Made by the BIOME-Earthian Interns
Thursday, July 6, 2017
Tuesday, June 27, 2017
World Environment Day at HARMAN : 5th June 2017
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| Shubha at EcoSpace |
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| Staying back for Qs at Manyata |
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| Aditi at Manyata |
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| Shubha at EcoSpace |
Thursday, June 22, 2017
Visit to Kaikondrahalli Lake for collecting data (Part 2) - March 10, 2017
This is a continuation from the previous post - http://biometrust.blogspot.com/2017/06/visit-to-kaikondrahalli-lake-for.html.
Instead of eating lunch, we go on to the next agenda item - to check the water level sensors. We noticed one part of the lake path cordoned off for construction activity.
Instead of eating lunch, we go on to the next agenda item - to check the water level sensors. We noticed one part of the lake path cordoned off for construction activity.
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| Odyssey water level sensor |
This is the Odyssey water level sensor that has been installed. The counterweight makes sure that the sensor wire is held taut or straight so that water levels are logged accurately. The other end is the logger which logs the readings.
The sensing element is actually the teflon coated wire which is immersed in the water. So the wire inside forms one plate of a capacitor, the teflon acts as the dielectric and the surrounding water forms the other plate of the capacitor. The varying water level causes corresponding changes to the capacitance, which is detected and correlated to the actual water level through a process of calibration.
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The water level sensor was also installed at the same time as the DO sensor (Feb 16). It was installed in the 2 sewage inlets of the lake. This is one of the inlets.
The data logger is inside the metal box at the top, the counterweight is resting on the sewage inlet floor and the Teflon-coated sensing element (the wire) is going up from the counterweight through the PVC pipe to the data logger. The frequency of sensing (how often the reading is taken) is set to 15 mins for this sensor.
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The logger is kept inside the metal housing, enclosed in a plastic bag to protect it from rain.
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The sewage water velocity is measured at different times by using a velocity meter - a different instrument. It can also be measured by a manual method.
By multiplying the depth of the sewage water by the width of the channel and the velocity of sewage water flow, one can arrive at volume flowing per unit of time or in other words the flow rate of sewage. This multiplied by time (say a day) can give the amount of sewage that is flowing into the lake in a day.
Shown in the above picture is a graphic illustration of the same with some example values.
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The data logger is connected to the laptop to download the readings for the last 3 weeks
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| Scrutinising the readings to see if they look ok. |
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The path to the next sewage inlet was blocked (intentionally) by a thicket of uprooted branches. We had to pry our way in through one side. Sid keeps the mobile lab box in the middle, to be picked up after we reach the other side.
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Stepping over the branches on the side to make our way and then climb up over the ditch to get on to the path.
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We reach the second sewage inlet where another Odyssey water level sensor is installed.
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| Taking a look at the downloaded data readings from this sensor |
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Starting the process of doing a field calibration of the sensor. The earlier one had been calibrated right after installation.
For calibration, readings are taken at 2 known heights (minimum and maximum) of immersion into the sewage. The actual sensor readings are compared with the known min and max values by the software and the differences are recorded. And the needed adjustment is automatically applied to subsequent data readings from the sensor.
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For marking the max point on the wire sensing element we find a plastic straw lying nearby and tie it around the wire.
And soon after (for which I have no picture trail) there was a mishap. Sid accidentally dropped the logger end into the sewage and despite scrambling quickly to retrieve it and cleaning it up, it appeared to have got messed up based on the readings that were observed after the fall.
So Sayan decided to take back the instrument with him to ATREE to check if it was just a temporary issue due to the liquid entering the instrument or whether it had got damaged permanently.
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After an exhausting day, we went to nearby Nandini's for lunch - at around 4 pm. Sayan and Sid catching up with the world.
#ORCLCitizenship #tripszee #OracleGiving #atree_org
#ORCLCitizenship #tripszee #OracleGiving #atree_org
Tuesday, June 20, 2017
BIOME in the April 2017 issue of CLEAN INDIA JOURNAL
Page number 58 to 64 article on Waste Treatment.
