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Air Quality Sensor

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calibrationaqigas sensorhchoair quality
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  • alexsh1A alexsh1

    @epierre do you think it is a faulty sensor though?

    epierreE Offline
    epierreE Offline
    epierre
    Hero Member
    wrote on last edited by
    #176

    @alexsh1 said:

    @epierre do you think it is a faulty sensor though?

    coud be, hard to know without possibility to compare to another one.

    z-wave - Vera -> Domoticz
    rfx - Domoticz <- MyDomoAtHome <- Imperihome
    mysensors -> mysensors-gw -> Domoticz

    1 Reply Last reply
    0
    • alexsh1A Offline
      alexsh1A Offline
      alexsh1
      wrote on last edited by
      #177

      @epierre

      This is what I discovered. When nobody is around the sensor 'settles' on a particular value. However, when there is anyone around in the room, the sensor reading goes up and down - see the snapshot attached. Any idea what the problem may be?

      0_1459957501388_Untitled.jpg

      1 Reply Last reply
      0
      • epierreE Offline
        epierreE Offline
        epierre
        Hero Member
        wrote on last edited by
        #178

        @alexsh1 hard to say, could be something moving inside if someone makes vibration around and thus this strange reaction... the down curve at the end is correct, the in between not

        z-wave - Vera -> Domoticz
        rfx - Domoticz <- MyDomoAtHome <- Imperihome
        mysensors -> mysensors-gw -> Domoticz

        1 Reply Last reply
        0
        • E Offline
          E Offline
          Elfnoir
          wrote on last edited by
          #179

          Hi,
          Can you check the reception level?
          I had same behaviour with an old temperature/humidity module; need to move it to another place in the room, and works perfectly now :-)

          epierreE 1 Reply Last reply
          0
          • E Elfnoir

            Hi,
            Can you check the reception level?
            I had same behaviour with an old temperature/humidity module; need to move it to another place in the room, and works perfectly now :-)

            epierreE Offline
            epierreE Offline
            epierre
            Hero Member
            wrote on last edited by
            #180

            @Elfnoir said:

            ; need to move it to another place in the room, and works perfectly now

            temp/hum are "less" sensitive on environment, here the sensors heats up to 40-60° (or more) so temp/hum is not the most impacting (I can be wrong anyway ;-)

            z-wave - Vera -> Domoticz
            rfx - Domoticz <- MyDomoAtHome <- Imperihome
            mysensors -> mysensors-gw -> Domoticz

            1 Reply Last reply
            0
            • alexsh1A Offline
              alexsh1A Offline
              alexsh1
              wrote on last edited by
              #181

              @epierre I wonder if you looked at this sensor Figaro TGS8100:

              http://www.figarosensor.com/products/entry/tgs8100.html

              Looks like it is perfect for a low-powered platform.

              epierreE R 2 Replies Last reply
              0
              • alexsh1A alexsh1

                @epierre I wonder if you looked at this sensor Figaro TGS8100:

                http://www.figarosensor.com/products/entry/tgs8100.html

                Looks like it is perfect for a low-powered platform.

                epierreE Offline
                epierreE Offline
                epierre
                Hero Member
                wrote on last edited by epierre
                #182

                @alexsh1 said:

                @epierre I wonder if you looked at this sensor Figaro TGS8100:

                http://www.figarosensor.com/products/entry/tgs8100.html

                Looks like it is perfect for a low-powered platform.

                as a replacement for MQ in low power yes could be... the bad part is how to get one ?

                z-wave - Vera -> Domoticz
                rfx - Domoticz <- MyDomoAtHome <- Imperihome
                mysensors -> mysensors-gw -> Domoticz

                alexsh1A 1 Reply Last reply
                0
                • epierreE epierre

                  @alexsh1 said:

                  @epierre I wonder if you looked at this sensor Figaro TGS8100:

                  http://www.figarosensor.com/products/entry/tgs8100.html

                  Looks like it is perfect for a low-powered platform.

                  as a replacement for MQ in low power yes could be... the bad part is how to get one ?

                  alexsh1A Offline
                  alexsh1A Offline
                  alexsh1
                  wrote on last edited by
                  #183

                  @epierre said:
                  the bad part is how to get one ?

                  How about http://www.soselectronic.com/?str=371&artnum=170939&name=figaro-tgs8100 ?

