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1.
Gels ; 10(2)2024 Feb 13.
Article in English | MEDLINE | ID: mdl-38391472

ABSTRACT

The presence of organic dyes and heavy metal ions in water sources poses a significant threat to human health and the ecosystem. In this study, hydrogel adsorbents for water pollution remediation were synthesized using Guipi residue (GP), a cellulose material from Chinese herbal medicine, and chitosan (CTS) through radical polymerization with acrylamide (AM) and acrylic acid (AA). The characteristics of the hydrogels were analyzed from a physicochemical perspective, and their ability to adsorb was tested using model pollutants such as Pb2+, Cd2+, Rhodamine B (RhB), and methyl orange (MO). The outcomes revealed that GP/CTS/AA-co-AM, which has improved mechanical attributes, effectively eliminated these pollutants. At a pH of 4.0, a contact duration of 120 min, and an initial concentration of 600 mg/L for Pb2+ and 500 mg/L for Cd2+, the highest adsorption capabilities were 314.6 mg/g for Pb2+ and 289.1 mg/g for Cd2+. Regarding the dyes, the GP/CTS/AA-co-AM hydrogel displayed adsorption capacities of 106.4 mg/g for RhB and 94.8 mg/g for MO, maintaining a stable adsorption capacity at different pHs. Compared with other competitive pollutants, GP/CTS/AA-co-AM demonstrated a higher absorption capability, mainly targeted toward Pb2+. The adsorption processes for the pollutants conformed to pseudo-second-order kinetics models and adhered to the Langmuir models. Even after undergoing five consecutive adsorption and desorption cycles, the adsorption capacities for heavy metals and dyes remained above 70% and 80%. In summary, this study effectively suggested the potential of the innovative GP/CTS/AA-co-AM hydrogel as a practical and feasible approach for eliminating heavy metals and dyes from water solutions.

2.
Plant Sci ; 329: 111605, 2023 Apr.
Article in English | MEDLINE | ID: mdl-36702178

ABSTRACT

The physiological and molecular mechanisms between phosphorus (P) and iron (Fe) interactions are still elusive although they have been extensively investigated. In this study, we uncovered that limiting P supply could alleviate Fe deficiency in Arabidopsis (Col-0). Under Fe deficiency, P deficiency (-Fe-P) decreased cell wall Fe accumulation in root, but elevated Fe accumulation in the shoot, implying that the reduced Fe retention in the root cell wall may contribute to the P-deficiency-alleviated Fe deficiency in the shoot. On the other hand, increasing P supply could mimic the degree of Fe deficiency in terms of the expressions of genes induced after Fe deficient treatment. The components of the root cell wall showed that there was no distinction in the pectin content and the Fe retention in pectin between -Fe and -Fe-P treatments, while hemicellulose 1 content and Fe retained in it were decreased significantly in -Fe-P treatment as compared with -Fe treatment. The time-course experiment showed that decreasing cell wall retained Fe was mainly from the corresponding decrease in hemicellulose 1 retained Fe. Furthermore, the up-regulation of IRT1 expression in -Fe-P was obviously lower than -Fe. All these suggest that the P deficiency-induced decrease of hemicellulose 1 component leads to reutilization of root cell wall Fe and improvement of Fe nutrition in shoot in Fe deficient Arabidopsis. Our results provide a novel explanation of the interplay between Fe and P in Arabidopsis.


Subject(s)
Arabidopsis Proteins , Arabidopsis , Iron Deficiencies , Arabidopsis/genetics , Iron/metabolism , Phosphorus/metabolism , Plant Roots/metabolism , Arabidopsis Proteins/metabolism , Pectins/metabolism , Gene Expression Regulation, Plant
3.
J Environ Manage ; 320: 115824, 2022 Oct 15.
Article in English | MEDLINE | ID: mdl-35932745

