Production and Composition of Pyrogenic Dissolved Organic Matter From a Logical Series of Laboratory-Generated Chars

被引:62
作者
Bostick, Kyle W. [1 ]
Zimmerman, Andrew R. [1 ]
Wozniak, Andrew. S. [2 ]
Mitra, Siddhartha [3 ]
Hatcher, Patrick G. [4 ]
机构
[1] Univ Florida, Dept Geol Sci, Gainesville, FL 32611 USA
[2] Univ Delaware, Coll Earth Ocean & Environm, Sch Marine Sci & Policy, Newark, DE USA
[3] East Carolina Univ, Dept Geol Sci, Greenville, NC USA
[4] Old Dominion Univ, Dept Chem & Biochem, Norfolk, VA USA
基金
美国国家科学基金会;
关键词
dissolved organic matter (DOM); pyrogenic carbon; biochar; charcoal; benzenepolycarboxylic acid (BPCA); leaching; fire; black carbon; POLYCYCLIC AROMATIC-HYDROCARBONS; STATE C-13 NMR; BLACK CARBON; SOLUBLE FRACTION; FIRE; CHARCOAL; OXIDATION; SOILS; MASS; TERRESTRIAL;
D O I
10.3389/feart.2018.00043
中图分类号
P [天文学、地球科学];
学科分类号
07 ;
摘要
Though pyrogenic carbon (pyC) has been assumed to be predominantly stable, degradation and transfers of pyC between various pools have been found to influence its cycling and longevity in the environment. Dissolution via leaching may be the main control on loss processes such as microbial or abiotic oxidation, mineral sorption, or export to aquatic systems. Yet, little is known about the controls on pyrogenic dissolved organic matter (pyDOM) generation or composition. Here, the yield and composition of pyDOM generated through batch leaching of a thermal series of oak and grass biochars, as well as several non-pyrogenic reference materials, was compared to that of their parent solids. Over 17 daily leaching cycles, biochars made from oak at 250-650 degrees C released decreasing amounts of C on both a weight (16.9-0.3%, respectively) and C yield basis (7.4-0.2% C, respectively). Aryl-C represented an estimated 32-82% of C in the parent solids (identified by C-13-NMR), but only 7-38% in the leachates (identified by H-1-NMR), though both increased with pyrolysis temperature. PyC, often operationally defined as condensed aromatic carbon (ConAC), was quantified using the benzenepolycarboxylic acid (BPCA) method. Tri- and tetra-carboxylated BPCAs were formed from non-pyrogenic reference materials, thus, only penta- and hexa-carboxylated BPCAs were used to derive a BPCA-C to ConAC conversion factor of 7.04. ConAC made up 24-57% of the pyrogenic solid C (excluding the 250 degrees C biochar), but only about 9-23% of their respective leachates' DOC, though both proportions generally increased with pyrolysis temperature. Weighted BPCA compound distributions, or the BPCA Aromatic Condensation (BACon) Index, indicate that ConAC cluster size increased in pyrogenic solids but not in leachates. Additional evidence presented suggests that both aromatic cluster size and O-containing functional group contents in the pyrogenic solid control pyC solubility. Overall, pyDOM was found to be compositionally dissimilar from its parent chars and contained a complex mixture of organic compound groups. Thus, it is expected that estimates of dissolved pyC production and export, made only by detection of ConAC, are too low by factors of 4-11.
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页数:14
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共 71 条
[1]   Pyrogenic carbon soluble fraction is larger and more aromatic in aged charcoal than in fresh charcoal [J].
Abiven, Samuel ;
Hengartner, Pascal ;
Schneider, Maximilian P. W. ;
Singh, Nimisha ;
Schmidt, Michael W. I. .
SOIL BIOLOGY & BIOCHEMISTRY, 2011, 43 (07) :1615-1617
[2]   Chemical composition and bioavailability of thermally, altered Pinus resinosa (Red Pine) wood [J].
Baldock, JA ;
Smernik, RJ .
ORGANIC GEOCHEMISTRY, 2002, 33 (09) :1093-1109
[3]   Initial oxidation products in the metabolism of pyrene, anthracene, fluorene, and dibenzothiophene by the white rot fungus Pleurotus ostreatus [J].
Bezalel, L ;
Hadar, Y ;
Fu, PP ;
Freeman, JP ;
Cerniglia, CE .
APPLIED AND ENVIRONMENTAL MICROBIOLOGY, 1996, 62 (07) :2554-2559
[4]   Mineralization of polycyclic aromatic hydrocarbons by the white rot fungus Pleurotus ostreatus [J].
Bezalel, L ;
Hadar, Y ;
Cerniglia, CE .
APPLIED AND ENVIRONMENTAL MICROBIOLOGY, 1996, 62 (01) :292-295
[5]   Metabolism of phenanthrene by the white rot fungus Pleurotus ostreatus [J].
Bezalel, L ;
Hadar, Y ;
Fu, PP ;
Freeman, JP ;
Cerniglia, CE .
APPLIED AND ENVIRONMENTAL MICROBIOLOGY, 1996, 62 (07) :2547-2553
[6]   Stability of elemental carbon in a savanna soil [J].
Bird, MI ;
Moyo, C ;
Veenendaal, EM ;
Lloyd, J ;
Frost, P .
GLOBAL BIOGEOCHEMICAL CYCLES, 1999, 13 (04) :923-932
[7]   The Pyrogenic Carbon Cycle [J].
Bird, Michael I. ;
Wynn, Jonathan G. ;
Saiz, Gustavo ;
Wurster, Christopher M. ;
McBeath, Anna .
ANNUAL REVIEW OF EARTH AND PLANETARY SCIENCES, VOL 43, 2015, 43 :273-298
[8]   Fire in the Earth System [J].
Bowman, David M. J. S. ;
Balch, Jennifer K. ;
Artaxo, Paulo ;
Bond, William J. ;
Carlson, Jean M. ;
Cochrane, Mark A. ;
D'Antonio, Carla M. ;
DeFries, Ruth S. ;
Doyle, John C. ;
Harrison, Sandy P. ;
Johnston, Fay H. ;
Keeley, Jon E. ;
Krawchuk, Meg A. ;
Kull, Christian A. ;
Marston, J. Brad ;
Moritz, Max A. ;
Prentice, I. Colin ;
Roos, Christopher I. ;
Scott, Andrew C. ;
Swetnam, Thomas W. ;
van der Werf, Guido R. ;
Pyne, Stephen J. .
SCIENCE, 2009, 324 (5926) :481-484
[9]   Revised black carbon assessment using benzene polycarboxylic acids [J].
Brodowski, S ;
Rodionov, A ;
Haumaier, L ;
Glaser, B ;
Amelung, W .
ORGANIC GEOCHEMISTRY, 2005, 36 (09) :1299-1310
[10]   Characterization of Wood Chars Produced at Different Temperatures Using Advanced Solid-State 13C NMR Spectroscopic Techniques [J].
Cao, Xiaoyan ;
Pignatello, Joseph J. ;
Li, Yuan ;
Lattao, Charisma ;
Chappell, Mark A. ;
Chen, Na ;
Miller, Lesley F. ;
Mao, Jingdong .
ENERGY & FUELS, 2012, 26 (09) :5983-5991