                  1 Reply Last reply
                  0
                  • epierreE epierre

                    I'm now testing the MICS-6814 (3 sensors in one) given for :
                    Carbon monoxide CO 1 -1000ppm
                    **Nitrogen dioxide NO2 0.05 –10ppm **
                    Ethanol C2H5OH 10 –500ppm
                    Hydrogen H2 1 –1000ppm
                    Ammonia NH3 1 –500ppm
                    Methane CH4 >1000ppm
                    Propane C3H8 >1000ppm
                    Iso-butane C4H10 >1000ppm

                    Datasheet maionly speaks on CO, NO2 and NH3:
                    http://www.seeedstudio.com/wiki/images/1/10/MiCS-6814_Datasheet.pdf

                    Here is are scripts:
                    http://www.seeedstudio.com/wiki/Grove_-_Multichannel_Gas_Sensor

                    http://www.seeedstudio.com/wiki/images/1/10/MiCS-6814_Datasheet.pdf

                    Some readings:

                    The concentration of NH3 is 0.99 ppm
                    The concentration of CO is 1.20 ppm
                    The concentration of NO2 is 0.15 ppm
                    The concentration of C3H8 is 1000.04 ppm
                    The concentration of C4H10 is 999.98 ppm
                    The concentration of CH4 is 2991.14 ppm
                    The concentration of H2 is 1.09 ppm
                    The concentration of C2H5OH is 1.40 ppm
                    

                    I guess I'll make a script soon...

                    VirV Offline
                    VirV Offline
                    Vir
                    wrote on last edited by
                    #184

                    Hi, It all make sense, I am just confused that in your code once your multiply and once you divide...

                    case CO:
                    {
                    if(ratio1 < 0.01) ratio1 = 0.01;
                    if(ratio1 > 3) ratio1 = 3;
                    //c = pow(10, 0.6) / pow(ratio1, 1.2);
                    ** c = pow(ratio1, -1.179)4.385; //mod by jack*
                    break;
                    }
                    case NO2:
                    {
                    if(ratio2 < 0.07) ratio2 = 0.07;
                    if(ratio2 > 40) ratio2 = 40;
                    //c = ratio2 / pow(10, 0.8);
                    ** c = pow(ratio2, 1.007)/6.855; //mod by jack**
                    break;
                    }
                    SO, what is the actual formula?

                    Vir

                    @epierre said:

                    I'm now testing the MICS-6814 (3 sensors in one) given for :
                    Carbon monoxide CO 1 -1000ppm
                    **Nitrogen dioxide NO2 0.05 –10ppm **
                    Ethanol C2H5OH 10 –500ppm
                    Hydrogen H2 1 –1000ppm
                    Ammonia NH3 1 –500ppm
                    Methane CH4 >1000ppm
                    Propane C3H8 >1000ppm
                    Iso-butane C4H10 >1000ppm

                    Datasheet maionly speaks on CO, NO2 and NH3:
                    http://www.seeedstudio.com/wiki/images/1/10/MiCS-6814_Datasheet.pdf

                    Here is are scripts:
                    http://www.seeedstudio.com/wiki/Grove_-_Multichannel_Gas_Sensor

                    http://www.seeedstudio.com/wiki/images/1/10/MiCS-6814_Datasheet.pdf

                    Some readings:

                    The concentration of NH3 is 0.99 ppm
                    The concentration of CO is 1.20 ppm
                    The concentration of NO2 is 0.15 ppm
                    The concentration of C3H8 is 1000.04 ppm
                    The concentration of C4H10 is 999.98 ppm
                    The concentration of CH4 is 2991.14 ppm
                    The concentration of H2 is 1.09 ppm
                    The concentration of C2H5OH is 1.40 ppm
                    

                    I guess I'll make a script soon...

