Monika Suchowska-Kisielewicz
Biographic Data
| ID | 7914022 |
|---|---|
| NAME | Monika Suchowska-Kisielewicz |
| GIVEN NAMES | Monika |
| FAMILY NAME | Suchowska-Kisielewicz |
| SIGNATURE | SUCHOWSKA-KISIELEWICZ M |
| AFFILIATIONS | Institute of Environmental Engineering |
| VERIFIED | No |
| TOTAL WORKS | 3 |
| TOTAL CITATIONS | 0 |
| AUTHOR COUNT | 3 |
| EDITOR COUNT | 0 |
| FIRST PUBLICATION YEAR | 2018 |
| LATEST PUBLICATION YEAR | 2025 |
| H-INDEX | 0 |
Nitrogen budgets in Europe: A methodology to quantify environmentally relevant flows of reactive nitrogen compounds on a national scale
Reactive nitrogen compounds are responsible for multiple negative impacts while they remain in the environment, changing their state and chemical form. Here we develop a methodology to trace these compounds throughout the environment using a stringent concept to describe their fate consistently and comprehensively. Using an individual country as the system scale, the individual flows of reactive nitrogen compounds are characterized between and wi…
The Evaluation of Indicators Used to Assess the Suitability of Agricultural Waste for Fermentation
To ensure high fermentation efficiency, it is necessary to assess the biodegradability of a substrate. These parameters are most often determined on the basis of the amount of loss on ignition and total organic carbon. We are more and more often using chemical indices. However, these indices do not provide information on how much an organic substance is susceptible to biodegradation. The actual assessment of the content of easily biodegradable ma…
A Comparison of Waste Stability Indices for Mechanical–Biological Waste Treatment and Composting Plants
Achieving high efficiency of biological waste treatment in mechanical−biological treatment (MBT) plants requires reliable methods for measuring the degree of biodegradation of organic substances. For this purpose, several physical, chemical, and biological indices are used. This paper presents respirometric activity (AT4), biogas potential (GB21), total and dissolved organic carbon (TOC and DOC, respectively), and loss on ignition (LOI) values, a…
No prominent works on this page.
A Comparison of Waste Stability Indices for Mechanical–Biological Waste Treatment and Composting Plants
Achieving high efficiency of biological waste treatment in mechanical−biological treatment (MBT) plants requires reliable methods for measuring the degree of biodegradation of organic substances. For this purpose, several physical, chemical, and biological indices are used. This paper presents respirometric activity (AT4), biogas potential (GB21), total and dissolved organic carbon (TOC and DOC, respectively), and loss on ignition (LOI) values, a…
The Evaluation of Indicators Used to Assess the Suitability of Agricultural Waste for Fermentation
To ensure high fermentation efficiency, it is necessary to assess the biodegradability of a substrate. These parameters are most often determined on the basis of the amount of loss on ignition and total organic carbon. We are more and more often using chemical indices. However, these indices do not provide information on how much an organic substance is susceptible to biodegradation. The actual assessment of the content of easily biodegradable ma…
Nitrogen budgets in Europe: A methodology to quantify environmentally relevant flows of reactive nitrogen compounds on a national scale
Reactive nitrogen compounds are responsible for multiple negative impacts while they remain in the environment, changing their state and chemical form. Here we develop a methodology to trace these compounds throughout the environment using a stringent concept to describe their fate consistently and comprehensively. Using an individual country as the system scale, the individual flows of reactive nitrogen compounds are characterized between and wi…
Agriculture (2 works) · Engineering (2 works) · Environmental Science (2 works) · Agriculture Sustainability and Environmental Impact (1 works) · Anaerobic Digestion and Biogas Production (1 works) · Benchmarking (1 works) · Biochemical engineering (1 works) · Biodegradation (1 works) · Biology (1 works) · Chemistry (1 works)