del Lazio n.1599 RESPONSABILE DEL SIA DUFK*LRYDQQL0DJDUz Ordine Arch. di Roma n.16183 IL COORDINATORE PER LA SICUREZZA IN FASE DI PROGETTAZIONE geom. Fabio Quondam VISTO: IL RESPONSABILE DEL PROCEDIMENTO : LQJ1LFROz&DQHSD PROTOCOLLO DATA CODICE PROGETTO NOME FILE REVISIONE SCALA: PROGETTO LIV. PROG. N. PROG. CODICE - DP T O0 5 D 1 6 0 1 ELAB. C B A EMISSIONE A SEGUITO DI RICHIESTA MiTE N. 23984 DEL 8/03/2021 APR 2021 REV. DESCRIZIONE DATA REDATTO VERIFICATO APPROVATO Revised version adopted in Habitat Committee 26.4.2012 ANNEX Form for submission of information to the European Commission according to Art. 6(4) of the Habitats Directive Member State: Italy Date: 13/04/2021 Information to the European Commission according to Article 6(4) of the Habitats Directive (92/43/EEC) Documentation sent for: information X opinion Art. 6(4).1 Art. 6(4).2 Competent national authority: Ente di gestione Aree Protette Alpi Marittime (Management body for the protected areas of the Maritime Alps) Address: Piazza Regina Elena 30 -12010 Valdieri (CN) Contact person: Tel., fax, e-mail: Tel. +39 0171 976800 Fax +39 0171 976815 [email protected] [email protected] Is the notification containing sensitive information? If yes, please specify and justify 25 1. PLAN OR PROJECT Name of the plan/project: S.S. -
Geomorphosites and the Conservation of Landforms in Evolution Geomorfositi E La Tutela Di Forme Del Rilievo in Continua Evoluzione
Mem. Descr. Carta Geol. d’It. LXXXVII (2009), pp. 7-14 figg. 7 Geomorphosites and the conservation of landforms in evolution Geomorfositi e la tutela di forme del rilievo in continua evoluzione BINI M. (*) ABSTRACT – Geomorphosites are in continuous evolution. 1. – INTRODUCTION They are developing forms constantly attempting to reach a temporary equilibrium depending on the current morphocli- matic regime. The dynamicity of the geomorphosites poses Geomorphosites (PANIZZA, 2001) are land- practical and theorical issues as regards to the management of forms of the physical environment in continuous such sites. In fact, if these forms are in evolution is it right to evolution, constantly searching for an equilibrium set about conserving a stage of that evolution? Moreover it is that is by definition temporary. It is precisely this difficult to conserve with current rigid legislative procedures characteristic that poses both practical and theo- a dynamic element such as geomorphosites, their ongoing evolution poses problems for our system of limits, which are retical problems as regards the management of essentially based on geometrical considerations. Nevertheless, such sites, but which at the same time represents the dynamicity of geomorphosites represents an extraordi- an extraordinary tool for environmental education. nary tool for education, to fully understand and interpret the It is within this context that geomorphosites, landscape and its complex equilibria. thanks to their dynamic nature, can assume a very KEY WORDS: Conservation, Geomorphosite, Landscape important role in transmitting the concept of the Evolution. continuous state of flux of the earth’s surface, with all the possible implications that this presents. RIASSUNTO – I Geomorfositi sono forme in continuo dive- nire, alla ricerca di un equilibrio precario dettato dalle con- dizioni morfoclimatiche. -
Ephemeroptera: Oligoneuriidae