                    1 Reply Last reply
                    0
                    • epierreE epierre

                      @tantt2810 said:

                      Hello,
                      I'm don't understand the recipe below. Why RL_Value(Load Resistance)(1023-raw_adc)/raw_adc)? Can you explain for me?
                      Thank you so much !!!
                      Input: raw_adc - raw value read from adc, which represents the voltage
                      Output: the calculated sensor resistance
                      Remarks: The sensor and the load resistor forms a voltage divider. Given the voltage
                      across the load resistor and its resistance, the resistance of the sensor
                      could be derived.
                      float MQ2::MQResistanceCalculation(int raw_adc)
                      RL_VALUE
                      (1023-raw_adc)/raw_adc));

                      in fact it is above described, you have a voltage, you want a resistance.
                      https://learn.sparkfun.com/tutorials/voltage-dividers

                      datasheet needs a value which is the Rs/Ro (called here RL) where
                      Ro: sensor resistance at 100ppm of NH3 in the clean air.
                      Rs:sensor resistance at various concentrations of gases

                      here the formula is a simplification of this:

                      float Vrl = val * ( 5.00 / 1024.0 ); // V
                      float Rs = 20000 * ( 5.00 - Vrl) / Vrl ; // Ohm
                      int ratio = Rs/Ro;
                      ppm = 37143 * pow (ratio, -3.178);

                      VirV Offline
                      VirV Offline
                      Vir
                      wrote on last edited by
                      #185

                      What does 37143 represents, Rs? and -3.178 is a second value from your regression method, but what about the first value?
                      Can you elaborate on ppm line, please
                      Vir

                      here the formula is a simplification of this:

                      float Vrl = val * ( 5.00 / 1024.0 ); // V
                      float Rs = 20000 * ( 5.00 - Vrl) / Vrl ; // Ohm
                      int ratio = Rs/Ro;
                      ppm = 37143 * pow (ratio, -3.178);

                      VirV 1 Reply Last reply
                      0
                      • B bhavika

                        I am confused with MiCS 4514 sensor. What I had done is :

                        using MiCS quick start evaluation board, measured ADC value
                        calculated Vout and from that calculated R0.
                        Rs/R0 concentration gives me high value, which is not possible, My data is as follows
                        clean air file is used for the purpose of R0 value
                        https://drive.google.com/file/d/0B8sF8a6FHoseWjhWOHRoYzIxakk/view?usp=sharing
                        and Polluted file is used to calculate the actual pollution
                        https://drive.google.com/file/d/0B8sF8a6FHoseR1BnclhCUHdibEU/view?usp=sharing

                        I am confused. Please help me

                        VirV Offline
                        VirV Offline
                        Vir
                        wrote on last edited by
                        #186

                        @bhavika said:

                        I am confused with MiCS 4514 sensor. What I had done is :

                        using MiCS quick start evaluation board, measured ADC value
                        calculated Vout and from that calculated R0.
                        Rs/R0 concentration gives me high value, which is not possible, My data is as follows
                        clean air file is used for the purpose of R0 value
                        https://drive.google.com/file/d/0B8sF8a6FHoseWjhWOHRoYzIxakk/view?usp=sharing
                        and Polluted file is used to calculate the actual pollution
                        https://drive.google.com/file/d/0B8sF8a6FHoseR1BnclhCUHdibEU/view?usp=sharing

                        I am confused. Please help me

                        I am confused by the formula you are using, could you please explain?
                        Pollution NO2 = (POWER((RS/R0)*(1/POWER(10,0.8068)),(1/1.01)))

                        Pollution CO = POWER((RS/R0)*(1/POWER(10 , 0.5476)),(1/-0.8497)))

                        is the actual formula like this?:

                        pollution = POWER((ratio *(1/POWER(10, curve[0])),(1/[curve[1])))

                        This is different than any other formulas discussed in this thread...
                        Vir

                        1 Reply Last reply
                        0
                        • VirV Vir

                          What does 37143 represents, Rs? and -3.178 is a second value from your regression method, but what about the first value?
                          Can you elaborate on ppm line, please
                          Vir

                          here the formula is a simplification of this:

                          float Vrl = val * ( 5.00 / 1024.0 ); // V
                          float Rs = 20000 * ( 5.00 - Vrl) / Vrl ; // Ohm
                          int ratio = Rs/Ro;
                          ppm = 37143 * pow (ratio, -3.178);

                          VirV Offline
                          VirV Offline
                          Vir
                          wrote on last edited by
                          #187

                          so does 37164 represents the scaling factor and -3.178 the exponent?
                          Vir
                          @Vir said:

                          What does 37143 represents, Rs? and -3.178 is a second value from your regression method, but what about the first value?
                          Can you elaborate on ppm line, please
                          Vir

                          here the formula is a simplification of this:

