Katalóg evidencie publikačnej činnosti PU


ID záznamu:PU.Prešov.2014102311504899
Kategória:ADC
Autor:Bruun Sander (30%)
Autor:Clauson-Kaas S. (30%)
Autor:Bobuľská Lenka (30%)
Autor:Thomsen I.K. (10%)
Názov:Carbon dioxide emissions from biochar in soil: role of clay, microorganisms and carbonates
Zdroj:European journal of soil science
Lokácia:Vol. 65, no. 1, sp. no. SI (2014), s. 52-59
ISSN:1351-0754
Ohlas:[1] 2014. VERHEIJEN, F.G.A., GRABER, E.R., AMELOOT, N. et al. Biochars in soils: New insights and emerging research needs. In European journal of soil science, ISSN 1351-0754. 2014, vol. 65, no. 1, s. 22-27.
Ohlas:[1] 2014. KONG, S.H., LOH, S.K., BACHMANN, R.T. et al. Biochar from oil palm biomass: A review of its potential and challenges. In Renewable and sustainableenergy reviews, ISSN 1364-0321. 2014, vol. 39, s. 729-739.
Ohlas:[1] 2014. MAESTRINI, B., HERRMANN, A.M., NANNINPIERI, P. et al. Ryegrass-derived pyrogenic organic matter changes organic carbon and nitrogen mineralization in a temperate forest soil. In Soil biology & biochemistry, ISSN 0038-0717. 2014, vol. 69, s. 291-301.
Ohlas:[1] 2014. HERATH, H.M.S.K., CAMPS ARBESTAIN, M., HEDLEY, M.J. et al. Experimental evidence for sequestering C with biochar by avoidance of CO2 emissions from original feedstock and protection of native soil organic matter. In GCB bioenergy, ISSN 1757-1693. 2014, vol. 7, no. 3, s. 512-526.
Ohlas:[1] 2015. HEITKÖTTER, J., MARCHNER, B. Interactive effects of biochar ageing in soils related to feedstock, pyrolysis temperature, and historic charcoal production. In Geoderma, ISSN 0016-7061. 2015, vol. 245-246, s. 56-64.
Ohlas:[1] 2015. EIBISCH, N., DURNER, W., BECHTOLD, M. et al. Does water repellency of pyrochars and hydrochars counter their positive effects on soil hydraulic properties?. In Geoderma, ISSN 0016-7061. 2015, vol. 245-246, s. 31-39.
Ohlas:[1] 2015. SINGH, R., BABU, J.N., KUMAR, R. et al. Multifaceted application of crop residue biochar as a tool for sustainable agriculture: An ecological perspective. In Ecological engineering, ISSN 0925-8574. 2015, vol. 77, no. 1, s. 324-347.
Ohlas:[1] 2015. BEKELE, A., ROY, J.L., YOUNG, M.A. Use of biochar and oxidized lignite for reconstructing functioning agronomic topsoil: Effects on soil properties in a greenhouse study. In Canadian journal of soil science, ISSN 0008-4271. 2015, vol. 95, vol. 3, s. 269-285.
Ohlas:[1] 2015. MURRAY, J., KEITH, A., SINGH, B. The stability of low- and high-ash biochars in acidic soils of contrasting mineralogy. In Soil biology and biochemistry, ISSN 0038-0717. 2015, vol. 89, s. 217-225.
Ohlas:[1] 2015. ZHAO, R., JIANG, D., COLES, N. et al. Effects of biochar on the acidity of a loamy clay soil under different incubation conditions. In Journal of soils and sediments, ISSN 1439-0108. 2015, vol. 15, no. 9, s. 1919-1926.
Ohlas:[1] 2015. MOSLEY, L.M., WILLSON, P., HAMILTON, B. et al. The capacity of biochar made from common reeds to neutralise pH and remove dissolved metals in acid drainage. In Environmental science and pollution research, ISSN 0944-1344. 2015, vol. 22, no. 19, s. 15113-15122.
Ohlas:[1] 2015. SINGH, B.P., FANG, Y., BOERSMA, M. In situ persistence and migration of biochar carbon and its impact on native carbon emission in contrasting soils under managed temperate pastures. In PLoS ONE, ISSN 1932-6203. 2015, vol. 10, no. 10.