Zoological Studies 44(2): 271-274 (2005) Growth of Oligoneuriella rhenana (Imhoff, 1852) (Ephemeroptera: Oligoneuriidae) in Two Rivers with Contrasting Temperatures in NW Italy Stefano Fenoglio1,*, Tiziano Bo1, Maurizio Battegazzore2, and Angelo Morisi2 1University of Piemonte Orientale, Di.S.A.V., Via Bellini 25-15100, Alessandria, Italy , 2A.R.P.A. Piemonte, Cuneo Department, C.so M. D Azeglio 4-12100, Cuneo, Italy (Accepted January 31, 2005) Stefano Fenoglio, Tiziano Bo, Maurizio Battegazzore, and Angelo Morisi (2005) Growth of Oligoneuriella rhenana (Imhoff, 1852) (Ephemeroptera: Oligoneuriidae) in two rivers with contrasting temperatures in NW Italy. Zoological Studies 44(2): 271-274. Growth of Oligoneuriella rhenana (Imhoff, 1852) nymphs (Ephemeroptera: Oligoneuriidae) were studied in 2 rivers in Piemonte, northwestern Italy. The study was performed during the period of occurrence of the preimaginal stages, and 17 samplings were carried out from Apr. to July 2004. A significant difference in the size increase between the populations inhabiting the 2 streams was detected. We agree with the opinion that dissimilar thermal regimes of the 2 rivers may be the most important factor giving rise to this difference in growth. http://www.sinica.edu.tw/zool/zoolstud/44.2/271.pdf Key words: Growth, Ephemeroptera, Oligoneuriella rhenana. Environmental and biological variabilities in some mayflies, such as Ephoron album for exam- time and space and changes in community are ple, completes their life cycle in a few months, with basic characteristics -
Consumption of Atmospheric Carbon Dioxide Through Weathering of Ultramafic Rocks in the Voltri Massif
geosciences Article Consumption of Atmospheric Carbon Dioxide through Weathering of Ultramafic Rocks in the Voltri Massif (Italy): Quantification of the Process and Global Implications Francesco Frondini 1,* , Orlando Vaselli 2 and Marino Vetuschi Zuccolini 3 1 Dipartimento di Fisica e Geologia, Università degli Studi di Perugia, Via Pascoli s.n.c., 06123 Perugia, Italy 2 Dipartimento di Scienze della Terra, Università degli Studi di Firenze, Via La Pira 4, 50121 Firenze, Italy; orlando.vaselli@unifi.it 3 Dipartimento di Scienze della Terra dell’Ambiente e della Vita, Università degli Studi di Genova, Corso Europa 26, 16132 Genova, Italy; [email protected] * Correspondence: [email protected] Received: 1 May 2019; Accepted: 5 June 2019; Published: 9 June 2019 Abstract: Chemical weathering is the main natural mechanism limiting the atmospheric carbon dioxide levels on geologic time scales (>1 Ma) but its role on shorter time scales is still debated, highlighting the need for an increase of knowledge about the relationships between chemical weathering and atmospheric CO2 consumption. A reliable approach to study the weathering reactions is the quantification of the mass fluxes in and out of mono lithology watershed systems. In this work the chemical weathering and atmospheric carbon dioxide consumption of ultramafic rocks have been studied through a detailed geochemical mass balance of three watershed systems located in the metaophiolitic complex of the Voltri Massif (Italy). Results show that the rates of carbon dioxide consumption of the study area (weighted average = 3.02 1.67 105 mol km 2 y 1) are higher than ± × − − the world average CO2 consumption rate and are well correlated with runoff, probably the stronger weathering controlling factor. -
Hydrothermal Circulation in the Acqui Terme District, Tertiary Piedmont Basin (Nvv Italy)
