Implications of Nutrient Enrichment and Related Environmental Impacts in the Pearl River Estuary, China: Characterizing the Seasonal Influence of Riverine Input
Abstract
:1. Introduction
2. Materials and Methods
2.1. Study Site
2.2. Sample Collection and Analysis
2.3. Statistical Analysis
3. Results and Discussion
3.1. Variations in Hydrographic Properties
3.2. Nutrient Dynamics in the Aquatic Environment
3.2.1. Nutrient Distributions
3.2.2. Nutrient Ratios (mol:mol) in the Water Column
3.3. Biological Variable (In Terms of Chlorophyll)
3.4. Cause–Effect Chains of Nutrient Distributions
3.4.1. Hydrological Factors
3.4.2. Effects of the Pearl River Discharge
3.4.3. Contributions to Phytoplankton Chlorophyll
3.5. Environmental Effects of Nutrient Over-Enrichment
3.6. Significance of Ecological Resources Exposed to Rapid Development of the Pearl River Delta
4. Conclusions
Supplementary Materials
Author Contributions
Funding
Acknowledgments
Conflicts of Interest
References
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Variable | Abbreviation | Unit | Min | Max | SD | Mean | Sample Analysis |
---|---|---|---|---|---|---|---|
Water temperature (in May) | T | C | 24.44 | 30.73 | 1.55 | 27.35 | CTD |
Dissolved oxygen | DO | mg/L | 1.9 | 10.48 | 1.39 | 6.50 | Iodometry |
Chemical oxygen demand | COD | mg/L | 0.19 | 3.36 | 0.65 | 1.16 | Alkaline permanganate method |
Salinity | S | ‰ | 2.02 | 34.75 | 10.20 | 22.85 | CTD |
Suspended particulate matter | SPM | mg/L | 0.8 | 139.1 | 18.7 | 15.58 | Gravimetric analysis |
Phosphorus | DIP | mg/L | 0.001 | 0.232 | 0.035 | 0.025 | Colorimetry |
Dissolved inorganic nitrogen | DIN | mg/L | 0.012 | 2.938 | 0.763 | 0.803 | Colorimetry |
Silicate | DSi | mg/L | 0.031 | 4.89 | 1.27 | 1.331 | Colorimetry |
Total nitrogen | TN | mg/L | 0.14 | 3.44 | 0.85 | 1.37 | Colorimetry |
Total phosphorus | TP | mg/L | 0.005 | 0.31 | 0.049 | 0.051 | Colorimetry |
Chlorophyll a | Chla | µg/L | 0.12 | 21.11 | 4.08 | 3.99 | UV spectrophotometry |
February | May | ||||||||||
---|---|---|---|---|---|---|---|---|---|---|---|
PO | NO | NO | NH | SiO | PO | NO | NO | NH | SiO | ||
DO | −0.118 | 0.221 | 0.262 | −0.107 | 0.261 | −0.563 * | −0.781 * | −0.606 * | −0.686 * | −0.723 * | |
COD | 0.488 * | 0.753 * | 0.737 * | 0.512 * | 0.758 * | 0.367 * | 0.713 * | 0.758 * | 0.710 * | 0.774 * | |
Salinity | −0.509 * | −0.739 * | −0.939 * | −0.664 * | −0.924 * | −0.369 * | −0.613 * | −0.927 * | −0.577 * | −0.898 * | |
SPM | 0.157 | 0.147 | 0.138 | 0.046 | 0.236 | 0.027 | 0.361 * | 0.514 * | 0.262 | 0.483 * | |
August | November | ||||||||||
PO | NO | NO | NH | SiO | PO | NO | NO | NH | SiO | ||
DO | −0.562 * | −0.702 * | −0.549 * | −0.711 * | −0.705 * | −0.303 * | −0.415 * | −0.665 * | −0.362 * | −0.678 * | |
COD | 0.723 * | 0.590 * | 0.513 * | 0.582 * | 0.661 * | 0.519 * | 0.740 * | 0.781 * | 0.567 * | 0.796 * | |
