Schaller KD, Fox S, Bruhn D et al (2004) Characterization of surfactin from Bacillus subtilis for
application as an agent for enhanced oil recovery. Appl Biochem Biotechnol 113:827–836.
https://doi.org/10.1385/ABAB:115:1-3:0827
Schwab AP, Su J, Wetzel S (1999) Extraction of petroleum hydrocarbons from soil by mechanical
shaking. Environ Sci Technol 33:1940–1945. https://doi.org/10.1021/es9809758
Shidhaye S, Malke S, Mandal S et al (2008) Soy – a hidden treasure for therapeutic, cosmetic and
pharmaceutical use. Int J Alternative Med 7:1–6
Shin BK, Kwon SW, Park JH (2015) Chemical diversity of ginseng saponins from Panax ginseng. J
Ginseng Res 39:287–298. https://doi.org/10.1016/j.jgr.2014.12.005
Šlesárová A (2006) Problems of the mine water quality at selected Slovak localities. Acta Montan
Slovaca 11:371–374
Slovak Act No. 188/2003 Coll. on the application of treated sludge and bottom sediments onto soil,
Annex No. 3 and No. 4. In: Collection of Laws of the Slovak Republic (in Slovak)
Song S, Zhu L, Zhou W (2008) Simultaneous removal of phenanthrene and cadmium from
contaminated soils by saponin, a plant-derived biosurfactant. Environ Pollut 156:1368–1370.
https://doi.org/10.1016/j.envpol.2008.06.018
Šottník P, Šucha V (2001) Možnosti úpravy kyslého banského výtoku ložiska Banská Štiavnica –
Šobov. Miner Slovaca 33:53–60. (in Slovak)
Šottník P, Dubíková M, Lintnerová O et al (2002) The links between the physico-chemical
character of different mining waste in Slovakia and their environmental impacts. In: Proceedings
of XVII. Congress of Carpathian-Balkan Geological Association, Bratislava, September 1–4,
2002, Geol Carpath, vol 53, 6 p
Špaldoň T, Brehuv J, Bobro M et al (2006) Mining development the Spis-Gemer ore-location. Acta
Montan Slovaca 11:375–379
Spigno G, De Faveri DM (2009) Microwave-assisted extraction of tea phenols: a phenomenological
study. J Food Eng 93:210–217. https://doi.org/10.1016/j.jfoodeng.2009.01.006
Stanley J, Wilkinson ST, Moreno Ramírez D et al (2015) Tribal mining educational modules:
copper mining and processing [PDF document]. Retrieved from http://www.superfund.phar
macy.arizona.edu/learning-modules/tribal-modules
Stojić N, Štrbac S, Prokić D (2018) Soil pollution and remediation. In: Hussain CM (ed) Handbook
of environmental materials management. Springer, Cham, pp 1–34. https://doi.org/10.1007/
978-3-319-58538-3_81-1
Šucha V, Kraus I, Zlocha M et al (1997) Acidification in the Šobov region (Štiavnické vrchy Mts.).
Miner Slovaca 29:407–416. (in Slovak)
Tahseen R, Afzal M, Iqbal S et al (2016) Rhamnolipids and nutrients boost remediation of crude
oil-contaminated soil by enhancing bacterial colonization and metabolic activities. Int
Biodeterior Biodegrad 115:192–198. https://doi.org/10.1016/j.ibiod.2016.08.010
Tashakkori P, Erdem P, Bozkurt SS (2017) Molecularly imprinted polymer based on magnetic ionic
liquid for solid-phase extraction of phenolic acids. J Liq Chromatogr Relat Technol 40:657–666.
https://doi.org/10.1080/10826076.2017.1343732
Thiengmag S, Chuencharoen S, Thasana N et al (2016) Bacterial consortium expressing surface
displayed, intra- and extracellular lipases and pseudopyronine B for the degradation of oil. Int J
Environ Sci Technol 13:2067–2078. https://doi.org/10.1007/s13762-016-1034-z
Tissue BM (2013) Basics of analytical chemistry and chemical equilibria. Wiley, Hoboken,
426 p. ISBN: 978-0-470-59208-3
Tiwari KK (1995) Extraction technologies related to food processing. In: Gaonkar AG (ed) Food
processing: recent developments. Elsevier Science, New York, pp 269–302. https://doi.org/10.
1016/B978-044481500-2/50016-5
Tölgyessy P, Vrana B, Bartal M et al (2009) Determination of chlorophenols in sediments using
ultrasonic solvent extraction followed by stir bar sorptive extraction coupled to TD-GC-MS.
