Berliner Boersenzeitung - Climate change: A farm in Rotterdam

EUR -
AED 4.32811
AFN 74.776194
ALL 95.5598
AMD 434.743711
ANG 2.109009
AOA 1081.673099
ARS 1641.587989
AUD 1.625458
AWG 2.120928
AZN 2.006908
BAM 1.958299
BBD 2.373449
BDT 144.854832
BGN 1.965514
BHD 0.444629
BIF 3506.601389
BMD 1.178293
BND 1.496341
BOB 8.14239
BRL 5.784243
BSD 1.178424
BTN 112.256666
BWP 15.844352
BYN 3.295433
BYR 23094.55216
BZD 2.370054
CAD 1.611965
CDF 2605.206621
CHF 0.916357
CLF 0.026871
CLP 1057.576643
CNY 8.006469
CNH 8.003629
COP 4437.34719
CRC 540.093732
CUC 1.178293
CUP 31.224777
CVE 110.789009
CZK 24.330818
DJF 209.406302
DKK 7.470969
DOP 69.696476
DZD 155.82675
EGP 62.111656
ERN 17.674402
ETB 185.114589
FJD 2.572808
FKP 0.864211
GBP 0.865727
GEL 3.151917
GGP 0.864211
GHS 13.302514
GIP 0.864211
GMD 86.015502
GNF 10342.473112
GTQ 8.993698
GYD 246.476591
HKD 9.224152
HNL 31.354184
HRK 7.535071
HTG 154.230067
HUF 356.021657
IDR 20527.580905
ILS 3.419231
IMP 0.864211
INR 112.402895
IQD 1543.564456
IRR 1545393.757698
ISK 143.610156
JEP 0.864211
JMD 185.908793
JOD 0.835409
JPY 185.169977
KES 152.176817
KGS 103.041603
KHR 4727.903983
KMF 493.704814
KPW 1060.464079
KRW 1738.171133
KWD 0.362844
KYD 0.982061
KZT 545.961269
LAK 25863.541867
LBP 105516.18095
LKR 379.587567
LRD 215.892811
LSL 19.359245
LTL 3.479194
LVL 0.712737
LYD 7.45275
MAD 10.718052
MDL 20.197944
MGA 4913.483742
MKD 61.645182
MMK 2473.858305
MNT 4214.410872
MOP 9.503247
MRU 47.07294
MUR 55.061386
MVR 18.157479
MWK 2052.587176
MXN 20.251448
MYR 4.621855
MZN 75.291052
NAD 19.371046
NGN 1611.48105
NIO 43.25527
NOK 10.826044
NPR 179.609703
NZD 1.976558
OMR 0.453017
PAB 1.178404
PEN 4.04037
PGK 5.11291
PHP 72.070281
PKR 328.284123
PLN 4.239677
PYG 7243.211449
QAR 4.291938
RON 5.206287
RSD 117.38983
RUB 86.72262
RWF 1722.665064
SAR 4.420701
SBD 9.464357
SCR 16.210598
SDG 707.568992
SEK 10.859979
SGD 1.495024
SHP 0.879715
SLE 28.988677
SLL 24708.22056
SOS 673.392792
SRD 44.072298
STD 24388.29602
STN 24.979822
SVC 10.311288
SYP 130.257911
SZL 19.370631
THB 38.047039
TJS 11.030115
TMT 4.13581
TND 3.371686
TOP 2.837048
TRY 53.454112
TTD 7.988261
TWD 36.956046
TZS 3078.293969
UAH 51.788921
UGX 4430.691071
USD 1.178293
UYU 46.980608
UZS 14310.374453
VES 588.952344
VND 31018.575797
VUV 139.719435
WST 3.189754
XAF 656.800638
XAG 0.013691
XAU 0.000249
XCD 3.184397
XCG 2.123837
XDR 0.816849
XOF 654.537357
XPF 119.331742
YER 281.140664
ZAR 19.330384
ZMK 10606.055934
ZMW 22.280713
ZWL 379.410019
  • RBGPF