Salinity | −0.467 * | −0.696 * | −0.940 * | −0.518 * | −0.939 * | −0.556 * | −0.701 * | −0.948 * | −0.513 * | −0.955 * |
Month | PCs | Initial Eigenvalues | Rotation Sums of Squared Loading | ||||
---|---|---|---|---|---|---|---|
Total | % of Variance | Cumulative % | Total | % of Variance | Cumulative % | ||
February | 1 | 6.59 | 54.95 | 54.95 | 6.51 | 54.21 | 54.21 |
2 | 1.85 | 15.40 | 70.36 | 1.89 | 15.74 | 69.96 | |
3 | 1.05 | 8.78 | 79.14 | 1.10 | 9.18 | 79.14 | |
May | 1 | 7.16 | 55.06 | 55.06 | 5.11 | 39.30 | 39.30 |
2 | 2.10 | 16.11 | 71.18 | 3.40 | 26.17 | 65.46 | |
3 | 1.03 | 7.94 | 79.12 | 1.78 | 13.65 | 79.12 | |
August | 1 | 7.17 | 65.19 | 65.19 | 4.29 | 39.01 | 39.01 |
2 | 1.50 | 13.64 | 78.83 | 3.91 | 35.56 | 74.58 | |
3 | 1.30 | 11.79 | 90.62 | 1.77 | 16.05 | 90.62 | |
November | 1 | 7.70 | 70.00 | 70.00 | 5.34 | 48.50 | 48.50 |
2 | 1.43 | 12.96 | 82.96 | 3.79 | 34.46 | 82.96 |
Year | Domestic | Sewage Discharge (10 t/year) | Total Pollutants (10 t/year) | ||
---|---|---|---|---|---|
Secondary Industrial | Tertiary Industrial | Total | |||
2006 | 39.13 | 81.64 | 10.8 | 131.57 | 126.22 |
2007 | 39.47 | 75.57 | 10.46 | 125.49 | 221 |
2008 | 39.13 | 70.84 | 10.8 | 120.77 | 167.09 |
2009 | 38.8 | 70.17 | 10.46 | 119.42 | 78.6 |
2010 | 40.82 | 71.86 | 11.47 | 124.14 | 71.7 |
2011 | 41.49 | 70.51 | 13.49 | 125.49 | 75.82 |
2012 | 41.16 | 67.13 | 15.52 | 123.81 | 66.33 |
2013 | 40.48 | 65.11 | 15.52 | 121.11 | 93.06 |
2014 | 41.49 | 63.08 | 16.87 | 121.45 | 176.63 |
2015 | 43.18 | 59.37 | 17.54 | 120.1 | 243.57 |
2016 | 42.84 | 57.35 | 17.88 | 118.07 | 202.76 |
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Niu, L.; van Gelder, P.; Luo, X.; Cai, H.; Zhang, T.; Yang, Q. Implications of Nutrient Enrichment and Related Environmental Impacts in the Pearl River Estuary, China: Characterizing the Seasonal Influence of Riverine Input. Water 2020, 12, 3245. https://doi.org/10.3390/w12113245
Niu L, van Gelder P, Luo X, Cai H, Zhang T, Yang Q. Implications of Nutrient Enrichment and Related Environmental Impacts in the Pearl River Estuary, China: Characterizing the Seasonal Influence of Riverine Input. Water. 2020; 12(11):3245. https://doi.org/10.3390/w12113245
Chicago/Turabian StyleNiu, Lixia, Pieter van Gelder, Xiangxin Luo, Huayang Cai, Tao Zhang, and Qingshu Yang. 2020. "Implications of Nutrient Enrichment and Related Environmental Impacts in the Pearl River Estuary, China: Characterizing the Seasonal Influence of Riverine Input" Water 12, no. 11: 3245. https://doi.org/10.3390/w12113245
APA StyleNiu, L., van Gelder, P., Luo, X., Cai, H., Zhang, T., & Yang, Q. (2020). Implications of Nutrient Enrichment and Related Environmental Impacts in the Pearl River Estuary, China: Characterizing the Seasonal Influence of Riverine Input. Water, 12(11), 3245. https://doi.org/10.3390/w12113245