Ohlas:[1] 2016. KUPPUSAMY, S., THAVAMANI, P., MEGHARAJ, M. et al. Agronomic and remedial benefits and risks of applying biochar to soil: Current knowledge and future research directions. In Enivronment International, ISSN 0160-4120. 2016, vol. 87, s. 1-12.
Ohlas:[1] 2015. ZHAO, R., COLES, N., WU, J. Soil carbon mineralization following biochar addition associated with external nitrogen. In Chilean journal of agricultural research, ISSN 0718-5820. 2015, vol. 75, no. 4, s. 465-471.
Ohlas:[1] 2016. LIU, X., ZHENG, J., ZHANG, D. et al. Biochar has no effect on soil respiration across Chinese agricultural soils. In Science of the total environment, ISSN 0048-9697. 2016, vol. 554-555, s. 259-265.
Ohlas:[1] 2016. CHRISTEL, W., ZHU, K., HOEFER, C. et al. Spatiotemporal dynamics of phosphorus release, oxygen consumption and greenhouse gas emissions after localised soil amendment with organic fertilisers. In Science of the total environment, ISSN 0048-9697. 2016, vol. 554-555, s. 119-129.
Ohlas:[1] 2016. WANG, J., XIONG, Z., KUZYAKOV, Y. Biochar stability in soil: Meta-analysis of decomposition and priming effects. In GCB Bioenergy, ISSN 1757-1693. 2016, vol. 8, no. 3, s. 512-523.
Ohlas:[1] 2016. SANTÍN, C., DOERR, S.H., KANE, E.S et al. Towards a global assessment of pyrogenic carbon from vegetation fires. In Global change biology , ISSN 1354-1013. 2016, vol. 22, no. 1, s. 76-91.
Ohlas:[1] 2016. HANSEN, M., SAARSALMI, A., PELTRE, C. Changes in SOM composition and stability to microbial degradation over time in response to wood chip ash fertilisation. In Soil biology and biochemistry, ISSN 0038-0717. 2016, Vol. 99, s. 179-186.
Ohlas:[1] 2016. WOO, S.H., ENDERS, A., LEHMANN, J. Microbial mineralization of pyrogenic organic matter in different mineral systems. In Organic geochemistry, ISSN 0146-6380. 2016, Vol. 98, s. 18-26.
Ohlas:[1] 2016. BEKIARIS, G., PELTRE, C., JENSEN, L.S. et al. Using FTIR-photoacoustic spectroscopy for phosphorus speciation analysis of biochars. In Spectrochimica Acta - Part A: Molecular and biomolecular spectroscopy, ISSN 1386-1425. 2016, Vol. 168, s. 29-36.
Ohlas:[1] 2016. SHENG, Y., ZHAN, Y., ZHU, L. Reduced carbon sequestration potential of biochar in acidic soil. In Science of the total environment, ISSN 0048-9697. 2016, Vol. 572, s. 129-137.
Ohlas:[1] 2016. GRUNWALD, D., KAISER, M., LUDWIG, B. Effect of biochar and organic fertilizers on C mineralization and macro-aggregate dynamics under different incubation temperatures. In Soil and tillage research, ISSN 0167-1987. 2016, Vol. 164, s. 11-17.
Ohlas:[1] 2016. HE, X., DU, Z., LU, N. et al. Sensitivity of soil respiration to soil temperature decreased under deep biochar amended soils in temperate croplands. In Applied soil ecology, ISSN 0929-1393. 2016, vol. 108, s. 204-210.
Ohlas:[1] 2016. KEITH, A., SINGH, B., DIJKSTRA, F.A. et al. Biochar field study: Greenhouse gas emissions, productivity, and nutrients in two soils. In Agronomy journal, ISSN 0002-1962. 2016, vol. 180, no. 5, s. 1805-1815.
Ohlas:[1] 2016. SONG, D., XI., X., HUANG, S. et al. Short-term responses of soil respiration and C-cycle enzyme activities to additions of biochar and urea in a calcareous soil. In PLoS ONE, ISSN 1932-6203. 2016, vol. 11, no. 9.
