Pingxiang to Wanzhou Train
Tus últimas búsquedas aparecerán aquí.
- Precio más bajo desde 17,45 € ≈ 18.441 CLP
- Duración media 14h 34m
- Conexiones al día 1
- Distancia 132 km
- CO₂ por persona 2 kg
train from Pingxiang to Wanzhou
The journey from Pingxiang to Wanzhou is about 132 km. On average a train trip takes 14h 34m with 1 connections per day.
| Lowest price | 17,45 € ≈ 18.441 CLP |
|---|---|
| Trip duration | 14h 34m |
| Connections per day | 1 |
| Lowest price | 17,45 € ≈ 18.441 CLP |
| Highest price | 17,45 € ≈ 18.441 CLP |
| First departure | 22:41 |
| Last departure | 22:41 |
| Distance | 132 km |
| Departure | Pingxiang |
| Arrival | Wanzhou |
| Travel operator | kuxun kuxun |
Emisiones de CO₂ por modo
El viaje en tren entre Pingxiang y Wanzhou emite 9.24 kg de CO₂.
Tomar el tren entre Pingxiang y Wanzhou ahorra 17.16 kg de CO₂ frente a un vuelo, 0.66 kg frente al bus y 11.88 kg frente al auto.
Preguntas frecuentes
A train ticket from Pingxiang to Wanzhou costs 17,45 € (≈ 18.441 CLP). Prices vary by how far ahead you book and the time of day. Tickets start from 17,45 € (≈ 18.441 CLP).
The cheapest ticket from Pingxiang to Wanzhou costs 17,45 € (≈ 18.441 CLP). Book as early as possible and avoid peak times.
Pingxiang and Wanzhou are 132 km apart.
The journey from Pingxiang to Wanzhou takes about 14h 34m on average. The fastest option takes 14h 34m.
This route is served by 1 operators: kuxun.
There are about 1 connections per day from Pingxiang to Wanzhou.
The first train from Pingxiang to Wanzhou leaves at 22:41. Check times on your travel date.
The last train from Pingxiang to Wanzhou leaves at 22:41. Check times on your travel date.
We recommend booking as early as possible. The train we found costs 17,45 € (≈ 18.441 CLP) but prices can change.
There are about 1 direct connections from Pingxiang to Wanzhou.
The shortest train journey between Pingxiang and Wanzhou takes 14h 34m.
Yes, there is a direct train between Pingxiang and Wanzhou.
The train journey from Pingxiang to Wanzhou generates 2 kg of CO₂.