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101.
102.
Poročilo o preskusu št.: LVG 2023-050 : vzorec št. 2023/00222
Tine Hauptman, Špela Hočevar, Ana Brglez, 2023, izvedensko mnenje, arbitražna odločba

Ključne besede: varstvo gozdov, morfološke analize, Geosmithia morbida, bolezen tisočerih rakov, Juglans
Objavljeno v DiRROS: 05.07.2023; Ogledov: 282; Prenosov: 0

103.
Poročilo o preskusu št.: LVG 2023-049 : vzorec št. 2023/00226
Maarten De Groot, Špela Hočevar, Ana Brglez, 2023, izvedensko mnenje, arbitražna odločba

Ključne besede: varstvo gozdov, morfološke analize, Fusarium circinatum, borov smolasti rak
Objavljeno v DiRROS: 05.07.2023; Ogledov: 240; Prenosov: 0

104.
Poročilo o preskusu št.: LVG 2023-048 : vzorec št. 2023/00158/TH
Tine Hauptman, Špela Hočevar, Ana Brglez, 2023, izvedensko mnenje, arbitražna odločba

Ključne besede: varstvo gozdov, morfološke analize, Geosmithia morbida, bolezen tisočerih rakov
Objavljeno v DiRROS: 05.07.2023; Ogledov: 365; Prenosov: 0

105.
Poročilo o preskusu št.: LVG 2023-047 : vzorec št. 2023/00224
Ana Brglez, Špela Hočevar, 2023, izvedensko mnenje, arbitražna odločba

Ključne besede: varstvo gozdov, morfološke analize, Fusarium circinatum, borov smolasti rak, Pinus
Objavljeno v DiRROS: 05.07.2023; Ogledov: 291; Prenosov: 0

106.
Poročilo o preskusu št.: LVG 2023-046 : vzorec št. 2023/00202
Ana Brglez, Špela Hočevar, 2023, izvedensko mnenje, arbitražna odločba

Ključne besede: varstvo gozdov, morfološke analize, Fusarium circinatum, borov smolasti rak, Pinus
Objavljeno v DiRROS: 05.07.2023; Ogledov: 243; Prenosov: 0

107.
Poročilo o preskusu št.: LVG 2023-042 : vzorec št. 2023/00225
Ana Brglez, 2023, izvedensko mnenje, arbitražna odločba

Ključne besede: varstvo gozdov, morfološke analize, Anisogramma anomala, črna bulavost leske, Corylus
Objavljeno v DiRROS: 05.07.2023; Ogledov: 269; Prenosov: 0

108.
Poročilo o preskusu št.: LVG 2023-041 : vzorec št. 2023/00201
Ana Brglez, 2023, izvedensko mnenje, arbitražna odločba

Ključne besede: varstvo gozdov, morfološke analize, Anisogramma anomala, črna bulavost leske, Corylus
Objavljeno v DiRROS: 05.07.2023; Ogledov: 290; Prenosov: 0

109.
Valorized deinking paper residue as fill material for geotechnical structures
Karmen Fifer Bizjak, Barbara Likar, Ana Mladenovič, Vesna Zalar Serjun, 2021, izvirni znanstveni članek

Povzetek: This study introduces a novel geotechnical composite material comprising two types of fill material sourced from the paper industry-deinking paper sludge ash (DPSA) and deinking paper sludge (DPS). Five composites with different DPSA and DPS contents were investigated. Two composites were selected for further analyses. The technology and procedure for composite installation were implemented in field tests. The composites with 80% and 70% DPSA exhibited the elasticity required to withstand minor landslide slip deformations, in addition to achieving sufficiently high values of uniaxial compressive strength. The composites had a low maximum dry density value, which led to fewer settlements in the entire support structure. The enhanced shear characteristics can enable the construction of a thinner retaining wall. The delay between preparation and installation of the composites was further investigated. The field tests confirmed that the composites with 80% and 70% DPSA can be installed on the construction site 4 h and even 24 h after mixing. In 2018, a retaining wall structure with 70% DPSA and 30% DPS was successfully implemented near a railway line using conventional technology as followed-up research to the herein presented study. Results have been derived from work performed in the scope of the H2020 Paperchain project in which novel circular economy models centered on the valorization of the waste streams generated by the pulp and paper industry as secondary raw material for several resource-intensive sectors, including the construction sector, have been developed. Environmental benefits are savings in natural raw materials, reduction of landfill disposal as well as CO2 emission reduction.
Ključne besede: deinking paper sludge ash, deinking paper sludge, secondary resources, fill material, geotechnical structure, landslide, open access
Objavljeno v DiRROS: 04.07.2023; Ogledov: 256; Prenosov: 207
.pdf Celotno besedilo (1,63 MB)
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110.
Environmental impacts and immobilization mechanisms of cadmium, lead and zinc in geotechnical composites made from contaminated soil and paper-ash
Marija Đurić, Primož Oprčkal, Vesna Zalar Serjun, Alenka Mauko Pranjić, Janez Ščančar, Radmila Milačič, Ana Mladenovič, 2021, izvirni znanstveni članek

Povzetek: Paper-ash is used for remediation of heavily contaminated soils with metals, but remediation efficiency after longer periods has not been reported. To gain insights into the mechanisms of immobilization of cadmium (Cd), lead (Pb), and znic (Zn), a study was performed in the laboratory experiment in uncontaminated, artificially contaminated, and remediated soils, and these soils treated with sulfate, to mimic conditions in contaminated soil from zinc smelter site. Remediation was performed by mixing contaminated soil with paper-ash to immobilize Cd, Pb, and Zn in the geotechnical composite. Partitioning of Cd, Pb, and Zn was studied over one year in seven-time intervals applying the sequential extraction procedure and complementary X-ray diffraction analyses. This methodological approach enabled us to follow the redistribution of Cd, Pb, and Zn over time, thus, to studying immobilization mechanisms and assessing the remediation efficiency and stability of newly formed mineral phases. Cd, Pb, and Zn were effectively immobilized by precipitation of insoluble hydroxides after the addition of paper-ash and by the carbonization process in insoluble carbonate minerals. After remediation, Cd, Pb, and Zn concentrations in the water-soluble fraction were well below the limiting values for inertness: Cd by 100 times, Pb by 125 times, and Zn by 10 times. Sulfate treatment did not influence the remediation efficiency. Experimental data confirmed the high remediation efficiency and stability of insoluble Cd, Pb, and Zn mineral phases in geotechnical composites.
Ključne besede: cadmium, lead, zinc, contaminated soil, paper ash, immobilization mechanisms
Objavljeno v DiRROS: 04.07.2023; Ogledov: 334; Prenosov: 220
.pdf Celotno besedilo (2,95 MB)
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