    0.2700

    63.18

    +0.43%

  • CMSC

    0.0100

    23.12

    +0.04%

  • BCC

    -1.4700

    69.2

    -2.12%

  • CMSD

    0.0763

    23.61

    +0.32%

  • NGG

    0.2700

    87.16

    +0.31%

  • GSK

    -0.6000

    49.81

    -1.2%

  • RIO

    2.5200

    107.9

    +2.34%

  • BTI

    2.1600

    60.44

    +3.57%

  • RYCEF

    0.4200

    16.79

    +2.5%

  • JRI

    -0.0197

    13.13

    -0.15%

  • RELX

    -0.3100

    33.27

    -0.93%

  • BCE

    0.1400

    24.28

    +0.58%

  • BP

    0.8800

    44.22

    +1.99%

  • VOD

    0.1200

    16.32

    +0.74%

  • AZN

    -0.9900

    181.86

    -0.54%


Climate change: A farm in Rotterdam




A project that houses cows in a floating barn aims to demonstrate how farming can change its relationship with water and energy.

An overview of the issue of climate change and its effects on agriculture?

Climate change is no longer just a future threat, but a present reality that is already having a significant impact on agriculture worldwide. Rising temperatures, changing precipitation patterns and an increase in extreme weather events pose immense challenges for farmers and threaten

The global average temperature has increased by about 1.1 degrees Celsius since pre-industrial times. This warming is leading to changes in the growing conditions for many crops. Some plant species are sensitive to higher temperatures, which can lead to reduced yields and quality losses. For example, grain filling can be affected in

Changing precipitation patterns and water scarcity
Climate change also affects precipitation patterns, leading to droughts in some regions and flooding in others. Water scarcity is becoming an increasingly pressing problem, especially in areas of intensive agricultural use. Without sufficient irrigation, plants suffer from drought stress, which inhibits growth and reduces yields. On the other hand, heavy rainfall and flooding

Increase in extreme weather events
More frequent and intense extreme weather events such as heat waves, storms and frost periods are having a significant impact on agricultural production. Such events can destroy entire harvests, damage infrastructure and have long-term effects on soil fertility. Farmers have to adapt to unpredictable weather conditions, which makes

Spread of pests and diseases
With rising temperatures and changing climate conditions, pests and plant diseases are also spreading into new areas. Insects, fungi and viruses that were previously limited by climatic conditions can now infest larger areas. This increases the demand for pesticides and poses additional challenges for organic farming.

Impacts on animal husbandry
Livestock farming is also affected by climate change. Heat stresses farm animals and can lead to reduced growth, lower milk production and increased mortality rates. In addition, climate change affects the availability of forage crops and water, which makes animal husbandry even more difficult.

Adapting cultivation practices: Crop rotation, conservation tillage and the use of cover crops can maintain soil fertility and increase resilience to extreme weather.
Breeding climate-resistant varieties: Developing plants that can better cope with heat, drought or flooding is crucial for future food security.
Efficient irrigation systems: Technologies such as drip irrigation reduce water consumption and help to use water more efficiently.
Early warning systems: Weather forecasts and warning systems can help farmers to be better prepared for extreme weather events.
Diversification: Diversifying crops and income sources helps farmers to better cushion risks.

Policy support and global cooperation
Tackling the effects of climate change on agriculture requires policy support and international cooperation. Investments in research and development, education, and infrastructure are necessary to support farmers in their adaptation efforts. Furthermore, it is important to reduce global emissions to mitigate further climate change.

Conclusion
Climate change poses a serious threat to agriculture and global food security. However, the effects can be mitigated through proactive adaptation measures, innovation and political support. It is crucial to act now to safeguard agriculture for future generations and ensure the sustainable nutrition of the world's population.