Bulletin d'HydrogPologie No 17 (1999) Centre d'Hydrogiologie, Universiti de Neuchlitel EDITIONS PETER LWG Hydrothermal circulation in the Acqui Terme district, Tertiary Piedmont Basin (NvvItaly) by *Massirno Verdoya, Vincenzo Pasquale & Paolo Chiozzi Dipartimento per lo Studio del Territorio e delle sue Risorse, Universiti di Genova, Viale Benedetto XV, 5 1-16132 Genova, Italy. E-mail: [email protected] ABSTRACT We investigated the deep hydrothermal circulation of the Acqui Terme district, Tertiary Piedmont Basin (TPB), which is characterised by hot springs, with a maximum temperature of about 70 "C. A thermal gradient increasing from about 70 to 90 mK m'l towards the hot spring area was determined in two conduction-dominated boreholes. Calculations on convection-dominated boreholes again yielded anomalously high thermal gradients compared to those expected for TPB. The hydrothermal circulation mainly affects the crystalline basement beneath the impermeable sedimentary cover. The maximum depth of the hydrothermal system is 3400 m, and the top of the permeable zone ruled by convection is at a depth of about 1000 m. Models of ascending flow show that the water rises from the reservoir through a relatively narrow fracture zone. KEYWORDS Geothermal system, medium enthalpy reservoir, convective heat transfer, hot springs 1. Introduction The Acqui Terme district, located in the Tertiary Piedmont Basin (TPB), NW Italy, is known for its thermal springs since historical times (Fig. 1). The most recent geochemical and geothermal investigations are by BORTOLAMI et al. (1983) and PASQUALE et al. (1986), respectively. The latter presented the first thermal data for the southwestern sector of the Po plain, with particular reference to the Acqui hydrothermal system. -
040607 Campanini Tabella Manutenzioni Aipo Piemonte 07
AIPO - PIANO DI MANUTENZIONE 2007 DEI CORSI D'ACQUA DEL PIEMONTE N. UFFICIO STIMA DEI COSTI DEL PROG. OPERATIVO DESCRIZIONE DELL'INTERVENTO CORSO D'ACQUA PROGRAMMA PRIMO PROV. (1) AIPO ANNO 2007 Consolidamento briglia sul T,.te Gesso in comune di 1AL Torrente Gesso € 500.000,00 CN Cuneo Manutenzione alle opere di difesa del t.te Stura di 2AL Stura di Demonte € 150.000,00 CN Demonte in comune di Demonte,ponte Perdioni Manutenzione del t.te Rotaldo in comuni vari fino alla 3AL Torrente Rotaldo € 110.000,00 AL cofluenza con il f. Po Manutenzione dell'alveo e delle opere di difesa 4AL Sesia € 90.000,00 VC spondale del f. Sesia in comune di Serravalle Sesia Spese relative a convenzioni stipulate ai fini delle 5ALmanutenzioni delle opere idrauliche e per servizio di € 70.000,00 piena Lavori di sfalcio per inghiaiamento argini dal comune 6AL Po € 300.000,00 VC - AL di Crescentino a Casale M.to e Valenza Po Lavori di sfalcio per inghiaiamento argini maestri 7AL Po € 162.000,00 AL 2^cat. - II T.C. Lavori di manutenzione arginale f. Sesia in sx e in dx 8AL Sesia € 235.000,00 VC-NO da Romagnano Sesia a confluenza Po e affluenti Lavori di manutenzione argini in dx e Sx f. Tanaro 9ALda Castagnole Lanze sino alla confluenza Bormida- Tanaro € 230.000,00 AT-CN CN Manutenzione argine in dx f. Bormida ed in Dx Tanaro 10 AL Tanaro € 100.000,00 AL in comune di Alessandria fino confluenza Po Sfalcio argini del t.te Belbo da S. -
VARIANTE AL PAI TORRENTE ORBA Da Silvano D'orba Alla Confluenza Nel Fiume Bormida
