| Literature DB >> 29165378 |
Jing He1, Derong Su2, Shihai Lv3, Zhaoyan Diao4, Jingjie Xie5, Yan Luo6.
Abstract
Rising temperature causes a process of phosphorus release, which can be characterized well using phosphorus release rates (VP). The objective of the present study was to investigate the major factors affecting sediment phosphorus release rates through a wetland habitat simulation experiment. The results showed that the VP of different wetland sediments were different and changed with the order of W-R (river wetland) > W-L (lake wetland) > W-M (grassy marsh wetland) > W-A (reservoir wetland). The main driving factors which influenced sediment phosphorus flux velocity in the sediment-water interface were sediment B-SO₄2-, B-MBN and A-MBP content. Path analysis and determination coefficient analysis indicated the standard multiple regression equation for sediment phosphorus release rates in the sediment-water interface, and each main factor was Y = -0.105 + 0.096X₁ + 0.275X₂ - 0.010X₃ (r = 0.416, p < 0.01, n = 144), where Y is sediment phosphorus release rates; X₁ is sediment B-SO₄2- content; X₂ is sediment B-MBN; and X₃ is sediment A-MBP content. Sediment B-SO₄2-, B-MBN and A-MBP content and the interaction between them were the main factors affecting sediment phosphorus release rates in the sediment-water interface. Therefore, these results suggest that soil chemical properties and microbial activities likely play an important role in phosphorus release rates in the sediment-water interface. We hope to provide effective scientific management and control methods for relevant environmental protection departments.Entities:
Keywords: microbial biomass; phosphorus release rates; sediment chemical properties; sediment–water interface; steppe wetland
Mesh:
Substances:
Year: 2017 PMID: 29165378 PMCID: PMC5708069 DOI: 10.3390/ijerph14111430
Source DB: PubMed Journal: Int J Environ Res Public Health ISSN: 1660-4601 Impact factor: 3.390
Figure 1Location of the steppe wetland and distribution of sampling points.
Site details of the six wetlands selected in the study.
| Name of Sampling Place | Abbreviation | Latitude and Longitude | Statues of the Wetland | Average Water Depth (m) | Wetland Types |
|---|---|---|---|---|---|
| HuiheMuqiao | R1 | 119°02′21.89″ E | The surroundings are grazing steppe. | 1.0–2.5 | River wetland (W–R) |
| 48°27′14.42″ N | |||||
| Interchange of Huihe and Yimin River | R2 | 119°44′09.23″ E | The surroundings are grazing steppe. | 1.0–2.5 | |
| 49°01′50.27″ N | |||||
| Hulun Lake | L1 | 117°27′31.25″ E | The surroundings are grazing steppe. | 4.0–5.5 | Lake wetland (W–L) |
| 49°11′23.88″ N | |||||
| Swan Lake | L2 | 119°04′21.99″ E | The surroundings are grazing steppe. | 2.0–3.0 | |
| 48°28′43.62″ N | |||||
| HuiheXiboqiao | M | 119°13′50.42″ E | The surroundings are grazing steppe. | 1.0–2.5 | Grassy Marsh wetland (W–M) |
| 48°49′13.25″ N | |||||
| Midstream of Yimin River | A | 120°01′44.28″ E | Water sources protection area. | 0.–2.5 | Reservoir wetland (W–A) |
| 48°16′59.52″ N |
Figure 2The design of the experimental wetland habitat simulation device.
Chemical characteristics of the four types of wetlands selected in the study.
| Wetland Types | SOC g·kg−1 | TN g·kg−1 | TP mg·kg−1 | IP mg·kg−1 | SO42− mg·kg−1 |
|---|---|---|---|---|---|
| W–R | 145.78 ± 2.01 a | 7.16 ± 0.39 bc | 507.53 ± 13.79 d | 407.08 ± 9.60 d | 5.39 ± 1.29 b |
| W–L | 76.38 ± 48.91 ab | 5.73 ± 0.61 c | 747.13 ± 32.27 c | 584.36 ± 13.29 c | 2.83 ± 0.86 b |
| W–M | 59.11 ± 18.83 b | 31.85 ± 7.86 a | 1057.56 ± 51.81 a | 766.99 ± 8.75 a | 23.83 ± 5.95 a |
| W–A | 146.08 ± 61.36 a | 15.10 ± 2.96 b | 894.65 ± 15.54 b | 629.13 ± 9.58 b | 0.87 ± 0.11 b |
Note: Average values ± SD (standard deviation) of chemical characteristics of types of wetlands. Lower case letters, such as a, b, c and d, indicate differences between different factors. The same letters mean the difference is not significant, and different letters indicate significant differences between two wetland types at the 0.05 level.
Figure 3Variations of sediment phosphorus release rates in different wetlands.