                          float Vrl = val * ( 5.00 / 1024.0 ); // V
                          float Rs = 20000 * ( 5.00 - Vrl) / Vrl ; // Ohm
                          int ratio = Rs/Ro;
                          ppm = 37143 * pow (ratio, -3.178);

                          1 Reply Last reply
                          0
                          • alexsh1A Offline
                            alexsh1A Offline
                            alexsh1
                            wrote on last edited by alexsh1
                            #188

                            @epierre I have the problem with the dust sketch (shinyei ppd42ns). The following code does not work in MySensors 1.5

                            ...
                            gw.send(msgPM10.set("ppm"));
                              ...
                            gw.send(msgPM25.set("ppm")); 
                            ...
                            
                            2016-04-24 14:44:19.438 Error: MySensors: Unknown/Invalid sensor type (43)
                            2016-04-24 14:44:19.438 Error: MySensors: Unknown/Invalid sensor type (43)
                            

                            So far both PM10 and PM25 are showing zero. However, if I upload the following code, it works fine (one channel though):

                            // Watch video here: https://www.youtube.com/watch?v=a8r4CeQopfY
                            
                            /* 
                             Connection:
                             
                             JST Pin 1 (Black Wire)  => Arduino GND
                             JST Pin 3 (Red wire)    => Arduino 5VDC
                             JST Pin 4 (Yellow wire) => Arduino Digital Pin 8
                            
                             Green Led connected to Arduino D7
                             Yellow Led connected to Arduino D6
                             Red Led connected to Arduino D5
                             
                             
                            Dust Sensor possible application:
                            - Applications of customer
                            - Air quality sensor
                            - Dustlessness workshop
                            - Cigarette detector
                            */
                            
                            /*
                            Sensor is to create Digital (Lo Pulse) output to Particulate Matters (PM). Lo Pulse Occupancy time (LPO time) is in proportion
                            to PM concentration. The output is for PM whose size is around 1 micro meter or larger. We can use the sensor to detect the dust in clean room.
                            Minimum detect particle: 1um
                            http://www.seeedstudio.com/wiki/Grove_-_Dust_Sensor
                             Grove - Dust Sensor Demo v1.0
                             Interface to Shinyei Model PPD42NS Particle Sensor
                             Program by Christopher Nafis 
                             Written April 2012
                             
                             http://www.seeedstudio.com/depot/grove-dust-sensor-p-1050.html
                             http://www.sca-shinyei.com/pdf/PPD42NS.pdf
                             */
                            
                            int pin = 8;
                            unsigned long duration;
                            unsigned long starttime;
                            unsigned long sampletime_ms = 1000;//sampe 1s ;
                            unsigned long lowpulseoccupancy = 0;
                            float ratio = 0;
                            float concentration = 0;
                            int gLed = 7;
                            int yLed = 6;
                            int rLed = 5;
                            
                            void setup() {
                              Serial.begin(9600);
                              pinMode(8,INPUT);
                              pinMode(gLed,OUTPUT);
                              pinMode(yLed,OUTPUT);
                              pinMode(rLed,OUTPUT);
                              starttime = millis();//get the current time;
                            }
                            
                            void loop() {
                              duration = pulseIn(pin, LOW);
                              lowpulseoccupancy = lowpulseoccupancy+duration;
                            
                              if ((millis()-starttime) > sampletime_ms)//if the sampel time == 30s
                              {
                                ratio = lowpulseoccupancy/(sampletime_ms*10.0);  // Integer percentage 0=>100
                                concentration = 1.1*pow(ratio,3)-3.8*pow(ratio,2)+520*ratio+0.62; // using spec sheet curve
                                Serial.print("concentration = ");
                                Serial.print(concentration);
                                Serial.print(" pcs/0.01cf  -  ");
                                if (concentration < 1.0) {
                                 Serial.println("It's a smokeless and dustless environment"); 
                                 digitalWrite(gLed, HIGH);
                                 digitalWrite(yLed, LOW);
                                 digitalWrite(rLed, LOW);
                              }
                                if (concentration > 1.0 && concentration < 20000) {
                                 Serial.println("It's probably only you blowing air to the sensor :)"); 
                                 digitalWrite(gLed, HIGH);
                                 digitalWrite(yLed, LOW);
                                 digitalWrite(rLed, LOW);
                                }
                                