Ohlas:[1] 2016. ALLER, M. F. Biochar properties: Transport, fate, and impact. In Critical reviews in environmental science and technology, ISSN 1064-3389. 2016, vol. 46, no. 14-15, s. 1183-1296.
Ohlas:[1] 2016. SHINDO, H., NISHIMURA, S. Pyrogenic organic matter in japanese andosols: occurrence, transformation, and function. In Agricultural and environmental applications of biochar: advances and barriers, ISSN 0081-1904. 2016, vol. 63, s. 29-62.
Ohlas:[1] 2016. CONTE, P., SCHMIDT, H.P., CIMO, G. Research and application of biochar in Europe. In Agricultural and environmental applications of biochar: advances and barriers, ISSN 0081-1904. 2016, vol. 63, s. 409-422.
Ohlas:[1] 2016. ARBESTAIN, M.C., JONES, J.R., CONDRON, L.M. et al. Research and application of biochar in New Zeland. In Agricultural and environmental applications of biochar: advances and barriers, ISSN 0081-1904. 2016, vol. 63, s. 423-443.
Ohlas:[1] 2015. JONES, K., RAMAKRISHNAN, G., UCHIMIYA, M. et al. Fate of higher-mass elements and surface functional groups during the pyrolysis waste pecan shell. In Energy and fuels, ISSN 0887-0624. 2015, vol. 29, no. 12, s. 8095-8101.
Ohlas:[1] 2017. CUI, J., GE, T., KUZYAKOV, Y. et al. Interactions between biochar and litter priming: A three-source 14C and δ13C partitioning study. In Soil biology and biochemistry, ISSN 0038-0717. 2017, vol. 104, s. 49-58.
Ohlas:[1] 2017. SUARÉZ-ABELENDA, M., KAAL, J., MCBEATH, A.V. Translating analytical pyrolysis fingerprints to Thermal Stability Indices (TSI) to improve biochar characterization by pyrolysis-GC-MS. In Biomass and bioenergy, ISSN 0961-9534. 2017, vol. 98, s. 306-320.
Ohlas:[1] 2017. AHMED, Z.U., WOODBURY, P.B., SANDERMAN, J. et al. Assessing soil carbon vulnerability in the Western USA by geospatial modeling of pyrogenic and particulate carbon stocks. In Journal of geophysical research: Biogeosciences, ISSN 2169-8953. 2017, vol. 122, no. 2, s. 354-369.
Ohlas:[1] 2017. LUO, S., WANG, S., TIAN, L. et al. Long-term biochar application influences soil microbial community and its potential roles in semiarid farmland. In Applied soil ecology, ISSN 0929-1393. 2017, vol. 117-117, s. 10-15.
Ohlas:[1] 2017. FIDEL, R., ARCHONTOULIS, S., BABCOCK, B. et al. Commentary on ‘Current economic obstacles to biochar use in agriculture and climate change mitigation´ regarding uncertainty, context-specificity and alternative value sources. In Carbon management, ISSN 1758-3004. 2017, vol. 8, no. 2, s. 215-217.
Ohlas:[1] 2017. REES, F., WATTEAU, F., MATHIEU, S. et al. Metal immobilization on wood-derived biochars: Distribution and reactivity of carbonate phases. In Journal of environmental quality, ISSN 0047-2425. 2017, vol. 46, no. 4, s. 845-854.
Ohlas:[1] 2017. FIDEL, R.B., LAIRD, D.A., PARKIN, T.B. Impact of biochar organic and inorganic carbon on soil CO2 and N2O emissions. In Journal of environmental quality, ISSN 00472425. 2017, vol. 46, no. 3, s. 505-513.
Ohlas:[1] 2017. FANG, Y., SINGH, B.P., MATTA, P. et al. Temperature sensitivity and priming of organic matter with different stabilities in a Vertisol with aged biochar. In Soil biology and biochemistry, ISSN 0038-0717. 2017, vol. 115, s. 346-356.
Ohlas:[1] 2017. WANG, Y., ZHOU, F., ZHANG, F. et al. Influence of biochar on soil respiration and soil organic carbon fractions. In Research of environmental sciences, ISSN 1001-6929. 2017, vol. 30, no. 6, s. 920-928.
