Title Ispiranje ukupne žive iz onečišćenog tla s područja rudnika Idrija : završni rad
Title (english) Leaching of mercury from contaminated soli from Idrija mine area : bachelor thesis
Author Mateja Trupina
Mentor Ivona Nuić (mentor)
Committee member Marina Trgo (predsjednik povjerenstva)
Committee member Ivana Smoljko (član povjerenstva)
Committee member Ivona Nuić (član povjerenstva)
Granter University of Split Faculty of Chemistry and Technology (Division of Engineering and Chemistry) Split
Defense date and country 2016-09-27, Croatia
Scientific / art field, discipline and subdiscipline TECHNICAL SCIENCES Chemical Engineering
Abstract Rudnik Idrija u Sloveniji bio je drugo najveće nalazište žive u svijetu. Iako je proizvodnja u rudniku prestala 1995. godine, tlo u području rudnika sadrži od 10 do čak 10 000 mg Hg/kg na drevnim mjestima prženja rude. Budući da je područje Idrije krško, oborinske i površinske vode mogu ispirati živu iz onečišćenog tla u dublje slojeve, odakle ona može dospjeti i u podzemne vode. U cilju procjene potencijalnog ispiranja Hg, eksperimenti su provedeni s uzorkom onečišćenog tla koje sadrži 1347 mg Hg/kg. Eksperimenti ispiranja provedeni su u ultračistoj vodi različitih pH vrijednosti u području od 1,75 do 13,01, primjenom standardne šaržne metode prema normi DIN 38414 S4. Ukupna koncentracija Hg u eluatima dobivenim u pH području od 3,16 do 10,97 je vrlo niska. Najviše je ukupne žive izlučeno u vrlo kiselom (pH o = 1,75) i u izrazito alkalnom (pH o = 13,01) području gdje je najvjerojatnije došlo do razaranja strukture organo-živinih kompleksa i na taj način do oslobađanja žive. Naime, kiseline i lužine otpuštaju Hg iz tla otapajući i/ili razarajući strukturu komponenata koje snažno privlače Hg. Kompleksiranje Hg s organskom tvari (uglavnom huminske i fulvinske kiseline) smatra se najdominantnijim procesom koji kontrolira njenu mobilnost u tlu. U kiselim uvjetima dolazi do otapanja fulvinskih kiselina kao i organo-mineralnih kompleksa stvorenih adsorpcijom otopljene Hg (koja nosi huminske i fulvinske kiseline), na mineralne komponente tla. Povećana koncentracija izlučene Hg u alkalnim uvjetima najvjerojatnije je rezultat otapanja huminskih kiselina. Udio izlučene Hg u odnosu na njen sadržaj u tlu vrlo je malen (od 0,0001% do 1,84%), čak i u izrazito kiselom i alkalnom području, ukazujući na jaki afinitet Hg prema komponentama tla. Unatoč tome, i najniža detektirana koncentracija izlučene ukupne Hg prelazi maksimalno dozvoljenu koncentraciju za pitke vode, propisanu hrvatskim i slovenskim zakonima kao i Direktivom Vijeća Europske zajednice, ukazujući na nužnost daljnjeg monitoringa kakvoće tla kao i ispitivanja izlučivanja Hg iz onečišćenog tla na području rudnika Idrija.
Abstract (english) The Idrija mine in Slovenia was the second largest mercury deposit in the world. Although the production in the mine stopped in 1995, the soil in surrounding of Idrija contains from 10 to even 10,000 mg Hg/kg at ancient roasting sites. Since Idrija is karstic area, surface and rain waters can leach Hg from contaminated soil to deeper soil layers and then into groundwater. In order to estimate the potential leaching of Hg, the experiments were conducted on contaminated soil sample containing 1347 mg Hg/kg. The leaching experiments have been performed in ultrapure water of different pH values in the range from 1.75 to 13.01, using standard batch method according to DIN 38414 S4. The concentration of total Hg in leachates obtained for pH range from 3.16 to 10.97 was very low. The highest concentration of mercury has been obtained in leachates in highly acidic (pH o = 1.75) and in highly alkaline (pH o = 13.01) range, which is most likely caused by the destruction of the organo-mercury complexes and consequently the release of mercury. Namely, acids and alkalis release Hg from the soil by dissolving or destructing the components in the soil that strongly attracts Hg. The complexation of Hg with organic matter (mostly humic and fulvic acids) is considered to be the most dominant processes controlling its mobility in soil. The increased concentration of leached Hg in alkaline conditions is most likely a result of the dissolving of humic acids. In acidic conditions it can be attributed to the dissolution of fulvic acids as well as organo-mineral complexes created by adsorption of dissolved mercury (which carries the humic and fulvic acids) onto mineral components in the soil. The share of leached Hg compared to its content in the soil was very small (from 0.0001% to 1.84%), even in highly acidic and the alkaline range, indicating that Hg was firmly bound to the soil matrix and was hardly leached by water. Nevertheless, even the smallest detected concentration of leached Hg exceed the maximum permissible levels for drinking waters according to Croatian and Slovenian legislations, as well as to the Council Directive of European Community, indicating the necessity of further monitoring the soil quality, as well as studying the Hg leachability at this contaminated sites of Idrija district.
Keywords
teški metali
živa
Slovenija.Idrija
Slovenija.Rudnik Idrija
onečišćeno tlo
ispiranje
Keywords (english)
heavy metals
mercury
Slovenia.Idrija
Slovenia.Idrija mine
contaminated soil
leaching
Language croatian
URN:NBN urn:nbn:hr:167:847727
Study programme Title: Chemical Technology; specializations in: Chemical Technology and Materials, Food Technology Course: Chemical Technology and Materials Study programme type: professional Study level: undergraduate Academic / professional title: stručni/a pristupnik/pristupnica kemijskog inženjerstva (stručni/a pristupnik/pristupnica kemijskog inženjerstva)
Type of resource Text
File origin Born digital
Access conditions Open access
Terms of use
Public note Istraživanja u ovome radu provedena su u okviru bilateralnog znanstveno-istraživačkog hrvatsko-slovenskog projekta „Primjena prirodnog zeolita za remedijaciju živom onečišćenog tla“ (engl. Application of Natural Zeolite for Remediation of Mercury Contaminated Soil), koji financira Ministarstvo znanosti, obrazovanja i sporta Republike Hrvatske. 2. Ključnriječi doradio knjižničar/ Key words are revised by the librarian.
Created on 2018-01-24 08:30:24