Link: https://www.cleanindiajournalFriday, June 16, 2017
Municipal Water OR Rejuvenation and Better Management of Existing Water Structures
Perumbalam is a beautiful, green, practically untouched island close to Ernakulam, accessible only by ferry. There are 15 common ponds and 8 common wells in the village - the kind that you only get to see in magazines. There are about 2000 homes in the village and possibly as many open wells and borewells. While water is available at fairly shallow levels people have taken to digging borewells as shallow as 8ft. It costs only Rs 4,500 to dig such a borewell (Bangaloreans may find it hard believe !!).
Due to the proximity of the wells to the sea, unlined pits for sanitation disposal , no open well maintenance and poor solid waste management practices (especially for the plastic and rejects) the groundwater is reasonably contaminated. TDS is high and there is bacteriological contamination in the ground water.
A Japan aided water scheme brings clean water to the village from the Muvathupuzha river which is commonly referred to as Japan Water. The connection charges are low/high depending on how you see it and are waived off/lowered in certain cases (BPL, SC/ST etc). The lowest monthly tariff is Rs 61/- and monthly billing has not started as yet. Japan Water is certainly the preferred source of water given its availability and assurance of quality. Due to the possible availability of Japan Water and the reduced confidence in the qulaity of the open well water, the dependence on the ponds and wells and hence the maintenance of the ponds and wells has deteriorated over a period of time. There are small schemes to promote RWH and recharge of wells (a subsidy
of Rs 6,000) - but that does not seem to have many takers.
The main trunk line for Japan Water has not been laid all across the village and hence not everyone has access to this water. Not everybody has paid and bought connections either. People are however borrowing/lending water (where possible) and have worked out some system of payments between themselves - once the billing starts. The laying of remaining trunk line will cost a large amount of money and there are no monies or immediate plans for the laying of the remaining trunk line
The panchayat (and the village) thinks that any intervention to help them alleviate their water issues would be to raise the remaining money for laying the JW trunk line so that the entire island can have Japan Water. While there is lip service to the need for maintaining open wells they do not really believe that the open well can be a reliable source of water. The wells still exist, have water and it seems hard to imagine that this cannot be cleaned up
It is inevitable that JW will eventually come to the entire village. It also seems inevitable (given the state of our rivers and our demand for water) that the river will not be able to keep up with the water demand over a period of time. But in that time would Perumbalam have lost its groundwater and its knowledge too ?
This must be an oft played out story. Every time that municipal water has become the water source replacing local ground water. Over a period of time both sources have run out and recovery difficult. Bangalore could also be a case in point. But this is one more time. And the same questions are to be answered.
What would be good steps to take so that the immediate water issues are addressed ? How do we ensure that shallow groundwater continues to remain in peoples' memories and is well managed ?
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| The ferry |
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| The island |
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| A well |
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| A recently cleaned pond |
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| plastic |
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| A dirty pond |
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| The jetty |
Thursday, June 15, 2017
The Dutch Well and Konkini Well in Chellanam
A Dutch Well and a Konkini Well in Chellanam ( a 40 min drive from Ernakulam) have been cleaned up and rejuvenated with help from the Rotary. The wells are alongside the main road, fairly non descript unless someone pointed it out to you and barely about 100m from the Arabian Sea. Both these wells used to be sources of clean drinking water for each of the communities. They are quite unremarkable in how they look but the age of the wells sure makes one want to look at them again. Water is available at just about 5-6ft below ground level
The Konkini well is said to be 500 years old. The well has a square cross section. The inner walls are lined with laterite. The stones are as old too. Only the Gaud Saraswat Brahmins used to drink from this well
The Dutch well is slightly modern in comparison, only 350 years old. Circular in Cross section. This was for the Dutch
Due to the proximity to the sea, the water in both wells is fairly saline. TDS 1400 ppm. Hence rainwater harvesting has also been undertaken to redirect water from the rooftops of nearby homes into this well. Due to the availability of municipal supply not many people look to these wells as a source of water and perhaps hence the indifference. However when water is in short supply in the village, the community does look to these wells for water. Both wells do not dry up all through the year.