Ohlas:[1] 2017. GE, X.-G., ZHOU, B.-Z., XIAO, W.-F. et al. Effects of biochar addition on dynamics of soil respiration and temperature sensitivity in a Phyllostachys edulis forest. In Chinese journal of plant ecology, ISSN 1005-264X. 2017, vol. 41, no. 11, s. 1177-1189.
Ohlas:[1] 2018. YAN, C.X., YANG, G.L., LI, D.P. et al. Effect of biochar addition on soil respiration of oasis farmland in arid areas. In Chinese journal of agrometeorology, ISSN 1000-6362. 2018, vol. 39, no. 9, s. 575-584.
Ohlas:[1] 2018. QIU, W., MA, T., LIU, R. et al. Adsorption of BDE-47 on aluminium hydroxide colloid. In Chinese journal of environmental engineering, ISSN 1673-9108. 2018, vol. 12, no. 3, s. 815-823.
Ohlas:[1] 2018. SHAABAN, M., VAN ZWIETEN, L., BASHIR, S. A concise review of biochar application to agricultural soils to improve soil conditions and fight pollution. In Journal of environmental management, ISSN 0301-4797. 2018, vol. 228, s. 429-440.
Ohlas:[1] 2019. LENG, L., XU, X., WEI, L. et al. Biochar stability assessment by incubation and modelling: Methods, drawbacks and recommendations. In Science of the total environment, ISSN 0048-9697. 2019, vol. 664, s. 11-23.
Ohlas:[1] 2019. GE, X., CAO, Y., ZHOU, B. et al. Biochar addition increases subsurface soil microbial biomass but has limited effects on soil CO2 emissions in subtropical moso bamboo plantations. In Applied soil ecology, ISSN 0929-1393. 2019, vol. 142, s. 155-165.
Ohlas:[1] 2019. SINGH, R., SRIVASTAVA, P., SINGH, P. et al. Impact of rice-husk ash on the soil biophysical and agronomic parameters of wheat crop under a dry tropical ecosystem. In Ecological indicators, ISSN 1470-160X. 2019, vol. 105, s. 505-515.
Ohlas:[1] 2019. GOSWAMI, L., MANIKANDAN, N.A., TAUBE, J.C.R. et al. Novel waste-derived biochar from biomass gasification effluent: preparation, characterization, cost estimation, and application in polycyclic aromatic hydrocarbon biodegradation and lipid accumulation by Rhodococcus opacus. In Envirnmental science and pollution research, ISSN 0944-1344. 2019, vol. 26, no. 24, s. 25154-25166.
Ohlas:[1] 2019. JONES, M.W., DE ARAGAO, L.E.O.C., DITTMAR, T. et al. Environmental controls on the riverine export of dissolved black carbon. In Global biogeochemical cycles, ISSN 0886-6236. 2019, vol. 33, no. 7, s. 849-874.
Ohlas:[1] 2019. MCCORMAC, S.A., OSTLE, N., BARDGETT, R.D. et al. Soil biota, carbon cycling and crop plant biomass responses to biochar in a temperate mesocosm experiment. In Plant and soil, ISSN 0032-079X. 2019, vol. 440, no. 1-2, s. 341-356.
Ohlas:[1] 2019. LI, J., DUAN, T., ZHENG, C. Effects of different carbon to nitrogen ratio organic fertilizers on soil microbial biomass in organic agriculture. In Revista de la facultad de Agronomia, ISSN 0378-7818. 2019, vol. 36, no. 5, s. 1287-1295.
Ohlas:[1] 2019. JI, X., ABAKUMOV, E., XIE, X. et al. Preferential alternatives to returning all crop residues as biochar to the crop field? A three-source 13C and 14C partitioning study. In Journal of agricultural and food chemistry, ISSN 0021-8561. 2019, vol. 67, no. 41, s. 11322-11330.
Ohlas:[1] 2020. ZHU, E., LIU, T., ZHOU, L. et al. Leaching of organic carbon from grassland soils under anaerobiosis. In Soil biology and biochemistry, ISSN 0038-0717. 2020, vol. 141.
Ohlas:[1] 2019. NDIRANGU, S.M., LIU, Y., XU, K. et al. Risk evaluation of pyrolyzed biochar from multiple wastes. In Journal of chemistry, ISSN 2090-9063. 2019, vol. 2019.
