96958 - Biogeochemical Cycling in Agroforestry Systems

Academic Year 2022/2023

  • Teaching Mode: Traditional lectures
  • Campus: Bologna
  • Corso: First cycle degree programme (L) in Land and Agro-Forestry Technologies (cod. 5831)

Learning outcomes

The course aims to provide Graduates the knowledge necessary for the qualitative and quantitative management of the flows of the main elements in the soil-water-plant-atmosphere system. Particular attention will be paid to the description of the processes that characterize the cycles of carbon, nitrogen, phosphorus, potassium and sulfur, examining the aspects relating to both ecosystem balance and plant nutrition. The teacher will focus on the distinctive aspects of cycles in forestry and agricultural environments. Notes will be made on the particularities of soils intended for industrial use or in any case strongly influenced by anthropic activities. In this context, notes will be provided relating to the dynamics of the main pollutants, both inorganic and organic, to the processes of adsorption, degradation, translocation in soils. A specific space will be dedicated to the processes that preside over the sequestration of carbon in the soil, addressing in depth the various chemical, biochemical and physical mechanisms that lead to the stabilization of carbon in the various soil aggregates (macro-meso- and micro-aggregates). We will focus on the factors of natural and/or anthropogenic origin that influence the turnover of organic carbon in the soil, linking the knowledge to some issues such as climate change and the different methods of soil management.

Course contents

UNIT 1 - INTRODUCTION TO BIOGEOCHEMISTRY: REACTIONS AND PROCESSES (20 HOURS)

1.1 What is biogeochemistry? Origin of the elements.

1.2 References to the inorganic and organic constituents of living beings. The nutritional elements. Biomolecules (carbohydrates, nitrogenous compounds, lipids, phenolic compounds).

1.3 Enzymatic reactions and cellular metabolism. Energetic aspects of enzymatic reactions. Mechanisms and kinetics of enzymatic reactions. Inhibitors and activators of enzymatic reactions.

1.4 The carbon cycle in agro-forestry systems. Photosynthesis (efficiency of water use, efficiency of nutrient use). Respiration.

1.5 Primary net production (NPP)). Net ecosystem production (NEP) and "Eddy-covariance". Global estimate of NPP and biomass. Fate of the PNP (the detritus cycle). NPP and "global change". The organic substance of the soil and "global change".

Skills acquired in unit 1:

  • basic knowledge on the origin of the elements;
  • knowledge of the main mechanisms underlying the photosynthetic process; - knowledge of the metabolic pathways underlying the production of energy in plants;
  • knowledge of primary net production and the ecosystem.

 

UNIT 2 - BIOGEOCHEMICAL CYCLES IN AGRO-FORESTRY SYSTEMS (28 HOURS)

2.1 Introduction to terrestrial biogeochemical cycles. Biogeochemical cycles in forest systems and herbaceous systems.

2.2 The nitrogen, phosphorus, sulfur and potassium cycle in agro-forestry systems.

2.3 Notes on the impact of man on terrestrial biogeochemical cycles. The "critical zone". Acid deposition. Nitrogen saturation. The increase in carbon dioxide and global warming. Contaminants in agro-forestry systems. Risk assessment in agro-forestry systems.

Skills acquired in unit 2:

  • basic knowledge on terrestrial biogeochemical cycles;
  • knowledge of the general dynamics of nitrogen, phosphorus, sulfur and potassium within agro-forestry systems;
  • knowledge of the main impacts of anthropic activities on the biogeochemical cycles of the elements in agro-forestry systems.

 

UNIT 3 - EXERCISES (12 HOURS)

Classroom exercises will be carried out on:

  1. the mass balance in agro-forestry systems;
  2. calculation of the efficiency of use of nutrients in agro-forestry systems;
  3. use of models in calculating the soil carbon stock;
  4. calculation of the environmental and health risk assessment in agro-forestry systems.

At the end of the exercise unit, students are invited to write a short report. The content of the report can represent a subject for final examination.

Readings/Bibliography

In addition to the material distributed by the teacher and made available online and lecture notes, it is advisable to study the topics covered on:

  • AA.VV. (2016). Fondamenti di Biochimica Agraria - Pinton R., Cocucci M., Nannipieri P., Trevisan M. (Coord.), Pàtron Editore, Bologna.
  • AA.VV. (2017). Fondamenti di Chimica del Suolo - Sequi P., Ciavatta C., Miano T. (Coord.), Pàtron Editore, Bologna.
  • AA.VV. (2016). Soil science. Springer-Verlag, Heidelberg.
  • Schlesinger W.H. & Bernhardt E.S. (2020). Biogeochemistry. An analysis of global change. 4th ed. Academic Press, London.

Teaching methods

The course is divided into two parts:

  1. frontal teaching: through the administration of the teaching units in the classroom, the student acquires the necessary knowledge to understand the chemical, biochemical and microbial processes that underlie biogeochemical cycles in agro-forestry systems. The acquisition of knowledge and the ability to understand will be constantly monitored, during the lectures, through a continuous interaction between teacher and students. The interaction between teacher and student, an activity that will materialize in the request of the teacher to discuss topics covered in the teaching also according to their impact on topical issues inherent to the discipline taught, will also have the purpose of promoting interest, the development of autonomy of judgment and to improve communication skills;
  2. exercises: the student participates in didactic and seminar experiences that aim to provide analytical parameters useful for the prediction and interpretation of the physical, chemical and biological processes that characterize the biogeochemistry of the elements in agro-forestry systems. This part of the teaching will also have the objective of verifying the ability to apply the acquired knowledge. In consideration of the type of activity and teaching methods adopted, the attendance of this training activity requires the prior participation of all students in the training modules 1 and 2 on safety in the study places, [https: //elearning-sicurezza.unibo .it /] in e-learning mode.

Assessment methods

Verification of learning of the teaching of BIOGEOCHIMICA DEGLI ELEMENTI NEI SISTEMI AGRO-FORESTALI - Integrated course of CHIMICA E BIOCHIMICA DELL'AMBIENTE AGRO-FORESTALE, takes place through a final interview, which can also be taken in English (students wishing to take the examination in English are allowed), conducted jointly with the verification of module 2 (CHIMICA DEL SUOLO). The interview will focus on the topics covered in class in the two courses and will usually be asked 2 basic questions, one for each thematic area (chimica del suolo, biogeochimica degli elementi nei sistemi agro-forestali). Starting from this structure, we will proceed to the appropriate investigations relating to the topics addressed. The verification must be passed in a global way and it is necessary that the candidate reaches the mark of 18 out of thirty in each of the 2 disciplinary areas characterizing this integrated course. The commission will evaluate the scores achieved in each of the two disciplinary areas and by making a weighted average of the scores, according to the CFU dedicated to each area (6 CFU Chimica del suolo, 6 CFU Biogeochimica degli elementi nei sistemi agro-forestali), will come to formulate the overall assessment. The duration of the oral exam will be approximately 30 minutes.

The verbalizing teacher is Prof. Luciano Cavani.

Teaching tools

For frontal teaching, video projectors, video tutorials and films will be used.

The exercises will take place in the computer room and will involve the use of electronic spreadsheets.

Office hours

See the website of Luciano Cavani

SDGs

Zero hunger Climate Action Life on land

This teaching activity contributes to the achievement of the Sustainable Development Goals of the UN 2030 Agenda.