VARIANTE AL PAI TORRENTE ORBA da Silvano d’Orba alla confluenza nel fiume Bormida PIENE TORRENTE ORBA 5/11/2011 E 13/10/2014 - EFFETTI E DANNI E CONFRONTO CON I PRINCIPALI EVENTI STORICI (Redatto novembre 2015) Dicembre 2017 2 1 PREMESSA................................................................................................................................................................ 1 2 INTRODUZIONE...................................................................................................................................................... 1 3 TORRENTE ORBA INQUADRAMENTO GENERALE ...................................................................................... 2 4 EVENTI ALLUVIONALI DEL 5/11/2011 E DEL 13/10/2014 ............................................................................... 2 4.1 CONFLUENZA PIOTA - CONFLUENZA LEMME .......................................................................................................... 3 4.1.1 Confluenza Piota – confluenza Lemme – fasce fluviali B e B di progetto vigenti......................................... 6 4.1.2 Silvano d’Orba – confluenza Lemme, aree inondabili TR 200..................................................................... 7 4.2 CONFLUENZA T. L EMME – C ASAL CERMELLI ........................................................................................................ 8 4.2.1 Confluenza T. Lemme – Casal Cermelli, fasce B e B di progetto vigenti ................................................... 11 4.2.2 Silvano d’Orba – confluenza Lemme, -
ALESSANDRIA, V1, English ! 80 Piepasso 100 80 Alessandria - ITALY 80 80 ! 80 ALEX Flood - Situation As of 27/11/2016
! ! ! 452000 454000 456000 458000 460000 462000 464000 466000 468000 470000 8°23'0"E 8°24'0"E 8°25'0"E 8°26'0"E 8°27'0"E 8°28'0"E 8°29'0"E 8°30'0"E 8°31'0"E 8°32'0"E 8°33'0"E 8°34'0"E 8°35'0"E 8°36'0"E 8°37'0"E 8°38'0"E GLIDE number: N/A Activation ID: EMSR192 Product N.: 14ALESSANDRIA, v1, English ! 80 Piepasso 100 80 Alessandria - ITALY 80 80 ! 80 ALEX Flood - Situation as of 27/11/2016 0 Astuti 0 0 0 0 Solero 80 0 Delineation Map N 4 ! 4 " 7 7 0 ' 9 9 5 N 5 " 4 4 ° 0 ' 4 9 5 4 5 Biella ° Milano Bergamo 4 Brescia 4 Novara Cremona 8 80 Og 0 9 ! Add lio Alessandria Vercelli T ic Lodi a 80 Torino Po ino 05 06 08 09 10 11 Lombardia 80 99 ! 16 Pavia Switzerland Slovenia Hungary 17 Croatia 12 13 18 Serbia Asti Alessandria Italy (! France 04 Piemonte 14 15 Piacenza Alessandria Adriatic Roma Sea 03 Emil^ia-Romagna 02 Tyrrhenian Parma N 0 0 Sea " 0 0 0 ' Cuneo 0 0 4 0 0 Felizzano N Ionian 5 " 2 1 ! o 2 01 ° r 0 Liguria ' Sea 7 7 4 a n 4 4 9 a 9 T 5 ° 4 4 19 4 Genova 4 20 Algeria Tunisia Mediterranean Savona Massa-CaSrreaara La 21 Toscana Casalbagliano 22 Spezia ! Tan aro 100 Alpes-Maritimes 30 ! km Imperia Cartographic Information Villa del Foro ! 1:31000 Full color ISO A1, medium resolution (200 dpi) N " 0 ' 3 N 5 0 0 " ° 0 0 0 ' 4 0 0.5 1 2 3 4 00 0 1 0 5 0 0 Cabanette ° ! 4 km 7 7 4 9 9 4 4 Grid: WGS 1984 UTM Zone 32N map coordinate system Tick marks: WGS 84 geographical coordinate system ± Legend 80 Crisis Information Hydrology Industry / Utilities Flooded Area Dam Extraction Mine (27/11/2016 17:18 UTC) Masio General Information River Quarry ! Area of Interest Stream Transportation N " 0 ' 2 Railway N Settlements 5 " Lake ° 0 ' 4 2 4 Cantalupo ! ! 5 Populated Place 0 0 ° Motorway 4 River 0 0 4 0 0 8 8 Point of Interest 6 6 Primary Road 9 9 Physiography 4 4 Institutional 0 9 12 Oviglio Contour lines and elevation (m) Secondary Road ! 9 Aerodrome Heliport Land use - Land Cover Features available in vector data O Consequences within the AOI r b N Unit of measurement Affected Total in AOI " a 0 ' 1 N 5 " Flooded area ha 963.0 ° 0 ' 4 1 4 5 ° Estimated population No. -
Monitoring River Pollution with High-Resolution Satellite Images