Ohlas:[1] 2020. SÁNCHEZ-GARCÍA, C., OLIVEIRA, B.R.F., KEIZER, J.J. et al. Water repellency reduces soil CO2 efflux upon rewetting. In Science of the total environment, ISSN 0048-9697. 2020, vol. 708, s. [10].
Ohlas:[1] 2020. HAN, L., SUN, K., YANG, Y. et al. Biochar's stability and effect on the content, composition and turnover of soil organic carbon. In Geoderma, ISSN 0016-7061. 2020, vol. 364, s. [13].
Ohlas:[3] 2019. PANKAJ, Umesh. Multifarious benefits of biochar application in different soil types. In Biochar applications in agriculture and environment management [online]. Cham : Springer, 2019 [cit. 2020-06-01], s. 259-272. ISBN 978-3-030-40996-8. Dostupný na internete <https://link.springer.com/chapter/10.1007/978-3-030-40997-5_12>
Ohlas:[1] 2019. HARDY, B., SLEUTEL, S., DUFEY, J.E. et al. The long-term effect of biochar on soil microbial abundance, activity and community structure Is overwritten by land management. In Frontiers in environmental science, ISSN 2296-665X. 2019, vol. 7, no. 110.
Ohlas:[1] 2019. ONI, B.A., OZIEGBE, O., OLAWOLE, O.O. Significance of biochar application to the environment and economy. In Annals of agricultural sciences, ISSN 0570-1783. 2019, vol. 64, no. 2, s. 222-236.
Ohlas:[3] 2019. ZHENG, H., ZHANG, CH., LIU, B. et al. Biochar for water and soil remediation: production, characterization, and application. In A new paradigm for environmental chemistry and texicology [online]. Singapure : Springer, 2019 [cit. 2020-06-01], s. 153-196. ISBN 978-981-13-9446-1. Dostupný na internete <https://link.springer.com/chapter/10.1007/978-981-13-9447-8_11>
Ohlas:[1] 2019. JI, X., ABAUMOV, E., XIE, X. et al. Preferential alternatives to returning all crop residues as biochar to the crop field? A three-source 13C and 14C partitioning study. In Journal of agricultural and food chemistry, ISSN 0021-8561. 2019, vol. 67, no. 41, s. 11322-11330.
Ohlas:[1] 2019. FIDEL, R.B., LAIRD, D.A., PARKIN, T.B. Effect of biochar on soil greenhouse gas emissions at the laboratory and field scales. In Soil systems, ISSN 2571-8789. 2019, vol. 3, no. 1.
Ohlas:[1] 2020. WANG, Y., LIU, Y., ZHAN, W. et al. Stabilization of heavy metal-contaminated soils by biochar: Challenges and recommendations. In Science of the total environment, ISSN 0048-9697. 2020, vol. 729, no. 139060.
Ohlas:[1] 2020. CHENG, Y., LUO, L., LV, J. et al. Copper speciation evolution in swine manure induced by pyrolysis. In Environmental science and technology, ISSN 0013-936X. 2020, vol. 54, no. 14, s. 9008-9014.
Ohlas:[1] 2020. HU, L., LI, S., LI, K. et al. Effects of two types of straw biochar on the mineralization of soil organic carbon in farmland [print]. In Sustainability (Switzerland), ISSN 2071-1050. 2020, vol. 12, no. 24, s. 1-18.
Ohlas:[1] 2021. HE, T.-T., WANG, J., FU, Y.-P. et al. Effects of adding straw and biochar with equal carbon content on soil respiration and microbial biomass carbon and nitrogen. In Environmental science, ISSN 0250-3301. 2021, vol. 42, no. 1, s. 450-458.
Ohlas:[1] 2021. LIU, L., YE, Q., WU, Q. et al. Effect of biochar addition on sludge aerobic composting and greenbelt utilization. In Environmental technology and innovation, ISSN 2352-1864. 2021, vol. 21.
Ohlas:[1] 2021. DA SILVA, C.C.G., DE MEDEIROS, E.V., FRACETTO, G.G.M. et al. Biochar and cow manure on chemical and microbial community in Regosol with bean. In Journal of soil science and plant nutrition, ISSN 0718-9508. 2021, vol. 21, no. 2, s. 1552-1564.
