Department of Zoology and Environmental Science, Agro-ecology and Pollution Research Laboratory, Gurukula Kangri Vishwavidyalaya, Haridwar, India.
Institute of Environment and Development Studies, Bundelkhand University, Jhansi, India.
Water Environ Res. 2021 Sep;93(9):1543-1553. doi: 10.1002/wer.1536. Epub 2021 Mar 9.
The present study describes the phytoremediation performance of water lettuce (Pistia stratiotes L.) for physicochemical pollutants elimination from paper mill effluent (PME). For this, pot (glass aquarium) experiments were conducted using 0% (BWW: borewell water), 25%, 50%, 75%, and 100% treatments of PME under natural day/light regime. Results of the experiments showed that the highest removal of pH (10.75%), electrical conductivity (EC: 63.82%), total dissolved solids (TDS: 71.20%) biological oxygen demand (BOD: 85.03%), chemical oxygen demand (COD: 80.46%), total Kjeldahl's nitrogen (TKN: 93.03%), phosphorus (P: 85.56%), sodium (Na: 91.89%), potassium (K: 84.04%), calcium (Ca: 84.75%), and magnesium (Mg: 83.62%), most probable number (MPN: 77.63%), and standard plate count (SPC: 74.43%) was noted in 75% treatment of PME after treatment by P. stratiotes. PCA showed the best vector length for TKN, Na, and Ca. The maximum plant growth parameters including, total fresh biomass (81.30 ± 0.28 g), chlorophyll content (3.67 ± 0.05 mg g f.wt), and relative growth rate (0.0051 gg d ) was also measured in 75% PME treatment after phytoremediation experiments. The findings of this study make useful insight into the biological management of PME through plant-based pollutant eradication while leftover biomass may be used as a feedstock for low-cost bioenergy production. PRACTITIONER POINTS: Biological treatment of paper mill effluent using water lettuce is presented. Best reduction of physicochemical and microbiological pollutants was attained in 75% treatment. Maximum production of chlorophyll, plant biomass, and highest growth rate was also observed in 75% treatment.
本研究描述了水蕹菜(Pistia stratiotes L.)对造纸厂废水(PME)中理化污染物去除的植物修复性能。为此,在自然日/光照条件下,使用 0%(BWW:井水)、25%、50%、75%和 100%的 PME 进行了罐(玻璃水族馆)实验。实验结果表明,在 75%的 PME 处理中,pH 值(10.75%)、电导率(EC:63.82%)、总溶解固体(TDS:71.20%)、生物需氧量(BOD:85.03%)、化学需氧量(COD:80.46%)、总凯氏氮(TKN:93.03%)、磷(P:85.56%)、钠(Na:91.89%)、钾(K:84.04%)、钙(Ca:84.75%)和镁(Mg:83.62%)、最可能数(MPN:77.63%)和标准平板计数(SPC:74.43%)的去除率最高。PCA 显示 TKN、Na 和 Ca 的最佳向量长度。在植物修复实验后,在 75%的 PME 处理中,还测量了最高的植物生长参数,包括总鲜生物量(81.30±0.28g)、叶绿素含量(3.67±0.05mg g f.wt)和相对生长率(0.0051gg d)。本研究的结果为通过植物消除污染物对 PME 的生物管理提供了有用的见解,同时剩余的生物质可作为低成本生物能源生产的原料。