Effect of coagulation on a model planktonic food web

被引:77
作者
Jackson, GA [1 ]
机构
[1] Texas A&M Univ, Dept Oceanog, College Stn, TX 77843 USA
基金
美国国家科学基金会;
关键词
aggregation; coagulation; food webs; plankton; model; vertical flux;
D O I
10.1016/S0967-0637(00)00040-6
中图分类号
P7 [海洋学];
学科分类号
0707 ;
摘要
Observations have shown that aggregates ("marine snow") are an important fraction of the organic matter vertical flux in the ocean. There has been a separation in biological models describing this flux, with coagulation models focused on phytoplankton blooms for which particle concentrations are high and grazing is low and neglectable and with plankton models focused on food web interactions neglecting coagulation dynamics. This separation has partly resulted from the difficulty in describing the interactions among the multiple particle sources using a coagulation model for a food web. New approaches for describing particle dynamics now make it possible to do so. The present study examines the effect of combining the food web model of Fasham et al. (1990. Journal of Marine Research 34, 591-639) with a coagulation dynamics model and applying the combined model to describe the annual cycle of an oligotrophic plankton system. As part of the model formulation, the coagulation kernels had to be altered to include both the case of fractal particles interacting and the case of smaller particles being faster settling. Results show that coagulation can have an important effect on particle flux even in the low particle concentration oligotrophic environment by increasing average particle settling speed and by increasing the ratio of maximum to minimum daily vertical flux over the course of a yearly cycle. As part of this, coagulation forms large, rapidly sinking particles. Grazing and the accompanying formation of fecal pellets can compete with coagulation for particles, but the fecal pellets can also participate in the formation of large aggregates. Among the variables that can influence export rates are phytoplankton size and concentration as well as depth of the surface mixed layer. The results provide evidence for the importance of coagulation processes in enhancing particle export even in central ocean regions. (C) 2000 Elsevier Science Ltd. All rights reserved.
引用
收藏
页码:95 / 123
页数:29
相关论文
共 60 条
[1]   INTERACTION OF UNEQUAL SPHERES .1. HYDRODYNAMIC INTERACTION - COLLOIDAL FORCES [J].
ADLER, PM .
JOURNAL OF COLLOID AND INTERFACE SCIENCE, 1981, 84 (02) :461-474
[2]   THE ABUNDANCE AND SIGNIFICANCE OF A CLASS OF LARGE, TRANSPARENT ORGANIC PARTICLES IN THE OCEAN [J].
ALLDREDGE, AL ;
PASSOW, U ;
LOGAN, BE .
DEEP-SEA RESEARCH PART I-OCEANOGRAPHIC RESEARCH PAPERS, 1993, 40 (06) :1131-1140
[3]   INSITU SETTLING BEHAVIOR OF MARINE SNOW [J].
ALLDREDGE, AL ;
GOTSCHALK, C .
LIMNOLOGY AND OCEANOGRAPHY, 1988, 33 (03) :339-351
[4]   AGGREGATION IN MARINE SYSTEMS - PREFACE [J].
ALLDREDGE, AL ;
JACKSON, GA .
DEEP-SEA RESEARCH PART II-TOPICAL STUDIES IN OCEANOGRAPHY, 1995, 42 (01) :1-7
[5]  
[Anonymous], 2012, Microphysics of Clouds and Precipitation: Reprinted 1980
[6]   RAPID COUPLING OF SINKING PARTICLE FLUXES BETWEEN SURFACE AND DEEP OCEAN WATERS [J].
ASPER, VL ;
DEUSER, WG ;
KNAUER, GA ;
LOHRENZ, SE .
NATURE, 1992, 357 (6380) :670-672
[7]   MEASURING THE FLUX AND SINKING SPEED OF MARINE SNOW AGGREGATES [J].
ASPER, VL .
DEEP-SEA RESEARCH PART A-OCEANOGRAPHIC RESEARCH PAPERS, 1987, 34 (01) :1-&
[8]   Does planktonic community structure determine downward particulate organic carbon flux in different oceanic provinces? [J].
Boyd, PW ;
Newton, PP .
DEEP-SEA RESEARCH PART I-OCEANOGRAPHIC RESEARCH PAPERS, 1999, 46 (01) :63-91
[9]   Predicting particle coagulation and sedimentation rates for a pulsed input [J].
Burd, A ;
Jackson, GA .
JOURNAL OF GEOPHYSICAL RESEARCH-OCEANS, 1997, 102 (C5) :10545-10561
[10]   A coupled adsorption-aggregation model of the POC/234Th ratio of marine particles [J].
Burd, AB ;
Moran, SB ;
Jackson, GA .
DEEP-SEA RESEARCH PART I-OCEANOGRAPHIC RESEARCH PAPERS, 2000, 47 (01) :103-120