ABSTRACT

High-silica phosphogypsum (PG) is a kind of industrial by-product with great utilization potential. However, it is difficult to reuse PG directly due to the related gangue minerals (e.g., SiO2), and thus efficient purification is required to allow its further applications. Herein, a typical high-silica phosphogypsum waste was purified by a new "reverse-direct flotation" method. The organic matters and fine slimes were removed by reverse flotation, and then, the silica impurity was removed by direct flotation. Via the closed-circuit flotation process, the whiteness of the PG concentrate is improved from 33.23 to 63.42, and the purity of gypsum in the PG concentrate increases from 83.90% to 96.70%, with a gypsum recovery of 85%. Additionally, the content of SiO2 is significantly reduced from 11.11% to 0.07%. In-depth investigations suggest that the difference in the floatability of gypsum and quartz is prominently intensified by flotation reagents at pH = 2-2.5, and thus leads to good desilication performance. Further characteristics of the PG concentrate prove that impurities have been well removed, and the PG concentrate meets the requirement of related standards for gypsum building materials. The flotation method reported here paves the way for the purification of high-silica phosphogypsum, which can be extended to the purification and value-added reutilization of other industrial solid wastes.


Subject(s)
Calcium Sulfate , Silicon Dioxide , Calcium Sulfate/chemistry , Industrial Waste/analysis , Phosphorus/chemistry
4.
Plant Sci ; 322: 111371, 2022 Sep.
Article in English | MEDLINE | ID: mdl-35809682

ABSTRACT

Auxin is involved in stress responses of plants, such as phosphorus (P) deficiency in rice. Studies on whether auxin participates in cell-wall inorganic phosphorous (Pi) reutilization in Pi-starved rice are scarce. This study explored the mechanisms underlying auxin-facilitated cell-wall Pi-reutilization in rice roots. Pi deficiency rapidly induced auxin accumulation in roots; exogenous auxin [α-naphthaleneacetic acid (NAA), a permeable analog of auxin] elevated soluble Pi content in roots and shoots by increasing pectin content by enhancing activity of pectin methylesterase, and upregulating the transcript level of PHOSPHORUS-TRANSPORTER-2, such that more Pi was translocated to the shoot. Irrespective of the Pi status, exogenous auxin induced nitric oxide (NO) and ethylene production, while exogenous sodium nitroprusside (an NO donor) and 1-aminocyclopropane-1-carboxylic acid (a precursor of ethylene) had no effect on auxin content, suggesting that auxin may act upstream of NO and ethylene. The beneficial effect of NAA in increasing soluble Pi content in roots and shoots disappeared when 2-(4-carboxyphenyl)- 4,4,5,5-tetramethylimidazoline-1-oxyl-3-oxide (a scavenger of NO) or aminoethoxyvinylglycine (an inhibitor of ethylene) were applied, suggesting that auxin facilitates cell-wall Pi-reutilization in a NO-ethylene-dependent manner in Pi-deficient rice. Our study results suggest auxin application as an effective agronomic practice for improving plant Pi nutrition in P-deficient conditions.


Subject(s)
Oryza , Cell Wall , Indoleacetic Acids , Nitric Oxide/pharmacology , Oryza/genetics , Phosphorus , Plant Roots
5.
Chem Asian J ; 17(14): e202200286, 2022 Jul 15.
Article in English | MEDLINE | ID: mdl-35614022

ABSTRACT

Spent bleaching clay (SBC) is a problematic waste from the palm oil industry with worldwide availability. In this study, geopolymer was synthesized from SBC, a kind of aluminosilicate material with an alkaline activator solution that is made up of sodium hydroxide and sodium silicate. Calcium silicate (CS), which is a by-product of the silicates removal from wastewater, was also added to the formulation. The geopolymer mixture paste was cured in an oven at 80 °C for 24 h and at room temperature for 7 days. The characterizations were carried out using FTIR spectroscopy, SEM/EDX, TGA, BET, and XRD. The SEM images showed an aggregate of aluminosilicate material is formed with some unreacted particles on the surface of the geopolymer. The TGA results show that the geopolymers decomposed at a higher temperature than SBC, demonstrating its heat resistance properties. The BET results showed the addition of CS formed a denser geopolymer with a total pore volume of 0.0636 cm3 /g.