River Basin Management IV 447 Monitoring river pollution with high-resolution satellite images P. Trivero, W. Biamino & M. Borasi Dipartimento di Scienze dell’Ambiente e della Vita, Università del Piemonte Orientale “Amedeo Avogadro”, Italy Abstract The Bormida river basin is a strongly polluted rural area in North West Italy. The contamination has been caused by a chemical plant operating locally from 1892 to 1997 with ensuing heavy consequences on agriculture, animal life and human health. In the last few years, there has been an attempt to remove hazardous waste and improve the conditions of the site. We have employed a method based on high-resolution visible and infrared satellite images, which is able to assess the environmental impact of water contamination, with the aim of monitoring river banks. This method quantifies the Normalised Difference Vegetation Index (NDVI) on crops located close to the river using remote-sensed data. In this way it is possible to assess the spatial and temporal progression of land contamination and thus to be able to have an understanding of how much the interventions aimed at improving the situation were effective. The results obtained show that it is possible to assess the influence of water pollution along the entire valley: consequences are clearly visible up to 60 km downstream because of the great amounts of pollutants having been discharged. This method has been tested using Quickbird imagery (spatial resolution ~ 2.4 m/pixel) and has been validated comparing the results with chemical measurements. Keywords: remote sensing, water pollution, NDVI. 1 Introduction Throughout the nineteenth century, growing industrialisation led European nations to improved economic wealth. -
Scarica Il Documento
Progetto di Piano per la valutazione e la gestione del rischio di alluvioni Art. 7 della Direttiva 2007/60/CE e del D.lgs. n. 49 del 23.02.2010 Allegato 1 Schede descrittive delle mappe di pericolosità sul Reticolo Principale (fonti, criteri, livelli di confidenza) 22 DICEMBRE 2014 Indice Adda Sopralacuale 01 Nirone 83 Adda Sottolacuale 03 Nure 85 Agogna 05 Oglio Sopralacuale 87 Arda 07 Oglio Sottolacuale 89 Arno 09 Olona 91 Baganza 11 Olona Meridionale 93 Banna 13 Ongina 95 Belbo 15 Orba 97 Borbera 17 Orco 99 Bormida 19 Panaro 101 Bozzente 21 Parma 103 Brembo 23 Pellice 105 Casternone 25 Po 107 Ceronda 27 Po Delta 111 Cervo 29 Pudiga 113 Cherio 31 Rile 115 Chiavenna 33 Rotaldo 117 Chiese 35 Sangone 119 Chisola 37 Scrivia 121 Chisone 39 Secchia 123 Chiusella 41 Serio 125 Crostolo 43 Sesia 127 Dora Baltea 45 Seveso 129 Dora Ripara 47 Stirone 131 Elvo 49 Stura del Monferrato 133 Enza 51 Stura di Demonte 135 Garbogera 53 Stura di Lanzo 137 Garza 55 Stura di Ovada 139 Grana 57 Tanaro 141 Grana-Mellea 59 Taro 143 Guisa 61 Tenore 145 Lambro 63 Terdoppio 147 Lambro Meridionale 65 Ticino 149 Lemina 67 Tiepido 151 Lura 69 Toce 153 Maira 71 Trebbia 155 Malone 73 Tresinaro 157 Mella 75 Trobbia 159 Mera 77 Varaita 161 Mincio 79 Molgora 81 Corso d'acqua Adda sopralacuale da Crosio Bacino Adda a Lago di Como Bacino Valtellina Lunghezza Km 132 secondario Dati disponibili e fonti Scenari di alluvione Tempo di ritorno Alluvioni frequenti x 20 Limiti delle aree inondabili Alluvioni poco frequenti x 200 Alluvioni rare x 500 Portate e livelli di piena in Alluvioni frequenti x 20 corrispondenza delle sezioni del Alluvioni poco frequenti x 200 modello Alluvioni rare x 500 Alluvioni frequenti x 20 Velocità medie in corrispondenza Alluvioni poco frequenti x 200 delle sezioni del modello Alluvioni rare x 500 Studi Alluvioni frequenti Studio prov.