Both these wells are not far from each other and it makes for a good vision to imagine the dutch and the GSBs drawing water from adjacent wells !!
The Konkini well is said to be 500 years old. The well has a square cross section. The inner walls are lined with laterite. The stones are as old too. Only the Gaud Saraswat Brahmins used to drink from this well
The Dutch well is slightly modern in comparison, only 350 years old. Circular in Cross section. This was for the Dutch
Due to the proximity to the sea, the water in both wells is fairly saline. TDS 1400 ppm. Hence rainwater harvesting has also been undertaken to redirect water from the rooftops of nearby homes into this well. Due to the availability of municipal supply not many people look to these wells as a source of water and perhaps hence the indifference. However when water is in short supply in the village, the community does look to these wells for water. Both wells do not dry up all through the year.
Both these wells are not far from each other and it makes for a good vision to imagine the dutch and the GSBs drawing water from adjacent wells !!
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| Laterite wall for the Konkini well |
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| The Konkini well |
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| Dutch Well |
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| Now lined with cement |
Mr. Anthony's home in Chellanam
Mr Anthony is 67 years old and lives in Chellanam, a 45 minute drive from Ernakulam, with his wife, son and daughter-in-law and his 2 grandkids. While there is Municipal water supply in the village he has chosen to not take the connection. He manages with rainwater and groundwater alone. This might not be uncommon in many parts of Kerala where people depend on their wells for water supply. However, in Chellanam, where there is municipal supply and where groundwater is otherwise saline - due to its proximity to the sea - this makes for an interesting story
TDS in some of the neighbouring wells in the area varies upto 1600 ppm. However Mr Anthony's well has 480ppm TDS (the home is right next to the sea !!) Some part of his rooftop runoff rainwater has been redirected to his open well which he uses for all his domestic water needs except drinking and cooking. The well is used both as a source of water as well as for recharge. Hence the water is a lot less harder than the neighbouring wells
Another part of the rooftop is redirected to an 8000 liter tank where he filters and stores rain water. This water is used for drinking and cooking all year round
All other parts of the rooftop runoff is held in small drums around the house - that his wife continually lays out and manages when there is rain. This water is used in toilets and for cleaning
They have a biogas plant too - supplies them fuel for about 1-2 hours everyday. The garden is a small forest - with all kinds of plants. There is a certain ease with which the couple seem to manage their home and lives
Mr Anthony is happy going about and managing his small systems. There is certain spark and happiness in Mr Anthony's eyes and speech as he goes about tending and talking about his systems
TDS in some of the neighbouring wells in the area varies upto 1600 ppm. However Mr Anthony's well has 480ppm TDS (the home is right next to the sea !!) Some part of his rooftop runoff rainwater has been redirected to his open well which he uses for all his domestic water needs except drinking and cooking. The well is used both as a source of water as well as for recharge. Hence the water is a lot less harder than the neighbouring wells
Another part of the rooftop is redirected to an 8000 liter tank where he filters and stores rain water. This water is used for drinking and cooking all year round
All other parts of the rooftop runoff is held in small drums around the house - that his wife continually lays out and manages when there is rain. This water is used in toilets and for cleaning
They have a biogas plant too - supplies them fuel for about 1-2 hours everyday. The garden is a small forest - with all kinds of plants. There is a certain ease with which the couple seem to manage their home and lives
Mr Anthony is happy going about and managing his small systems. There is certain spark and happiness in Mr Anthony's eyes and speech as he goes about tending and talking about his systems
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| The biogas plant |
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| Rooftop water directed to the well |
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| Rooftop water stored in an 8000 liter tank |
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| The Arabian Sea - right behind his house |
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| All drums are called in for storage |
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| Mr Anthony and his systems |
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