Ohlas:[1] 2022. LI, H., TAI, G., LIU, Q. et al. Research progress on biomass adsorption materials in environmental pollution control. In Chemical reaction engineering and technology, ISSN 1001-7631. 2022, roč. 38, č. 5, s. 473-480. SCOPUS.
Ohlas:[1] 2022. ZHAOAN, S., WANG, F., ZHANG, S. et al. The effect of straw addition on organic and inorganic carbon release from calcareous soils. In Acta Pedologica Sinica, ISSN 0564-3929. 2022, roč. 58, č. 6, s. 1520-1529. SCOPUS.
Ohlas:[1] 2022. LIU, J., PAN, Z., SUN, K. et al. The preferential preservation of both different minerals and polyethylene microplastics on aromatic or aliphatic carbon fractions within low or high pyrolysis temperature biochar under mineralization. In Renewable and sustainable energy reviews, ISSN 1364-0321. 2022, roč. 170, art. no. 112963. SCOPUS;WOS:000878696500001.
Ohlas:[1] 2022. ZHAO, Y., BOL, R., SUN, Z. et al. CO2 emission and source partitioning from carbonate and non-carbonate soils during incubation. In Pedosphere, ISSN 1002-0160. 2022, roč. 32, č. 3, s. 452-462. SCOPUS;WOS:000739660400008.
Ohlas:[1] 2022. SUN, H., LUO, L., WANG, D. Carbon balance analysis of sewage sludge biochar-to-soil system. In Journal of cleaner production, ISSN 0959-6526. 2022, roč. 358, art. no. 132057. SCOPUS;WOS:000802800800002.
Ohlas:[1] 2022. VILAKAZI, S., MUCHAONYERWA, P., BETHELEZI-DUBE, N.N. Carbon dioxide and release of primary nutrients in contrasting soils incubated with feedstocks and biochar from cull potato and pine bark. In Land, ISSN 2073-445X. 2022, roč. 11, č. 8, art. no. 1329. SCOPUS;WOS:000846714100001.
Ohlas:[1] 2022. MUSTAFA, A., BRTNICKY, M., HAMMERSCHMIEDT, T. et al. Food and agricultural wastes-derived biochars in combination with mineral fertilizer as sustainable soil amendments to enhance soil microbiological activity, nutrient cycling and crop production. In Frontiers in plant science, ISSN 1664-462X. 2022, roč. 13, art. no. 1028101. SCOPUS.
Ohlas:[1] 2022. CHALK, P., SMITH, Ch. 13C methodologies for quantifying biochar stability in soil: A critique. In European journal of soil science, ISSN 1351-0754. 2022, roč. 73, č. 3, art. no. e13245. SCOPUS.
Ohlas:[1] 2022. SILTECHO, S., SUVANNANG, N., KAIPHOEM, J. et al. Characterization of Pterocarpus macrocarpus (pradoo wood) biochar and its effect on the retention properties of sandy soils in Northeast Thailand. In Soil use and management, ISSN 0266-0032. 2022, roč. 38, č. 2, s. 1293-1306. SCOPUS;WOS:000712994500001.
Ohlas:[1] 2022. MCGUIRE, R., WILLIAMS, P.N., SMITH, P. et al. Potential Co-benefits and trade-offs between improved soil management, climate change mitigation and agri-food productivity. In Foof and energy security, ISSN 2048-3694. 2022, roč. 11, č. 2, art. no. e352. SCOPUS;WOS:000752326100001.
Ohlas:[1] 2022. PULCHER, R., BALUGANI, E., VENTURA, M. et al. Inclusion of biochar in a C dynamics model based on observations from an 8-year field experiment. In Soil, ISSN 2199-3971. 2022, roč. 8, č. 1, s. 199-211. SCOPUS;WOS:000772204700001.
Ohlas:[1] 2022. QI, Y., LI, J., DENG, S. et al. Long-term irrigation reduces soil carbon sequestration by affecting soil microbial communities in agricultural ecosystems of northern China. In European journal of soil science, ISSN 1351-0754. 2022, roč. 73, č. 1, art. no. e13143. SCOPUS;WOS:000678201800001.
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