Subject(s)
Industrial Waste , Polymers , Clay , Microscopy, Electron, Scanning , Palm Oil , Polymers/chemistry
6.
J Exp Bot ; 73(8): 2618-2630, 2022 04 18.
Article in English | MEDLINE | ID: mdl-35084463

ABSTRACT

Jasmonic acid (JA) is involved in phosphorus (P) stress in plants, but its underlying molecular mechanisms are still elusive. In this study, we found root endogenous JA content in rice increased under P deficiency (-P), suggesting that JA might participate in P homeostasis in plants. This hypothesis was further confirmed through the addition of exogenous JA (+JA), as this could increase both the root and shoot soluble P content through regulating root cell wall P reutilization. In addition, -P+JA treatment significantly induced the expression of P transporter gene OsPT2, together with increased xylem P content, implying that JA is also important for P translocation from the root to the shoot in P-deficient rice. Furthermore, the accumulation of the molecular signal nitric oxide (NO) was enhanced under -P+JA treatment when compared with -P treatment alone, while the addition of c-PTIO, a scavenger of NO, could reverse the P-deficient phenotype alleviated by JA. Taken together, our results reveal a JA-NO-cell wall P reutilization pathway under P deficiency in rice.


Subject(s)
Oryza , Cell Wall/metabolism , Cyclopentanes/metabolism , Nitric Oxide/metabolism , Oryza/genetics , Oryza/metabolism , Oxylipins/metabolism , Phosphorus/metabolism , Plant Roots/metabolism
7.
Ecotoxicol Environ Saf ; 205: 111372, 2020 Dec 01.
Article in English | MEDLINE | ID: mdl-32977281

ABSTRACT

The production of natural selenium (Se)-rich food by using a high-Se crop cultivar is beneficial to human health and environmental safety; however, the underlying mechanism of different Se-accumulation ability between high- and low-Se rice cultivars remains unclear. A low-grain-Se cultivar and high-grain-Se cultivar of rice were used as test materials, and two levels of Se (0 and 0.5 mg kg-1) were arranged in a randomized design containing twelve replicates. The dynamic changes of shoot Se concentration and accumulation, xylem sap Se concentration, shoot and grain Se distribution, Se transporters genes (OsPT2, Sultr1;2, NRT1.1B) expression of the high- and low-Se rice cultivars were determined. The shoot Se concentration and accumulation of the high-Se rice showed a greater degree of reduction than those of the low-Se rice during grain filling stage, indicating that leaves of high-Se rice served as a Se source and supplied more Se for the growth centre grain. The expression levels of OsPT2, NRT1.1B and Sultr1;2 in the high-Se rice cultivar were significantly higher than those in the low-Se rice cultivar, which indicated that the high-Se rice cultivar possessed better transport carriers. The distribution of Se in grain of the high-Se rice cultivar was more uniform, whereas the low-Se cultivar tended to accumulate Se in embryo end. The stronger reutilization of Se from shoots to grains promoted by increased transporters genes expression and optimized grain storage space may explain how the high-Se rice cultivar is able to accumulate more Se in grain.


Subject(s)
Oryza/physiology , Selenium/metabolism , Cadmium/metabolism , Edible Grain/chemistry , Humans , Oryza/metabolism , Soil Pollutants/analysis , Xylem/metabolism
8.
J Sci Food Agric ; 98(13): 4837-4844, 2018 Oct.
Article in English | MEDLINE | ID: mdl-29574746