The correlation coefficient of sediment P release rates (V) and other factors (unit: mg/kg).
| Item | A-Al-P | A-Fe-P | A-Ca-P | A-Oc-P | A-MBP | A-MBC | A-MBN | A-TP | B-SO42− | B-Al-P | B-Fe-P | B-Ca-P | B-Oc-P | B-MBP | B-MBC | B-MBN | B-TP | |
|---|---|---|---|---|---|---|---|---|---|---|---|---|---|---|---|---|---|---|
| 1.000 | 0.015 | −0.499 * | −0.654 ** | 0.336 | 0.388 | −0.236 | −0.069 | −0.538 * | 0.848 ** | −0.230 | −0.684 ** | −0.362 | −0.191 | 0.160 | −0.560 * | 0.744 ** | −0.546 * | |
| A-Al-P | 1.000 | −0.349 | 0.226 | −0.225 | −0.174 | −0.484 * | −0.536 * | 0.235 | −0.241 | 0.844 ** | 0.595 ** | −0.296 | 0.653 ** | −0.512 * | −0.295 | 0.399 | 0.231 | |
| A-Fe-P | 1.000 | 0.313 | 0.445 | −0.225 | 0.870 ** | 0.683 ** | 0.614 ** | −0.267 | −0.511 * | 0.042 | 0.797 ** | −0.177 | 0.623 ** | 0.678 ** | −0.648 ** | 0.612 ** | ||
| A-Ca-P | 1.000 | 0.051 | −0.859 ** | 0.050 | −0.166 | 0.878 ** | −0.885 ** | 0.322 | 0.353 | 0.593 ** | 0.460 | −0.462 | 0.619 ** | −0.276 | 0.882 ** | |||
| A-Oc-P | 1.000 | −0.149 | 0.382 | 0.557 * | 0.361 | 0.366 | −0.506 * | −0.608 ** | 0.464 | 0.133 | 0.590 ** | 0.089 | −0.036 | 0.360 | ||||
| A-MBP | 1.000 | −0.047 | 0.158 | −0.787 ** | 0.712 ** | −0.214 | −0.150 | −0.572 * | −0.363 | 0.414 | −0.520 * | 0.093 | −0.790 ** | |||||
| A-MBC | 1.000 | 0.573 * | 0.358 | −0.042 | −0.678 ** | −0.166 | 0.721 ** | −0.469 * | 0.632 ** | 0.635 ** | −0.408 | 0.361 | ||||||
| A-MBN | 1.000 | 0.093 | 0.272 | −0.677 ** | −0.315 | 0.412 | −0.286 | 0.834 ** | 0.160 | −0.513 * | 0.106 | |||||||
| A-TP | 1.000 | −0.701 ** | 0.111 | 0.262 | 0.779 ** | 0.398 | −0.097 | 0.677 ** | −0.285 | 0.998 ** | ||||||||
| B-SO42− | 1.000 | −0.439 | −0.646 ** | −0.425 | −0.315 | 0.550 * | −0.607 ** | 0.379 | −0.704 ** | |||||||||
| B-Al-P | 1.000 | 0.749 ** | −0.492 * | 0.750 ** | −0.739 ** | −0.367 | 0.153 | 0.111 | ||||||||||
| B-Fe-P | 1.000 | −0.189 | 0.469 * | −0.393 | 0.006 | −0.348 | 0.262 | |||||||||||
| B-Ca-P | 1.000 | −0.227 | 0.251 | 0.890 ** | −0.267 | 0.780 ** | ||||||||||||
| B-Oc-P | 1.000 | −0.370 | −0.329 | −0.102 | 0.397 | |||||||||||||
| B-MBP | 1.000 | 0.025 | −0.373 | −0.100 | ||||||||||||||
| B-MBC | 1.000 | −0.292 | 0.673 ** | |||||||||||||||
| B-MBN | 1.000 | −0.287 | ||||||||||||||||
| B-TP | 1.000 |
Note: * Correlation is significant at the 0.05 level-2-tailed; ** Correlation is significant at the 0.01 level-2-tailed.
Total variance explained.
