Iron-based materials for nitrogen and phosphorus removal from wastewater: A review DOI

Boyun Zhu,

Rongfang Yuan, Shaona Wang

и другие.

Journal of Water Process Engineering, Год журнала: 2024, Номер 59, С. 104952 - 104952

Опубликована: Фев. 20, 2024

Язык: Английский

Environmental and economic advantages of production and application of digestate biochar DOI Creative Commons
Josef Maroušek, Babak Minofar, Anna Maroušková

и другие.

Environmental Technology & Innovation, Год журнала: 2023, Номер 30, С. 103109 - 103109

Опубликована: Март 15, 2023

It has been repeatedly and independently proved that biochar applications brings a wide range of environmental advantages. For these benefits to have any tangible impact on global scale, needs be applied in substantial quantities. However, the commercial applicability most research date is limited by demanding requirements for used (pricy feedstocks or activated ways). Nevertheless, such production alternatives increase costs thus undermine financial sustainability many applications. In contrast, from digestate via waste heat (from methane combustion at biogas plants) several synergies make it possible obtain low constant quality throughout year. Techno-economic considerations above-reviewed literature indicates first time this competitive advantage can mass scale eutrophication prevention. Based synthesis reviewed literature, review accompanied (1) proposal activation subsequent use wastewater treatment plants (2) estimate, which profitability new application.

Язык: Английский

Процитировано

95

Straw-derived biochar for the removal of antibiotics from water: Adsorption and degradation mechanisms, recent advancements and challenges DOI
Xiuxiu Zhang,

T.K. Bhattacharya,

Chongqing Wang

и другие.

Environmental Research, Год журнала: 2023, Номер 237, С. 116998 - 116998

Опубликована: Авг. 26, 2023

Язык: Английский

Процитировано

90

Biochar/layered double hydroxides composites as catalysts for treatment of organic wastewater by advanced oxidation processes: A review DOI Creative Commons
Gonggang Liu, Xiuxiu Zhang, Hong‐Wen Liu

и другие.

Environmental Research, Год журнала: 2023, Номер 234, С. 116534 - 116534

Опубликована: Июль 1, 2023

Язык: Английский

Процитировано

82

Surface change of microplastics in aquatic environment and the removal by froth flotation assisted with cationic and anionic surfactants DOI
Hongru Jiang,

Jiaqi Bu,

Kai Bian

и другие.

Water Research, Год журнала: 2023, Номер 233, С. 119794 - 119794

Опубликована: Фев. 24, 2023

Язык: Английский

Процитировано

68

Conversion of waste plastics into value-added carbon materials DOI

Yueyue Luo,

Lin Xiao, Éric Lichtfouse

и другие.

Environmental Chemistry Letters, Год журнала: 2023, Номер 21(6), С. 3127 - 3158

Опубликована: Авг. 19, 2023

Язык: Английский

Процитировано

47

Material Design Strategies for Recovery of Critical Resources from Water DOI Creative Commons
Omar A. Kazi, Wen Chen,

Jamila G. Eatman

и другие.

Advanced Materials, Год журнала: 2023, Номер 35(36)

Опубликована: Март 31, 2023

Abstract Population growth, urbanization, and decarbonization efforts are collectively straining the supply of limited resources that necessary to produce batteries, electronics, chemicals, fertilizers, other important products. Securing chains these critical via development separation technologies for their recovery represents a major global challenge ensure stability security. Surface water, groundwater, wastewater emerging as potential new sources bolster chains. Recently, variety material‐based have been developed employed separations resource in water. Judicious selection design materials tune properties targeting specific solutes is central realizing water source resources. Here, membranes, sorbents, catalysts, electrodes, interfacial solar steam generators demonstrate promise applications reviewed. In addition, perspective offered on grand challenges key research directions need be addressed improve practical viability.

Язык: Английский

Процитировано

43

Research advances on production and application of algal biochar in environmental remediation DOI
Chongqing Wang, Lin Xiao, Xiuxiu Zhang

и другие.

Environmental Pollution, Год журнала: 2024, Номер 348, С. 123860 - 123860

Опубликована: Март 25, 2024

Язык: Английский

Процитировано

42

Biochar as adsorbents for environmental microplastics and nanoplastics removal DOI
Guanya Ji,

Yuchen Xing,

Tianyan You

и другие.

Journal of environmental chemical engineering, Год журнала: 2024, Номер 12(5), С. 113377 - 113377

Опубликована: Июнь 19, 2024

Язык: Английский

Процитировано

28

Lanthanum/iron co-modified biochar for highly efficient adsorption of low-concentration phosphate from aqueous solution DOI

Yunqiang Yi,

Yue Fu, Yu Wang

и другие.

Journal of environmental chemical engineering, Год журнала: 2024, Номер 12(2), С. 111876 - 111876

Опубликована: Янв. 25, 2024

Язык: Английский

Процитировано

21

Environmental Assessment of Dryland and Irrigated Winter Wheat Cultivation under Compost Fertilization Strategies DOI Creative Commons
Elnaz Amirahmadi, Mohammad Ghorbani, Jan Moudrý

и другие.

Plants, Год журнала: 2024, Номер 13(4), С. 509 - 509

Опубликована: Фев. 12, 2024

Wheat (Triticum aestivum L.) is a strategic agricultural crop that plays significant role in maintaining national food security and sustainable economic development. Increasing technical performance considering lowering costs, energy, environmental consequences are aims for wheat cultivation. For drylands, which cover approximately 41% of the world’s land surface, water stress has considerable negative impact on output. The current study aimed to assess aspects chemical fertilizer combination with compost dryland irrigated winter production systems through life cycle assessment (LCA). cradle-to-farm gate was considered as system boundary based one tone yield four strategies: D-C (dryland compost), D without I-C (irrigated I compost). Based results, highest lowest amounts were related strategies 12.2 6.7 ton ha−1, respectively. LCA result showed strategy comparison other had human health (49%), resources (59%), ecosystem quality (44%), climate change (43%). However, resulted adverse effect 6% health, 1% resources, 10% quality, 11% change. Utilizing areas could ensure higher crops addition alleviating indicators.

Язык: Английский

Процитировано

16