                                if (concentration > 20000 && concentration < 315000) {
                                 Serial.println("Smokes from matches detected!"); 
                                 digitalWrite(gLed, LOW);
                                 digitalWrite(yLed, HIGH);
                                 digitalWrite(rLed, LOW);
                                }
                                  if (concentration > 315000) {
                                 Serial.println("Smokes from cigarettes detected! Or It might be a huge fire! Beware!"); 
                                 digitalWrite(gLed, LOW);
                                 digitalWrite(yLed, LOW);
                                 digitalWrite(rLed, HIGH);
                              }
                                
                                lowpulseoccupancy = 0;
                                starttime = millis();
                              }
                            }
                            
                            
                            1 Reply Last reply
                            0
                            • epierreE epierre

                              Hello,

                              sadly the discussions were lost...

                              So let's start again on the subject:

                              https://github.com/empierre/arduino

                              Here is the list of my current experimentations:

                              • MQ135.ino : for CO2/COV ... validated
                                
                              • MQ2.ino : for ethanol... needs pre-heat : ongoing
                              • MQ6 sensor : just received
                              • MQ131 sensor : just received
                              • TGS2600 sensor : just received

                              I'm getting serious a with a mega and a sensor board, 4 of them are connected together !

                              The MQ135 is not on the list, I use it to measure CO2 in children's room...
                              Values:

                              • MQ2: 85 - Combustible gas and smoke
                              • MQ6: 25 - Isobutane, Butane, LPG
                              • MQ131: 57 - O3, CL2
                              • TGS2600: 943 - ethanol, hydrogen, iso-butane, CO, Methane

                              As discussed before, I would appreciate someone helping me reading the logarithmic curves in the datasheet (link on each sensor name above) to get the linear value based on analog reading. I need to learn reading it... thanks!

                              as an example here in sandboxelectronics we saw that several values could be read from the datasheet:

                              float           LPGCurve[3]  =  {2.3,0.21,-0.47};   //two points are taken from the curve.
                                                                                  //with these two points, a line is formed which is "approximately equivalent"
                                                                               //to the original curve.
                                                                              //data format:{ x, y, slope}; point1: (lg200, 0.21), point2: (lg10000, -0.59)
                              float           COCurve[3]  =  {2.3,0.72,-0.34};    //two points are taken from the curve.
                                                                              //with these two points, a line is formed which is "approximately equivalent"
                                                                              //to the original curve.
                                                                              //data format:{ x, y, slope}; point1: (lg200, 0.72), point2: (lg10000,  0.15)
                              float           SmokeCurve[3] ={2.3,0.53,-0.44};    //two points are taken from the curve.
                                                                              //with these two points, a line is formed which is "approximately equivalent"
                                                                              //to the original curve.
                                                                              //data format:{ x, y, slope}; point1: (lg200, 0.53), point2: (lg10000,  -0.22)                                                    
                              float           Ro           =  10;                 //Ro is initialized to 10 kilo ohms
                              
                              AnneFRA Offline
                              AnneFRA Offline
                              AnneFR
                              wrote on last edited by
                              #189

                              @epierre hi, could remove some doubts regarding the mq131 sensor?
                              thanks,
                              Anne

                              1 Reply Last reply
                              0
                              • epierreE Offline
                                epierreE Offline
                                epierre
                                Hero Member
                                wrote on last edited by
                                #190

                                @alexsh1 said:

                                (shinyei ppd42ns)

                                I corrected the following sketch which had bad yg/m3 to ppm conversion thanks to LouiS22 from Domoticz forum remark (type conversion errors leading to 0 values).

                                https://github.com/empierre/arduino/blob/master/DustSensor_SamYoung_DSM501.ino

                                I guess I'll have to do the same here (but I lack time...):
                                DustSensor_Shinyei_PPD42NS.ino

                                z-wave - Vera -&gt; Domoticz
                                rfx - Domoticz &lt;- MyDomoAtHome &lt;- Imperihome
                                mysensors -&gt; mysensors-gw -&gt; Domoticz

                                alexsh1A 1 Reply Last reply
                                0
                                • epierreE epierre

                                  @alexsh1 said:

                                  (shinyei ppd42ns)

                                  I corrected the following sketch which had bad yg/m3 to ppm conversion thanks to LouiS22 from Domoticz forum remark (type conversion errors leading to 0 values).