ABSTRACT

BACKGROUND: Pentacyclic triterpenic acids (TA) are phytochemicals of increasing nutritional interest owing to their bioactive properties, such as anti-inflammatory, antitumoral, antihyperglycemic and hepatoprotective. Crude olive pomace oils constitute a non-exploited significant source of these compounds. In the present study, concentrates of TA were extracted and characterized from crude olive pomace oils that were obtained by centrifugation and subsequent solvent extraction, respectively. Specifically, the concentrates were obtained from the byproduct generated in the filtration of the oils. The solids were subjected to Soxhlet extractions with hexane to remove the residual oil and then with ethanol for the TA extraction. RESULTS: Concentrates containing 850-980 g kg-1 TA were isolated from the oils obtained by centrifugation, whereas those isolated from oils obtained by hexane extraction presented levels of TA that ranged from 510 to 900 g kg-1 . Oleanolic (OA) and maslinic (MA) acids were the TA found in the concentrates. The relative contents of OA and MA were, respectively, 30:70 (w/w) and 77:23 (w/w). All concentrates also presented phenolic compounds at levels of g kg-1 and displayed slight antioxidant properties. CONCLUSION: Concentrates of TA, containing MA and OA, can be readily obtained from a byproduct generated by filtration of crude olive pomace oils. Concentrates isolated from oils obtained by centrifugation were rich in MA, whereas those from oils extracted with hexane were rich in OA. The concentrates showed slight antioxidant properties that can be mainly attributed to the presence of phenolic compounds and not to TA. © 2018 Society of Chemical Industry.


Subject(s)
Antioxidants/chemistry , Olea/chemistry , Oleanolic Acid/chemistry , Olive Oil/chemistry , Plant Extracts/chemistry , Triterpenes/chemistry , Antioxidants/isolation & purification , Fruit/chemistry , Oleanolic Acid/isolation & purification , Olive Oil/isolation & purification , Phenols/chemistry , Phenols/isolation & purification , Plant Extracts/isolation & purification , Triterpenes/isolation & purification
9.
Environ Sci Pollut Res Int ; 24(36): 27833-27842, 2017 Dec.
Article in English | MEDLINE | ID: mdl-28986732

ABSTRACT

With the increasing use of chemical fertilizers, negative environmental impacts have greatly increased as a result from agricultural fields. The fungus Trichoderma viride used as a biofertilizer can efficiently reduce nitrous oxide (N2O) emissions from subtropical tea fields in southern China. In this paper, it was further found that T. viride biofertilizer could alleviate nitrogen (N) leaching in tea fields. Gross N leaching was 1.51 kg ha-1 year-1 with no external fertilizer input, but when 225 kg N ha-1 year-1was applied, it increased to 12.38 kg ha-1 year-1 using T. viride biofertilizer but 53.46 kg ha-1 year-1 using urea. Stepwise linear regression analysis identified the factors responsible for N leaching to be soil nitrate concentration and soil interflow, simulated here using the water balance simulation model (WaSiM-ETH). Finally, mass-scale production of T. viride biofertilizer from waste reutilization using sweet potato starch wastewater and rice straw was found to be cost-effective and feasible. These procedures could be considered a best management practice to reduce N leaching from tea fields in subtropical areas of central China and to reduce pollution from other agricultural waste products.


Subject(s)
Agriculture/methods , Camellia sinensis , Fertilizers/analysis , Nitrogen/analysis , Soil Pollutants/analysis , Trichoderma/chemistry , Camellia sinensis/growth & development , China , Environmental Monitoring
10.
Article in Chinese | WPRIM | ID: wpr-853324

ABSTRACT

Objective: To study and analyze the waste reutilization in the process of Chinese materia medica (CMM) resources industrialization, in order to provide countermeasures and suggestions for the protection of CMM resources and promote the sustainable development of CMM industry. Methods: Using circular economics to explain the circular pattern and policy mechanism of green development economy that will promote the waste reutilization of CMM. Results: Waste generated from CMM resources industrialization pollutes the ecological environment seriously, forming the bearing pressure of environment, and the key to the development of CMM resources is to solve the problem of the negative externality caused by waste generated in the process of CMM resources industrialization. Conclusion: Promoting the waste reutilization of CMM should establish the green economic network system which is essential to the development of CMM industry and promote green technology innovation with green policy system which is conducive towards green road, and it makes environmental protection combining organically with the efficient use of CMM resources.

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