| Component | Initial Eigenvalues | Extraction Sums of Squared Loadings | ||||
|---|---|---|---|---|---|---|
| Total | Variance (%) | Cumulative (%) | Total | Variance (%) | Cumulative (%) | |
| 1 | 6.432 | 37.835 | 37.835 | 6.432 | 37.835 | 37.835 |
| 2 | 5.787 | 34.04 | 71.875 | 5.787 | 34.04 | 71.875 |
| 3 | 1.744 | 10.259 | 82.134 | 1.744 | 10.259 | 82.134 |
| 4 | 1.687 | 9.924 | 92.057 | 1.687 | 9.924 | 92.057 |
| 5 | 0.787 | 4.63 | 96.687 | |||
| 6 | 0.254 | 1.497 | 98.184 | |||
| 7 | 0.177 | 1.039 | 99.223 | |||
| 8 | 0.081 | 0.479 | 99.702 | |||
| 9 | 0.021 | 0.126 | 99.829 | |||
| 10 | 0.014 | 0.083 | 99.912 | |||
| 11 | 0.009 | 0.053 | 99.965 | |||
| 12 | 0.004 | 0.022 | 99.987 | |||
| 13 | 0.001 | 0.007 | 99.993 | |||
| 14 | 0.001 | 0.005 | 99.998 | |||
| 15 | 0 | 0.001 | 100 | |||
| 16 | 0 | 0 | 100 | |||
| 17 | 0 | 0 | 100 | |||
Component score coefficient matrix of factors affecting phosphorus release rates of the sediment.
| Sediment Factor | Component | |||
|---|---|---|---|---|
| 1 | 2 | 3 | 4 | |
| A-Al-P mg/kg | 0.018 | −0.020 | 0.233 | 0.066 |
| A-Fe-P mg/kg | 0.036 | 0.227 | 0.014 | −0.045 |
| A-Ca-P mg/kg | 0.165 | −0.052 | 0.019 | −0.010 |
| A-Oc-P mg/kg | 0.058 | 0.039 | 0.179 | 0.420 |
| A-MBP mg/kg | −0.182 | 0.131 | 0.008 | −0.088 |
| A-MBC mg/g | 0.032 | 0.127 | −0.114 | −0.047 |
| A-MBN mg/g | −0.054 | 0.252 | 0.080 | 0.067 |
| A-TP mg/kg | 0.158 | 0.024 | 0.089 | 0.090 |
| B-SO42− mg/kg | −0.113 | −0.001 | 0.056 | 0.234 |
| B-Al-P mg/kg | −0.009 | 0.008 | 0.201 | −0.089 |
| B-Fe-P mg/kg | −0.047 | 0.204 | 0.138 | −0.322 |
| B-Ca-P mg/kg | 0.158 | −0.037 | −0.126 | 0.073 |
| B-Oc-P mg/kg | 0.011 | 0.111 | 0.375 | 0.140 |
| B-MBP mg/kg | −0.090 | 0.249 | 0.082 | 0.094 |
| B-MBC mg/g | 0.151 | −0.073 | −0.242 | −0.108 |
| B-MBN mg/g | 0.064 | −0.350 | −0.090 | 0.245 |
| B-TP mg/kg | 0.158 | 0.025 | 0.089 | 0.089 |
The standard multiple regression coefficient of main factors affecting sediment phosphorus release rates.
| Model | Unstandardized Coefficients | Standardized Coefficients | ||||
|---|---|---|---|---|---|---|
| Item | B | Std. Error | Beta | t | Sig. | |
| 1 | (Constant) | −0.087 | 0.027 | −3.25 | 0.005 | |
| B-SO42−mg/kg | 0.092 | 0.014 | 0.848 | 6.396 | 0 | |
| 2 | (Constant) | −0.1 | 0.014 | −7.009 | 0 | |
| B-SO42−mg/kg | 0.072 | 0.008 | 0.661 | 8.807 | 0 | |
| B-MBN mg/g | 0.312 | 0.047 | 0.494 | 6.585 | 0 | |
| 3 | (Constant) | −0.105 | 0.01 | −10.017 | 0 | |
| B-SO42−mg/kg | 0.096 | 0.009 | 0.884 | 10.973 | 0 | |
| B-MBN mg/g | 0.275 | 0.036 | 0.436 | 7.669 | 0 | |
| A-MBP mg/kg | −0.01 | 0.003 | −0.283 | −3.776 | 0.002 | |
Path coefficient of each factor on sediment phosphorus release rates.
| Sediment Factor | Correlation Coefficient | Direct Path Coefficient | Indirect Path Coefficient | |||
|---|---|---|---|---|---|---|
| X1 (B-SO42−) | X2 (B-MBN) | X3 (A-MBP) | Total | |||
| X1 (B-SO42−) | 0.848 | 0.884 | 0.165 | −0.202 | −0.036 | |
| X2 (B-MBN) | 0.744 | 0.436 | 0.335 | −0.026 | 0.309 | |
| X3 (A-MBP) | 0.388 | −0.283 | 0.629 | 0.041 | 0.670 | |
The determination coefficient of each factor affects the sediment phosphorus release rates.
| Sediment Factor | X1 (B-SO42−) | X2 (B-MBN) | X3 (A-MBP) |
|---|---|---|---|
| X1 (B-SO42−) | 0.7815 | 0.2922 | −0.3562 |
| X2 (B-MBN) | 0.1901 | −0.0230 | |
| X3 (A-MBP) | 0.0801 |