                                  https://github.com/empierre/arduino/blob/master/DustSensor_SamYoung_DSM501.ino

                                  I guess I'll have to do the same here (but I lack time...):
                                  DustSensor_Shinyei_PPD42NS.ino

                                  alexsh1A Offline
                                  alexsh1A Offline
                                  alexsh1
                                  wrote on last edited by
                                  #191

                                  @epierre Thanks - I'll have another go at Shinyei PPD42NS sketch once I have time. Ideally, I'd like to combine it with MH-Z14A sketch.

                                  epierreE 1 Reply Last reply
                                  0
                                  • alexsh1A alexsh1

                                    @epierre Thanks - I'll have another go at Shinyei PPD42NS sketch once I have time. Ideally, I'd like to combine it with MH-Z14A sketch.

                                    epierreE Offline
                                    epierreE Offline
                                    epierre
                                    Hero Member
                                    wrote on last edited by
                                    #192

                                    @alexsh1 which is a good idea, also a temp/him is quite usefull though I didn't added the impact in the formulas so far.

                                    z-wave - Vera -&gt; Domoticz
                                    rfx - Domoticz &lt;- MyDomoAtHome &lt;- Imperihome
                                    mysensors -&gt; mysensors-gw -&gt; Domoticz

                                    alexsh1A 2 Replies Last reply
                                    0
                                    • epierreE epierre

                                      @alexsh1 which is a good idea, also a temp/him is quite usefull though I didn't added the impact in the formulas so far.

                                      alexsh1A Offline
                                      alexsh1A Offline
                                      alexsh1
                                      wrote on last edited by alexsh1
                                      #193

                                      @epierre I have combined the two sketches - works just fine, but need to find a spare temp sensor.The hardware setup looks messy so adding an extra i2c sensor will complicate it even more. I'll come back with the combined three-in-one sketch shortly.

                                      BTW, this

                                      gw.send(msgPM25.set("ppm"));
                                      

                                      still throws the following error. What version MySensors are you using?

                                       MySensors: Unknown/Invalid sensor type (43)
                                      
                                      1 Reply Last reply
                                      0
                                      • epierreE epierre

                                        @alexsh1 which is a good idea, also a temp/him is quite usefull though I didn't added the impact in the formulas so far.

                                        alexsh1A Offline
                                        alexsh1A Offline
                                        alexsh1
                                        wrote on last edited by alexsh1
                                        #194

                                        @epierre I started looking at the formula you have used in ppmv calculation. Why do you need ppmv? All values in EPA or Europe are in μg/m3.

                                        The ppmv equation is:

                                        ppmv = mg/m^3 * (0.08205*T)/M 
                                        

                                        T = atmospheric temperature in kelvins = 273.15 + °C
                                        M = molecular weight of the air pollutant = 28.97
                                        (http://www.engineeringtoolbox.com/molecular-mass-air-d_679.html - this is a good link)
                                        0.08205 = Universal Gas Law constant in atm·l/(mol·K)

                                        Your code for this equation is:

                                        ppmv=(float)(((concentrationPM25*0.0283168)/100) * ((0.08205*temp)/0.01))/1000;
                                        

                                        Now, I think it should be as follows:

                                        1. temp = °C + 273.15
                                        int temp=273.15 + 22;
                                        
                                        

                                        22C - is a typical temp inside though the intention is to use a sensor

                                        1. The amended ppmv equation is going to be:
                                        ppmv=(((concentrationPM25*0.0283168)/100) * ((0.08205*temp)/28.97))/1000;
                                        

                                        I have not changed 0.0283168 /100 - not sure that this is. And the whole thing is divided by 1000? why?

                                        IMPORTANT UPDATE:

                                        I have just received the following result:

                                        
                                        PM10: 7373
                                        
                                        send: 11-11-0-0 s=0,c=1,t=37,pt=7,l=5,sg=0,st=ok:1.744
                                        
                                        

                                        If I use the following web-site http://www.herramientasingenieria.com/onlinecalc/ppm-mg_m3.php and the result is
                                        mg/m3 = 7373 * 0.283168/100 = 2.08 mg/m3
                                        The molecular weight is 28.97 for dry air

                                        2.08 mg/m3 is equivalent to 1.74ppm for a gas with molecular weight=28.97 Pressure=1013.25, Temperature=22C 
                                        

                                        Success!
                                        Now I have found a spare BMP280 (temp and pressure sensor) which I can use here.
                                        Additionally, I need to use 24-h and 1 year averages - https://www3.epa.gov/airquality/particlepollution/2012/decfsstandards.pdf

                                        Stay tuned!