Chromatographia 69:389–392. https://doi.org/10.1365/s10337-008-0877-y
Uhlík P, Šucha V (1997) Distribution of pyrophyllite in the Šobov deposit and comparison with
pyrophyllite from Víglašská Huta deposit. Miner Slovaca 29:73–79. (in Slovak)
172
L. Nemček and I. Hagarová
application as an agent for enhanced oil recovery. Appl Biochem Biotechnol 113:827–836.
https://doi.org/10.1385/ABAB:115:1-3:0827
Schwab AP, Su J, Wetzel S (1999) Extraction of petroleum hydrocarbons from soil by mechanical
shaking. Environ Sci Technol 33:1940–1945. https://doi.org/10.1021/es9809758
Shidhaye S, Malke S, Mandal S et al (2008) Soy – a hidden treasure for therapeutic, cosmetic and
pharmaceutical use. Int J Alternative Med 7:1–6
Shin BK, Kwon SW, Park JH (2015) Chemical diversity of ginseng saponins from Panax ginseng. J
Ginseng Res 39:287–298. https://doi.org/10.1016/j.jgr.2014.12.005
Šlesárová A (2006) Problems of the mine water quality at selected Slovak localities. Acta Montan
Slovaca 11:371–374
Slovak Act No. 188/2003 Coll. on the application of treated sludge and bottom sediments onto soil,
Annex No. 3 and No. 4. In: Collection of Laws of the Slovak Republic (in Slovak)
Song S, Zhu L, Zhou W (2008) Simultaneous removal of phenanthrene and cadmium from
contaminated soils by saponin, a plant-derived biosurfactant. Environ Pollut 156:1368–1370.
https://doi.org/10.1016/j.envpol.2008.06.018
Šottník P, Šucha V (2001) Možnosti úpravy kyslého banského výtoku ložiska Banská Štiavnica –
Šobov. Miner Slovaca 33:53–60. (in Slovak)
Šottník P, Dubíková M, Lintnerová O et al (2002) The links between the physico-chemical
character of different mining waste in Slovakia and their environmental impacts. In: Proceedings
of XVII. Congress of Carpathian-Balkan Geological Association, Bratislava, September 1–4,
2002, Geol Carpath, vol 53, 6 p
Špaldoň T, Brehuv J, Bobro M et al (2006) Mining development the Spis-Gemer ore-location. Acta
Montan Slovaca 11:375–379
Spigno G, De Faveri DM (2009) Microwave-assisted extraction of tea phenols: a phenomenological
study. J Food Eng 93:210–217. https://doi.org/10.1016/j.jfoodeng.2009.01.006
Stanley J, Wilkinson ST, Moreno Ramírez D et al (2015) Tribal mining educational modules:
copper mining and processing [PDF document]. Retrieved from http://www.superfund.phar
macy.arizona.edu/learning-modules/tribal-modules
Stojić N, Štrbac S, Prokić D (2018) Soil pollution and remediation. In: Hussain CM (ed) Handbook
of environmental materials management. Springer, Cham, pp 1–34. https://doi.org/10.1007/
978-3-319-58538-3_81-1
Šucha V, Kraus I, Zlocha M et al (1997) Acidification in the Šobov region (Štiavnické vrchy Mts.).
Miner Slovaca 29:407–416. (in Slovak)
Tahseen R, Afzal M, Iqbal S et al (2016) Rhamnolipids and nutrients boost remediation of crude
oil-contaminated soil by enhancing bacterial colonization and metabolic activities. Int
Biodeterior Biodegrad 115:192–198. https://doi.org/10.1016/j.ibiod.2016.08.010
Tashakkori P, Erdem P, Bozkurt SS (2017) Molecularly imprinted polymer based on magnetic ionic
liquid for solid-phase extraction of phenolic acids. J Liq Chromatogr Relat Technol 40:657–666.
https://doi.org/10.1080/10826076.2017.1343732
Thiengmag S, Chuencharoen S, Thasana N et al (2016) Bacterial consortium expressing surface
displayed, intra- and extracellular lipases and pseudopyronine B for the degradation of oil. Int J
Environ Sci Technol 13:2067–2078. https://doi.org/10.1007/s13762-016-1034-z
Tissue BM (2013) Basics of analytical chemistry and chemical equilibria. Wiley, Hoboken,
426 p. ISBN: 978-0-470-59208-3
Tiwari KK (1995) Extraction technologies related to food processing. In: Gaonkar AG (ed) Food
processing: recent developments. Elsevier Science, New York, pp 269–302. https://doi.org/10.
1016/B978-044481500-2/50016-5
Tölgyessy P, Vrana B, Bartal M et al (2009) Determination of chlorophenols in sediments using
ultrasonic solvent extraction followed by stir bar sorptive extraction coupled to TD-GC-MS.
Chromatographia 69:389–392. https://doi.org/10.1365/s10337-008-0877-y
Uhlík P, Šucha V (1997) Distribution of pyrophyllite in the Šobov deposit and comparison with
pyrophyllite from Víglašská Huta deposit. Miner Slovaca 29:73–79. (in Slovak)
172
L. Nemček and I. Hagarová