                                        epierreE 1 Reply Last reply
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                                        • alexsh1A alexsh1

                                          @epierre I started looking at the formula you have used in ppmv calculation. Why do you need ppmv? All values in EPA or Europe are in μg/m3.

                                          The ppmv equation is:

                                          ppmv = mg/m^3 * (0.08205*T)/M 
                                          

                                          T = atmospheric temperature in kelvins = 273.15 + °C
                                          M = molecular weight of the air pollutant = 28.97
                                          (http://www.engineeringtoolbox.com/molecular-mass-air-d_679.html - this is a good link)
                                          0.08205 = Universal Gas Law constant in atm·l/(mol·K)

                                          Your code for this equation is:

                                          ppmv=(float)(((concentrationPM25*0.0283168)/100) * ((0.08205*temp)/0.01))/1000;
                                          

                                          Now, I think it should be as follows:

                                          1. temp = °C + 273.15
                                          int temp=273.15 + 22;
                                          
                                          

                                          22C - is a typical temp inside though the intention is to use a sensor

                                          1. The amended ppmv equation is going to be:
                                          ppmv=(((concentrationPM25*0.0283168)/100) * ((0.08205*temp)/28.97))/1000;
                                          

                                          I have not changed 0.0283168 /100 - not sure that this is. And the whole thing is divided by 1000? why?

                                          IMPORTANT UPDATE:

                                          I have just received the following result:

                                          
                                          PM10: 7373
                                          
                                          send: 11-11-0-0 s=0,c=1,t=37,pt=7,l=5,sg=0,st=ok:1.744
                                          
                                          

                                          If I use the following web-site http://www.herramientasingenieria.com/onlinecalc/ppm-mg_m3.php and the result is
                                          mg/m3 = 7373 * 0.283168/100 = 2.08 mg/m3
                                          The molecular weight is 28.97 for dry air

                                          2.08 mg/m3 is equivalent to 1.74ppm for a gas with molecular weight=28.97 Pressure=1013.25, Temperature=22C 
                                          

                                          Success!
                                          Now I have found a spare BMP280 (temp and pressure sensor) which I can use here.
                                          Additionally, I need to use 24-h and 1 year averages - https://www3.epa.gov/airquality/particlepollution/2012/decfsstandards.pdf

                                          Stay tuned!

                                          epierreE Offline
                                          epierreE Offline
                                          epierre
                                          Hero Member
                                          wrote on last edited by
                                          #195

                                          @alexsh1 said:

                                          @epierre I started looking at the formula you have used in ppmv calculation. Why do you need ppmv? All values in EPA or Europe are in μg/m3.

                                          because domoticz only knows ppm... and many AIQ like use only that except for particles.

                                          1. temp = °C + 273.15
                                            int temp=273.15 + 22;
                                            22C - is a typical temp inside though the intention is to use a sensor

                                          not for me ;-)

                                          1. The amended ppmv equation is going to be:
                                            ppmv=(((concentrationPM250.0283168)/100) * ((0.08205temp)/28.97))/1000;
                                          I have not changed 0.0283168 /100 - not sure that this is. And the whole thing is divided by 1000? why?
                                          

                                          was a volume conversion

                                          The molecular weight is 28.97 for dry air

                                          2.08 mg/m3 is equivalent to 1.74ppm for a gas with molecular weight=28.97 Pressure=1013.25, Temperature=22C 
                                          

                                          Success!

                                          success for the mysensors value ?

                                          MySensors: Unknown/Invalid sensor type (43)
                                          

                                          Domoticz doesn't recognize this command... I use 1.5.x but I have my own gateway to domoticz

                                          z-wave - Vera -&gt; Domoticz
                                          rfx - Domoticz &lt;- MyDomoAtHome &lt;- Imperihome
                                          mysensors -&gt; mysensors-gw -&gt; Domoticz

                                          alexsh1A bezeeflyB 2 Replies Last reply
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